<?xml version="1.0"?>
<feed xmlns="http://www.w3.org/2005/Atom" xml:lang="en">
	<id>https://controls.ame.nd.edu/mediawiki/api.php?action=feedcontributions&amp;feedformat=atom&amp;user=Eric+Paul</id>
	<title>Bill Goodwine&#039;s Wiki - User contributions [en]</title>
	<link rel="self" type="application/atom+xml" href="https://controls.ame.nd.edu/mediawiki/api.php?action=feedcontributions&amp;feedformat=atom&amp;user=Eric+Paul"/>
	<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php/Special:Contributions/Eric_Paul"/>
	<updated>2026-08-18T22:07:10Z</updated>
	<subtitle>User contributions</subtitle>
	<generator>MediaWiki 1.44.2</generator>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Brief_of_Amici_Curiae_for_Respondent_-_Eric_Leis&amp;diff=5003</id>
		<title>Brief of Amici Curiae for Respondent - Eric Leis</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Brief_of_Amici_Curiae_for_Respondent_-_Eric_Leis&amp;diff=5003"/>
		<updated>2011-04-29T15:07:31Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Brief of Amici Curiae Interdigital Communications, LLC and Tessera, Inc. in Support of Respondent==&lt;br /&gt;
*Background of Amici&lt;br /&gt;
**Interdigital Communications - producers in the wireless communications industry.&lt;br /&gt;
**Tessera - provider of miniaturization technologies for the electronics industry; involved in the innovation of computer chip technology&lt;br /&gt;
*Summary&lt;br /&gt;
**In this case, the court only considers traditional patent licensing arrangements, but neglects modern technology transfer agreements. &lt;br /&gt;
**In the electronics industry, there are innovators at the top of the chain who create the specific components and then contract licenses with companies throughout the chain to use the product. This involves companies at the top to manufacture the components all the way down to those at the bottom who assemble the final product. This is common practice and has not been considered patent exhaustion. &lt;br /&gt;
**Separate licensing agreements at the different levels of the process do not violate title 35. &lt;br /&gt;
**It is the right of the inventor to receive the full economic benefit of his patent. This is the right guaranteed by the Constitution to encourage innovation. The individual has the right to claim his invention at all levels of production in order to receive full economic compensation for his hard work and innovation. &lt;br /&gt;
**Companies at the top of the chain function only as innovators. They do not manufacture large quantities of the product. The only way to generate a profit is through licensing agreements with manufacturing companies. &lt;br /&gt;
**Financial compensation is essential for continuing innovation. Not only does it fund further invention, but it encourages such. It enables these companies to compete with opponents. Shareholders do not support a company that does not return a profit. &lt;br /&gt;
**The Department of Justice and FTC&#039;s antitrust guidelines recognize the benefit of licenses both for the inventor and all others who receive the technology in the chain. &lt;br /&gt;
**Manufacturers do not have the right to negotiate deals for the inventor. They are often involved in competition with other manufacturers and have their own motivations. The patent owner is the only one entitled to make negotiations involving his product. &lt;br /&gt;
**The patent, in this case, is attempting to protect modern licensing agreements. &lt;br /&gt;
**Technology transfer agreements are often not based on royalties for sales. Rather, they take into consideration training and implementation of the new technology. The profit is generated in return for human services to ensure the proper use of their technology. &lt;br /&gt;
**This brief affirms the Court of Appeals Decision.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Brief_of_Amici_Curiae_for_Respondent_-_Eric_Leis&amp;diff=5000</id>
		<title>Brief of Amici Curiae for Respondent - Eric Leis</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Brief_of_Amici_Curiae_for_Respondent_-_Eric_Leis&amp;diff=5000"/>
		<updated>2011-04-29T14:53:57Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: Created page with &amp;quot;Brief of Amici Curiae Interdigital Communications, LLC and Tessera, Inc. in Support of Respondent&amp;quot;&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Brief of Amici Curiae Interdigital Communications, LLC and Tessera, Inc. in Support of Respondent&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Here_in_list_of_arguments_in_Quanta&amp;diff=4999</id>
		<title>Here in list of arguments in Quanta</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Here_in_list_of_arguments_in_Quanta&amp;diff=4999"/>
		<updated>2011-04-29T14:52:21Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Post a link to your summary of the brief you read here.&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief Summary 901330223]]&lt;br /&gt;
&lt;br /&gt;
[[901349446 Quanta Brief]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief Summary 901471466]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief Summary 901422128]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief Summary Jacob Marmolejo]]&lt;br /&gt;
&lt;br /&gt;
[[Homework 8 (due Friday 28)~jnosal | Quanta Brief Summary 901438174]]&lt;br /&gt;
&lt;br /&gt;
[[Mitros: Quanta Brief]]&lt;br /&gt;
&lt;br /&gt;
[[Zahm Homework 31: Quanta Brief]]&lt;br /&gt;
&lt;br /&gt;
[[901419437 Quanta v. LGE Brief Summary]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief 901437068]]&lt;br /&gt;
&lt;br /&gt;
[[901281608: Quanta Brief]]&lt;br /&gt;
&lt;br /&gt;
[[901444263: Quanta v. LGE Reply Brief of Petitioners]]&lt;br /&gt;
&lt;br /&gt;
[[901479977: Quanta for Petitioners]]&lt;br /&gt;
&lt;br /&gt;
[[Apr. 29th: Brief Summary (2007 WL 3440937) - Andrew McBride]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief Summary 901360293]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief Summary 901431048]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief Brobins]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief hwong1]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief: Tennant]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta Brief (John Gallagher)]]&lt;br /&gt;
&lt;br /&gt;
[[Quanta brief - 901338276]]&lt;br /&gt;
&lt;br /&gt;
[[Brief of Amici Curiae for Respondent - Eric Leis]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Support_for_Honeywell_-_04_APR_2011&amp;diff=4542</id>
		<title>Eric Paul&#039;s Support for Honeywell - 04 APR 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Support_for_Honeywell_-_04_APR_2011&amp;diff=4542"/>
		<updated>2011-04-03T23:21:00Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;*Honeywell’s patents are for an electrical control system to be used in conjunction with gas turbine auxiliary power units. The patent calls for a “set point” which is used to mark the minimum flow to avoid airflow surges. This set point is the desired value of the flow parameter. The flow parameter is a function of the position of the inlet guide vanes (IGV).    The actual flow conditions are measured and compared to this desired value in order to determine the required position of the surge bleed valve. It is important to note that the flow parameter is a function of the IGVs. These vanes are used to determine the desired amount of flow. The IGVs yield information regarding the value of flow for this device. &lt;br /&gt;
*Sundstrand developed a different auxiliary power unit which compares a “set point” that is a function of the air inlet temperature to a flow parameter in order to determine the position of its surge bleed valve. Sundstrand found that at high flow levels, there are errors in determining the flow parameter. They resolved to use IGVs to measure the level of flow and block the control signal if the flow is too high. &lt;br /&gt;
*In Warner-Jenkinson v. Hilton Davis, the court affirmed that the patent should be compared to the alleged infringing product on an element-by-element level. The court avoided supporting the “triple identity test” or the “insubstantial differences test” unwilling to place any strict limits on the analysis. Instead, the court stated that, “an analysis of the role played by each element…of the specific patent claim will thus inform the inquiry as to whether a substitute element plays a role substantially different from the claimed element.” In this situation, the elements in question are the inlet guide vanes. &lt;br /&gt;
*In the Honeywell patent, the role of the IGVs is to determine the desired value of the flow parameter. This is compared to the actual values of flow to regulate the surge bleed valve. Thus, the fundamental role of the IGVs in Honeywell’s patent is to output a flow value which impacts the position of the surge bleed valve. &lt;br /&gt;
*In the Sundstrand product, the role of the IGV is to measure the flow in order to determine whether it is high or low flow. If it is high flow, the control system is shut down and the surge bleed valve cannot be altered. &lt;br /&gt;
*In both products, a value for flow is a direct function of the IGVs. Additionally, the position of the surge bleed valve is impacted by the flow values output by the IGVs in both designs. In the Honeywell patent, a flow value is a function of the IGVs. In the Sundstrand product, a flow value is a function of the IGVs. In breaking both elements down into their most basic roles, it is obvious that the Sundstrand product infringes the Honeywell patent as a result of the Doctrine of Equivalents.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Support_for_Honeywell_-_04_APR_2011&amp;diff=4541</id>
		<title>Eric Paul&#039;s Support for Honeywell - 04 APR 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Support_for_Honeywell_-_04_APR_2011&amp;diff=4541"/>
		<updated>2011-04-03T23:18:46Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: Created page with &amp;quot;	Honeywell’s patents are for an electrical control system to be used in conjunction with gas turbine auxiliary power units. The patent calls for a “set point” which is used...&amp;quot;&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;	Honeywell’s patents are for an electrical control system to be used in conjunction with gas turbine auxiliary power units. The patent calls for a “set point” which is used to mark the minimum flow to avoid airflow surges. This set point is the desired value of the flow parameter. The flow parameter is a function of the position of the inlet guide vanes (IGV).    The actual flow conditions are measured and compared to this desired value in order to determine the required position of the surge bleed valve. It is important to note that the flow parameter is a function of the IGVs. These vanes are used to determine the desired amount of flow. The IGVs yield information regarding the value of flow for this device. &lt;br /&gt;
	Sundstrand developed a different auxiliary power unit which compares a “set point” that is a function of the air inlet temperature to a flow parameter in order to determine the position of its surge bleed valve. Sundstrand found that at high flow levels, there are errors in determining the flow parameter. They resolved to use IGVs to measure the level of flow and block the control signal if the flow is too high. &lt;br /&gt;
	In Warner-Jenkinson v. Hilton Davis, the court affirmed that the patent should be compared to the alleged infringing product on an element-by-element level. The court avoided supporting the “triple identity test” or the “insubstantial differences test” unwilling to place any strict limits on the analysis. Instead, the court stated that, “an analysis of the role played by each element…of the specific patent claim will thus inform the inquiry as to whether a substitute element plays a role substantially different from the claimed element.” In this situation, the elements in question are the inlet guide vanes. &lt;br /&gt;
	In the Honeywell patent, the role of the IGVs is to determine the desired value of the flow parameter. This is compared to the actual values of flow to regulate the surge bleed valve. Thus, the fundamental role of the IGVs in Honeywell’s patent is to output a flow value which impacts the position of the surge bleed valve. &lt;br /&gt;
	In the Sundstrand product, the role of the IGV is to measure the flow in order to determine whether it is high or low flow. If it is high flow, the control system is shut down and the surge bleed valve cannot be altered. &lt;br /&gt;
	In both products, a value for flow is a direct function of the IGVs. Additionally, the position of the surge bleed valve is impacted by the flow values output by the IGVs in both designs. In the Honeywell patent, a flow value is a function of the IGVs. In the Sundstrand product, a flow value is a function of the IGVs. In breaking both elements down into their most basic roles, it is obvious that the Sundstrand product infringes the Honeywell patent as a result of the Doctrine of Equivalents.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=4540</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=4540"/>
		<updated>2011-04-03T23:18:23Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Homework */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==  Homework ==&lt;br /&gt;
&lt;br /&gt;
*[[Eric Paul&#039;s Nonobviousness - 9 FEB 2011]]&lt;br /&gt;
*[[Eric Paul&#039;s Printed Publication Case - 23 MAR 2011]]&lt;br /&gt;
*[[Eric Paul&#039;s Support for Honeywell - 04 APR 2011]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Doctrine_of_Equivalents_Case_List&amp;diff=4537</id>
		<title>Doctrine of Equivalents Case List</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Doctrine_of_Equivalents_Case_List&amp;diff=4537"/>
		<updated>2011-04-03T18:02:07Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Add your case to the list with a one-paragraph (approximately 250 words) summary of the facts at issues, i.e., &amp;quot;an umbrella is or is not equivalent to a parasol because...&amp;quot;&lt;br /&gt;
&lt;br /&gt;
Please put the cases in chronological order.  If two are from the same year, then put them in alphabetical order.  Also put your name, your login name or NDID number with your case.  Use the following for a template.&lt;br /&gt;
&lt;br /&gt;
* Goodwine v. Batill, 123 US 4567 (1066)&lt;br /&gt;
This case concerned a patent for an iPad and the patentee sued the maker of an iPod for infringement.  The important part of the claim was &amp;quot;a device for playing music and other media comprising a touch screen...&amp;quot; The court held that iPod infringed the iPad patent because the ... was equivalent to the ... because ...&lt;br /&gt;
&lt;br /&gt;
Bill Goodwine&lt;br /&gt;
&lt;br /&gt;
*AMEC Liquidating Trust v. IVAC Corporation, 885 F.2d 1574 (1989)&lt;br /&gt;
&lt;br /&gt;
AMEC had a patent for a thermometer with a plastic cover held on by a hooking type mechanism. IVAC created a thermometer with a cover held on by a ring that created a friction lock. The CAFC held the IVAC invention was non-infringing on the AMEC patent because under the doctrine of equivalents, it did not perform the same function in the same way. The AMEC thermometer cover used an inscription fit, which created deep scratches in the cover. The IVAC thermometer used a friction fit, which only created superficial scratches in the cover. The CAFC found that the superficial scratches did not constitute an inscription fit. Also, the CAFC decided that AMEC did not present any evidence proving that the ring in the IVAC patent was equivalent to the “hook” in the AMEC patent. Because of this, the patent was non-infringing under the doctrine of equivalents.&lt;br /&gt;
&lt;br /&gt;
901444263&lt;br /&gt;
&lt;br /&gt;
*Johnston v. IVAC Corp., 885 F.2d 1574 (1989)&lt;br /&gt;
&lt;br /&gt;
The inventor, Turner, invented a thermometer probe cover that stays on (this was owned by AMEC).  It kept the cover on via a sharp metal hook to tear into the cover’s plastic.  IVAC developed a thermometer that served a similar purpose of keeping the probe cover on, except that it did so with a ring on the probe (to hold the cover via friction).  IVAC intentionally left the probe free of any sharp edge to ease the removal of the probe cover when needed.  District Court of Southern California ruled in summary judgment that IVAC’s thermometer probe covers do not infringe AMEC’s.  On appeal from AMEC, the Court of Appeals affirmed the judgment.  A ring that does not tear the plastic cover is not equivalent to the hook that does. [http://campus.westlaw.com.proxy.library.nd.edu/result/default.wl?mt=CampusLaw&amp;amp;db=ALLCASES&amp;amp;rlt=CLID_QRYRLT4121840350313&amp;amp;origin=Search&amp;amp;sp=003654480-2000&amp;amp;method=TNC&amp;amp;cfid=1&amp;amp;rp=%2fwelcome%2fCampusLaw%2fdefault.wl&amp;amp;eq=welcome%2fCampusLaw&amp;amp;rltdb=CLID_DB1095239350313&amp;amp;srch=TRUE&amp;amp;query=TI(JOHNSTON+%26+IVAC)&amp;amp;vr=2.0&amp;amp;fmqv=s&amp;amp;action=Search&amp;amp;fn=_top&amp;amp;service=Search&amp;amp;sv=Split&amp;amp;rs=WLW11.01]&lt;br /&gt;
&lt;br /&gt;
901471466&lt;br /&gt;
&lt;br /&gt;
* Lemelson v. General Mills, Inc., 968 F.2d 1202 (1992) &lt;br /&gt;
&lt;br /&gt;
Lemelson sued Mattel, alleging that Mattel&#039;s &amp;quot;Hot Wheels&amp;quot; toy car track infringed on his patented toy track. The U.S. District Court for the Northern District of Illinois found in favor of the plaintiff. Mattel appealed to the CAFC. The Court held that the &amp;quot;Hot Wheels&amp;quot; track did not contain all the limitations of the patent; it was equivalent to the prior art. That is, Lemelson&#039;s patent could not be both valid in light of the prior art and infringed upon by Mattel. Furthermore, upon his first application, claim 3 of Lemelson&#039;s patent had five clauses. The PTO examiner found the patent to be indistinguishable from the prior art. Lemelson added clauses [f] and [g] and received a patent. The important parts of the claim were, &amp;quot;[f] said guide means include a pair of spaced apart runner portions for defining the pathway of a vehicle moving over said track, [g] said spaced apart runner portions include upwardly extending rails for guiding the wheels of a vehicle.&amp;quot; The Court held that &amp;quot;Hot wheels&amp;quot; did not contain any elements equivalent to the clauses [f] and [g]. The Court also noted that the public is entitled to the PTO record to determine the scope and meaning of claims. &lt;br /&gt;
&lt;br /&gt;
901330223&lt;br /&gt;
&lt;br /&gt;
*Valmont Industries Inc. v. Reinke Manufacturing Company Inc., 983 F.2d 1039 (1993)&lt;br /&gt;
&lt;br /&gt;
901316153&lt;br /&gt;
&lt;br /&gt;
This case concerns an adaption for center-pivot (i.e. rotating) irrigation systems. The adaption (an apparatus that attaches to the main frame of the sprinkler) allows the corners of a field, normally missed by the standard rotating irrigation system, to be watered. The infringement issue relates to the means by which the position of the sprinkler is detected, relative to the field. The patent uses a method of pivot angle encoders, while the &amp;quot;infringing&amp;quot; patent uses buried electromagnetic cables to guide the sprinkler around the field.&lt;br /&gt;
&lt;br /&gt;
The CAFC ruled that the second device was not infringing, reversing the decision of the district court. The district court argued that the means of controlling the system were equivalent. The CAFC&#039;s argument was that while the two irrigation systems performed substantially the same overall function to obtain substantially the same overall result as the claimed invention, the way those results were achieved was substantially different. &amp;quot;Comparison of these two control means compels the conclusion that the claimed control means and Reinke&#039;s control means are not structurally equivalent.[...][E]ven though both the control means in the specification and the control means on Reinke&#039;s device use electric signals, the structures generating those signals are strikingly different.&amp;quot; &lt;br /&gt;
&lt;br /&gt;
Because the doctrine of equivalence requires that the two devices perform substantially the same function in substantially the same way to achieve substantially the same results, the two control systems were not equivalent under the doctrine of equivalence because they did not meet the &amp;quot;way&amp;quot; requirement of the doctrine of equivalence.&lt;br /&gt;
&lt;br /&gt;
*William Bradshaw and Robert Shepherd v. Igloo Products Corp. 1997 WL 543109 (US District Court, N.D.Ill.)&lt;br /&gt;
&lt;br /&gt;
William Bradshaw sued Igloo Products for infringement of a wheeled cooler. Bradshaw’s patent was for a cooler with a pulling handle and two lifting handles, one of which was connected on the same axle as the pulling handle. The Igloo products in question were the Rolling Kool Locker which had a rotatable lifting hand that can also be used to pull the cooler and the Cool Roller which had separate lifting and pulling handles coupled to separate axles. The court decided that the prior art for the Cool Roller was a different patent, the Mason patent. This patent was for a wheeled cooler with separate lifting and pulling handles. The Mason patent was granted before Bradshaw’s patent. The court ruled that the Cool Roller fell under the Mason patent. Therefore, if Bradshaw’s patent were to be expanded to include the Cool Roller’s handles, it would be an invalid patent as a result of the prior art, the Mason patent. This leads to a method of deciding infringement. If the product in question mimics prior art, then it cannot infringe the patent otherwise that patent would be invalid. In deciding infringement for the Rolling Kool Locker, the court decided that it was up to a jury to decide whether the Kool Lockers handles were equivalent to Bradshaw’s patent, since there was no other glaring evidence. &lt;br /&gt;
&lt;br /&gt;
Eric Paul&lt;br /&gt;
&lt;br /&gt;
*Hale Propeller, L.L.C. v Ryan Marine Products Pty., LTD., et al, 151 F. Supp .2d 183 (2001) Connecticut District Court&lt;br /&gt;
Ryan owned patent 4411073, issued on 25 October 1983, which concerned devices to measure the pitch of propeller blades. Ryan originally filed the claim on 13 July 1981 it was rejected and then ammended on 4 October 1982. Hale&#039;s device called the &amp;quot;Hale Propeller MRI&amp;quot; was developed in 1997. In question are claims 1(b),(c),(f), and 6. A third party, Michigan Wheel Corporation, a distributor of Hale&#039;s invention filed for patent invalidity.  The important differences between Hale&#039;s and Ryan&#039;s device are that Hale&#039;s does not use gears or worm-drives to rotate the blade and the device does not give direct readouts of the measurements using electric circuits. The issue with claim 1(b) was if a roller was a necessary part of the structure because it prevents skipping of the probe making the measurements more accurate. The court used means-plus-function to rule that the roller was important and Hale did not infringe. The issue with claim 1(c) deals with whether a worm or gear drive is necessary to rotate the blade. Ryan&#039;s patent discloses a hand-cranked device, like Hales, but includes a worm-drive. Part of Ryan&#039;s ammendment to his claim was to include worm gear to the hand-cranking device and therefore the court used prosecution history estoppel to make their decision because Ryan forfeited that claim (hand-cranked device without worm-drive) in order to get the patent and therefore cannot use doctrine of equivalents to get the claim back. The issue of claim 1(f) was whether the computer in the claim was a special computer needed for the readouts. The court ruled that the claim was not that narrow, but then the court ruled that claim 6 dealt with a computer that receives measurement data from the optical encoder and therefore Hale did not infringe. The patent was also ruled valid using the roller and worm drive to prove that it was non-obvious §103, definitively disclosed §112, and not anticipated by prior art §102(b).&lt;br /&gt;
&lt;br /&gt;
Gillian Allsup&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
901281608&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
*Siemens Medical Solutions USA, Inc. v. Saint-Gobain Ceramics &amp;amp; Plastics, Inc. Nos. 2010-1145, 2010-117. (2001) United States Court of Appeals, Federal Circuit&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
	This case began as an infringement lawsuit by Siemens Medical Solutions USA, inc. against Saint-Gobain Ceramics and Plastics, Inc. for the alleged infringement of a patent held by Siemens for a scintillator, a part of an x-ray machine that detects radiation. Saint-Gobain owned a patent for a similar device and the circuit court found that this patent infringed on the patent held by Siemens, which was filed earlier. Though the doctrine of equivalents was used to rule infringement, Saint-Gobain was found to have accidentally, rather than willfully infringed and Siemens was awarded 52.3 million dollars.   &lt;br /&gt;
	&lt;br /&gt;
Siemens filed for patent number 4,958,080 on August 4, 1989. This patent was for a scintillator containing cerium-doped- lutetium oxyorthosilicate. This is a component of a radiation detector that absorbs  gamma-ray photons from an x-ray machine and converts them to visible light so the results can be interpreted. Saint-Gobain also produces scintillators, filing patent number 6,6424,420 in 2000 for a cerium-doped lutetium-yttrium orthosilicate. The chemical composition differs from that of the Siemens&#039; patent as %10 of the lutetium is substituted for yttrium. These scintillators were sold by Saint-Gobain to Philips Medical Systems, a competitor of Siemens. The circuit court found that the composition of Saint-Gobain&#039;s scintillator preformed largely the same function in the same manner as Siemens&#039; patent, and therefore was infringement under the doctrine of equivalence. &lt;br /&gt;
	&lt;br /&gt;
Saint-Gobain filed a motion for a new trail, on the basis that the jury was not told that infringement by the doctrine of equivalence must be proved by clear evidence and argued that damages should be remitted. The Federal Appeals Court did not grant Saint-Gobain a new trial, but did reduces the damages to 44 million. &lt;br /&gt;
	&lt;br /&gt;
&lt;br /&gt;
*Sunbeam Products, Inc. v. Homedics, Inc., Slip Copy, 2010 WL 5230892 (2010)&lt;br /&gt;
&lt;br /&gt;
This case involved a patent for a force-transmitting bearing used with a platform scale. Sunbeam held a patent which specified bearings which were attached to the platform via loose tabs which allowed the bearings to move horizontally. The patent claims required the base of the bearing to be oriented parallel to the platform and remain parallel to the platform at all times. The structure of the accused device was such that the bearings were connection to the platforms using dimples on the lower surface of the platform which the bearings fit into. Sunbeam had criticized prior art which used a similar dimple connection during prosecution beacuse of the potential for unwanted force moments applied by the bearing. The CAFC upheld the District Court&#039;s finding of no infringement based on the doctrine of equivalents because bearings which rocked and pivoted, as the accused device did, did not fall within the reach of the patent claims because they did not remain parallel to the platform at all times.&lt;br /&gt;
&lt;br /&gt;
901422128&lt;br /&gt;
&lt;br /&gt;
*Kustom Signals, Inc. v. Applied Concepts, Inc., 264 F.3d 1326 (2001)&lt;br /&gt;
Kustom Signals held a patent for a multimode traffic radar system which will show either the fastest speed or the strongest signal. Three of the claims used the word &amp;quot;or&amp;quot; in their wording. Kustom claimed that the &amp;quot;or&amp;quot; was a logical operator meaning one, the other, or both. Applied Concepts had designed a radar system which returned both the fastest speed and the strongest signal. The Court held that the word &amp;quot;or&amp;quot; was to hold its traditional, customary meaning as being exclusive, not inclusive, of the two statements.&lt;br /&gt;
&lt;br /&gt;
901 41 7852&lt;br /&gt;
&lt;br /&gt;
*&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Printed_Publication_Case_-_23_MAR_2011&amp;diff=4264</id>
		<title>Eric Paul&#039;s Printed Publication Case - 23 MAR 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Printed_Publication_Case_-_23_MAR_2011&amp;diff=4264"/>
		<updated>2011-03-23T03:20:59Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: Created page with &amp;quot;== Bros Inc v. Browning Mfg Co. ==  The decision in this case was made by the US Court of Appeals Eighth Circuit. It analyzed the validity of a patent for a Pneumatic Roller Comp...&amp;quot;&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== Bros Inc v. Browning Mfg Co. ==&lt;br /&gt;
&lt;br /&gt;
The decision in this case was made by the US Court of Appeals Eighth Circuit. It analyzed the validity of a patent for a Pneumatic Roller Compactor developed by Bros Inc, the defendant. The patent in question was filed on 17 NOV 1949, thus the critical date was 17 NOV 1948. In July of 1948 at the Road Show of the American Road Builders&#039; Association, the defendant distributed pamphlets advertising a design for a &amp;quot;50 Ton Compactor with Oscillating Wheels&amp;quot;. The pamphlet contained four pictures of the design from different perspectives as well as a description of its technical specifications and potential uses. There was no question that the pamphlet was given to public use prior to the critical date. The trial court ruled that the information in the pamphlet was sufficient enough to enable one having ordinary skill in the art to replicate the design, thus making the patent invalid by 102(b). The Circuit Court upheld this ruling citing a previous case, Collins v. Owens, which ruled that information in a foreign publication was enough for one skilled in the art to replicate the invention, thus making the patent invalid. Ultimately, the court ruled that the Bros patent was invalid because the pamphlet contained sufficient information for one with ordinary skill in the art to construct the invention. As a result of the published pamphlet, a patent is no longer required to present the elements of the design to the public. To allow the patent would be to remove the invention from public use.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=4262</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=4262"/>
		<updated>2011-03-23T02:59:29Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==  Homework ==&lt;br /&gt;
&lt;br /&gt;
*[[Eric Paul&#039;s Nonobviousness - 9 FEB 2011]]&lt;br /&gt;
*[[Eric Paul&#039;s Printed Publication Case - 23 MAR 2011]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=4261</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=4261"/>
		<updated>2011-03-23T02:58:57Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==  Homework ==&lt;br /&gt;
&lt;br /&gt;
[[Eric Paul&#039;s Nonobviousness - 9 FEB 2011]]&lt;br /&gt;
[[Eric Paul&#039;s Printed Publication Case - 23 MAR 2011]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=ESB_Briefs&amp;diff=3975</id>
		<title>ESB Briefs</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=ESB_Briefs&amp;diff=3975"/>
		<updated>2011-03-04T03:13:25Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Here is a list of briefs for the Electric Storage Battery Co v. Shimadzu case.  Add your name next to the list for the one with the fewest names and read that one.&lt;br /&gt;
* Reply Brief for Respondents. (Feb. 27, 1939)&lt;br /&gt;
#Michael Madden&lt;br /&gt;
#Hwong1&lt;br /&gt;
#croetzel&lt;br /&gt;
#kroshak&lt;br /&gt;
#Adam Mahood&lt;br /&gt;
#Michael Ackroyd&lt;br /&gt;
#Sam Karch&lt;br /&gt;
#&lt;br /&gt;
#&lt;br /&gt;
#&lt;br /&gt;
* Reply Brief for Petitioner. (Feb. 7, 1939)&lt;br /&gt;
#Cmadiga1&lt;br /&gt;
#90144463&lt;br /&gt;
#901422128&lt;br /&gt;
#jpotter2&lt;br /&gt;
#ewolz&lt;br /&gt;
#E W Hitchler&lt;br /&gt;
#Davin Sakamoto&lt;br /&gt;
#&lt;br /&gt;
#&lt;br /&gt;
#&lt;br /&gt;
* Brief for Respondents (Jan. 28, 1939)&lt;br /&gt;
#LMiller&lt;br /&gt;
#Josh Bradley&lt;br /&gt;
#Brobins&lt;br /&gt;
#Ebingle&lt;br /&gt;
#kyergler&lt;br /&gt;
#BCastel1&lt;br /&gt;
#Eric Leis&lt;br /&gt;
#&lt;br /&gt;
#&lt;br /&gt;
#&lt;br /&gt;
* Brief for Petitioner. (Jan. 1939)&lt;br /&gt;
#Kschlax&lt;br /&gt;
#Andy Stulc&lt;br /&gt;
#Mzahm&lt;br /&gt;
#Rabot&lt;br /&gt;
#Peter Mitros&lt;br /&gt;
#Jacob Marmolejo&lt;br /&gt;
#Greg Torrisi&lt;br /&gt;
#&lt;br /&gt;
#&lt;br /&gt;
#&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Bilski_brief_list&amp;diff=3443</id>
		<title>Bilski brief list</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Bilski_brief_list&amp;diff=3443"/>
		<updated>2011-02-13T19:13:38Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Choose one of the briefs from this list.  Delete it and replace it with your login name.  Please be careful editing this page.  If you mess up all the formatting it will create work for your colleagues.&lt;br /&gt;
&lt;br /&gt;
#Reply Brief for Petitioners (Oct. 26, 2009) &lt;br /&gt;
#jpotter2 &lt;br /&gt;
#Adam T. Letcher&lt;br /&gt;
#Craigkrzyskowski&lt;br /&gt;
#Brief of Amicus Curiae William Mitchell College of Law Intellectual Property Institute in Support of Respondent (Oct. 2, 2009) &lt;br /&gt;
#ebingle&lt;br /&gt;
#Rabot&lt;br /&gt;
#Eric Paul&lt;br /&gt;
#Brief of Amici Curiae American Insurance Association, the Hartford Financial Services, Jackson National Life Insurance Company, Pacific Life Insurance Company, Sun Life Assurance Company Of Canada (U.S.), and Transamerica Life Insurance Company in Support of Respondent (Oct. 2, 2009) &lt;br /&gt;
#Brief For Amicus Curiae Computer &amp;amp; Communications Industry Association in Support of Respondent (Oct. 2, 2009) &lt;br /&gt;
#Brief of Software &amp;amp; Information Industry Association (SIIA) as Amicus Curiae in Support of Respondent (Oct. 2, 2009) &lt;br /&gt;
#Brief of Amici Curiae Foundation for a Free Information Infrastructure, IP Justice, and Four Global Software Professionals and Business Leaders in Support of Respondent (Oct. 2, 2009) &lt;br /&gt;
#Brief for Free Software Foundation as Amicus Curiae in Support of Respondent (Oct. 2, 2009) &lt;br /&gt;
#Brief for Bank of America Corporation, Barclays Capital Inc., The Clearing House Association L.L.C., The Financial Services Roundtable, Google Inc., MetLife, Inc., and Morgan Stanley as Amici Curiae in Support of Respondent (Oct. 2, 2009) &lt;br /&gt;
#Brief Amici Curiae of Professors Peter S. Menell and Michael J. Meurer In Support of Respondent (Oct. 2, 2009) &lt;br /&gt;
#Brief of Entrepreneurial and Consumer Advocates Amici Curiae in Support of Respondent (Oct. 2, 2009) &lt;br /&gt;
#Amicus Curiae Brief in Support of the Respondent, Submitted on Behalf of Adamas Pharmaceuticals, Inc. and Tethys Bioscience, Inc. (Oct. 2, 2009) &lt;br /&gt;
#KyleR &lt;br /&gt;
#Andy Stulc &lt;br /&gt;
#Brief for Amicus Curiae Mark Landesmann in Support of Affirmance (Oct. 2, 2009) &lt;br /&gt;
#Amicus Curiae Brief of Center for Advanced Study and Research in Intellectual Property (CASRIP) of the University of Washington School of Law, and of CASRIP Research Affiliate Scholars, in Support of Affirmance of the Judgment in Favor of Respondent (Oct. 1, 2009) &lt;br /&gt;
#Kevin Godshall&lt;br /&gt;
#Amici Curiae Brief of Internet Retailers in Support of Respondent (Oct. 1, 2009) &lt;br /&gt;
#Brief for the Respondent (Sep. 25, 2009) &lt;br /&gt;
#Brief of the Intellectual Property Section of the Nevada State Bar, as Amicus Curiae in Support of Respondent (Sep. 25, 2009) &lt;br /&gt;
#Brief of Professor Lee A. Hollaar and IEEE-USA as Amici Curiae in Support of Affirmance (Sep. 1, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Austin Intellectual Property Law Association in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amici Curiae Entrepreneurial Software Companies in Support of Petitioner (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Yahoo! Inc. in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae American Intellectual Property Law Association in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amici Curiae Biotechnology Industry Organization, Advanced Medical Technology Association, Wisconsin Alumni Research Foundation &amp;amp; The Regents of the University of California in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Mzahm&lt;br /&gt;
#Brief of Pharmaceutical Research and Manufacturers of America as Amicus Curiae in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Medtronic, Inc. in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of F%21ed%21eration Internationale Des Conseils En Propri%21et%21e Industrielle as Amicus Curiae in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Law Professor Kevin Emerson Collins in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Legal OnRamp in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae John Sutton in Support of Petitioners (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Novartis Corporation Supporting Petitioners (Aug. 6, 2009) &lt;br /&gt;
#Brief Amicus Curiae of The Federal Circuit Bar Association in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Regulatory Datacorp, Inc, American Express Company, Palm Inc., Rockwell Automation, Inc., and SAP America, Inc. as Amici Curiae in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Double Rock Corporation, Island Intellectual Property LLC, LIDs Capital LLC, Intrasweep LLC, Access Control Advantage, Inc., Ecomp Consultants, Pipeline Trading Systems LLC, Rearden Capital Corporation, Craig Mowry and PCT Capital LLC as Ami ci Curiae in Support of Petitioners (Aug. 6, 2009) &lt;br /&gt;
#Brief Amici Curiae of 20 Law and Business Professors in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae The Houston Intellectual Property Law Association in Support of Petitioners (Aug. 6, 2009) &lt;br /&gt;
#Brief of Franklin Pierce Law Center as Amicus Curiae in Support of Petitioners (Aug. 6, 2009) &lt;br /&gt;
#LMiller&lt;br /&gt;
#Brief of TELES AG as Amicus Curiae in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae San Diego Intellectual Property Law Association in Support of Neither Party on the Merits (Aug. 6, 2009) &lt;br /&gt;
#Brief of Robert R. Sachs and Daniel R. Brownstone as Amici Curiae in Support of Neither Party (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae the University of South Florida in Support of Petitioners (Aug. 6, 2009) &lt;br /&gt;
#Brief of Amicus Curiae AwakenIP, LLC in Support of Petitioners (Aug. 6, 2009) &lt;br /&gt;
#Pmitros &lt;br /&gt;
#Brief of Dr. Ananda Chakrabarty as Amicus Curiae in Support of Petitioners (Aug. 6, 2009) &lt;br /&gt;
#Brief of Georgia Biomedical Partnership, Inc. as Amicus Curiae in Support of Petitioners (Aug. 5, 2009) &lt;br /&gt;
#Brief for Prometheus Laboratories Inc. as Amicus Curiae in Support of Neither Party (Aug. 5, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Intellectual Property Owners Association in Support of Neither Party (Aug. 5, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Boston Patent Law Association in Support of Petitioners (Aug. 5, 2009) &lt;br /&gt;
#Brief for the Business Software Alliance as Amicus Curiae in Support of Affirmance (Aug. 5, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Washington State Patent Law Association in Support of Petitioner (Aug. 5, 2009) &lt;br /&gt;
#Bobby Powers&lt;br /&gt;
#Brief of Amici Curiae Association Internationale Pour la Protection de la Propriete Intellectuelle and International Association For The Protection Of Intellectual Property (U.S.) in Support of Reversal (Aug. 5, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Caris Diagnostics, Inc. in Support of Petitioners (Aug. 5, 2009) &lt;br /&gt;
#Brief of the Intellectual Property Law Association of Chicago as Amicus Curiae Supporting Neither Party (Aug. 5, 2009) &lt;br /&gt;
#Brief of Monogram Biosciences, Inc. and Genomic Health, Inc. as Amici Curiae in Support of Neither Party (Aug. 5, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Raymond C. Meiers in Support of Neither Party (Aug. 5, 2009) &lt;br /&gt;
#Brief of On Time Systems, Inc. as Amicus Curiae in Support of Neither Party (Aug. 4, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Conejo Valley Bar Association in Support of Neither Party (Aug. 3, 2009) &lt;br /&gt;
#Brief For Petitioners (Jul. 30, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Telecommunication Systems, Inc. in Support of Neither Party and for Purely Prospective Application of Any Adoption of the New Legal Test Applied Below (Jul. 24, 2009) &lt;br /&gt;
#Brief for the State of Oregon as Amicus Curiae in Support of Neither Party (Jul. 24, 2009) &lt;br /&gt;
#ewolz &lt;br /&gt;
#Petitioners&#039; Reply Brief (May 8, 2009) &lt;br /&gt;
#Brief for the Respondent in Opposition (May 1, 2009) &lt;br /&gt;
#Brief of Koninklijke Philips Electronics N.V. as Amicus Curiae in Support of Petitioners (Mar. 2, 2009) &lt;br /&gt;
#Brief of Amicus Curiae Boston Patent Law Association in Support of Petitioners (Mar. 2, 2009) &lt;br /&gt;
#Brief of Accenture and Pitney Bowes Inc. as Amici Curiae in Support of Petitioners (Mar. 2, 2009) &lt;br /&gt;
#Brief Amicus Curiae of Franklin Pierce Law Center in Support of Certiorari (Mar. 2, 2009) &lt;br /&gt;
#Brief of Amica Curiae Anne E. Barschall, Pro Se in Support of Petitioners (Mar. 2, 2009) &lt;br /&gt;
#Brief of Amicus Curiae American Intellectual Property Law Association in Support of the Petition for a Writ of Certiorari (Mar. 2, 2009) &lt;br /&gt;
#Jmarmole&lt;br /&gt;
#Brief of John P. Sutton Amicus Curiae Supporting Petitioners (Feb. 25, 2009)&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3093</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3093"/>
		<updated>2011-02-09T07:12:07Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Historical Development */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable. The court returns to the ruling from the A&amp;amp;P Tea Company case when it explains that a long felt want and commercial success &amp;quot;without invention will not make patentability.&amp;quot; This creates the impression that a patent is awarded based on how inventive the idea is. Rather, the court should have ruled that it would be obvious to combine the road paving elements on the same chassis. Either way, this case confirms previous rulings that a combination of old elements is not patentable unless it accomplishes some new significant function.&lt;br /&gt;
&lt;br /&gt;
===KSR International Co. v. Teleflex, Inc. (2007)===&lt;br /&gt;
This case addresses the TSM test that had been introduced by the Court of Appeals for the Federal Circuit. This is the &amp;quot;teaching, suggestion, or motivation&amp;quot; test which means that, &amp;quot;a patent claim is only proved obvious if &#039;some motivation or suggestion to combine the prior art teachings&#039; can be found in the prior art, the nature of the problem, or the knowledge of a person having ordinary skill in the art.&amp;quot; It was an attempt by the Court of Appeals to develop a standard for nonobviousness. According to the case&#039;s ruling, the TSM test provides for too rigid of an analysis of the obviousness. The test limits its focus by concentrating on what might motivate or teach the inventor. According to the case, &amp;quot;the question is not whether the combination is obvious to the patentee but whether the combination was obvious to a person with ordinary skill in the art.&amp;quot; The analysis for nonobvious must take in all possible considerations that would be available to anyone with ordinary skill and how that might lead them to make the same improvement. It cannot be a structured test, but must be a comprehensive analysis.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
It is said in Graham v. John Deere that, &amp;quot;innovation, advancement, and things which add to the sum of useful knowledge are inherent requisites in a patent system which by the constitutional command must &#039;promote the Progress of..useful Arts.&#039;&amp;quot; In order to merit a patent, the subject matter must contribute to the advancement of knowledge. It must significantly improve upon the prior art. The purpose of a patent is to reward an individual for their work. As said by Thomas Jefferson, &amp;quot;Certainly an inventor ought to be allowed a right to the benefit of his invention for some certain time...Nobody wishes more than I do that ingenuity should receive a liberal encouragement.&amp;quot; While patents reward an individual for advancing the art, they also require the inventor to reveal his or her design so that others may learn from it and further advance knowledge of the art. Jefferson strongly supported strict patentability to ensure this advancement of knowledge. &lt;br /&gt;
&lt;br /&gt;
Obvious products and processes do not advance the art of their field. It lacks the inventive character which contributes to the advancement of knowledge. These obvious devices allow the owner to possess a monopoly on their product which may limit the industrial development in their field. An obvious improvement, by definition, is a simple change for people with ordinary skill in the art. It is not outside their realm of understanding. It, therefore, does nothing to advance the knowledge in their field, the objective of a patent. According to Graham v. John Deere the problem with an obvious patent is that, &amp;quot;it creates a class of speculative schemers who make it their business to watch the advancing wave of improvement, and gather its foam in the form of patented monopolies, which enable them to lay a heavy tax upon the industry of the country, without contributing anything to the real advancement of the arts.&amp;quot; Patents should reward inventors, not clever businessmen.&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
&lt;br /&gt;
An issue with obvious developments is that they may also lack novelty. In such cases as Graham v. John Deere and Anderson&#039;s Black Rock, Inc v. Pavement Co, there was no new creation, but a combination of old elements. The Graham patent took a vibrating plow from the prior art and added a previously patented clamp to stabilize the plow. While it was decided that this was an obvious improvement, once could also argue that it also lacks novelty as it combines two old patents. The addition of the clamp to the plow does not mean that the clamp or plow is carrying out any new function. They are both doing what they were designed to do. Additionally, in the Anderson&#039;s Black Rock case, there is no novel creation. The product is a combination of old elements put together on a singular chassis. While this was ruled an obvious improvement to make, it could also have been decided to lack novelty. The old elements do not perform any new function different from their intended purpose. A nonobvious product would seemingly easily meet the requirement of novelty, for in order to be nonobvious there cannot be any prior art which would lead one to easily develop the product. A previous product which would nullify the novelty of a design would also render that product obvious.&lt;br /&gt;
&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
&lt;br /&gt;
In the case Hotchkiss v. Greenwood, the term inventiveness was used to discuss the originality of the door knobs, eventually ruling that the improvement to the knob is, &amp;quot;destitute of ingenuity or invention.&amp;quot; While the court in this case did set the tone for the 1952 law which would establish section 103 by comparing the design improvements with the skill possessed by an ordinary individual associated with the art, it caused confusion by using words like &amp;quot;invention&amp;quot; and &amp;quot;ingenuity.&amp;quot; &lt;br /&gt;
&lt;br /&gt;
The concept of obviousness is brought up in the Act of 1952. The case Graham v. John Deere clarifies this new development when it explains that, &amp;quot;the major distinction is that Congress has emphasized &#039;nonobviousness&#039; as the operative test of the section, rather than the less definite &#039;invention&#039; language of Hotchkiss that Congress thought had led to &#039;a large variety&#039; of expressions in decisions and writings.&amp;quot; The Graham case admits that it is difficult to define the term, &amp;quot;invention&amp;quot;, in a manner that would make it easy to determine the inventiveness of a product. It is easier to examine the product in terms of its level of obviousness for those having ordinary skill in the art.&lt;br /&gt;
&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
There are a number of secondary considerations which assist judges in deciding the nonobviousness of patents. As stated in Graham v. John Deere and repeated above, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; Additionally, &amp;quot;such inquiries may lend a helping hand to the judiciary which...is most ill-fitted to discharge the technological duties cast upon it by the patent legislation. &lt;br /&gt;
&lt;br /&gt;
Secondary considerations that have arisen and been explained in the above cases include:&lt;br /&gt;
*Long felt but unsatisfied need&lt;br /&gt;
**If the design was obvious, then those with ordinary skill might have already satisfied that nead.  &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Failed attempts to meet need&lt;br /&gt;
**It may not an obvious creation if others with ordinary skill had tried and were unable to develop it. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Commercial success&lt;br /&gt;
**Commercial success is similar to &amp;quot;a long felt but unsatisfied need.&amp;quot; It is evidence that the product fulfilled some desire of the public. &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Replacing existing practice&lt;br /&gt;
**It is a significant improvement over the previous product. It may not be obvious or else it would have been improved previously. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Unexpected results&lt;br /&gt;
**It may not be obvious if those in the art were not even sure of the outcome. &lt;br /&gt;
**US v. Adams&lt;br /&gt;
*Disbelief by those with skill in the art&lt;br /&gt;
**If those with ordinary skill do not believe that the product is possible, then there might be a nonobvious component that they do not understand.&lt;br /&gt;
**US v. Adams&lt;br /&gt;
&lt;br /&gt;
Note that the above considerations are not definite principles upon which to base a ruling for nonobviousness. They are merely tools to be used by the court in the decision making process.&lt;br /&gt;
&lt;br /&gt;
==Ordinary Skill in the Art==&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co. (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co.]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3087</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3087"/>
		<updated>2011-02-09T06:47:13Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Relationship with Novelty */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable. The court returns to the ruling from the A&amp;amp;P Tea Company case when it explains that a long felt want and commercial success &amp;quot;without invention will not make patentability.&amp;quot; This creates the impression that a patent is awarded based on how inventive the idea is. Rather, the court should have ruled that it would be obvious to combine the road paving elements on the same chassis. Either way, this case confirms previous rulings that a combination of old elements is not patentable unless it accomplishes some new significant function.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
It is said in Graham v. John Deere that, &amp;quot;innovation, advancement, and things which add to the sum of useful knowledge are inherent requisites in a patent system which by the constitutional command must &#039;promote the Progress of..useful Arts.&#039;&amp;quot; In order to merit a patent, the subject matter must contribute to the advancement of knowledge. It must significantly improve upon the prior art. The purpose of a patent is to reward an individual for their work. As said by Thomas Jefferson, &amp;quot;Certainly an inventor ought to be allowed a right to the benefit of his invention for some certain time...Nobody wishes more than I do that ingenuity should receive a liberal encouragement.&amp;quot; While patents reward an individual for advancing the art, they also require the inventor to reveal his or her design so that others may learn from it and further advance knowledge of the art. Jefferson strongly supported strict patentability to ensure this advancement of knowledge. &lt;br /&gt;
&lt;br /&gt;
Obvious products and processes do not advance the art of their field. It lacks the inventive character which contributes to the advancement of knowledge. These obvious devices allow the owner to possess a monopoly on their product which may limit the industrial development in their field. An obvious improvement, by definition, is a simple change for people with ordinary skill in the art. It is not outside their realm of understanding. It, therefore, does nothing to advance the knowledge in their field, the objective of a patent. According to Graham v. John Deere the problem with an obvious patent is that, &amp;quot;it creates a class of speculative schemers who make it their business to watch the advancing wave of improvement, and gather its foam in the form of patented monopolies, which enable them to lay a heavy tax upon the industry of the country, without contributing anything to the real advancement of the arts.&amp;quot; Patents should reward inventors, not clever businessmen.&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
&lt;br /&gt;
An issue with obvious developments is that they may also lack novelty. In such cases as Graham v. John Deere and Anderson&#039;s Black Rock, Inc v. Pavement Co, there was no new creation, but a combination of old elements. The Graham patent took a vibrating plow from the prior art and added a previously patented clamp to stabilize the plow. While it was decided that this was an obvious improvement, once could also argue that it also lacks novelty as it combines two old patents. The addition of the clamp to the plow does not mean that the clamp or plow is carrying out any new function. They are both doing what they were designed to do. Additionally, in the Anderson&#039;s Black Rock case, there is no novel creation. The product is a combination of old elements put together on a singular chassis. While this was ruled an obvious improvement to make, it could also have been decided to lack novelty. The old elements do not perform any new function different from their intended purpose. A nonobvious product would seemingly easily meet the requirement of novelty, for in order to be nonobvious there cannot be any prior art which would lead one to easily develop the product. A previous product which would nullify the novelty of a design would also render that product obvious.&lt;br /&gt;
&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
&lt;br /&gt;
In the case Hotchkiss v. Greenwood, the term inventiveness was used to discuss the originality of the door knobs, eventually ruling that the improvement to the knob is, &amp;quot;destitute of ingenuity or invention.&amp;quot; While the court in this case did set the tone for the 1952 law which would establish section 103 by comparing the design improvements with the skill possessed by an ordinary individual associated with the art, it caused confusion by using words like &amp;quot;invention&amp;quot; and &amp;quot;ingenuity.&amp;quot; &lt;br /&gt;
&lt;br /&gt;
The concept of obviousness is brought up in the Act of 1952. The case Graham v. John Deere clarifies this new development when it explains that, &amp;quot;the major distinction is that Congress has emphasized &#039;nonobviousness&#039; as the operative test of the section, rather than the less definite &#039;invention&#039; language of Hotchkiss that Congress thought had led to &#039;a large variety&#039; of expressions in decisions and writings.&amp;quot; The Graham case admits that it is difficult to define the term, &amp;quot;invention&amp;quot;, in a manner that would make it easy to determine the inventiveness of a product. It is easier to examine the product in terms of its level of obviousness for those having ordinary skill in the art.&lt;br /&gt;
&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
There are a number of secondary considerations which assist judges in deciding the nonobviousness of patents. As stated in Graham v. John Deere and repeated above, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; Additionally, &amp;quot;such inquiries may lend a helping hand to the judiciary which...is most ill-fitted to discharge the technological duties cast upon it by the patent legislation. &lt;br /&gt;
&lt;br /&gt;
Secondary considerations that have arisen and been explained in the above cases include:&lt;br /&gt;
*Long felt but unsatisfied need&lt;br /&gt;
**If the design was obvious, then those with ordinary skill might have already satisfied that nead.  &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Failed attempts to meet need&lt;br /&gt;
**It may not an obvious creation if others with ordinary skill had tried and were unable to develop it. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Commercial success&lt;br /&gt;
**Commercial success is similar to &amp;quot;a long felt but unsatisfied need.&amp;quot; It is evidence that the product fulfilled some desire of the public. &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Replacing existing practice&lt;br /&gt;
**It is a significant improvement over the previous product. It may not be obvious or else it would have been improved previously. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Unexpected results&lt;br /&gt;
**It may not be obvious if those in the art were not even sure of the outcome. &lt;br /&gt;
**US v. Adams&lt;br /&gt;
*Disbelief by those with skill in the art&lt;br /&gt;
**If those with ordinary skill do not believe that the product is possible, then there might be a nonobvious component that they do not understand.&lt;br /&gt;
**US v. Adams&lt;br /&gt;
&lt;br /&gt;
Note that the above considerations are not definite principles upon which to base a ruling for nonobviousness. They are merely tools to be used by the court in the decision making process.&lt;br /&gt;
&lt;br /&gt;
==Ordinary Skill in the Art==&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co. (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co.]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3074</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3074"/>
		<updated>2011-02-09T06:10:25Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* The Inventive Step */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable. The court returns to the ruling from the A&amp;amp;P Tea Company case when it explains that a long felt want and commercial success &amp;quot;without invention will not make patentability.&amp;quot; This creates the impression that a patent is awarded based on how inventive the idea is. Rather, the court should have ruled that it would be obvious to combine the road paving elements on the same chassis. Either way, this case confirms previous rulings that a combination of old elements is not patentable unless it accomplishes some new significant function.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
It is said in Graham v. John Deere that, &amp;quot;innovation, advancement, and things which add to the sum of useful knowledge are inherent requisites in a patent system which by the constitutional command must &#039;promote the Progress of..useful Arts.&#039;&amp;quot; In order to merit a patent, the subject matter must contribute to the advancement of knowledge. It must significantly improve upon the prior art. The purpose of a patent is to reward an individual for their work. As said by Thomas Jefferson, &amp;quot;Certainly an inventor ought to be allowed a right to the benefit of his invention for some certain time...Nobody wishes more than I do that ingenuity should receive a liberal encouragement.&amp;quot; While patents reward an individual for advancing the art, they also require the inventor to reveal his or her design so that others may learn from it and further advance knowledge of the art. Jefferson strongly supported strict patentability to ensure this advancement of knowledge. &lt;br /&gt;
&lt;br /&gt;
Obvious products and processes do not advance the art of their field. It lacks the inventive character which contributes to the advancement of knowledge. These obvious devices allow the owner to possess a monopoly on their product which may limit the industrial development in their field. An obvious improvement, by definition, is a simple change for people with ordinary skill in the art. It is not outside their realm of understanding. It, therefore, does nothing to advance the knowledge in their field, the objective of a patent. According to Graham v. John Deere the problem with an obvious patent is that, &amp;quot;it creates a class of speculative schemers who make it their business to watch the advancing wave of improvement, and gather its foam in the form of patented monopolies, which enable them to lay a heavy tax upon the industry of the country, without contributing anything to the real advancement of the arts.&amp;quot; Patents should reward inventors, not clever businessmen.&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
&lt;br /&gt;
In the case Hotchkiss v. Greenwood, the term inventiveness was used to discuss the originality of the door knobs, eventually ruling that the improvement to the knob is, &amp;quot;destitute of ingenuity or invention.&amp;quot; While the court in this case did set the tone for the 1952 law which would establish section 103 by comparing the design improvements with the skill possessed by an ordinary individual associated with the art, it caused confusion by using words like &amp;quot;invention&amp;quot; and &amp;quot;ingenuity.&amp;quot; &lt;br /&gt;
&lt;br /&gt;
The concept of obviousness is brought up in the Act of 1952. The case Graham v. John Deere clarifies this new development when it explains that, &amp;quot;the major distinction is that Congress has emphasized &#039;nonobviousness&#039; as the operative test of the section, rather than the less definite &#039;invention&#039; language of Hotchkiss that Congress thought had led to &#039;a large variety&#039; of expressions in decisions and writings.&amp;quot; The Graham case admits that it is difficult to define the term, &amp;quot;invention&amp;quot;, in a manner that would make it easy to determine the inventiveness of a product. It is easier to examine the product in terms of its level of obviousness for those having ordinary skill in the art.&lt;br /&gt;
&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
There are a number of secondary considerations which assist judges in deciding the nonobviousness of patents. As stated in Graham v. John Deere and repeated above, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; Additionally, &amp;quot;such inquiries may lend a helping hand to the judiciary which...is most ill-fitted to discharge the technological duties cast upon it by the patent legislation. &lt;br /&gt;
&lt;br /&gt;
Secondary considerations that have arisen and been explained in the above cases include:&lt;br /&gt;
*Long felt but unsatisfied need&lt;br /&gt;
**If the design was obvious, then those with ordinary skill might have already satisfied that nead.  &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Failed attempts to meet need&lt;br /&gt;
**It may not an obvious creation if others with ordinary skill had tried and were unable to develop it. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Commercial success&lt;br /&gt;
**Commercial success is similar to &amp;quot;a long felt but unsatisfied need.&amp;quot; It is evidence that the product fulfilled some desire of the public. &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Replacing existing practice&lt;br /&gt;
**It is a significant improvement over the previous product. It may not be obvious or else it would have been improved previously. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Unexpected results&lt;br /&gt;
**It may not be obvious if those in the art were not even sure of the outcome. &lt;br /&gt;
**US v. Adams&lt;br /&gt;
*Disbelief by those with skill in the art&lt;br /&gt;
**If those with ordinary skill do not believe that the product is possible, then there might be a nonobvious component that they do not understand.&lt;br /&gt;
**US v. Adams&lt;br /&gt;
&lt;br /&gt;
Note that the above considerations are not definite principles upon which to base a ruling for nonobviousness. They are merely tools to be used by the court in the decision making process.&lt;br /&gt;
&lt;br /&gt;
==Ordinary Skill in the Art==&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co. (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co.]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3069</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3069"/>
		<updated>2011-02-09T06:03:00Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* The Inventive Step */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable. The court returns to the ruling from the A&amp;amp;P Tea Company case when it explains that a long felt want and commercial success &amp;quot;without invention will not make patentability.&amp;quot; This creates the impression that a patent is awarded based on how inventive the idea is. Rather, the court should have ruled that it would be obvious to combine the road paving elements on the same chassis. Either way, this case confirms previous rulings that a combination of old elements is not patentable unless it accomplishes some new significant function.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
It is said in Graham v. John Deere that, &amp;quot;innovation, advancement, and things which add to the sum of useful knowledge are inherent requisites in a patent system which by the constitutional command must &#039;promote the Progress of..useful Arts.&#039;&amp;quot; In order to merit a patent, the subject matter must contribute to the advancement of knowledge. It must significantly improve upon the prior art. The purpose of a patent is to reward an individual for their work. As said by Thomas Jefferson, &amp;quot;Certainly an inventor ought to be allowed a right to the benefit of his invention for some certain time...Nobody wishes more than I do that ingenuity should receive a liberal encouragement.&amp;quot; While patents reward an individual for advancing the art, they also require the inventor to reveal his or her design so that others may learn from it and further advance knowledge of the art. Jefferson strongly supported strict patentability to ensure this advancement of knowledge. &lt;br /&gt;
&lt;br /&gt;
Obvious products and processes do not advance the art of their field. It lacks the inventive character which contributes to the advancement of knowledge.&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
&lt;br /&gt;
In the case Hotchkiss v. Greenwood, the term inventiveness was used to discuss the originality of the door knobs, eventually ruling that the improvement to the knob is, &amp;quot;destitute of ingenuity or invention.&amp;quot; While the court in this case did set the tone for the 1952 law which would establish section 103 by comparing the design improvements with the skill possessed by an ordinary individual associated with the art, it caused confusion by using words like &amp;quot;invention&amp;quot; and &amp;quot;ingenuity.&amp;quot; &lt;br /&gt;
&lt;br /&gt;
The concept of obviousness is brought up in the Act of 1952. The case Graham v. John Deere clarifies this new development when it explains that, &amp;quot;the major distinction is that Congress has emphasized &#039;nonobviousness&#039; as the operative test of the section, rather than the less definite &#039;invention&#039; language of Hotchkiss that Congress thought had led to &#039;a large variety&#039; of expressions in decisions and writings.&amp;quot; The Graham case admits that it is difficult to define the term, &amp;quot;invention&amp;quot;, in a manner that would make it easy to determine the inventiveness of a product. It is easier to examine the product in terms of its level of obviousness for those having ordinary skill in the art.&lt;br /&gt;
&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
There are a number of secondary considerations which assist judges in deciding the nonobviousness of patents. As stated in Graham v. John Deere and repeated above, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; Additionally, &amp;quot;such inquiries may lend a helping hand to the judiciary which...is most ill-fitted to discharge the technological duties cast upon it by the patent legislation. &lt;br /&gt;
&lt;br /&gt;
Secondary considerations that have arisen and been explained in the above cases include:&lt;br /&gt;
*Long felt but unsatisfied need&lt;br /&gt;
**If the design was obvious, then those with ordinary skill might have already satisfied that nead.  &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Failed attempts to meet need&lt;br /&gt;
**It may not an obvious creation if others with ordinary skill had tried and were unable to develop it. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Commercial success&lt;br /&gt;
**Commercial success is similar to &amp;quot;a long felt but unsatisfied need.&amp;quot; It is evidence that the product fulfilled some desire of the public. &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Replacing existing practice&lt;br /&gt;
**It is a significant improvement over the previous product. It may not be obvious or else it would have been improved previously. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Unexpected results&lt;br /&gt;
**It may not be obvious if those in the art were not even sure of the outcome. &lt;br /&gt;
**US v. Adams&lt;br /&gt;
*Disbelief by those with skill in the art&lt;br /&gt;
**If those with ordinary skill do not believe that the product is possible, then there might be a nonobvious component that they do not understand.&lt;br /&gt;
**US v. Adams&lt;br /&gt;
&lt;br /&gt;
Note that the above considerations are not definite principles upon which to base a ruling for nonobviousness. They are merely tools to be used by the court in the decision making process.&lt;br /&gt;
&lt;br /&gt;
==Ordinary Skill in the Art==&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co. (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co.]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3052</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3052"/>
		<updated>2011-02-09T05:45:33Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Nonobviousness vs. Invention */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable. The court returns to the ruling from the A&amp;amp;P Tea Company case when it explains that a long felt want and commercial success &amp;quot;without invention will not make patentability.&amp;quot; This creates the impression that a patent is awarded based on how inventive the idea is. Rather, the court should have ruled that it would be obvious to combine the road paving elements on the same chassis. Either way, this case confirms previous rulings that a combination of old elements is not patentable unless it accomplishes some new significant function.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
&lt;br /&gt;
In the case Hotchkiss v. Greenwood, the term inventiveness was used to discuss the originality of the door knobs, eventually ruling that the improvement to the knob is, &amp;quot;destitute of ingenuity or invention.&amp;quot; While the court in this case did set the tone for the 1952 law which would establish section 103 by comparing the design improvements with the skill possessed by an ordinary individual associated with the art, it caused confusion by using words like &amp;quot;invention&amp;quot; and &amp;quot;ingenuity.&amp;quot; &lt;br /&gt;
&lt;br /&gt;
The concept of obviousness is brought up in the Act of 1952. The case Graham v. John Deere clarifies this new development when it explains that, &amp;quot;the major distinction is that Congress has emphasized &#039;nonobviousness&#039; as the operative test of the section, rather than the less definite &#039;invention&#039; language of Hotchkiss that Congress thought had led to &#039;a large variety&#039; of expressions in decisions and writings.&amp;quot; The Graham case admits that it is difficult to define the term, &amp;quot;invention&amp;quot;, in a manner that would make it easy to determine the inventiveness of a product. It is easier to examine the product in terms of its level of obviousness for those having ordinary skill in the art.&lt;br /&gt;
&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
There are a number of secondary considerations which assist judges in deciding the nonobviousness of patents. As stated in Graham v. John Deere and repeated above, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; Additionally, &amp;quot;such inquiries may lend a helping hand to the judiciary which...is most ill-fitted to discharge the technological duties cast upon it by the patent legislation. &lt;br /&gt;
&lt;br /&gt;
Secondary considerations that have arisen and been explained in the above cases include:&lt;br /&gt;
*Long felt but unsatisfied need&lt;br /&gt;
**If the design was obvious, then those with ordinary skill might have already satisfied that nead.  &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Failed attempts to meet need&lt;br /&gt;
**It may not an obvious creation if others with ordinary skill had tried and were unable to develop it. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Commercial success&lt;br /&gt;
**Commercial success is similar to &amp;quot;a long felt but unsatisfied need.&amp;quot; It is evidence that the product fulfilled some desire of the public. &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Replacing existing practice&lt;br /&gt;
**It is a significant improvement over the previous product. It may not be obvious or else it would have been improved previously. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Unexpected results&lt;br /&gt;
**It may not be obvious if those in the art were not even sure of the outcome. &lt;br /&gt;
**US v. Adams&lt;br /&gt;
*Disbelief by those with skill in the art&lt;br /&gt;
**If those with ordinary skill do not believe that the product is possible, then there might be a nonobvious component that they do not understand.&lt;br /&gt;
**US v. Adams&lt;br /&gt;
&lt;br /&gt;
Note that the above considerations are not definite principles upon which to base a ruling for nonobviousness. They are merely tools to be used by the court in the decision making process.&lt;br /&gt;
&lt;br /&gt;
==Ordinary Skill in the Art==&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co. (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co.]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3042</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3042"/>
		<updated>2011-02-09T05:20:50Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Secondary Considerations */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable. The court returns to the ruling from the A&amp;amp;P Tea Company case when it explains that a long felt want and commercial success &amp;quot;without invention will not make patentability.&amp;quot; This creates the impression that a patent is awarded based on how inventive the idea is. Rather, the court should have ruled that it would be obvious to combine the road paving elements on the same chassis. Either way, this case confirms previous rulings that a combination of old elements is not patentable unless it accomplishes some new significant function.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
There are a number of secondary considerations which assist judges in deciding the nonobviousness of patents. As stated in Graham v. John Deere and repeated above, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; Additionally, &amp;quot;such inquiries may lend a helping hand to the judiciary which...is most ill-fitted to discharge the technological duties cast upon it by the patent legislation. &lt;br /&gt;
&lt;br /&gt;
Secondary considerations that have arisen and been explained in the above cases include:&lt;br /&gt;
*Long felt but unsatisfied need&lt;br /&gt;
**If the design was obvious, then those with ordinary skill might have already satisfied that nead.  &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Failed attempts to meet need&lt;br /&gt;
**It may not an obvious creation if others with ordinary skill had tried and were unable to develop it. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Commercial success&lt;br /&gt;
**Commercial success is similar to &amp;quot;a long felt but unsatisfied need.&amp;quot; It is evidence that the product fulfilled some desire of the public. &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Replacing existing practice&lt;br /&gt;
**It is a significant improvement over the previous product. It may not be obvious or else it would have been improved previously. &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Unexpected results&lt;br /&gt;
**It may not be obvious if those in the art were not even sure of the outcome. &lt;br /&gt;
**US v. Adams&lt;br /&gt;
*Disbelief by those with skill in the art&lt;br /&gt;
**If those with ordinary skill do not believe that the product is possible, then there might be a nonobvious component that they do not understand.&lt;br /&gt;
**US v. Adams&lt;br /&gt;
&lt;br /&gt;
Note that the above considerations are not definite principles upon which to base a ruling for nonobviousness. They are merely tools to be used by the court in the decision making process.&lt;br /&gt;
&lt;br /&gt;
==Ordinary Skill in the Art==&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co. (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co.]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3033</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3033"/>
		<updated>2011-02-09T05:14:08Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Ordinary Skill in the Art */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable. The court returns to the ruling from the A&amp;amp;P Tea Company case when it explains that a long felt want and commercial success &amp;quot;without invention will not make patentability.&amp;quot; This creates the impression that a patent is awarded based on how inventive the idea is. Rather, the court should have ruled that it would be obvious to combine the road paving elements on the same chassis. Either way, this case confirms previous rulings that a combination of old elements is not patentable unless it accomplishes some new significant function.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
There are a number of secondary considerations which assist judges in deciding the nonobviousness of patents. As stated in Graham v. John Deere and repeated above, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; Additionally, &amp;quot;such inquiries may lend a helping hand to the judiciary which...is most ill-fitted to discharge the technological duties cast upon it by the patent legislation. &lt;br /&gt;
&lt;br /&gt;
Secondary considerations that have arisen and been explained in the above cases include:&lt;br /&gt;
*Long felt but unsatisfied need&lt;br /&gt;
**If the design was obvious, then those with ordinary skill would have satisfied that need already. &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Failed attempts to meet need&lt;br /&gt;
**It is not an obvious creation if others with ordinary &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Commercial success&lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Replacing existing practice&lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Unexpected results&lt;br /&gt;
**US v. Adams&lt;br /&gt;
*Disbelief by those with skill in the art&lt;br /&gt;
**US v. Adams&lt;br /&gt;
&lt;br /&gt;
==Ordinary Skill in the Art==&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co. (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[Reiner v. I. Leon Co.]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US (full text)]]&lt;br /&gt;
&lt;br /&gt;
[[South Corp. v. US]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3022</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3022"/>
		<updated>2011-02-09T05:07:43Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Secondary Considerations */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable. The court returns to the ruling from the A&amp;amp;P Tea Company case when it explains that a long felt want and commercial success &amp;quot;without invention will not make patentability.&amp;quot; This creates the impression that a patent is awarded based on how inventive the idea is. Rather, the court should have ruled that it would be obvious to combine the road paving elements on the same chassis. Either way, this case confirms previous rulings that a combination of old elements is not patentable unless it accomplishes some new significant function.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
There are a number of secondary considerations which assist judges in deciding the nonobviousness of patents. As stated in Graham v. John Deere and repeated above, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; Additionally, &amp;quot;such inquiries may lend a helping hand to the judiciary which...is most ill-fitted to discharge the technological duties cast upon it by the patent legislation. &lt;br /&gt;
&lt;br /&gt;
Secondary considerations that have arisen and been explained in the above cases include:&lt;br /&gt;
*Long felt but unsatisfied need&lt;br /&gt;
**If the design was obvious, then those with ordinary skill would have satisfied that need already. &lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Failed attempts to meet need&lt;br /&gt;
**It is not an obvious creation if others with ordinary &lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Commercial success&lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Replacing existing practice&lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Unexpected results&lt;br /&gt;
**US v. Adams&lt;br /&gt;
*Disbelief by those with skill in the art&lt;br /&gt;
**US v. Adams&lt;br /&gt;
&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3017</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=3017"/>
		<updated>2011-02-09T05:02:35Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Secondary Considerations */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable. The court returns to the ruling from the A&amp;amp;P Tea Company case when it explains that a long felt want and commercial success &amp;quot;without invention will not make patentability.&amp;quot; This creates the impression that a patent is awarded based on how inventive the idea is. Rather, the court should have ruled that it would be obvious to combine the road paving elements on the same chassis. Either way, this case confirms previous rulings that a combination of old elements is not patentable unless it accomplishes some new significant function.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
There are a number of secondary considerations which assist judges in deciding the nonobviousness of patents. As stated in Graham v. John Deere and repeated above, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; Additionally, &amp;quot;such inquiries may lend a helping hand to the judiciary which...is most ill-fitted to discharge the technological duties cast upon it by the patent legislation. &lt;br /&gt;
&lt;br /&gt;
Secondary considerations that have arisen and been explained in the above cases include:&lt;br /&gt;
*Long felt but unsatisfied need&lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Failed attempts to meet need&lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Commercial success&lt;br /&gt;
**Lyon v. Bausch and Lomb, A&amp;amp;P Tea Company v. Supermarket Corp, Colgate-Palmolive Co v. Cook Chemical Co &lt;br /&gt;
*Replacing existing practice&lt;br /&gt;
**Lyon v. Bausch and Lomb&lt;br /&gt;
*Unexpected results&lt;br /&gt;
**US v. Adams&lt;br /&gt;
*Disbelief by those with skill in the art&lt;br /&gt;
**US v. Adams&lt;br /&gt;
&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2994</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2994"/>
		<updated>2011-02-09T04:27:20Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Anderson&amp;#039;s Black Rock v. Pavement Salvage (1969) */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable. The court returns to the ruling from the A&amp;amp;P Tea Company case when it explains that a long felt want and commercial success &amp;quot;without invention will not make patentability.&amp;quot; This creates the impression that a patent is awarded based on how inventive the idea is. Rather, the court should have ruled that it would be obvious to combine the road paving elements on the same chassis. Either way, this case confirms previous rulings that a combination of old elements is not patentable unless it accomplishes some new significant function.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2981</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2981"/>
		<updated>2011-02-09T04:14:26Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* U.S. v. Adams (1966) */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] In this case, several more secondary considerations were affirmed for the determination of nonobviousness. The first is when the product is an unexpected result. The changes made by Adams, at the time, were considered impractical. It was said in the ruling that, &amp;quot;the operating characteristics of the Adams battery have been shown to have been unexpected and to have far surpassed then-existing wet batteries.&amp;quot; A product cannot be obvious if it was an unexpected result of the design process. A second consideration can be found in this statement. The new wet battery was a significant improvement over contemporary wet batteries. As mentioned previously in the Lyons case, this is a consideration for nonobviousness. Another principle supporting nonobviousness found in this case is that, &amp;quot;at the time Adams perfected his invention noted experts expressed disbelief in it.&amp;quot; A product cannot be obvious if other individuals with skill in the art do not think that it will work. The essence of obviousness says that the changes could be made by one with ordinary skill. These changes would not be obvious if experts in the art do not believe that they will be successful. One additional component to note in this case is that although the alterations were small improvements, by the final statement in section 103 that the complexity of the development process is irrelevant, this patent is still valid.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2970</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2970"/>
		<updated>2011-02-09T03:57:39Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Graham v. John Deere (1966) */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot; Using the term &amp;quot;inventiveness&amp;quot; was decided to be too ambiguous for the courts, creating a wide range of rulings on what was inventive or not. It is hard to quantify an abstract characteristic like &amp;quot;inventiveness.&amp;quot; The court referred to invention saying, &amp;quot;the truth is the word cannot be defined in such a manner as to afford any substantial aid in determining whether a particular device involves an exercise of the inventive faculty or not.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
At the same time of changing the terminology to include &amp;quot;nonobviousness&amp;quot;. The court set up criteria to determine nonobviousness, which primarily involves observing the following:&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art;&lt;br /&gt;
In addition to these main components, this case also discussed several key secondary considerations which can be taken into account when determining nonobviousness. These are: &lt;br /&gt;
* commercial success of the invention;&lt;br /&gt;
* long-felt but unsolved needs;&lt;br /&gt;
* failure of others to find a solution&lt;br /&gt;
The above secondary considerations were all discussed in the case Colgate-Palmolive Co. v. Cook Chemical Co, with the side of Cook Chemical stating the above reasons as proof that their product deserves a patent. The court supported such considerations, admitting that the judges need assistance in evaluating technical patents. Other evidence for the nonobviousness of a product that is not technical can assist judges, void of technical backgrounds. This is affirmed when the court states, &amp;quot;These legal inferences or subtests do focus attention on economic and motivational rather than technical issues and are, therefore, more susceptible of judicial treatment than are the highly technical facts often present in patent litigation.&amp;quot; While the court supported these &amp;quot;subtests&amp;quot;, it admitted that they were not strong enough to prove patentability for Cook Chemical saying, &amp;quot;these factors do not, in the circumstances of this case, tip the scales of patentability.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] All the evidence must be considered.  Even small changes can have large consequences, which is relevant to a determination of nonobviousness.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2936</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2936"/>
		<updated>2011-02-09T03:00:24Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Lyon v. Bausch &amp;amp; Lomb (1955) */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
In the above passage, the court touches on two key points that can be considered secondary considerations used towards determining the obviousness of an invention. It states that, &amp;quot;the most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory.&amp;quot; This explanation points out that those possessing at least ordinary skill in the art had tried and failed several times in the past to solve the same issue fixed by Lyon&#039;s product. This fact leads one to believe that the product was a nonobvious creation. Had it been obvious, then others would not have failed in their endeavors. Additionally, the court points out that Lyon&#039;s product, &amp;quot;supplanted the existing practice and occupied substantially the whole field.&amp;quot; This further highlights the desire for a non-reflective lens in the art. Great demand for a product would lead one to consider that the development is nonobvious. If it was obvious, the product would already have been created in order to meet that demand. It is something to consider when debating the obviousness of a product. If there is little demand for the product, then perhaps it was an obvious invention, and the reason it was not created was because nobody desired the product. From Lyon v. Bausch &amp;amp; Lomb, one can take away two secondary considerations for determining the obviousness of a product. These are previous failed attempts to create the product and reception of the product by those associated with the art.&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot;  The criteria to determine nonobviousness include&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art; and,&lt;br /&gt;
* secondary considerations, including:&lt;br /&gt;
** commercial success of the invention;&lt;br /&gt;
** long-felt but unsolved needs;&lt;br /&gt;
** failure of others to find a solution, etc.&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] All the evidence must be considered.  Even small changes can have large consequences, which is relevant to a determination of nonobviousness.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2905</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2905"/>
		<updated>2011-02-09T02:26:45Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* 35 USC 103 (1952) */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. It deals with the nonobvious requirement for patents. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
The beginning of the paragraph refers to section 102. The invention must first satisfy the requirements for novelty as laid out in the previous section of title 35 in order to be considered for a patent under the stipulations of section 103. Next, the code explains that in order to be eligible for a patent the differences between the invention in question and the prior art must not be obvious to an individual with ordinary skill level in the art. In other words, the improvements that separate the new invention from the prior art must not be obvious to someone with regular expertise in the particular subject matter. This statement leads to a process for determining obviousness that will be laid out in Graham v. John Deere. This process involves basing decisions for nonobviousness after analyzing the &amp;quot;scope and content&amp;quot; of the prior art, the differences between the new invention and the prior art, and the ordinary skill of an individual in that art. The final sentence of the paragraph in section 103 means that the process by which the inventor develops his product or process can be disregarded when considering its patentability. The complexity of a development process does not make an invention any more or less obvious. It is possible for a nonobvious improvement to be the result of a simple change, previously overlooked.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot;  The criteria to determine nonobviousness include&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art; and,&lt;br /&gt;
* secondary considerations, including:&lt;br /&gt;
** commercial success of the invention;&lt;br /&gt;
** long-felt but unsolved needs;&lt;br /&gt;
** failure of others to find a solution, etc.&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] All the evidence must be considered.  Even small changes can have large consequences, which is relevant to a determination of nonobviousness.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2897</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2897"/>
		<updated>2011-02-09T02:07:36Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* 35 USC 103 (1952) */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952. Paragraph (a) is written as follows:&lt;br /&gt;
:A patent may not be obtained though the invention is not identically disclosed or described as set forth in section 102 of this title, if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains. Patentability shall not be negatived by the manner in which the invention was made.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot;  The criteria to determine nonobviousness include&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art; and,&lt;br /&gt;
* secondary considerations, including:&lt;br /&gt;
** commercial success of the invention;&lt;br /&gt;
** long-felt but unsolved needs;&lt;br /&gt;
** failure of others to find a solution, etc.&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] All the evidence must be considered.  Even small changes can have large consequences, which is relevant to a determination of nonobviousness.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2878</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2878"/>
		<updated>2011-02-09T01:58:00Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* A&amp;amp;P Tea v. Supermarket Equipment (1950) */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
**While the court recognized that the patent had enjoyed commercial success, it also explained that, &amp;quot;commercial success without invention will not make patentability.&amp;quot; The fact that a product is received well by others associated with the art does not mean that it deserves a patent unless it adequately advances knowledge in the art. Commercial success could indicate nonobviousness because success proves that it is a desirable product. If it was obvious then someone else would have already created it to meet that desire. This will become a secondary consideration in later cases to determine whether the patent is obvious or not. In this situation, the court decided that the commercial success did not demand a patent for the product. &lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
**In its decision, the court called attention to the Constitution&#039;s statement on patents that they are, &amp;quot;to promote the progress of science and useful arts.&amp;quot; According to the court, a patent must significantly advance knowledge in a science or some similar field. They should not be given for simple improvements and gadgets. A patent gives the individual a monopoly on the product. If patents are given for every simple idea then they would impede the development of industry. According to the court, a patent, &amp;quot;has to be of such quality and distinction that masters of the scientific field in which it falls will recognize it as an advance.&amp;quot; &lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
**This case discusses issuing patents for an item which is a combination of old products. The court sites an old case when it says, &amp;quot;the mere aggregation of a number of old parts or elements which, in the aggregation, perform or produce no new or different function or operation than that theretofore performed or produced by them, is not a patentable invention.&amp;quot; In other words, a combination is not patentable if it does not accomplish a new goal that sufficiently advances knowledge in the art. The court continues by saying that, &amp;quot;only when the whole in some way exceeds the sum of its parts is the accumulation of old devices patentable.&amp;quot; More cases will arise in later years that deal with patents that are obvious combinations of old products. Indeed, unless the patent is for a newly discovered element, every product contains old products. However, in order to merit a patent, the combination must perform an advanced function beyond that of its parts.&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952 and prohibits a patent in a case where&lt;br /&gt;
:the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot;  The criteria to determine nonobviousness include&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art; and,&lt;br /&gt;
* secondary considerations, including:&lt;br /&gt;
** commercial success of the invention;&lt;br /&gt;
** long-felt but unsolved needs;&lt;br /&gt;
** failure of others to find a solution, etc.&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] All the evidence must be considered.  Even small changes can have large consequences, which is relevant to a determination of nonobviousness.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2733</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2733"/>
		<updated>2011-02-08T22:22:14Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Hotchkiss v. Greenwood (1850) */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
[[Hotchkiss v. Greenwood]] institutes language that would later be made into law by congress in Section 103. The court applied the test, &amp;quot;that if no more ingenuity and skill was necessary to construct the new knob than was possessed by an ordinary mechanic acquainted with the business, the patent was void.&amp;quot; This would later become law in section 103 which states that &amp;quot;a patent may not be obtained...if the differences between the subject matter sought to be patented and the prior art are such that the subject matter as a whole would have been obvious...to a person having ordinary skill in the art.&amp;quot; The court concluded that the construction of the knob was, in fact, obvious to an individual possessing ordinary skill in the art, concluding that, &amp;quot;the improvement is the work of the skillful mechanic, not that of the inventor.&amp;quot;&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952 and prohibits a patent in a case where&lt;br /&gt;
:the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot;  The criteria to determine nonobviousness include&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art; and,&lt;br /&gt;
* secondary considerations, including:&lt;br /&gt;
** commercial success of the invention;&lt;br /&gt;
** long-felt but unsolved needs;&lt;br /&gt;
** failure of others to find a solution, etc.&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] All the evidence must be considered.  Even small changes can have large consequences, which is relevant to a determination of nonobviousness.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2716</id>
		<title>Eric Paul&#039;s Nonobviousness - 9 FEB 2011</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=Eric_Paul%27s_Nonobviousness_-_9_FEB_2011&amp;diff=2716"/>
		<updated>2011-02-08T22:11:07Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: Created page with &amp;quot;==Historical Development== The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.  ===Hotchkiss v. Greenwood (185...&amp;quot;&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952 and prohibits a patent in a case where&lt;br /&gt;
:the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot;  The criteria to determine nonobviousness include&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art; and,&lt;br /&gt;
* secondary considerations, including:&lt;br /&gt;
** commercial success of the invention;&lt;br /&gt;
** long-felt but unsolved needs;&lt;br /&gt;
** failure of others to find a solution, etc.&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] All the evidence must be considered.  Even small changes can have large consequences, which is relevant to a determination of nonobviousness.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2715</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2715"/>
		<updated>2011-02-08T22:10:57Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==  Homework ==&lt;br /&gt;
&lt;br /&gt;
[[Eric Paul&#039;s Nonobviousness - 9 FEB 2011]]&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2714</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2714"/>
		<updated>2011-02-08T22:09:02Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Ordinary Skill in the Art */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2713</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2713"/>
		<updated>2011-02-08T22:08:36Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Secondary Considerations */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2712</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2712"/>
		<updated>2011-02-08T22:08:25Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Nonobviousness vs. Invention */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2709</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2709"/>
		<updated>2011-02-08T22:08:10Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Relationship with Novelty */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2707</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2707"/>
		<updated>2011-02-08T22:08:01Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* The Inventive Step */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2706</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2706"/>
		<updated>2011-02-08T22:07:53Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Objective Tests */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2705</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2705"/>
		<updated>2011-02-08T22:06:35Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Suggestion to Combine */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2704</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2704"/>
		<updated>2011-02-08T22:06:06Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Historical Development */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2703</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2703"/>
		<updated>2011-02-08T22:01:07Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;br /&gt;
&lt;br /&gt;
==Historical Development==&lt;br /&gt;
The following are some cases through history that trace the evolution of what is currently the nonobviousness standard.&lt;br /&gt;
&lt;br /&gt;
===Hotchkiss v. Greenwood (1850)===&lt;br /&gt;
&lt;br /&gt;
Prior to [[Hotchkiss v. Greenwood]] an invention only had to be novel.  This case basically established the notion that there had to me more to it, some sort of threshold for inventivness, which ultimately became the idea of &#039;&#039;nonobviousness&#039;&#039;.&lt;br /&gt;
&lt;br /&gt;
:...the novelty consisted in the substitution of the clay knob in the place of one made of metal or wood, as the case might be. And in order to appreciate still more clearly the extent of the novelty claimed, it is proper to add, that this knob of potter&#039;s clay is not new, and therefore constitutes no part of the discovery. If it was, a very different question would arise, as it might very well be urged, and successfully urged, that a knob of a new composition of matter, to which this old contrivance had been applied, and which resulted in a new and useful article, was the proper subject of a patent.&lt;br /&gt;
&lt;br /&gt;
:The novelty would consist in the new composition made practically useful for the purposes of life, by the means and contrivances mentioned. It would be a new manufacture, and nonetheless so, within the meaning of the patent law, because the means employed to adapt the new composition to a useful purpose was old, or well known.&lt;br /&gt;
&lt;br /&gt;
:But in the case before us, the knob is not new, nor the metallic shank and spindle, nor the dovetail form of the cavity in the knob, nor the means by which the metallic shank is securely fastened therein. All these were well known, and in common use, and the only thing new is the substitution of a knob of a different material from that heretofore used in connection with this arrangement.&lt;br /&gt;
&lt;br /&gt;
:Now it may very well be, that, by connecting the clay or porcelain knob with the metallic shank in this well known mode, an article is produced better and cheaper than in the case of the metallic or wood knob; but this does not result from any new mechanical device or contrivance, but from the fact, that the material of which the knob is composed happens to be better adapted to the purpose for which it is made. The improvement consists in the superiority of the material, and which is not new, over that previously employed in making the knob.&lt;br /&gt;
&lt;br /&gt;
:But this of itself can never be the subject of a patent. No one will pretend that a machine, made, in whole or in part, of materials better adapted to the purpose for which it is used than the materials of which the old one is constructed, and for that reason better and cheaper, can be distinguished from the old one, or, in the sense of the patent law, can entitle the manufacturer to a patent.&lt;br /&gt;
&lt;br /&gt;
:The difference is formal, and destitute of ingenuity or invention. It may afford evidence of judgment and skill in the selection and adaptation of the materials in the manufacture of the instrument for the purposes intended, but nothing more.&lt;br /&gt;
&lt;br /&gt;
===A&amp;amp;P Tea v. Supermarket Equipment (1950)===&lt;br /&gt;
&lt;br /&gt;
While it pre-dates the language of section 103, [[A. &amp;amp; P. Tea Co. v. Supermarket Corp., 340 U.S. 147 (1950)]] discussed some of the more difficult issues related to the level of invention.&lt;br /&gt;
*First the &amp;quot;level of invention&amp;quot; was partly evidenced by &amp;quot;long felt but unsatisfied need&amp;quot; which is a standard used today for nonobviousness.&lt;br /&gt;
*Second, it expressed a bias toward patent protection at the frontier of science or engineering, but not for more mundane things like plows, etc.&lt;br /&gt;
*Third, it dealt with the issue of the fact that any invention is basically a combination of old elements.&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
===35 USC 103 (1952)===&lt;br /&gt;
This section of the code was adopted in 1952 and prohibits a patent in a case where&lt;br /&gt;
:the subject matter as a whole would have been obvious at the time the invention was made to a person having ordinary skill in the art to which said subject matter pertains.&lt;br /&gt;
&lt;br /&gt;
===Lyon v. Bausch &amp;amp; Lomb (1955)===&lt;br /&gt;
&lt;br /&gt;
In [[Lyon v. Bausch &amp;amp; Lomb, 224 F.2d 530 (1955)]] Learned Hand, in his brilliance, expounded on the new standard thusly:&lt;br /&gt;
:Therefore we at length come to the question whether Lyon&#039;s contribution, his added step, was enough to support a patent. It certainly would have done so twenty or thirty years ago; indeed it conforms to the accepted standards of that time. The most competent workers in the field had for at least ten years been seeking a hardy, tenacious coating to prevent reflection; there had been a number of attempts, none satisfactory; meanwhile nothing in the implementary arts had been lacking to put the advance into operation; when it appeared, it supplanted the existing practice and occupied substantially the whole field. We do not see how any combination of evidence could more completely demonstrate that, simple as it was, the change had not been &amp;quot;obvious * * * to a person having ordinary skill in the art&amp;quot; — § 103. On the other hand it must be owned that, had the case come up for decision within twenty, or perhaps, twenty-five, years before the Act of 1952 went into effect on January 1, 1953, it is almost certain that the claims would have been held invalid. The Courts of Appeal have very generally found in the recent opinions of the Supreme Court a disposition to insist upon a stricter test of invention than it used to apply — indefinite it is true, but indubitably stricter than that defined in § 103.4&lt;br /&gt;
&lt;br /&gt;
===Graham v. John Deere (1966)===&lt;br /&gt;
&lt;br /&gt;
In [[Graham v. John Deere, 383 U.S. 1 (1966)]] indicated a shift away from trying to establish a level of &amp;quot;inventiveness&amp;quot; to the statutory language of &amp;quot;nonobviousness.&amp;quot;  The criteria to determine nonobviousness include&lt;br /&gt;
* scope and content of the prior art;&lt;br /&gt;
* differences between the prior art and the claims at issue;&lt;br /&gt;
* level of ordinary skill in the pertinent art; and,&lt;br /&gt;
* secondary considerations, including:&lt;br /&gt;
** commercial success of the invention;&lt;br /&gt;
** long-felt but unsolved needs;&lt;br /&gt;
** failure of others to find a solution, etc.&lt;br /&gt;
&lt;br /&gt;
===U.S. v. Adams (1966)===&lt;br /&gt;
&lt;br /&gt;
* 1966: [[US v. Adams, 383 U.S. 39 (1966)]] All the evidence must be considered.  Even small changes can have large consequences, which is relevant to a determination of nonobviousness.&lt;br /&gt;
&lt;br /&gt;
===Anderson&#039;s Black Rock v. Pavement Salvage (1969)===&lt;br /&gt;
Things seem relatively clear at this point, but the Supreme Court seemingly basically messed it all up again in [[Anderson&#039;s Black Rock, Inc. v. Pavement Co., 396 U.S. 57 (1969)]] by returning the focus to &amp;quot;inventiveness&amp;quot; by revisiting the old problem of when a combination of old or know elements can become patentable.&lt;br /&gt;
&lt;br /&gt;
==Suggestion to Combine==&lt;br /&gt;
[[In Re Rouffet]] deals with the issue of a combination of previously-patented elements.  The cases above all pre-dated the 1952 statute and the 1966 Supreme Court cases.&lt;br /&gt;
&lt;br /&gt;
:&amp;quot;When a rejection depends on a combination of prior art references, there must be some teaching, suggestion, or motivation to combine the references.&amp;quot;&lt;br /&gt;
:&amp;quot;[T]he suggestion to combine requirement is a safeguard against the use of hindsight combinations to negate patentability. While the skill level is a component of the inquiry for a suggestion to combine, a lofty level of skill alone does not suffice to supply a motivation to combine. Otherwise a high level of ordinary skill in an art field would almost always preclude patentable inventions. As this court has often noted, invention itself is the process of combining prior art in a nonobvious manner.&lt;br /&gt;
&lt;br /&gt;
==Objective Tests==&lt;br /&gt;
Two important considerations were the focus of [[Hybritech v. Monoclonal Antiboties, 802 F.2d 1375]].&lt;br /&gt;
*A lot of the evidences hinges on laboratory notebooks.  The CAFC held that even though the lab notebooks were not witnessed until months or about a year after did not preclude them of being of credible evidentiary value.&lt;br /&gt;
*The secondary considerations, commercial success, are not optional considerations.  If evidence is available pertaining to them, they &#039;&#039;must&#039;&#039; be considered by the court.&lt;br /&gt;
*This case also considers the concept of &#039;&#039;enablement&#039;&#039; which means that that patent specification must be complete enough so that someone with ordinary skill in the art would be able to make the invention.  Enablement is set out in 35 USC 112.&lt;br /&gt;
&lt;br /&gt;
==The Inventive Step==&lt;br /&gt;
&lt;br /&gt;
==Relationship with Novelty==&lt;br /&gt;
==Nonobviousness vs. Invention==&lt;br /&gt;
==Secondary Considerations==&lt;br /&gt;
==Ordinary Skill in the Art==&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2263</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2263"/>
		<updated>2011-02-04T06:01:56Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Graham Analysis - 4 February 2011 */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. The new design meets a &amp;quot;long felt, but unsatisfied need.&amp;quot; Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**In both form and function, the patent in question, patent &#039;798, mirrors that of patent &#039;811. Both are designed to be vibrating plows capable of creating ridges in the soil as well as moving easily over obstructions. Both plows contain shanks connected by I-beams that vibrate about a hinge, driven by springs. The only differences between the two are the location of the hinge which functions as a pivot point and the clamp which connects the I-beam to the shank. &lt;br /&gt;
**The change of the pivot point from the topside of the shank to the underside is an obvious improvement which does not require a level of skill beyond that of an ordinary individual associated with the art. Anyone who possesses a knowledge of mechanics, or an intuitive understanding of engineering can determine that there is more flexibility and less wear when the hinge is connected to the top of the shank. This is not a significant enough improvement to merit a new patent in itself. It is a small improvement to the previously patented plow, patent &#039;811. &lt;br /&gt;
**The second improvement is the clamp which connects the I-beam to the shank. While this is a worthwhile improvement, it is not a new invention. Patent &#039;798 merely inverts the fastening device from patent 2,014,451. It has been shown previously that a patent cannot be a combination of old elements if it does not accomplish a new and innovative goal. The fastening device, although used to connect two different components, is still used to clamp down a material. The use of the fastening device in patent &#039;798 does not advance the art. It is only an application of an old element to patent &#039;811. &lt;br /&gt;
**Patent &#039;798 does not satisfy the quality of non-obviousness which would render it a valid patent. It is merely an improvement upon patent &#039;811. The new hinge position would be obvious to an individual with ordinary skill in the art. Additionally, patent &#039;798 simply uses the clamp for its intended purpose to connect two materials together. It does nothing to advance the development of vibrating plows. It is non-obvious and, therefore, does not merit a patent.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2241</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2241"/>
		<updated>2011-02-04T04:56:38Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Graham Analysis - 4 February 2011 */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. This excessive bouncing could cause the shank to rotate about the beam, bending the frame of the plow. By securing the I-beam with a clamp, patent &#039;798 prevents this bending of the frame, providing a more durable, more efficient plow. &lt;br /&gt;
**A second main difference between patent &#039;798 and the prior art, specifically patent &#039;811, is the location of the hinge around which the shank pivots. By having the hinge on the underside of the shank in patent &#039;811, the shank is forced to bend around the pivot point. This limits the flexibility of the machine. The location of the hinge beneath the shank increases the moment about the pivot point, increasing the wear on the piece. Moving the hinge to the topside of the shank decreases the wear on the part and increases the flexibility. This improves the performance of the plow and increases its lifetime. &lt;br /&gt;
**These two additions to the plow greatly improve the performance of the vibrating plow. It requires innovation to integrate a way to affix the I-beam solidly to the shank in order to limit undesired motion. This has long been a difficulty for the farming community and the improvement has been well received. Due to this significant secondary consideration as well as the great improvement over prior art, the patent in question is non-obvious. &lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2137</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2137"/>
		<updated>2011-02-04T00:18:51Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: /* Graham Analysis - 4 February 2011 */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
**In determining the obviousness of a patent, the courts are directed to evaluate the prior art, ascertain the differences between the prior art and the patent in question, and consider the level of skill required to improve upon the prior art. There are also a number of secondary concerns such as failed attempts and need for the new product. Prior art includes an old model of the vibrating plow which was subject to excessive motion of the plow shank as well as undue stress and limited flexibility of the shank. In the prior art, a number of I-beams form the structure to which the vibrating shanks are mounted. The shank mechanism has a tendency to shake upon the I-beam as it is only attached by a screw driven through the base of the beam. &lt;br /&gt;
Hinge below, limits flexibility, causes undue stress&lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2136</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=2136"/>
		<updated>2011-02-04T00:00:50Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;br /&gt;
&lt;br /&gt;
== Graham Analysis - 4 February 2011 ==&lt;br /&gt;
*Argument for Non-Obviousness&lt;br /&gt;
*Argument for violation of Section 103&lt;br /&gt;
**&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1533</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1533"/>
		<updated>2011-01-28T06:02:30Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
**US Patent 4082076, which was issued on 04 APR 1978, describes the invention of a portable, spring pitching apparatus. It is operated by the batter depressing a pedal. This releases a line causing one spring to pull the throwing arm forward and pitch the ball towards the batter. The opposing spring then pulls back on the throwing arm to help balance the apparatus and prevent the arm from over rotating. The ball must then be reloaded manually as there is no automatic feed system. The patent discusses having the ball attached to a spring so that it can be retrieved easily.  &lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device. It thus satisfies the requirement for non-obviousness according to the Lyons case. The reason that this patent would be approved after Lyons is a result of the change in standards for what is obvious. In the Lyons case, it was observed that although many other companies had adopted a similar process or attempted the same process, no other individual was able to complete it as well as Lyons. As soon as he completed his invention, all of the other individuals quickly adopted his process. This proves that even though he only made a simple change, it was an important one. The enthusiasm of his peers shows that if they could have put it together like Lyons, then they would have. So then even though it was a simple improvement, it was an improvement that others had missed. Similarly, even if the mechanical machine is a simple and obvious addition in hindsight, it was overlooked by other designers or else they would have created it. It is a simple device, but it is a new and useful addition to the line of pitching machines. &lt;br /&gt;
&lt;br /&gt;
*US Patent 408207: Spring Type Ball-Pitching Apparatus&lt;br /&gt;
**Issued 04 APR 1978&lt;br /&gt;
**The spring pitching machine was invented about ten years before the pneumatic machine. It is a far simpler design than the latter device. The primary component that the two share is the use of springs to control the throwing arm. The spring machine uses the spring to both launch the arm forward and recoil it back. The pneumatic machine only uses springs to bring the arm back to its original position. The pneumatic machine adds improvements by running the device on DC power, using compressed air to control the arm, and developing an automatic ball feed chute. It is an automatic machine that does not require that each ball be loaded individually, allowing the batter to hit multiple balls at a time. It is for these new developments that the pneumatic machine would be approved under the Hotchkiss case, the A&amp;amp;P case, and the Lyons case. &lt;br /&gt;
**The Hotchkiss case maintains that in order for the patent to be valid it must not include improvements that would be obvious to other individuals in the profession. One could not easily argue that the compressed air is an obvious improvement. The spring device is a simple apparatus. It would require an individual with some engineering savvy to develop a mechanism that uses compressed air to power the throwing arm. It is a novel and innovative design. It uses the springs in a different manner, and is entirely automatic. It makes several large strides from the spring device clearly showing innovation. &lt;br /&gt;
**The A&amp;amp;P case opposes patents that are just simple combinations of other inventions. It rules against patents that just have small changes from other designs. The pneumatic machine does include a similar pitching arm with similarly mounted springs as the spring apparatus. However, it also adds in the air compressor, and the automatic ball chute. The air compressor was not used in any other designs, nor was this specific ball chute design. These are new ideas added to a simple design from an older patent. It is an entirely different and vastly improved pitching machine. In this case, the whole is greater than the sum of the parts meaning that the A&amp;amp;P case would approve of the patent. &lt;br /&gt;
**The pneumatic machine satisfies the decisions of the Lyons case. The Lyons case developed a less strict interpretation of non-obvious from previous cases. If the machine satisfies non-obvious according to the Hotchkiss case, then it would seemingly satisfy it under the Lyons case. The pneumatic machine is a vast improvement over the spring apparatus. Having not been created by any other designer, it is not made up of obvious improvements. It is a valid patent.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1460</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1460"/>
		<updated>2011-01-28T01:48:47Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;br /&gt;
&lt;br /&gt;
*US Patent 4995371: Ball Throwing Machine&lt;br /&gt;
**Issued: 26 FEB 1991&lt;br /&gt;
**The motor driven pitching machine bears many similarities to the pneumatically powered pitching machine, the pneumatic pitching machine having been designed first. Both machines are marketed as portable pieces of equipment which automatically reload and throw. This makes them easy to transport and operate as they do not require an additional person to control the machine. The first striking similarity is the ball chute which stores the baseballs before they are loaded into the throwing arm. Just like the pneumatic machine, the chute for the motorized machine operates on the principle of gravity. For both machines, as the lever is pressed, a ball is released and driven by gravity down into the basket of the throwing arm.&lt;br /&gt;
**The machines are also similar in their use of springs. The pneumatic machine uses springs to return the arm to its loaded position. The motorized machine uses the springs to power the arm forward. While the two machines use springs for opposite purposes, they both depend upon the force of the springs to operate the machinery. The two machines are also powered by the same source. The pneumatic device claimed to be novel in its use of DC power to control the air compressor. This enables the machine to be used anywhere and not just near an AC power source. The motorized machine also makes use of a DC power source to control the motor.&lt;br /&gt;
**Under the decision made in the Hotchkiss case, the motorized machine would not be a patentable device. It makes use of many of the similar mechanisms on the pneumatic devices including the ball chute, springs, the throwing arm, and the DC power source. The difference between the two machines is that one is controlled by air pressure while the other is driven by a motorized mechanism. The Hotchkiss case determined that an invention is only patentable if it requires, “more ingenuity and skill…than were possessed by an ordinary mechanic acquainted with the business.” While the mechanism is an interesting device for throwing the ball, it is nothing that a regular mechanical engineer could not develop himself.&lt;br /&gt;
**Additionally, under the A&amp;amp;P case the motorized machine patent would be invalid as it makes use of many similar parts from the pneumatic machine. The new device uses all of the same parts besides the air compressor, choosing to power it mechanically instead of pneumatically. In the A&amp;amp;P case, Justice Jackson stated, “two and two have been added together, and still they make only four.” Similarly, the parts from the pneumatic machine have been rearranged to accomplish the same goal as the mechanical device.&lt;br /&gt;
**This new machine, however, would satisfy the non-obvious requirement of the Lyon case. If the motorized machine is more capable than the pneumatic machine, and it was not previously designed by any other engineer in this field, then it was not an obvious discovery. Otherwise, different companies would have already created the device.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1458</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1458"/>
		<updated>2011-01-28T01:46:56Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1457</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1457"/>
		<updated>2011-01-28T01:46:26Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**     US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
      US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1456</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1456"/>
		<updated>2011-01-28T01:46:09Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**     US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**     US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
	<entry>
		<id>https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1454</id>
		<title>User:Eric Paul</title>
		<link rel="alternate" type="text/html" href="https://controls.ame.nd.edu/mediawiki/index.php?title=User:Eric_Paul&amp;diff=1454"/>
		<updated>2011-01-28T01:45:39Z</updated>

		<summary type="html">&lt;p&gt;Eric Paul: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;== US Patent - 24 January 2011 ==&lt;br /&gt;
*US Patent 4784107: Ball Pitching System&lt;br /&gt;
**Issued on November 15, 1988&lt;br /&gt;
**This invention is a pneumatic baseball pitching device. The design is intended to benefit individuals who wish to practice baseball on their own out in an open field. It is intended for those who might not have access to batting cage facilities and do not have someone else who can help to load balls into the dispenser. It can be powered by either a 120 volt AC source or a 12 volt DC source. This allows the machine to operate in remote areas where no AC source is available. The example that the inventor recommends is a car battery. The pitching arm is controlled by air pressure. An air compressor is powered by the DC current to store air pressure. The device loads automatically after each throw. I chose this patent because I am an avid baseball player and fan. I have used a variety of different pitching machines in the past. This particular design appealed to me because it is different from the popular design today which uses rotating disks. The use of pneumatic power is an interesting concept. It will be interesting to compare this pitching machine with the many other devices invented in the 80s and today. There is a wide variety of types of pitching machines which all use different mechanisms to throw the ball. I found this patent browsing through patenstorm.com[http://www.patentstorm.us/patents/4784107/description.html]&lt;br /&gt;
&lt;br /&gt;
== Patent Analysis - 28 January 2011 ==&lt;br /&gt;
*Discussion of References&lt;br /&gt;
**US Patent 4784107, which was issued on 15 NOV 1988, describes the invention of a portable, pneumatically powered pitching machine. A small DC powered air compressor is used to supply compressed air to the throwing arm. After the air pressure builds up, it is discharged into the cylinder throwing arm causing the arm to rotate forward and jettison the ball. The arm is then pulled back to its original position by a spring where it presses down on a lever to release a baseball from the chute. The ball rolls down into a basket on the arm, and the machine is ready to throw another ball once the air pressure has reached its desired amount.&lt;br /&gt;
**US Patent 4995371, which was issued on 26 FEB 1991, describes a portable, mechanically powered pitching machine. A motor driven by a DC power source is used to crank the throwing arm down into the ready position. As the throwing arm goes down, it, also, presses on a lever which releases a ball from the chute and loads it into the basket on the arm. The arm is then released and it is rotated forward by two springs. The arm is then cranked back by the motor, readying it to throw another ball.&lt;/div&gt;</summary>
		<author><name>Eric Paul</name></author>
	</entry>
</feed>