Yorihiro Fukuzawa et al., “Development of High Efficiency Miller Cycle Gas Engine”, Mitsubishi Heavy Industries, Ltd., Technical Review, vol. 38, No. 3, Oct. 2001, pp. 146-150.
Request for Inter Partes Reexamination Transmittal Form for US Patent 6,688,280, and Attachment to Request for Inter Partes Reexamination Transmittal Form, Sep. 17, 2004; Order Granting/Denying Request for Inter Partes Reexamination for Control No. 95/000,050 dated Dec. 10, 2004; Office Action dated Dec. 10, 2004, in Inter Partes Reexamination for Control No. 95/000,050; Patent Owner's Response To Office Action, filed Jan. 24, 2005, including Exhibits A and B; Comments of Requester, filed Feb. 23, 2005, including Declaration of Jack A. Ekchian, Ph.D., including Exhibit A; Exhibit B: Dresner et al., “A Review and Classification of Variable Valve Timing Mechanisms”, SAE Technical Paper Series, Mar. 1989; and Exhibit C: Dickey et al., “Nox Control in Heavy-Duty Diesel Engines—What is the Limit?” SAE Technical Paper Series, Feb. 1998; and including Declaration of David F. Merrion, including Exhibit A and Exhibit B: Dresner et al.
“A Review and Classification of Variable Valve Timing Mechanisms”, SAE Technical Paper Series, Mar. 1989.
Request for Inter Partes Reexamination Transmittal Form for US Patent 6,651,618, and Attachment to Request for Inter Partes Reexamination Form, Aug. 27, 2004; Order Granting/Denying Request for Inter Partes Reexamination for Control No. 95/000,049 dated Nov. 23, 2004; Office Action in Inter Partes Reexamination for Control No. 95/000,049 dated Nov. 23, 2004; Patent Owner's Response to Office Action, filed Jan. 24, 2005, including Exhibits A and B; Comments of Requester, filed Feb. 23, 2005, including Declaration of Jack A. Ekchian, Ph.D., including Exhibit A, Exhibit B: Dresner et al., “A Review and Classification of Variable Valve Timing Mechanisms”, SAE Technical Paper Series, Mar. 1989; and Exhibit C: Dickey et al., “Nox Control in Heavy-Duty Diesel Engines—What is the Limit?” SAE Technical Paper Series, Feb. 1998; and including Declaration of David F. Merrion, including Exhibit A and Exhibit B: Dresner et al.
“A Review and Classification of Variable Valve Timing Mechanisms ”, SAE Technical Paper Series, Mar. 1989.
Office Action dated Jun. 2, 2003, for U.S. patent application No. 10/370,852; Amendment filed Jul. 10, 2003.
Office Action dated Jun. 2, 2003, for U.S. patent application No. 10/143,908; Reply to Office Action filed Sep. 2, 2003.
Obert, “Internal Combustion Engines and Air Pollution,” Based on Internal Combustion Engines, Third Edition, 1973, pp. 612-614.
Edwards et al., “The Potential of a Combined Miller Cycle and Internal EGR Engine for Future Heavy Duty Truck Applications,” SAE International, International Congress and Exposition, Feb. 23-26, 1998, pp. 1-19.
Challen et al., “Diesel Engine Reference Book, Second Edition,” SAE International, 1999, pp. 75, 81, 84, 146, and 263-305.
Co-pending U.S. Appl. No. 10/992,137; Title: Combustion Engine Including Fluidically-Controlled Engine Valve Actuator U.S. Filing Date: Nov. 19, 2004.
Office Action dated May 28, 2004, for U.S. Appl. No. 10/733,570; Amendment filed on Nov. 24, 2004.
Co-pending U.S. Appl. No. 10/933,300; Title: Air and Fuel Supply System for Combustion Engine U.S. Filing Date: Sep. 3, 2004.
Co-pending U.S. Appl. No. 10/992,074; Title: Combustion Engine Including Cam Phase-Shifting U.S. Filing Date: Nov. 19, 2004.
Co-pending U.S. Appl. No. 10/992,866; Title: Air and Fuel Supply System for Combustion Engine with Particulate Trap U.S. Filing Date Nov. 19, 2004.
Co-pending U.S. Appl. No. 10/992,857; Title: Air and Fuel Supply for Combustion Engine Operating at Optimum Engine Speed U.S. Filing Date: Nov. 19, 2004.
Co-pending U.S. Appl. No. 10/992,897; Title: Air and Fuel Supply System for Combustion Engine U.S. Filing Date: Nov. 19, 2004.
Co-pending U.S. Appl. No. 10/993,065; Title: Air and Fuel Supply System for Combustion Engine Operating in HCCI Mode U.S. Filing Date: Nov. 19, 2004.
Co-pending U.S. Appl. No. 10/992,070; Title: Combustion Engine Including Exhaust Purification with On-Board Ammonia Production U.S. Filing Date: Nov. 19, 2004.
Co-pending U.S. Appl. No. 10/992,071; Title: Combustion Engine Including Engine Valve Actuation System U.S. Filing Date: Nov. 19, 2004.
Co-pending U.S. Appl. No. 10/992,069; Title: Air and Fuel Supply System for Combustion Engine U.S. Filing Date: Nov. 19, 2004.
Co-pending U.S. Appl. No. 10/992,125; Title: Air and Fuel Supply System for a Combustion Engine U.S. Filing Date: Nov. 19, 2004.
Miller, R. and Lieberherr, H., “The Miller Supercharging System for Diesel and Gas Engines Operating Characteristics”, International Congress of Combustion Engine Conference, CIMAC, 1957, pp. 787-803.
Miller, R., “Supercharging and Internal Cooling Cycle for High Output”, Oil and Gas Power Division proceedings of the National Conference, 1946, ASME 46-OGP-4, pp. 1-5.
Morel, T. et al., “Application of Several Variable Valve Timing Concepts to an LHR Engine”, Journal of Engineering for Gas Turbines and Power, 1987, pp. 402-409, vol. 109, ASME 87-ICE-29.
Assanis, D. and Bolton, B., “Variable Valve Timing Strategies for Optimum Engine Performance and Fuel Economy”, Jan. 23-27, 1994, ASME 94-ICE-5, pp. 1-11.
Zappa, G. and Franca, T., “A 4-Stroke High Speed Diesel Engine with Two-Stage of Supercharging and Variable Compression Ratio”, 13th International Congress on Combustion Engines, 1979, pp. D19-1-D19-22.
Dresner, T. and Barkan, P., “A Review of Variable Valve Timing Benefits and Modes of Operation”, SAE Technical Paper Series 891676, 1989, pp. 1-9.
Ahmad, T. and Theobald, M., “A Survey of Variable -Valve-Actuation Technology”, SAE Technical Paper Series 891674, Aug. 7-10, 1989, pp. 1-27.
Ma, T., “Effect of Variable Engine Valve Timing on Fuel Economy”, SAE Technical Paper Series 880390, Feb. 29-Mar. 4, 1988, pp. 1-8.
Ma, T. and Rajabu, H., “Computer Simulation of an Otto-Atkinson Cycle Engine with Variable Timing Multi-Intake Valves and Variable Compression Ratio”, IMechE C53/88, 1988, pp. 273-277.
Porter, B. et al., “Control Technology for Future Low Emissions Diesel Passenger Cars”, C517/035/96, 12 pages.
Charlton, S. et al., “Application of Variable Valve Timing To a Highly Turbo Charged Diesel Engine”, C405/044, IMechE, 1990, pp. 189-195.
Ladommatos, N. and Stone, C., “Developments for Direct Injection Diesel Engines”, Mechanical Engineering Publications Limited, 1986, pp. 41-53.
Roe, G., “Variable Valve-Timing Unit Suitable for Internal Combustion Engines”, vol. 186 23/72, pp. 301-306 and D103-D105.
Payri, F. et al., “Reduction of Pumping Losses By the Use of a Variable Valve Timing System”, IMechE 105/84, 1984, pp. 295-300.
Charlton, S., “A Continuously Variable Poppet Valve Actuator for Internal Combustion Engines”, IMechE 82/86, 1986, pp. 157-195.
Thring, R., “The Flexible Diesel Engine”, SAE Technical Paper Series 900175, Feb. 26-Mar. 2, 1990, pp. 31-39.
Mavinahally, N. et al., “Insulated Miller Cycle Diesel Engine”, SAE Technical Paper Series 961050, Feb. 26-29, 1996, pp. 1-9.
Schechter, M. and Levin, M., “Camless Engine”, SAE Technical Paper Series 960581, Feb. 25-29, 1996, pp. 17-31.
Miller, R., “Supercharging and Internal Cooling Cycle for High Output”, ASME, 1947, pp. 453-464, vol. 69.
Mardell, J. and Cross, R., “An Integrated, Full Authority, Electrohydraulic Engine Valve and Diesel Fuel Injection System”, SAE Technical Paper Series 880602, Feb. 29-Mar. 4, 1988, pp. 1-10.
Gray, C., “A Review of Variable Engine Valve Timing”, SAE Technical Series 880386, Feb. 29-Mar. 4, 1988, pp. 1-11.
Asmus, T., “Perspectives on Applications of Variable Valve Timing”, SAE Technical Series 910445, Feb. 25-Mar. 1, 1991, pp. 1-13.
Vormstein, W. and Pleimling, H., “Valve Timing and its Effect on the Performance of Medium-Speed Diesel Engines”, 12th International Congress on Combustion Engines, 1977, pp. 1-41.
Chute, R., “Pressure Compounding a Four Cycle Diesel Engine”, SAE Technical Paper Series 851520, Sep. 9-12, 1985, pp. 1-15.
Ishizuki, et al., “A New Type of Miller Supercharging System for High Speed Engines Part 2-Realization of High BMEP Diesel Engines”, SAE Technical Series 851523, Sep. 9-12, 1985, pp. 1-10.
Leonard, H. et al., “Parametric Investigation of Variable Valve Timing Applied to a Turbocharged Diesel Engine”, SAE Technical Paper Series 910453, Feb. 25-Mar. 1, 1991, pp. 1-9.
Leonard, H. et al., “Design and Analysis of a Roller Follower Variable Valve Timing System”, SAE Technical Paper Series 930824, Mar. 1-5, 1993, pp. 61-70.
Tuttle, J., “Controlling Engine Load by Means of Late Intake-Valve Closing”, SAE Technical Paper Series 800794, Jun. 9-13, 1980, pp. 1-13.
Bata, R. et al., “Variable Valve Timing for Diesel Compression Ratio Control”, American Society of Mechanical Engineers, Internal Combustion Engine Division ICE, vol. 13, New Technology in Large Bore Engines, 1990, pp. 89-93.
Meier, E. and Baden, “The Miller System-a Possible Solution to Present Problems with Highly Charged Foour-Stroke Engines”, Brown Boveri Review, Apr. 1977, pp. 235-242, vol. 64, No. 4.
Bolton, B. and Assanis, D., “Optimum Breathing Strategies for Turbocharged Diesel Engines Based on the Miller Cycle Concept”, American Society of Mechanical Engineers, Petroleum Divison, Engineering Systems Design and Analysis, ASME, 1994, pp. 253-262, vol. 8: Part B.
“Internal-Combustion Engines,” The New Encyclopaedia Britannica, 1987, pp. 474-485, Fifteenth edition, Chicago, IL.
Drei, V., “B230 Engines: Research and Experiments for Widening the Speed and Output Range and for Utilizing Alternative Fuels”, Tech Paper 41336, 1983, pp. 703-728.
“Camlobe Phasing May Be the Key to Controlling Emissions”, Automotive Engineer, Jun./Jul. 1990, pp. 26-27.
Berchtold, M., “Two Stage Supercharging with Comprex”, 14th International Congress on Combustion Engines, 1981, pp. D111-1-D111-15.
Frankle, G., “Potential for Reducing Internal Engine Emisions in Modern Commercial Vehicle Diesel Engines”, ACEA, Jul. 1-2, 1996, 28 pages.
Sakai, H. et al., “A New Type of Miller Cycle Diesel Engine”, JSAE Review, Apr. 1988, pp. 4-9.
Choshi, M. et al., “Development of V6 Miller Cycle Engine”, JSAE Review 15 9434154, 1994, pp. 195-200.
Nagao, F. et al., “Relation between Inlet Valve Closing Angle and Volumetric Efficiency of a Four-Stroke Engine”, Bulletin of JSME 621.43.05, 1969, pp. 894-901.
Ma, T., “Recent Advances in Variable Valve Timing”, pp. 235-252.
Hara, S. et al., “Effects of Intake-Valve Closing Timing on Spark-Ignition Engine Combustion”, SAE Technical Paper Series 850074, Feb. 25-Mar. 1, 1985, pp. 1-10.
Stone, R. and Kwan, E., “Variable Valve Actuation Mechanisms and the Potential for their Application”, SAE Technical Paper Series 890673, Feb. 27-Mar. 3, 1989, pp. 1-18.
Meacham, G., “Variable Cam Timing as an Emission Control Tool”, ASE 700673, Aug. 24-27, 1970, pp. 1-16.
Siewert, R., “How Individual Valve Timing Events Affect Exhaust Emissions”, ASE 710609, Jun. 7-11, 1971, pp. 1-17.
Freeman, M. and Nicholson, R., “Valve Timing for Control of Oxides of Nitrogen (NO)”, ASE 720121, Jan. 10-14, 1972, pp. 1-10.
Schiele, C., “Design and Development of a Variable Valve Timing (VVT) Camshaft”, ASE 740102, Feb. 25-Mar. 1, 1974, pp. 1-9.
Bates, B. et al., “Variable Displacement by Engine Valve Control”, ASE Technical Paper Series 780145, Feb. 27-Mar. 3, 1978, pp. 1-12.
Siegla, D. and Siewert, R., “The Variable Stroke Engine—Problems and Promises”, ASE Technical Paper Series 780700, Aug. 7-10, 1978, pp. 1-12.
Luria, D. et al., “The Otto-Atkinson Engine—A New Concept in Automotive Economy”, SAE Technical Paper Series, 820352, Feb. 22-26, 1982, pp. 1-8.
Tuttle, J., “Controlling Engine Load by Means of Early Intake Valve Closing”, SAE Technical Paper Series 820408, Feb. 22-26, 1982, pp. 1-17.
Asmus, T., “Valve Events and Engine Operation”, SAE Technical Paper Series 820749, Jun. 7-10, 1982, pp. 1-14.
Herrin, R. and Pozniak D., “A Lost-Motion, Variable-Valve-Timing System for Automotive Piston Engines”, SAE Technical Paper Series 840335, Feb. 27-Mar. 2, 1984, pp. 1-15.
Richman, R. and Reynolds, W., “A Computer-Controlled Poppet-Valve Actuation System for Application on Research Engines”, SAE Technical Paper Series 840340, Feb. 27-Mar. 2, 1984, pp. 1-9.
Elrod, A., and Nelson, M., “Development of a Variable Valve Timed Engine to Eliminate the Pumping Losses Associated with Throttled Operation”, SAE Technical Paper Series 860537, Feb. 24-28, 1986, pp. 1-8.
Nelson, M. and Elrod, A., “Continuous-Camlobe Phasing: An Advanced Valve-Timing Approach”, SAE Technical Paper Series 870612, Feb. 23-27, 1987, pp. 1-10.
Freudenstein, F. et al., “The Synthesis and Analysis of Variable-Valve-Timing Mechanisms for Internal-Combustion Engines”, SAE Technical Paper Series 880387, Feb. 29-Mar. 4, 1988, pp. 1-10.
Lenz, H. et al., “Variable Valve Timing-A Possibilty to Control Engine Load without Throttle”, SAE Technical Paper Series 880388, Feb. 29-Mar. 4, 1988, pp. 1-7.
Sapienza, S. et al., “An Electronically Controlled Cam Phasing System”, SAE Technical Paper Series 880391, Feb. 29-Mar. 4, 1988, pp. 1-7.
Griffiths, P. and Mistry, K, “Variable Valve Timing for Fuel Economy Improvement—The Mitchell System”, SAE Technical Paper Series 880392, Feb. 29, Mar. 4, 1988, pp. 1-9.
Entzminger, .W., “Variable Valve Action (VVA) Through Variable Ratio Rocker Arms”, SAE Technical Paper Series 880730, Feb. 29-Mar. 4, 1988, pp. 1-11.
Dresner, T. and Barkan, P., “A Review and Classification of Variable Valve Timing Mechanisms”, SAE Technical Paper Series 890674, Feb. 27-Mar. 3, 1989, pp. 1-14.
Saunders, R. and Abdul-Wahab, E., “Variable Valve Closure Timing for Load Control and the Otto Atkinson Cycle Engine”, SAE Technical Paper Series 890677, Feb. 27-Mar. 3, 1989, pp. 1-11.
Lenz, H. et al., “Initial Test Results of an Electro-Hydraulic Variable-Valve Actuation System on a Firing Engine”, SAE Technical Paper Series 890678, Feb. 27-Mar. 3, 1989, pp. 1-8.
Grohn, M., “The New Camshaft Adjustment System by Mercedes-Benz—Design and Application in 4-Valve Engines”, SAE Technical Paper Series 901727, Feb. 17-20, 1990, pp. 1-6.
Gould, L. et al., “Performance Evaluation of a Camless Engine Using Valve Actuators with Programmable Timing”, SAE Technical Paper Series 910450, Feb. 25-Mar. 1, 1991, pp. 1-13.
Nagesh, M. et al., “Experimental Investigation on Extended Expansion Engine (EEE)”, SAE Technical Series 920452, Feb. 24-28, 1992, pp. 1-14.
Wilson, N. et al., “Asymmetric Vavle Strategies and Their Effect on Combustion”, SAE Technical Paper Series 930821, Mar. 1-5, 1993, pp. 29-40.
Hatano, K. et al., “Development of a New Multi-Mode Variable Valve Timing Engine”, SAE Tehcnical Paper Series 930878, Mar. 1-5, 1993, pp. 137-143.
Saunders, R. and Rabia, S., “Part Load Efficiency in Gasoline Engines”, 1986, pp. 55-62, Mechanical Engineering Publications Limited, Suffolk, UK.
Stone, C. and Kwan, E., “Variable Valve Timing for IC Engines”, Automotive Engineer, pp. 54-58.
Dresner, T., “Multi-input CAM-Actuated Mechanisms and their Application to IC Engine Variable Valve Timing”, A Dissertation Submitted to the Department of Mechanical Engineering and the Committee of Graduate Studies of Stanford University, Sep. 1988, No. 8906655, pp. 1-277.
Action Closing Prosecution in Inter Partes Reexamination for Control No. 95/000,049 dated Sep. 22, 2005; Patent Owner's Response to Action Closing Prosecution, filed Oct. 24, 2005, inlcuding Exhibit A: Second Declaration of Dr. John J. Moskwa, and Exhibit B: Second Declaration of Dr. Joel Hiltner, including Exhibit 1: U.S. Patent No. 5,535,716, Exhibit 2: U.S. Patent No. 4,084,557, Exhibit 3: Jul. 13, 2004 press release of IPO announcing National Inventor of the Year Award from the Intellectual Property Owner's Association, and Exhibit 4: U.S. Patent Application Publication No. 2005/0098162 A1, published on May 12, 2005; Comments of Requester Re Patent Owner's Response to Action Closing Prosecution, filed Nov. 23, 2005, including Supplemental Declaration of Jack A. Ekchian, PH.D. and Supplemental Declaration of David F. Merrion.
Action Closing Prosecution in Inter Partes Reexamination for Control No. 95/000,050 dated Sep. 22, 2005; Patent Owner's Response to Action Closing Prosecution, filed Oct. 24, 2005, including Exhibit A: Second Declaration of Dr. John J. Moskwa, and Exhibit B: Second Declaration of Dr. Joel Hiltner, including Exhibit 1: U.S. Patent No. 5,535,716, Exhibit 2: U.S. Patent No. 4,084,557, Exhibit 3: Jul. 13, 2004 press release of IPO announcing National Inventor of the Year Award from the Intellectual Property Owner's Association, and Exhibit 4: U.S. Patent Application Publication No. 2005/0098162 A1, published on May 12, 2005; Comments of Requester Re Patent Owner's Response to Action Closing Prosecution, filed Nov. 23, 2005, including Supplemental Declaration of Jack A. Ekchian, PH.D. and Supplemental Declaration of David F. Merrion.
Office Action dated Jul. 28, 2005 for U.S. Appl. No. 10/773,570.
Office Action dated Aug. 22, 2005 for U.S. Appl. No. 10/933,300.
Office Action dated Aug. 22, 2005 for U.S. Appl. No. 11/105,943.
Office Action dated Nov. 25, 2005 for U.S. Appl. No. 10/992,125.
English Language JPO Abstract of JP Publication No. 05106415 A1, Apr. 27, 1993.
English Language JPO Abstract of JP Publication No. 2000145484 A, May 26, 2000.
English Language JPO Abstract of JP Publication No. 2000120457 A, Apr. 25, 2000.
Communication from European Patent Office dated May 18, 2005 from EP Patent Application No. 03006344.0-2311 Including Partial Search Report, Lack of Unity Opinion, and Annex to Search Report.
Request for Ex Parte Reexamination for U.S. Patent No. 6,688,280 filed Jan. 18, 2006, including Declaration of Dr. Joel Hiltner with each Exhibit referred to In the Declaration.
Sakai, H. et al., “A Miller System Application for Efficient Diesel Power Units,”The American Chemical Society, 1986, pp. 355-360.
Dickey et al., “Nox Control in Heavy-Duty Diesel Engines—What is the Limit?”, SAE 980174, International Congress and Exposition, Detroit, Michigan, Feb. 23-26, 1998, (16 pages).
“Jacobs Vehicle Systems, Future Technology: VVA, VVA—Variable Actuation Systems,” http://www.jakebrake.com/content.php4?doc—uid=11, pp. 1-2.
Richard Car's, “Paxman History Pages, Paxman Diesel Engines Since 1934,” http://www.nelmesfsnet.co.uk/paxman/paxeng34.htm , pp. 1 & 9.
“ALSTOM Engines, Paxman VP185,” pp. 1-3, and 6.
Dipl.-Ing. Jörg Ballauf, “The 8th Annual Automobile and Engine Technology Cooloquium in Aachen An Overview,” pp. 1-5.
“Sturman Industries, Leading The Mechanical World Into The Digital Age, Hydraulic Valve Actuation,” http://www.sturmanindustries.com/main/hydraulicValveActuation.htm , pp. 1-2.
“Eaton Automotive—Engine Products, Variable Valve Actuation Devices,” http://www.automotive.eaton.com/product/engine—controls/VVA.html, p. 1.
Lilly, L., “Diesel Engine Reference Book,” 1984, Chapter 2, p. 3; Chapter 3, pp. 7-8.
Tennison, P., “An Experimental Investigation of the Effects of Common Rail Injection Parameters on Emissions and Performance in a High Speed Direct Injection Small Bore Diesel Engine,” pp. 1-2.
Delphi, “Notas de prensa, Delphi Launches World's Most Advanced Common Rail Diesel System With Ford,” Aug. 21, 2004, http://www.delphidieselsystems.com/diesel/es/ESDDSNewsItems4321.asp, pp. 1-3.
Isuzu, Press Release, “Isuzu New Direct Injection Diesel Lineup,” Oct. 19, 1999, http://www.isuzu.co.jp/world/press/1999/p—1019—2.html, pp. 1-2.
Hara et al., “Effects of Intake-Valve Closing Timing on Spark-Ignition Engine Combustion”, SAE Technical Paper Series 850074, Feb. 25-Mar. 1, 1985, pp. 1-10.
Communications/European Search Report dated Apr. 21, 2005 from EP Patent Application No. 04029382.1 of Clyde C. Bryant.
Zappa et al., CIMAC, “A 4-Stroke High Speed Diesel Engine with Two-Stage of Supercharging and Variable Compression Ratio,” 13th International Congress on Combustion Engines, Vienna, 1979 (23 pages).
Office Action dated Feb. 17, 2006 in U.S. Appl. No. 10/733,570 (11 pages).
Amendment dated Jan. 27, 2006 in U.S. Appl. No. 10/733,570 (16 pages).
Obert, “Internal Combustion Engines, 2nd Edition, Analysis and Practice” (pp. 142-144, 153 and 154; Fig. 5-12) (1950).
Thring, R., “The Flexible Diesel Engine,” SAE Technical Paper Series 900175, Feb. 26-Mar. 2, 1990 (p. 31, col. 1, 1st para.; col. 1, 2nd para., Ins. 1-4; p. 31, col. 2, 2nd para., Ins. 9-11; col. 2, last para., Ins. 1-2; p. 31, col. 2, Table 1; p. 36, col. 1, first full paragraph; col. 2, last paragraph, Ins. 1-2) (pp. 31-39).
Further Translation of JP 07-091265, listed above (pp. 9-10, para. 15; pp. 11-12, para 20; p. 13, para. 24) (30 pages).
Request for Ex Parte Reexamination Transmittal Form filed Jan. 20, 2006 (Control No. 90/007,885); Request for Ex Parte Reexamination filed Jan. 20, 2006; Claim Chart entitled: Comparison of '280 Patent Claims to Zappa et al.; executed Declaration of Dr. Joel Hiltner; Exhibits A-E; copy of U.S. Patent No. 6,688,280; Form PTO SB/08 listing 3 documents cited in the Request and copies thereof; Order Granting/Denying Requet for Ex Parte Reexamination for Control No. 92/007,885.
Ansdale, R.F., “The Varimax Engine”, Automobile Engineer, Sep. 1968, pp. 382-387.
Miller, R., “Nordberg Supairthermal Diesel, Duafuel and Gas Engines Operating on the Miller Supercharging System”, Petroleum Division Conference, ASME, Sep., 1951.
Brinson, L., “High Performance Gas Burning Engines”, Seventh International Congress on Combustion Engines, CIMAC, Apr. 1965. pp. 603-622.
Azouz, M.R. et al., “Digital Control of Engine Valve Timing”, Military Techinical College, Egypt, Isata, 1987, pp. 193, 195-205.
D'Yachenko, V.G., “Internal Combustion Engines Operation Theory”, Kiev, 1988.
“Valve Timing by Tensioner”, Engineering Magazine, May 1986, pp. 343, 359.
Hutten, H., “Schnelle Motoren seziert und frisiert”, Motorbuchverlag ISBN 3-87943-974-5, 1994, 2 pages.
Heywood, J., “Internal Combustion Engine Fundamentals”, McGraw Hill International Editions, Automotive Technology Series, 1989, pp. 6-10.
Hilliard, J., and Springer, George S., “Fuel Economy in Road Vehicles Powered by Spark Ignition Engines”, 1988, pp. 182-187.
“Internal Combustion Engines”, Moscow, 1990, pp. 12-23.
Khutziev, A.I., “Internal Combustion Engines with Controlled Compression Mode”, Moscow, 1986, pp. 64-69, 102-103.
Lenin, I.M., “Theory of Automotive and Tractor Engines”, Moscow, 1969, pp. 34-41, 62-65, 364-367.
Miller, R., “A Low Temperature Supercharging System for Compression, Pilot Oil and Spark Ignition Engines”, ASME, paper No. 57-A-250, 1957, pp. 1-10.
“High Powered Medium Speed Engines”, The Motor Ship, Jul. 1975, pp. 135-173.
“Two-stage Turbocharging for GMT's B230 High Speed Engine”, The Motor Ship, Sep. 1978, pp. 27-32, 67-68.
O'Flynn, G. et al., “Combustion Characteristics of an Otto-Atkinson Engine Using Late Inlet Valve Closing and Multi-Point Eletronic Fuel Injection”, C389/041 IMechE, Paper No. 925107, 1992, pp. 329-338.
Petrov, A.K. et al., “Structural Design of Foreign Cars Produced at 1983”, Annual Review, Part III, Automotive Engines, Moscow, 1983, pp. 3-19.
Rajikov, I. et al., “Automotive and Tractor Engines Structural Design”, Moscow, 1986. pp. 18-27, 104-107.
Rannev, A. V., “Internal Combustion Engines for Construction Site and Road-Building Engines”, Moscow, 1986, pp. 10-17.
Boggs, D.L. et al., “The Otto-Atkinson Cycle Engine-Fuel Economy and Emissions Results and Hardware Design”, SAE Technical Paper Series 950089, Feb. 27-Mar. 2, 1995, pp. 1-13.
Scott, D., “Variable Valve Timing Has Electronic Control”, SAE Automotive Engineering, May 1984, pp. 86-87.
Kentfield, J., “Diesel Engines with Extended Expansion Strokes”, SAE Technical Paper Series 891866, Sep. 11-14, 1989, pp. 1-10.
Herzog, P. et al., “NOx Reduction Strategies for DI Diesel Engines”, SAE Technical Paper Series 920470, Feb. 24-28, 1992, pp. 1-17.
Durnholz, M. et al., “Exhaust-Gas Recirculation-A Measure to Reduce Exhaust Emissions of DI Diesel Engines”, SAE Paper Technical Series 920725, Feb. 24-28, 1992.
Stebler, H. et al., “Reduction of NOx Emissions of D.I. Diesel Engines by Application of the Miller-System: An Experimental and Numerical Investigation”, SAE Technical Paper Series 960844, Feb. 26-29, 1996, pp. 1-11.
Kamo, R. et al., “Emissions Comparisons of an Insulated Turbocharged Multi-Cylinder Miller Cycle Diesel Engine”, SAE Technical Paper Series 980888, Feb. 23 - 26, 1998, pp. 1-7.
Sapojhnikov, E.N., “International Combustion Engines”, Kiev, 1979, pp. 8-17.
Torazza, G., “A Variable Lift and Event Control Device for Piston Engine Valve Operation”, pp. 59-68, Italy.
Wallace, W., and Lux, F., “A Variable Compression Ratio Engine Development”, SAE Transactions, Paper No. 762A, Oct. 1963, pp. 680-707.
“Volvo D6A250 Supercharger-Med Hog Prestanda Redan Fran Start”, Volvo. 1996.
Vzorov, B.A., and Mordukhovich, M.M., “Forcing of Tractor Engines”, Moscow, 1974, pp. 24-31.
Stojek, D., and Stwiorok, A., “Valve Timing with Variable Overlap Control”, XX Fisita Congress, SAE 845026. May 1984, pp. 2.8-2.14.
Nagumo, S., et al., “Study of Fuel Economy Improvement Through Control of Intake Valve Closing Timing”, 1994, pp. 169-172.
Zhang, F. et al., “Study on Miller Cycle Gas Engine for Generation-A Verification of Miller Cycle Effect”, JSAE Convention, May 1995, vol. 951, No. 5, pp. 277-280, Paper No. 9534621.
Nakajima, Y., et al., “Study of Improving Fuel Economy by Early Intake-Valve-Closing Concept”, No. 24, 1982, pp. 19-26.
Sakono, T., et al., “Mazada 2.5/ Inline 4W-T Type Turbo Diesel Engine”, Mazda Motor Corporation, Dec. 1995, vol. 34, No. 435, pp. 93-99.
Sasaki, Y., “Komatsu Turbo and Turbo Diesel Engine Two Stage Turbochargine for Small Highspeed Diesel Engine”, Komatsu Ltd., Dec. 1984, vol. 23 No. 301, pp. 19-24.
Kouichi, H., et al., “Development of Miller Cycle Gasoline Engine-Miller Cycle Engine with Late Intake Valve Closing and Lysholm Compressor”, May 1993, Paper No. 9302088, pp. 201-204.
Ichimaru, K., et al., “A High Expansion Ratio Gasoline Engine with Intake Control Rotary Valve Installation”, Oct. 1992, Paper No. 924008, pp. 29-32.
Koichi, H., et al., “KJ-ZEM Type Miller Cycle DOHC/2254 cc”, Serial No. 0005, pp. 118-163.
Suzuki, T., et al., “Application of a Miller System to a Diesel Engine”, Nov. 1991, Paper No. 912183, pp. 2.13-2.16.
Zhang, F., “Effect of Miller Cycle on Gas Engine for Generation”, JSAE Spring Convention, Jan. 1996, vol. 27, No. 1, Paper No. 9630723, pp. 79-83.
Ichimaru, K., et al., “Computer Simulation of Miller Cycle Gasoline Engines”, JSAE Spring Convention, May 1995, vol. 951, No. 5, Paper No. 9534612, pp. 273-276.
Heuser, F., “Von der Fakuitat fur Maschinenwesen der Rheinisch-Westfallschen Technischen Hochschule Aachen genehmigte Dissertation zur Eriangung des akademischen Grades eines”, A Dissertation Submitted to the , Jul. 8, 1988, pp. 1-99.
Haas, A. et al., “Mesures Pour Reduire Les Emissions NOx Des Moteurs Pour Vehicules Utilitares” Le Moteur Diesel: Evolution Et Mutations, SIA - Societe Des Ingenieurs De L'Automobile, Apr. 10-11, 1996, pp. 1-16.
Montagne, X. et al., “Analyse De La Sensibilite Aux Parametres Gazole D'Un Moteur Diesel D'Automobile A Injection Directe” Le Moteur Diesel: Evolutions Et Mutations, SIA-Societe Des Ingenieurs De L'Automobile, Apr. 10-11, 1996, pp. 1-16.
Herzog, P., “HSDI-Diesel-Eurol III Technologies”, Le Moteur Diesel: Evoluton Et Mutations, SIA-Societe Des Ingenieurs De L'Automobile, Apr. 1996, pp. 1, 4, 8.
Feucht, H. et al., “Development Of The New Turbocharged 2.5l Four Valves Perchamber Diesel Engine For The Mercedes Benz Compact Class”, Le Moteur Diesel: Evolution Et Mutations, SIA-Societe Des Ingenieurs De L'Automobile, Apr. 10-11, 1996, 15 pages.
Brun, R., “Science et technique du moteur diesel industriel et de transport”, Institut Francais Du Petrole, 1981, 7 pages.
Briand, J., “Diesels marins description et fonctionnement” Masson, Paris, 1992, pp. 137-138.
“Moteurs Diesel”, E.T.A.I., 1990, p. 330.
Foy, H., “Technologie Du Turbocompresseur”, E.T.A.I., pp. 62, 65, 140.
Suzuki T., et al., “Development of Diesel Combustion for Commerical Vehicles”, Future Diesel Engines, Society of Automotive Engineers, Inc., SAE 972685, 1997, pp. 47-65.
Iwata, N., et al., “Improvement of anit-knocking performance by supercharged Miller-Cycle engine-RAM-Pulsation effects on anti-knocking performance by Miller-Cycle”, Mazda Motor Corporation, May 1995, No. 9534603
Haugen, D., “Performance And Combustion Effects Of Phased Late Intake Valve Closure On A Two Intake Valve Engine”, A Thesis Submitted to the Faculty of the Graduate School of the University of Minnesota, Dec. 1995, pp. 1-84.
Boggs, D. et al., “A Small Displacement DI Diesel Engine Concept for High Fuel Economy Vehicles”, Future Diesel Engines, Aug. 6-8, 1997, SAE SP-1287, SAE No. 972680, pp. 1-97.
Kesgin, Ugur, “Efficiency improvement and NOx emission reduction potentials of two-stage turbocharged Miller cycle for stationary natural gas engines”, International Journal of Energy Research, 2005, vol. 29, pp. 189-216.
Communications from European Patent Office dated Apr. 21, 2005, and Feb. 23, 2005 from EP Patent Application Nos. 04029382.1 and 04029382.1-2311 including Partial Search Report, Lack of Unity Opinion, and Annex to Search Report.
Office Action dated Feb. 17, 2006 for U.S. Appl. No. 10/733,570.
Reply to Office Action dated Feb. 22, 2006 for U.S. Appl No. 10/933,300.
Office Action dated Apr. 7, 2006 for U.S. Appl. No. 10/992,069.
Office Action dated Mar. 16, 2006 for U.S. Appl. No. 10/992,070.
Office Action dated Mar. 15, 2006 for U.S. Appl. No. 10/992,071.
Office Action dated Mar. 29, 2006 for U.S. Appl. No. 10/992,074.
Office Action dated Mar. 17, 2006 for U.S. Appl. No. 10/992,137.
Office Action dated Apr. 12, 2006 for U.S. Appl. No. 10/992,857.
Office Action dated Mar. 29, 2006 for U.S. Appl. No. 10/992,866.
Office Action dated Apr. 18, 2006 for U.S. Appl. No. 10/992,897.
Office Action dated Apr. 18, 2006, for U.S. Appl. No. 10/993,065.
Reply to a Office Action dated Feb. 22, 2006 for U.S. Appl. No. 11/105,943.
Office Action dated Feb. 8, 2006 for U.S. Appl. No. 90/007,885.
Reply to Office Action dated May 25, 2006 for U.S. Appl. No. 10/992,125.
Okamoto, Kazuhisa et al., “Development of a High-Performance Gas Engine Operating at a Stolchiometric Condition-Effect of Miller Cycle and EGR”, CIMAC Congress 1998, pp. 1345-1360.
Okamoto, Kazuhisa et al., “Effect of EGR on The Late Intake-Valve Closing Miller Cycle for Natural Gas Engines”, JSAE 983420 vol. 29, No. 2, Apr. 1998, pp. 17-22.
Roda, Franco, “Variable Valve Timing-A Means of Optimizing Turbocharged Four-Stroke Diesel Engines”, MTZ “Motortechnische Zeitschrift” (Engine Technology Magazine) 49, 1988, pp. 303-308.
Akiyama, Mamoru et al., “An Elagant Solution for Vehicular Diesel's Emission and Economy-Hybrid EGR System”, SAE 960842. pp. 1-5.
Okamoto, Kazuhisa et al., “Development of a Late Intake-Valve Closing (LIVC) Miller Cycle for Stationary Natural Gas Engines-Effect of EGR Utilization”, SAE 972948, 1997, pp. 87-99.
Zhang, Fu-Rong et al., “Methods of Increasing the BMEP (Power Output) for Natural Gas Spark Ignition Engines”, SAE 981385, May 4-6, 1998, pp. 11-19.
Zhang, Fu-Rong et al., “Improvement of BMEP for Natural Gas Fueled Spark Ignition Engines by Using Miller Cycle and EGR”, JSAE 9834196 vol. 29, No. 2, Apr. 1998, pp. 11-16.
Nagumo, Shinichi et al., “Study of Fuel Economy Improvement through Control of Intake Valve Closing Timing: Cause of Combustion Deterioration and Improvement”, JSAE 9439311, JSAE Review 16 (1995), pp. 13-19.
“Optimierung von Arbeits-und Brennverfahren fur grobere Dieselmotoren mit Common-Rail-Einspritzung”, MTZ Motortechnische Zeitschrift 61(2000) 4, pp. 248-257.
Clarke, Damien et al., “The Simulation, Implementation and Analysis of the Miller Cycle Using an Inlet Control Rotary Valve”, SAE Technical Paper Series 970336, Feb. 24-27, 1997, pp. 61-70.
Sakai, Hiroshi et al., “A New Type of Miller Supercharging System for High-Speed Engines-Part 1 Fundamental Considerations and Application to Gasoline Engines”, SAE 851522, Sep. 9-12, 1985, pp. 1-7.
Narusawa, Kazuyuki, “An EGR Control Method for Heavy-Duty Diesel Engines under Transient Operations”, SAE Technical Paper Series 900444, Feb. 26-Mar. 2, 1990, pp. 1-14.
Gould, Larrie et al., “Electronic Valve Timing: The impact of electronic valve timing on engine ‘breathing’ produces performance capability radically different from any traditional internal combustion engine”, SAE Automotive Engineering vol. 99, No. 4, Apr. 1991, pp. 19-24.
Taylor, Charles Fayette, “The Internal-Combustion Engine in Theory and Practice: vol. 1: Thermodynamics, Fluid, Flow, Performance”, Second Edition, Revised, 1985, pp. 8, 362, 392-394, 456-458, 489-491.
Taylor, Charles Fayette, “The Internal-Combustion Engine in Theory and Pratice: vol. 2: Combustion, Fuels, Materials, Design”, Revised Edition, 1985, pp. 7, 29-31, 71-72, 104, 117, 233-234, 367, 402-409, 422.
Wadman, Bruce W., “Tandem Turbochargine Delivers 250 BMEP Rating”, Diesel and Gas Turbine Progress, Jul. 1967, vol. 23, No. 7, pp. 50-51.
Wadman, Bruce W., “Nordberg Centrifugal Gas Compressor Unit”, Diesel and Gas Engine Progress, Apr. 1955, pp. 24-26.
Office Action dated Jul. 11, 2006 for U.S. Appl. No. 10/992,125.