Very low power loss amplifier for analog signals utilizing const

Electric power conversion systems – Current conversion – Using semiconductor-type converter

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363 16, 363 97, 323235, 323282, 330 10, H02M 7537, G05F 110, H03F 338

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054793378

ABSTRACT:
A high-efficiency analog power amplifier is disclosed. The amplifier utilizes pulse-width-modulation ("PWM") signals to operate electrical switching devices coupled in series across a d.c. power source. A resonant circuit coupled to the transistors periodically places zero and non-zero voltage levels across each transistor. The frequency and width of the PWM signals are relative to the components of the resonant circuit--enabling each transistor to switch off and on only when zero volts appears across the transistor.

REFERENCES:
patent: Re33333 (1990-09-01), Taylor, Jr. et al.
patent: 4178556 (1979-12-01), Attwood
patent: 4182992 (1980-11-01), Attwood
patent: 4560946 (1985-12-01), Yokoyama
patent: 4628275 (1986-12-01), Skipper et al.
patent: 4717884 (1988-01-01), Mitzlaff
patent: 4720668 (1988-01-01), Lee et al.
patent: 4724396 (1988-02-01), Taylor, Jr. et al.
patent: 4743858 (1988-05-01), Everard
patent: 4871980 (1989-10-01), Gulczynski
patent: 4980649 (1990-12-01), Gulczynski
patent: 5004969 (1991-04-01), Schanin
patent: 5065300 (1991-11-01), Jacobson et al.
patent: 5066900 (1991-11-01), Bassett
patent: 5067066 (1991-11-01), Chida
patent: 5097196 (1992-03-01), Schoneman
patent: 5140512 (1992-08-01), O'Sullivan
patent: 5265003 (1993-11-01), Kayser et al.
patent: 5359278 (1994-10-01), Notohara
patent: 5377091 (1994-12-01), Faulk
patent: 5396412 (1995-03-01), Barlage
patent: 5410467 (1995-04-01), Smith et al.
Brian E. Attwood, A. 0.5MHz Switching DC-AC Inverter Topology Provides Low EMI Environments for Critical Spacecraft Applications, Brian E. Atwood, Proceedings of Powercon II, B-3, pp. 1-16, Power Concepts, Inc. 1984.
Brian E. Atwood, Design Parameters Important for Optimization of Very High Fidelity PWM (Class D) Audio Amplifiers, Audio Engineering Society Preprint, (presented at 71st Convention Mar. 2-5, 1982).
Richard Farrington, Milan M. Jovanovic and Fred C. Lee, Constant-Frequency Zero-Voltage-Switched Multi-Resonant Converters: Analysis, Design, and Experimental Results, PESC, Jun. 1990.
Steve Freeland and R. D. Middlebrook, A Unified Analysis of Converters with Resonant Switches, IEEE, 1987.
Duncan A. Grant, John Gowar, Power MOSFETS: Theory and Applications, pp. 239-256 (John Wiley & Sons, Inc., 1989).
Duncan A. Grant, John Gowar, Power MOSFETS: Theory and Applications, pp. 313-321 (John Wiley & Sons, Inc., 1989).
Jon Mark Hancock, Circuit Techniques, for a 0.5 MHz Class D Power Conversion System Using MOSFETs, HFPC May 1988 Proceedings, pp. 151-164.
Milan M. Jovanovic, Richard Farrington and Fred C. Lee, Constant-Frequency Multi-Resonant Converters, pp. 56-65.
Kwang-Hwa Liu, Ramesh Oruganti and Fred C. Lee, Resonant Switches-Topologies and Charateristics, IEEE, 1985, pp. 106-116.
Dragan Maksimovic and Slobodan Cuk, Constant-Frequency Control of Quasi-Resonant Converters, HFPC May 1989 Proceedings, pp. 241-253.
Ken C. Pohlmann, Principles of Digital Audio, pp. 71-76 (2d ed., by Howard W. Sams, Inc., 1989).
Richard Redl, Bela Molnar and Nathan O. Sokal, Class E Resonant Regulated DC/DC Power Converters: Analysis of Operations, and Experimental Results at 1.5 MHz, IEEE Transactions on Power Electronics, vol. PE-1, No. 2, Apr. 1986, pp. 111-120.
Wojciech A. Tabisz aand Fred C. Lee, Zero-Voltage-Switching Multi-Resonant Technique-A Novel Approach to Improve Performance of High-Frequency Quasi-Resonant Converters, Presented at the Power Electronics Specialist Conference, Apr. 1988.
M. E. Van Valkenburg, Analog Filter Design, pp. 365-378 (Holt, Rinehart and Winston, Inc., 1982).
Richard Farrington, Milan M. Jovanovic, and Fred C. Lee, A New Family of Isolated Zero-Voltage-Switched Converters, Presented at the Power Electronics Specialist Conference, Apr. 1991.
Nathan O. Sokal and Alan D. Sokal, Class E-A New Class of High-Efficiency Tuned Single-Ended Switching Power Amplifiers, IEEE Journal of Solid-State Circuits, vol. SC-10, No. 3, Jun. 1975, pp. 168-176.
David C. Hamill, Time Reversal Duality and the Synthesis of a Double Class E DC-DC Converter, Presented at the Power Electronics Specialist Conference, Apr. 1990.
Slobodan Cuk and Robert W. Erickson, A Conceptually New High-Frequency Switched-Mode Power Amplifier Technique Eliminates Current Ripple, Proceedings of Powercon 5, May 1978.
Farhad Barczegar and Slobodan Cuk, A New Switched-Mode Amplifier Produces Clean Three-Phase Power, Proceedings of Powercon 9, Jul. 1982.
Brian E. Attwood, A New Subcarrier-Mode Power Conversion Topology Optimizes Very High-Frequency Off-Line Converter Performance, Proceedings of Powercon 9, Jul. 1982.
Nicholas John Tsaconmangos, The Implementation of an F.E.T. Four-Quadrant Cuk Converter, Proceedings of Powercon 11, Apr. 1984.
H. L. N. Wiegman, D. M. Divan, D. W. Novotnoy, and Robert Mohan, A ZVS Dual Resonant Converter for Battery Charging Applications, Presented at Power Electronics Specialist Conference, 1991.

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