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Combining solid theoretical discussions with practical design examples, this book is an essential reference on developing RF and microwave switchmode power amplifiers. With this book you will be able to: Design high-efficiency RF and microwave power amplifiers on different types of bipolar and field-effect transistors using well-known and novel theoretical approaches, nonlinear simulation tools, and practical design techniques | Design any type of high-efficiency switchmode power amplifiers operating in Class D or E at lower frequencies and in Class E or F and their subclasses at…mehr
Combining solid theoretical discussions with practical design examples, this book is an essential reference on developing RF and microwave switchmode power amplifiers.
With this book you will be able to:
Design high-efficiency RF and microwave power amplifiers on different types of bipolar and field-effect transistors using well-known and novel theoretical approaches, nonlinear simulation tools, and practical design techniques
Design any type of high-efficiency switchmode power amplifiers operating in Class D or E at lower frequencies and in Class E or F and their subclasses at microwave frequencies, with specified output power
Understand the theory and practical implementation of load-network design techniques based on lumped and transmission-line elements
Combine multi-stage Doherty architecture and switchmode power amplifiers to significantly increase efficiency of the entire radio transmitter
Learn the different types of predistortion linearization techniques required to improve the quality of signal transmission in a nonlinear amplifying system
New to this edition:
Comprehensive overview of different Doherty architectures which are, and will be used in modern communication systems to save power consumption and reduce costs
A new chapter on analog and digital predistortion techniques
Coverage of broadband Class-F power amplifiers, high-power inverse Class-F power amplifiers for WCDMA systems, broadband Class-E techniques
Unique focus on switchmode RF and microwave power amplifiers that are widely used in cellular/wireless, satellite and radar communication systems and which offer major power consumption savings
Complete coverage of the new Doherty architecture which offers major efficiencies and savings on power consumption
Balances theory with practical implementatation, avoiding a cookbook approach, enabling engineers to develop better designs
Trusted content from leading figures in the field with a Foreword of endorsement by Zoya Popovic
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Dr. Andrei Grebennikov is a Senior Member of the IEEE and a Member of Editorial Board of the International Journal of RF and Microwave Computer-Aided Engineering. He received his Dipl. Ing. degree in radio electronics from the Moscow Institute of Physics and Technology and Ph.D. degree in radio engineering from the Moscow Technical University of Communications and Informatics in 1980 and 1991, respectively.
He has obtained a long-term academic and industrial experience working with the Moscow Technical University of Communications and Informatics, Russia, Institute of Microelectronics, Singapore, M/A-COM, Ireland, Infineon Technologies, Germany/Austria, and Bell Labs, Alcatel-Lucent, Ireland, as an engineer, researcher, lecturer, and educator.
He lectured as a Guest Professor in the University of Linz, Austria, and presented short courses and tutorials as an Invited Speaker at the International Microwave Symposium, European and Asia-Pacific Microwave Conferences, Institute of Microelectronics, Singapore, and Motorola Design Centre, Malaysia. He is an author or co-author of more than 80 technical papers, 5 books, and 15 European and US patents.
Inhaltsangabe
1. Power amplifier design principles 2. Class-D power amplifiers 3. Class-F power amplifiers 4. Inverse Class F 5. Class E with shunt capacitance 6. Class E with finite dc-feed inductance 7. Class E with quarterwave transmission line 8. Broadband Class E 9. Alternative and mixed-mode high-efficiency power amplifiers 10. High-efficiency Doherty power amplifiers 11. Predistortion linearization techniques 12. Computer-aided design of switchmode power amplifiers
1. Power amplifier design principles 2. Class-D power amplifiers 3. Class-F power amplifiers 4. Inverse Class F 5. Class E with shunt capacitance 6. Class E with finite dc-feed inductance 7. Class E with quarterwave transmission line 8. Broadband Class E 9. Alternative and mixed-mode high-efficiency power amplifiers 10. High-efficiency Doherty power amplifiers 11. Predistortion linearization techniques 12. Computer-aided design of switchmode power amplifiers
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