Radio Frequency and Microwave Power Amplifiers : Theory, Design and Applications (Materials, Circuits and Devices)

Radio Frequency and Microwave Power Amplifiers : Theory, Design and Applications (Materials, Circuits and Devices)

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  • 製本 Hardcover:ハードカバー版/ページ数 750 p.
  • 言語 ENG
  • 商品コード 9781785616198
  • DDC分類 621

Full Description


Radio Frequency and Microwave Power Amplifiers are finding an increasingly broad range of applications, particularly in communications and broadcasting, but also in the industrial, medical, automotive, aviation, military, and sensing fields. Each application has its own design specifications, for example, high linearity in modern communication systems or high efficiency in broadcasting, and, depending on process technology, capability to operate efficiently at very high frequencies, such as 77 GHz and higher for automotive radars. Advances in design methodologies have practical applications in improving gain, power output, bandwidth, power efficiency, linearity, input and output impedance matching, and heat dissipation.This book aims to provide comprehensive, state-of-the-art coverage of RF and microwave power amplifier design with in-depth descriptions of current and potential future approaches. It will be of particular interest to engineers and researchers engaged in RF and microwave power amplifier design, and those who are interested in systems incorporating RF and microwave power amplifiers.

Contents

Chapter 1Chapter 2: Nonlinear active device modellingChapter 3: Load Pull Characterization (LPC)Chapter 4: Matching Networks: Automated Darlington Synthesis of Immittance FunctionsChapter 5: Semi-Analytic Approaches to Broadband Matching Problems: Real Frequency TechniquesChapter 6: Broadband Amplifier Design Employing Real Frequency TechniquesChapter 7: High-efficiency power amplifier designChapter 8: High-efficiency Doherty power amplifiersChapter 9: Envelope Tracking TechniquesChapter 10: Outphasing Power AmplifiersChapter 11: Combiner Synthesis for Active Load Modulation Based Power AmplifiersChapter 12: Power Amplifier Design Based on Nonlinear Embedding Models with Design ExamplesChapter 13: CMOS power amplifiersChapter 14: Behavioral Modeling and LinearizationChapter 15: Multi-band/multi-channel power amplifier linearizationChapter 16: Distributed Power Amplifiers

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