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Advanced Desgin Techniques for RF Power Amplifiers

Analog Circuits and Signal Processing
ISBN/EAN: 9781402046384
Umbreit-Nr.: 1917970

Sprache: Englisch
Umfang: x, 116 S.
Format in cm:
Einband: gebundenes Buch

Erschienen am 12.07.2006
Auflage: 1/2006
€ 106,99
(inklusive MwSt.)
Lieferbar innerhalb 1 - 2 Wochen
  • Zusatztext
    • InhaltsangabeContributing Authors. Preface. 1. Introduction to the RF power amplifiers design 1.1. Basic terms and definitions. 1.2. Sine-wave output operation: classes A, AB, B, C. 1.3. Polyharmonic operation. Class F 1.4. Power Amplifiers' matching Networks. 1.5. Summary 2. Theoretical Analysis of BJT class-F power amplifier. 2.1. Transistor model. 2.2. Harmonic contents of collector current. 2.3. Class F realization conditions. 2.4. Summary 3. BJT classF power amplifier design. 3.1. Simulation. 3.2. Experimental results. 3.3. Summary 4. PBG structure as amplifier output network. 4.1. Design concept. 4.2. Double-period fifth-harmonic peaking ESB network. 4.3. Experimental verification results. 4.4. Summary 5. BJT fifthharmonic peaking class F power amplifier. 5.1. ESB structure as amplifier ouput network 5.2. Simulation results. 5.3. Summary Appendix. Power amplifiers simulation tutorial. A1. Introduction to Ansoft Serenade SV. A2. Ampliiers' Matching networks. A3. Class C amplifier. A4. Class F ampifier. References. Index.

  • Kurztext
    • Deep theoretical analysis of RF high-efficiency power amplifiersModelling and design strategies of RF high-efficiency power amplifiersTheoretical aspects of RF high-efficiency power amplifiers and simulation tutorialComprehensive nonlinear power amplifiers simulation tutorial

  • Autorenportrait
    • InhaltsangabeContributing Authors. Preface. 1. Introduction to the RF power amplifiers design 1.1. Basic terms and definitions. 1.2. Sinewave output operation: classes A, AB, B, C. 1.3. Polyharmonic operation. Class F 1.4. Power Amplifiers' matching Networks. 1.5. Summary 2. Theoretical Analysis of BJT class-F power amplifier. 2.1. Transistor model. 2.2. Harmonic contents of collector current. 2.3. Class F realization conditions. 2.4. Summary 3. BJT class-F power amplifier design. 3.1. Simulation. 3.2. Experimental results. 3.3. Summary 4. PBG structure as amplifier output network. 4.1. Design concept. 4.2. Doubleperiod fifthharmonic peaking ESB network. 4.3. Experimental verification results. 4.4. Summary 5. BJT fifth-harmonic peaking class F power amplifier. 5.1. ESB structure as amplifier ouput network 5.2. Simulation results. 5.3. Summary Appendix. Power amplifiers simulation tutorial. A1. Introduction to Ansoft Serenade SV. A2. Ampliiers' Matching networks. A3. Class C amplifier. A4. Class F ampifier. References. Index.
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