Résumé
It helps you....
- Design suitable matching networks which provide correct fundamental harmonic terminations for conventional (AB, B) high efficiency PA modes
- Understand the Class D, E, and F modes and their feasibility at microwave frequencies
- Use envelope simulation techniques to analyze the effects of distortion in overdriven PAs
- Maintain high efficiency operation at low points in an amplitude modulated signal envelope including detailed coverage of the Doherty, Chireix, and Kahn techniques
- Understand the possibilities and limitations of linearization methods
- Objectively analyze PA stability and oscillation problems
table of contents
Preface
Acknowledgments
1. Introduction
2. Linear Power Amplifier Design
3. Conventional High-Efficiency Amplifier Modes
4. Matching Network Design for Reduced Conduction
Angle High-Efficiency
Amplifiers
5. Overdrive and Limiting Effects in RF Power
Amplifiers
6. Switching Mode Amplifiers for RF Applications
7. Nonlinear Effects in RF Power Amplifiers
8. Efficiency Enhancement Techniques
9. Power Amplifier Linearization Techniques
10. Power Amplifier Architecture
Appendix A. Spice Circuit File Listings
Glossary
Recommended Reading
About the Author
Index
L'auteur - Steve C. Cripps
Caractéristiques techniques
PAPIER | |
Éditeur(s) | Artech House |
Auteur(s) | Steve C. Cripps |
Parution | 12/03/1999 |
EAN13 | 9780890069899 |
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