Pozar's new edition of Microwave Engineering includes more material on active circuits, noise, nonlinear effects, and wireless systems. Chapters on noise and nonlinear distortion, and active devices have been added along with the coverage of noise and more material on intermodulation distortion and related nonlinear effects. On active devices, there's more updated material on bipolar junction and field effect transistors. New and updated material on wireless communications systems, including link budget, link margin, digital modulation methods, and bit error rates is also part of the new…mehr
Pozar's new edition of Microwave Engineering includes more material on active circuits, noise, nonlinear effects, and wireless systems. Chapters on noise and nonlinear distortion, and active devices have been added along with the coverage of noise and more material on intermodulation distortion and related nonlinear effects. On active devices, there's more updated material on bipolar junction and field effect transistors. New and updated material on wireless communications systems, including link budget, link margin, digital modulation methods, and bit error rates is also part of the new edition. Other new material includes a section on transients on transmission lines, the theory of power waves, a discussion of higher order modes and frequency effects for microstrip line, and a discussion of how to determine unloaded.
David Pozar is professor of Electrical and Computer Engineering at University of Massachusetts, Amherst. He has received numerous awards both for his teaching and for his research, including an IEEE Third Millenium award. Dr. Pozar is acknowledged as a leading figure in Microwave and RF circuit design research.
Inhaltsangabe
Chapter 1. Electromagnetic Theory Chapter 2. Transmission Line Theory Chapter 3. Transmission Lines and Waveguides Chapter 4. Microwave Network Analysis Chapter 5. Impedance Matching and Tuning Chapter 6. Microwave Resonators Chapter 7. Power Dividers and Directional Couplers Chapter 8. Microwave Filters Chapter 9. Theory and Design of Ferromagnetic Components Chapter 10. Noise and Active RF Components Chapter 11. Microwave Amplifier Design. Active RF and Microwave Devices Chapter 12. Oscillators and Mixers Microwave Amplifier Design Chapter 13. Introduction to Microwave Systems Oscillators and Mixers Chapter 14: Introduction to Microwave Systems Appendix A. Prefixes Appendix B. Vector Analysis Appendix C. Bessel Functions Appendix D. Other Mathematical Results Appendix E. Physical Constants Appendix F. Conductivities for Some Materials Appendix G. Dielectric Constants and Loss Tangents for Some Materials Appendix H. Properties of Some Microwave Ferrite Materials Appendix I. Standard Rectangular Waveguide Data Appendix J. Standard Coaxial Cable Data Answer to Selected Problems Index
Chapter 1. Electromagnetic Theory Chapter 2. Transmission Line Theory Chapter 3. Transmission Lines and Waveguides Chapter 4. Microwave Network Analysis Chapter 5. Impedance Matching and Tuning Chapter 6. Microwave Resonators Chapter 7. Power Dividers and Directional Couplers Chapter 8. Microwave Filters Chapter 9. Theory and Design of Ferromagnetic Components Chapter 10. Noise and Active RF Components Chapter 11. Microwave Amplifier Design. Active RF and Microwave Devices Chapter 12. Oscillators and Mixers Microwave Amplifier Design Chapter 13. Introduction to Microwave Systems Oscillators and Mixers Chapter 14: Introduction to Microwave Systems Appendix A. Prefixes Appendix B. Vector Analysis Appendix C. Bessel Functions Appendix D. Other Mathematical Results Appendix E. Physical Constants Appendix F. Conductivities for Some Materials Appendix G. Dielectric Constants and Loss Tangents for Some Materials Appendix H. Properties of Some Microwave Ferrite Materials Appendix I. Standard Rectangular Waveguide Data Appendix J. Standard Coaxial Cable Data Answer to Selected Problems Index
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