Asad Abidi / Emad Eldin Hegazi / Jacob Rael
Librería Samer Atenea
Librería Aciertas (Toledo)
Kálamo Books
Librería Perelló (Valencia)
Librería Elías (Asturias)
Donde los libros
Librería Kolima (Madrid)
Librería Proteo (Málaga)
Preface 1: Basics of LC Oscillators1. Introduction 2. The Mathematical Oscillator 3. Additive White Noise in LC Oscillators 4. The Linear Oscillator 5. Linear Oscillator Noise Analysis 6. How Is This Book Different?2: Oscillator Purity Fundamentals 1. Introduction 2. Timing Jitter 3. Recognizing Phase Noise 4. Single Sideband Contains AM and PM 5. Phase Noise 6. Oscillator Phase Noise Models: Post-Leeson 3: Current Biased Oscillator1. Steady-State Operation 2. Linear Analysis of Differential Oscillator3. Thermally Induced Phase Noise4. Validation of Thermal Noise Analysis4: Colpitts Oscillator 1. Introduction 2. Steady-State 3. Phase Noise Analysis 4. Conclusions5: Design for Low Thermal Phase Noise1. Introduction 2. Note About Harmonic Balance in LC Oscillators 3. Amplitude in Differential LC Oscillators 4. Design of Current-Biased Differential Oscillators 5. A Design Example6. Intuitive Explanation of Phase Noise Sources 7. Loading in Current-Biased Oscillators 8. Sizing of the Current Source Device 9. Noise Filtering in Oscillators 10. Prototype Oscillator 11. Practical Considerations 12. Example: Redesign of GSM VCO 13. Anatomy of the Figure-of-Merit6: Flicker Noise 1. Flicker Induced Phase Noise 2. FM Due to Modulated Frequency Content 3. Switch Voltage Noise Modulates Capacitance 4. Frequency Modulation by the Current Source 7: Design for Low Flicker Phase Noise 1. Introduction 2. Flicker Noise Minimization 3. Nulling Flicker Noise 4. Wideband Nulling of Flicker Noise Up Conversion8: The Role of the Varactor 1. Fundamentals 2. Types of Varactors 3. Varactor Tuning 4. Analytical Evaluation of Noise Sensitivity5. AM-to-FM Noise Conversion 6. Tuning and Supply Sensitivity 7. Measurements and SimulationResults8. DiscussionAppendix A Appendix B Appendix C Index