Oscillators are an important component in today's RF and microwave systems, and practitioners in the field need to know how to design oscillators for stability and top performance. Offering engineers broader coverage than other oscillator design books on the market, this comprehensive resource consi
Foundations of Oscillator Circuit Design
β Scribed by Guillermo Gonzalez
- Publisher
- Artech House
- Year
- 2007
- Tongue
- English
- Leaves
- 438
- Series
- Artech House Microwave Library
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Table of Contents
Foundations of Oscillator Circuit Design......Page 2
1596931620......Page 1
Contents......Page 6
Preface......Page 10
1.2 Oscillation Conditions......Page 14
1.3 Nyquist Stability Test......Page 19
1.4 Root Locus......Page 23
1.5 Routh-Hurwitz Method......Page 31
1.6 The Wien-Bridge Oscillator......Page 33
1.7 The Phase-Shift Oscillator......Page 47
1.8 Active-Filter Oscillators......Page 59
References......Page 64
2.2 Frequency Stability......Page 66
2.3 Expressions for the Quality Factor......Page 75
2.4 Noise in Oscillators......Page 81
2.5 Oscillator Phase Noise......Page 89
2.6 Oscillator Noise Measurements......Page 102
References......Page 113
3.2 FET Tuned Oscillators......Page 116
3.3 BJT Tuned Oscillators......Page 143
3.4 Op-Amp Tuned Oscillators......Page 168
3.5 Delay-Line Oscillators......Page 172
3.6 Voltage-Controlled Tuned Oscillators......Page 174
3.7 Large-Signal Analysis of Oscillators......Page 177
Reference......Page 193
4.2 Crystal Characteristics
......Page 194
4.3 Frequency Pulling in a Crystal Oscillator
......Page 214
4.4 The Pierce, Colpitts, and Clapp Crystal Oscillators
......Page 221
4.5 The Grounded-Base Crystal Oscillator
......Page 243
4.6 The PI-Network Crystal Oscillator
......Page 248
4.7 Voltage-Controlled Crystal Oscillators
......Page 251
4.8 Ceramic-Resonator Oscillators
......Page 252
4.9 SAW Oscillators
......Page 255
References......Page 263
5.2 Negative-Resistance Method
......Page 264
5.3 Oscillation ConditionsβA Negative-Resistance Approach
......Page 273
5.4 Traveling-Waves and Power-Waves Concepts
......Page 279
5.5 Stability Considerations
......Page 285
5.6 Oscillation Conditions in Terms of Reflection Coefficients
......Page 289
5.7 Two-Port Negative-Resistance Oscillators
......Page 293
5.9 Oscillation-Conditions Simulations
......Page 306
5.10 Large-Signal Analysis for NROs
......Page 310
5.11 Design of Feedback Oscillators Using the Negative-Resistance Method
......Page 315
5.12 Dielectric-Resonator Oscillators
......Page 322
5.13 YIG Oscillators......Page 356
5.14 Other Negative-Resistance Devices
......Page 359
References
......Page 363
6.2 Various Relaxation Oscillators
......Page 364
6.3 Triangular-Wave Oscillators
......Page 378
6.4 Sawtooth Oscillators
......Page 392
6.5 Oscillators Using the 555 Timer
......Page 393
6.6 ICs Function Generators
......Page 400
6.7 UJTs and PUTs
......Page 406
Appendix A Conditions for a Stable Oscillation
......Page 414
Appendix B Analysis of the Series Feedback Circuit
......Page 420
Selected Bibliography
......Page 426
About the Author......Page 428
Index......Page 430
β¦ Subjects
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