logo
logo
x
바코드검색
BOOKPRICE.co.kr
책, 도서 가격비교 사이트
바코드검색

인기 검색어

실시간 검색어

검색가능 서점

도서목록 제공

Autonomous Microwave Circuits

Autonomous Microwave Circuits (Hardcover)

Almudena Suarez (지은이)
IEEE
388,630원

일반도서

검색중
서점 할인가 할인률 배송비 혜택/추가 실질최저가 구매하기
272,040원 -30% 0원
2,730원
269,310원 >
yes24 로딩중
교보문고 로딩중
notice_icon 검색 결과 내에 다른 책이 포함되어 있을 수 있습니다.

중고도서

검색중
서점 유형 등록개수 최저가 구매하기
로딩중

eBook

검색중
서점 정가 할인가 마일리지 실질최저가 구매하기
로딩중

책 이미지

Autonomous Microwave Circuits
eBook 미리보기

책 정보

· 제목 : Autonomous Microwave Circuits (Hardcover) 
· 분류 : 외국도서 > 기술공학 > 기술공학 > 마이크로파
· ISBN : 9780470050743
· 쪽수 : 728쪽
· 출판일 : 2009-12-01

목차

Preface.

1. Oscillator Dynamics.

1.1. Introduction.

1.2. Operational Principle of Free-Running Oscillators.

1.3. Impedance-Admittance Analysis of an Oscillator.

1.4. Frequency-Domain Formulation of an Oscillator Circuit.

1.5. Oscillator Dynamics.

1.6. Phase Noise.

2. Phase Noise.

2.1. Introduction.

2.2. Random Variable and random Processes.

2.3. Noise Sources in Electronic Circuits.

2.4. Derivation of the Oscillator Noise Spectrum Using Time-Domain Analysis.

2.5. Frequency-Domain Analysis of a Noisy Oscillator.

3. Bifurcation Analysis.

3.1. Introduction.

3.2. Representation of Solutions.

3.3. Bifurcations.

4. Injected Oscillators and Frequency Dividers.

4.1. Introduction.

4.2. Injection-Locked Oscillators.

4.3. Frequency Dividers.

4.4. Subharmonically and Ultrasubharmonically Injection-Locked Oscillators.

4.5. Self-Oscillating  Mixers.

5. Nonlinear Circuit Simulation.

5.1. Introduction.

5.2. Time-Domain Integration.

5.3. Fast Time-Domain Techniques.

5.4. Harmonic Balance.

5.5. Harmonic Balance Analysis of Autonomous and Synchronized Circuit.

5.6. Envelope Transient.

5.7. Conversion Matrix Approach.

6. Stability Analysis Using Harmonic Balance.

6.1. Introduction.

6.2. Local Stability Analysis.

6.3. Stability Analysis of Free-Running Oscillators.

6.4. Solution Curves Versus a Circuit Parameter.

6.5.Global Stability Analysis.

6.6. Bifurcation Synthesis and Control.

7. Noise Analysis Using Harmonic Balance.

7.1. Introduction.

7.2. Noise in Semiconductor Devices.

7.3. Decoupled Analysis of Phase and Amplitude Perturbations in a Harmonic Balance System.

7.4. Coupled Phase and Amplitude Noise Calculation.

7.5. Carrier Modulation Approach.

7.6. Conversion Matrix Approach.

7.7. Noise in Synchronized Oscillators.

8. Harmonic Balance Techniques for Oscillator Design.

8.1. Introduction.

8.2. Oscillator Synthesis.

8.3. Design of Voltage-Controlled Oscillators.

8.4. Maximization of Oscillator Efficiency.

8.5. Control of Oscillator Transients.

8.6. Phase Noise Reduction.

9. Stabilization Techniques for Phase Noise Reduction.

9.1. Introduction.

9.2. Self-Injection Topology.

9.3. Use of High-Q Resonators.

9.4. Stabilization Loop.

9.5. Transistor-Based Oscillators.

10. Coupled-Oscillator Systems.

10.1. Introduction.

10.2. Oscillator Systems with Global Coupling.

10.3. Coupled-Oscillator Systems for Beam Steering.

11. Simulation Techniques for Frequency-Divider Design.

11.1. Introduction.

11.2. Types of frequency dividers.

11.3. Design of Transistor-Based Regenerative Frequency Dividers.

11.4. Design of Harmonic Injection Dividers.

11.5. Extension of the Techniques to Subharmonic Injection Oscillators.

12. Circuit Stabilization.

12.1. Introduction.

12.2. Unstable Class AB Amplifier Using Power Combiners.

12.3. Unstable Class E/F Amplifier.

12.4. Unstable Class E Amplifier.

12.5. Stabilization of Oscillator Circuits.

12.6. Stabilization of Multifunction MMIC Chips.

Index.

이 포스팅은 쿠팡 파트너스 활동의 일환으로,
이에 따른 일정액의 수수료를 제공받습니다.
이 포스팅은 제휴마케팅이 포함된 광고로 커미션을 지급 받습니다.
도서 DB 제공 : 알라딘 서점(www.aladin.co.kr)
최근 본 책