Performance evaluation of electronic oscillators : automated S parameter free design with SPICE and discrete Fourier transforms /: automated S parameter free design with SPICE and discrete Fourier transforms. (©2020)
- Record Type:
- Book
- Title:
- Performance evaluation of electronic oscillators : automated S parameter free design with SPICE and discrete Fourier transforms /: automated S parameter free design with SPICE and discrete Fourier transforms. (©2020)
- Main Title:
- Performance evaluation of electronic oscillators : automated S parameter free design with SPICE and discrete Fourier transforms
- Further Information:
- Note: Amal Banerjee.
- Other Names:
- Banerjee, Amal
- Contents:
- Intro; Supplementary Online Software; Contents; Chapter 1: Introduction and Problem Statement; 1.1 Introduction and Problem Statement; Chapter 2: Electronic Oscillator Fundamentals; 2.1 Fundamental Oscillator Configuration: Open- and Closed-Loop Equations-Loop Gain-Barkhausen and Nyquist Conditions; 2.2 Negative Resistance Oscillators: Start-Up and Steady-State Conditions; 2.3 Traditional Electronic Oscillator Start-Up and Steady-State Analysis; 2.4 Differential Oscillators as an Alternative to Feedback and Negative Resistance Oscillators; 2.5 Common Oscillator Design Equations and Formulas 2.5.1 Common-Emitter Colpitts Resonator Feedback Oscillator2.5.2 Common-Emitter Clapp Resonator Negative Resistance Oscillator; 2.5.3 Common-Base Colpitts Resonator Feedback Oscillator; 2.5.4 Common-Base LC Tank Resonator Negative Resistance Oscillator; 2.6 Oscillator Noise: Phase Noise-An Intuitive Approach; 2.6.1 Leesonś Theory of Oscillator Phase Noise; 2.6.2 Oscillator Noise: A Perturbation Approach and Characterization; 2.7 Multiplying Signals to Get New Signals: Mixers; 2.8 Output Buffer Amplifier: Couple Output to External Load 2.9 The Discrete Fourier Transform and Power Spectrum of a SignalReferences; Chapter 3: Automated S Parameter-Free Electronic Oscillator Design, Performance Evaluation Scheme, and Step-by-Step Design Exa ... ; 3.1 S Parameter-Free Electronic Oscillator Design, Performance Evaluation Scheme; 3.2 Verification of Discrete Fourier Transform Executable Accuracy;Intro; Supplementary Online Software; Contents; Chapter 1: Introduction and Problem Statement; 1.1 Introduction and Problem Statement; Chapter 2: Electronic Oscillator Fundamentals; 2.1 Fundamental Oscillator Configuration: Open- and Closed-Loop Equations-Loop Gain-Barkhausen and Nyquist Conditions; 2.2 Negative Resistance Oscillators: Start-Up and Steady-State Conditions; 2.3 Traditional Electronic Oscillator Start-Up and Steady-State Analysis; 2.4 Differential Oscillators as an Alternative to Feedback and Negative Resistance Oscillators; 2.5 Common Oscillator Design Equations and Formulas 2.5.1 Common-Emitter Colpitts Resonator Feedback Oscillator2.5.2 Common-Emitter Clapp Resonator Negative Resistance Oscillator; 2.5.3 Common-Base Colpitts Resonator Feedback Oscillator; 2.5.4 Common-Base LC Tank Resonator Negative Resistance Oscillator; 2.6 Oscillator Noise: Phase Noise-An Intuitive Approach; 2.6.1 Leesonś Theory of Oscillator Phase Noise; 2.6.2 Oscillator Noise: A Perturbation Approach and Characterization; 2.7 Multiplying Signals to Get New Signals: Mixers; 2.8 Output Buffer Amplifier: Couple Output to External Load 2.9 The Discrete Fourier Transform and Power Spectrum of a SignalReferences; Chapter 3: Automated S Parameter-Free Electronic Oscillator Design, Performance Evaluation Scheme, and Step-by-Step Design Exa ... ; 3.1 S Parameter-Free Electronic Oscillator Design, Performance Evaluation Scheme; 3.2 Verification of Discrete Fourier Transform Executable Accuracy; 3.3 1800 MHz (1.8 GHz) Common-Emitter Negative Resistance Clapp Resonator GSM Carrier Frequency Oscillator; 3.4 1000 MHz (1 GHz) Common-Emitter Negative Resistance Clapp Resonator Oscillator 3.5 750 MHz Common-Emitter Negative Resistance Clapp Resonator Oscillator3.6 500 MHz Common-Emitter Negative Resistance Clapp Resonator Oscillator; 3.7 1000 Hz Common-Emitter Feedback Colpitts Resonator Oscillators; 3.8 500 MHz Common-Emitter Feedback Colpitts Resonator Oscillator; 3.9 750 MHz Common-Base Feedback Colpitts Resonator Oscillator; 3.10 500 MHz Common-Base Feedback Colpitts Resonator Oscillator; 3.11 Common-Base Negative Resistance 100 MHz Parallel RLC Resonator Oscillator; 3.12 1000 MHz Differential Oscillator Using CMOS Level 3 MOSFET 3.13 750 MHz Differential Oscillator Using CMOS Level 3 MOSFET3.14 500 MHz Differential Oscillator Using CMOS Level 3 MOSFET; 3.15 14 MHz Crystal Oscillator Using CMOS Level 3 MOSFET; 3.16 750 MHz Common-Emitter Negative Resistance Clapp Resonator Oscillator with Nonideal Resonator Inductor; 3.17 Schottky Diode Ring Double-Balanced Mixer LO 250 MHz RF 500 MHz; 3.18 Schottky Diode Ring Double-Balanced Mixer LO 250 MHz RF 500 MHz: Unequal Load Source Resistances; 3.19 Common-Collector Buffer Amplifier Input Frequency 500 MHz; References; Chapter 4: Conclusions and Future Work … (more)
- Publisher Details:
- Cham : Springer
- Publication Date:
- 2020
- Copyright Date:
- 2020
- Extent:
- 1 online resource (88 pages)
- Subjects:
- 621.3815/33
Oscillators, Electric
Fourier transformations
Fourier transformations
Oscillators, Electric
Electronic books - Languages:
- English
- ISBNs:
- 9783030256784
3030256782 - Related ISBNs:
- 9783030256777
- Notes:
- Note: Includes bibliographical references and index.
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- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
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- British Library HMNTS - ELD.DS.457073
- Ingest File:
- 02_595.xml