Phase Noise and Frequency Stability in Oscillators (The Cambridge RF and Microwave Engineering Series)

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9780521886772: Phase Noise and Frequency Stability in Oscillators (The Cambridge RF and Microwave Engineering Series)

Presenting a comprehensive account of oscillator phase-noise and frequency stability, this text uniquely includes numerous practical examples using actual measurements. The reverse engineering of oscillators based on phase-noise spectra is also covered, making this a useful reference for both academic researchers and industry practitioners in RF engineering and communications engineering.

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Reseña del editor:

Presenting a comprehensive account of oscillator phase noise and frequency stability, this practical text is both mathematically rigorous and accessible. An in-depth treatment of the noise mechanism is given, describing the oscillator as a physical system, and showing that simple general laws govern the stability of a large variety of oscillators differing in technology and frequency range. Inevitably, special attention is given to amplifiers, resonators, delay lines, feedback, and flicker (1/f) noise. The reverse engineering of oscillators based on phase-noise spectra is also covered, and end-of-chapter exercises are given. Uniquely, numerous practical examples are presented, including case studies taken from laboratory prototypes and commercial oscillators, which allow the oscillator internal design to be understood by analyzing its phase-noise spectrum. Based on tutorials given by the author at the Jet Propulsion Laboratory, international IEEE meetings, and in industry, this is a useful reference for academic researchers, industry practitioners, and graduate students in RF engineering and communications engineering.

Biografía del autor:

Enrico Rubiola is a Senior Scientist at the CNRS FEMTO-ST Institute and a Professor at the Universite de Franche Comte. With previous positions as a Professor at the Universite Henri Poincare, Nancy, and in Italy at the University Parma and the Politecnico di Torino, he has also consulted at the NASA/Caltech Jet Propulsion Laboratory. His research interests include low-noise oscillators, phase/frequency noise metrology, frequency synthesis, atomic frequency standards, radio-navigation systems, precision electronics from dc to microwaves, optics and gravitation.

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Enrico Rubiola
ISBN 10: 0521886775 ISBN 13: 9780521886772
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Enrico Rubiola
Editorial: Cambridge University Press (2008)
ISBN 10: 0521886775 ISBN 13: 9780521886772
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Descripción Cambridge University Press, 2008. Hardcover. Estado de conservación: New. First edition. Presenting a comprehensive account of oscillator phase noise and frequency stability, this practical text is both mathematically rigorous and accessible. An in-depth treatment of the noise mechanism is given, describing the oscillator as a physical system, and showing that simple general laws govern the stability of a large variety of oscillators differing in technology and frequency range. Inevitably, special attention is given to amplifiers, resonators, delay lines, feedback, and flicker (1/f) noise. The reverse engineering of oscillators based on phase-noise spectra is also covered, and end-of-chapter exercises are given. Uniquely, numerous practical examples are presented, including case studies taken from laboratory prototypes and commercial oscillators, which allow the oscillator internal design to be understood by analyzing its phase-noise spectrum. Based on tutorials given by the author at the Jet Propulsion Laboratory, international IEEE meetings, and in industry, this is a useful reference for academic researchers, industry practitioners, and graduate students in RF engineering and communications engineering. ? Presents practical examples, including case studies taken from laboratory prototypes and commercial oscillators ? Offers a rigorous yet accessible treatment of the subject ? Includes end of chapter exercises Contents Foreword Lute Maleki; Foreword David B. Leeson; Preface; List of symbols; 1. Phase noise and frequency stability; 2. Phase noise in semiconductors and amplifiers; 3. Heuristic approach to the Leeson effect; 4. Phase noise and linear feedback theory; 5. Noise in delay-line oscillators and lasers; 6. Oscillator hacking; A Laplace transform; Bibliography. Printed Pages: 225. Nº de ref. de la librería 9717

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Enrico Rubiola
Editorial: Cambridge University Press (2008)
ISBN 10: 0521886775 ISBN 13: 9780521886772
Nuevos Tapa dura Primera edición Cantidad: > 20
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A - Z Books
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Descripción Cambridge University Press, 2008. Hardcover. Estado de conservación: New. First edition. Presenting a comprehensive account of oscillator phase noise and frequency stability, this practical text is both mathematically rigorous and accessible. An in-depth treatment of the noise mechanism is given, describing the oscillator as a physical system, and showing that simple general laws govern the stability of a large variety of oscillators differing in technology and frequency range. Inevitably, special attention is given to amplifiers, resonators, delay lines, feedback, and flicker (1/f) noise. The reverse engineering of oscillators based on phase-noise spectra is also covered, and end-of-chapter exercises are given. Uniquely, numerous practical examples are presented, including case studies taken from laboratory prototypes and commercial oscillators, which allow the oscillator internal design to be understood by analyzing its phase-noise spectrum. Based on tutorials given by the author at the Jet Propulsion Laboratory, international IEEE meetings, and in industry, this is a useful reference for academic researchers, industry practitioners, and graduate students in RF engineering and communications engineering. • Presents practical examples, including case studies taken from laboratory prototypes and commercial oscillators • Offers a rigorous yet accessible treatment of the subject • Includes end of chapter exercises Contents Foreword Lute Maleki; Foreword David B. Leeson; Preface; List of symbols; 1. Phase noise and frequency stability; 2. Phase noise in semiconductors and amplifiers; 3. Heuristic approach to the Leeson effect; 4. Phase noise and linear feedback theory; 5. Noise in delay-line oscillators and lasers; 6. Oscillator hacking; A Laplace transform; Bibliography. Printed Pages: 225. Nº de ref. de la librería 9717

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Enrico Rubiola
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Descripción Cambridge University Press, 2008. Hardcover. Estado de conservación: New. 1. Nº de ref. de la librería DADAX0521886775

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Rubiola, Enrico
Editorial: Cambridge University Press (2008)
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Descripción Cambridge University Press, 2008. Hardcover. Estado de conservación: New. Nº de ref. de la librería P110521886775

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