Understanding Jitter and Phase Noise

Understanding Jitter and Phase Noise
Author: Nicola Da Dalt,Ali Sheikholeslami
Publsiher: Cambridge University Press
Total Pages: 269
Release: 2018-02-22
Genre: Technology & Engineering
ISBN: 9781107188570

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An intuitive yet rigorous guide to jitter and phase noise, covering theory, circuits and systems, statistics, and numerical techniques.

The Designer s Guide to Jitter in Ring Oscillators

The Designer s Guide to Jitter in Ring Oscillators
Author: John A. McNeill,David Ricketts
Publsiher: Springer Science & Business Media
Total Pages: 292
Release: 2009-04-09
Genre: Technology & Engineering
ISBN: 9780387765280

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This guide emphasizes jitter for time domain applications so that there is not a need to translate from frequency domain. This provides a more direct path to the results for designing in an application area where performance is specified in the time domain. The book includes classification of oscillator types and an exhaustive guide to existing research literature. It also includes classification of measurement techniques to help designers understand how the eventual performance of circuit design is verified.

Phase Noise in Signal Sources

Phase Noise in Signal Sources
Author: W. P. Robins
Publsiher: IET
Total Pages: 340
Release: 1984
Genre: Technology & Engineering
ISBN: 086341026X

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This book contains a thorough treatment of phase noise, its relationship to thermal noise and associated subjects such as frequency stability. The design of low phase noise signal sources, including oscillators and synthesisers, is explained and in many cases the measured phase noise characteristics are compared with the theoretical predictions. Full theoretical treatments are combined with physical explanations, helpful comments, examples of manufactured equipment and practical tips. Overall system performance degradations due to unwanted phase noise are fully analysed for radar systems and for both analogue and digital communications systems. Specifications for the acceptable phase noise performance of signal sources to be used in such systems are derived after allowing for both technical and economic optimisation. The mature engineer whose mathematics may be somewhat rusty will find that every effort has been made to use the lowest level of mathematical sophistication that is compatible with a full analysis and every line of each mathematical argument has been set out so that the book may be read and understood even in an armchair. Due to a novel approach to the analytical treatment of narrow band noise, the book is simple to understand while simultaneously carrying the analysis further in several areas than any existing publication.

The Design of Low Noise Oscillators

The Design of Low Noise Oscillators
Author: Ali Hajimiri,Thomas H. Lee
Publsiher: Springer Science & Business Media
Total Pages: 214
Release: 2007-05-08
Genre: Technology & Engineering
ISBN: 9780306481994

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It is hardly a revelation to note that wireless and mobile communications have grown tremendously during the last few years. This growth has placed stringent requi- ments on channel spacing and, by implication, on the phase noise of oscillators. C- pounding the challenge has been a recent drive toward implementations of transceivers in CMOS, whose inferior 1/f noise performance has usually been thought to disqualify it from use in all but the lowest-performance oscillators. Low noise oscillators are also highly desired in the digital world, of course. The c- tinued drive toward higher clock frequencies translates into a demand for ev- decreasing jitter. Clearly, there is a need for a deep understanding of the fundamental mechanisms g- erning the process by which device, substrate, and supply noise turn into jitter and phase noise. Existing models generally offer only qualitative insights, however, and it has not always been clear why they are not quantitatively correct.

Timing Jitter in Time of Flight Range Imaging Cameras

Timing Jitter in Time of Flight Range Imaging Cameras
Author: Gehan Anthonys
Publsiher: Springer Nature
Total Pages: 299
Release: 2022-03-11
Genre: Technology & Engineering
ISBN: 9783030941598

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This book explains how depth measurements from the Time-of-Flight (ToF) range imaging cameras are influenced by the electronic timing-jitter. The author presents jitter extraction and measurement techniques for any type of ToF range imaging cameras. The author mainly focuses on ToF cameras that are based on the amplitude modulated continuous wave (AMCW) lidar techniques that measure the phase difference between the emitted and reflected light signals. The book discusses timing-jitter in the emitted light signal, which is sensible since the light signal of the camera is relatively straightforward to access. The specific types of jitter that present on the light source signal are investigated throughout the book. The book is structured across three main sections: a brief literature review, jitter measurement, and jitter influence in AMCW ToF range imaging.

Jitter Noise and Signal Integrity at High Speed

Jitter  Noise  and Signal Integrity at High Speed
Author: Mike Peng Li
Publsiher: Pearson Education
Total Pages: 443
Release: 2007-11-19
Genre: Technology & Engineering
ISBN: 9780132797191

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State-of-the-art JNB and SI Problem-Solving: Theory, Analysis, Methods, and Applications Jitter, noise, and bit error (JNB) and signal integrity (SI) have become today‘s greatest challenges in high-speed digital design. Now, there’s a comprehensive and up-to-date guide to overcoming these challenges, direct from Dr. Mike Peng Li, cochair of the PCI Express jitter standard committee. One of the field’s most respected experts, Li has brought together the latest theory, analysis, methods, and practical applications, demonstrating how to solve difficult JNB and SI problems in both link components and complete systems. Li introduces the fundamental terminology, definitions, and concepts associated with JNB and SI, as well as their sources and root causes. He guides readers from basic math, statistics, circuit and system models all the way through final applications. Emphasizing clock and serial data communications applications, he covers JNB and SI simulation, modeling, diagnostics, debugging, compliance testing, and much more.

Phase Noise in Signal Sources

Phase Noise in Signal Sources
Author: W. P. Robins,Institution of Electrical Engineers
Publsiher: Unknown
Total Pages: 342
Release: 1982
Genre: Technology & Engineering
ISBN: UCAL:B3962387

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The Designer s Guide to High Purity Oscillators

The Designer s Guide to High Purity Oscillators
Author: Emad Eldin Hegazi,Jacob Rael,Asad Abidi
Publsiher: Springer Science & Business Media
Total Pages: 212
Release: 2006-07-18
Genre: Technology & Engineering
ISBN: 9780387233659

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try to predict it using mathematical expressions. His heuristic model without mathematical proof is almost universally accepted. However, it entails a c- cuit specific noise factor that is not known a priori and so is not predictive. In this work, we attempt to address the topic of oscillator design from a diff- ent perspective. By introducing a new paradigm that accurately captures the subtleties of phase noise we try to answer the question: 'why do oscillators behave in a particular way?' and 'what can be done to build an optimum design?' It is also hoped that the paradigm is useful in other areas of circuit design such as frequency synthesis and clock recovery. In Chapter 1, a general introduction and motivation to the subject is presented. Chapter 2 summarizes the fundamentals of phase noise and timing jitter and discusses earlier works on oscillator's phase noise analysis. Chapter 3 and Chapter 4 analyze the physical mechanisms behind phase noise generation in current-biased and Colpitts oscillators. Chapter 5 discusses design trade-offs and new techniques in LC oscillator design that allows optimal design. Chapter 6 and Chapter 7 discuss a topic that is typically ignored in oscillator design. That is flicker noise in LC oscillators. Finally, Chapter 8 is dedicated to the complete analysis of the role of varactors both in tuning and AM-FM noise conversion.