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Noise Coupling in Integrated Circuits: A Practical Approach to Analysis, Modeling, and Suppression +

Cosmin Iorga Ph.D.

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ISBN 10: 0615197566 / ISBN 13: 9780615197562
Published by NoiseCoupling, 2008
Condition: Good Hardcover
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Bibliographic Details

Title: Noise Coupling in Integrated Circuits: A ...

Publisher: NoiseCoupling

Publication Date: 2008

Binding: Hardcover

Book Condition:Good

About this title


This is a book for semiconductor design engineers working on analog and mixed-signal integrated circuits; however, it also contains useful information for package, printed circuit board, and system designers. The book provides a practical approach to the analysis of noise coupling mechanisms, the implementation of suppression techniques, and the simulation using modeling and extraction tools. The overall goal is to improve the technical skills of designers, enabling them to better understand and solve the continuously aggravating noise coupling issues. Chapters 1 and 2 discuss fundamental concepts governing noise coupling mechanisms and present an overview of integrated circuits fabrication technology. Chapters 3, 4, and 5 focus on understanding the physical mechanisms that govern the noise coupling in integrated circuits. Noise generation, propagation and reception are analyzed at the device structure, chip, package, and PCB levels. Chapter 6 focuses on measuring the noise coupling in integrated circuits. Various techniques are presented, and advantages and disadvantages are discussed. A novel technique using differential sensors for power and substrate noise and an on-chip waveform digitizer is also presented. Chapter 7 focuses on suppressing the noise coupling in integrated circuits. Advantages, disadvantages, and limitations of various techniques are presented with relation to the physical structures of devices and substrate. Two design examples of circuit level compensation techniques and experimental results are also presented. Chapter 8 focuses on modeling and simulating the noise coupling in integrated circuits. The selection of conventional methods and tools is discussed, highlighting the advantages and limitations specific to various stages of the design flow. A practical modeling technique based only on information available in the architectural definition stages of projects is also presented.

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