Vlsi High Speed I O Circuits Problems Projects And Questions


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VLSI High-Speed I/O Circuits - Problems, Projects, and Questions


VLSI High-Speed I/O Circuits - Problems, Projects, and Questions

Author: Hongjiang Song

language: en

Publisher: Lulu.com

Release Date: 2014-03-11


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This book is based on a collection of homework problems, design projects and sample interview questions for the VLSI High-Speed I/O Circuits class (EEE598) the author offered in the School of Engineering at Arizona State University. The materials cover various aspects of the design, analysis and application of VLSI high-speed I/O circuits. This book is intended to be used together with the VLSI High-Speed I/O Circuits textbook by the same author. It can also be used alone for the experienced readers.

High Speed Serdes Devices and Applications


High Speed Serdes Devices and Applications

Author: David Robert Stauffer

language: en

Publisher: Springer Science & Business Media

Release Date: 2008-12-19


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The simplest method of transferring data through the inputs or outputs of a silicon chip is to directly connect each bit of the datapath from one chip to the next chip. Once upon a time this was an acceptable approach. However, one aspect (and perhaps the only aspect) of chip design which has not changed during the career of the authors is Moore’s Law, which has dictated substantial increases in the number of circuits that can be manufactured on a chip. The pin densities of chip packaging technologies have not increased at the same pace as has silicon density, and this has led to a prevalence of High Speed Serdes (HSS) devices as an inherent part of almost any chip design. HSS devices are the dominant form of input/output for many (if not most) high-integration chips, moving serial data between chips at speeds up to 10 Gbps and beyond. Chip designers with a background in digital logic design tend to view HSS devices as simply complex digital input/output cells. This view ignores the complexity associated with serially moving billions of bits of data per second. At these data rates, the assumptions associated with digital signals break down and analog factors demand consideration. The chip designer who oversimplifies the problem does so at his or her own peril.

Digital Integrated Circuit Design


Digital Integrated Circuit Design

Author: Hubert Kaeslin

language: en

Publisher: Cambridge University Press

Release Date: 2008-04-28


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This practical, tool-independent guide to designing digital circuits takes a unique, top-down approach, reflecting the nature of the design process in industry. Starting with architecture design, the book comprehensively explains the why and how of digital circuit design, using the physics designers need to know, and no more.