Analysis and Design of Resilient VLSI Circuits

This book PDF is perfect for those who love Technology & Engineering genre, written by Rajesh Garg and published by Springer Science & Business Media which was released on 22 October 2009 with total hardcover pages 224. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Analysis and Design of Resilient VLSI Circuits books below.

Analysis and Design of Resilient VLSI Circuits
Author : Rajesh Garg
File Size : 40,8 Mb
Publisher : Springer Science & Business Media
Language : English
Release Date : 22 October 2009
ISBN : 9781441909312
Pages : 224 pages
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Analysis and Design of Resilient VLSI Circuits by Rajesh Garg Book PDF Summary

This monograph is motivated by the challenges faced in designing reliable VLSI systems in modern VLSI processes. The reliable operation of integrated circuits (ICs) has become increasingly dif?cult to achieve in the deep submicron (DSM) era. With continuouslydecreasing device feature sizes, combinedwith lower supply voltages and higher operating frequencies, the noise immunity of VLSI circuits is decreasing alarmingly. Thus, VLSI circuits are becoming more vulnerable to noise effects such as crosstalk, power supply variations, and radiation-inducedsoft errors. Among these noise sources, soft errors(or error caused by radiation particle strikes) have become an increasingly troublesome issue for memory arrays as well as c- binational logic circuits. Also, in the DSM era, process variations are increasing at a signi?cant rate, making it more dif?cult to design reliable VLSI circuits. Hence, it is important to ef?ciently design robust VLSI circuits that are resilient to radiation particle strikes and process variations. The work presented in this research mo- graph presents several analysis and design techniques with the goal of realizing VLSI circuits, which are radiation and process variation tolerant.

Analysis and Design of Resilient VLSI Circuits

This monograph is motivated by the challenges faced in designing reliable VLSI systems in modern VLSI processes. The reliable operation of integrated circuits (ICs) has become increasingly dif?cult to achieve in the deep submicron (DSM) era. With continuouslydecreasing device feature sizes, combinedwith lower supply voltages and higher operating frequencies,

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