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SelfChecking and FaultTolerant Digital Design (The Morgan Kaufmann Series in Computer Architecture and Design),New
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With VLSI chip transistors getting smaller and smaller, today's digital systems are more complex than ever before. This increased complexity leads to more crosstalk, noise, and other sources of transient errors during normal operation. Traditional offline testing strategies cannot guarantee detection of these transient faults. And with critical applications relying on faster, more powerful chips, faulttolerant, selfchecking mechanisms must be built in to assure reliable operation.SelfChecking and FaultTolerant Digital Design deals extensively with selfchecking design techniques and is the only book that emphasizes major techniques for hardware fault tolerance. Graduate students in VLSI design courses as well as practicing designers will appreciate this balanced treatment of the concepts and theory underlying fault tolerance along with the practical techniques used to create faulttolerant systems.* Introduces reliability theory and the importance of maintainability* Presents coding and the construction of several error detecting and correcting codes* Discusses in depth, the available techniques for failsafe design of combinational circuits* Details checker design techniques for detecting erroneous bits and encoding output of selfchecking circuits* Demonstrates how to design selfchecking sequential circuits, including a technique for failsafe state machine design
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