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June 12, 1998Science895 citations

A Defect-Tolerant Computer Architecture: Opportunities for Nanotechnology

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James R. Heath
James R. HeathPasadena City College
PKPhilip J. KuekesHewlett-Packard (United States)GSGregory S. SniderHewlett-Packard (United States)

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Abstract

Teramac is a massively parallel experimental computer built at Hewlett-Packard Laboratories to investigate a wide range of different computational architectures. This machine contains about 220,000 hardware defects, any one of which could prove fatal to a conventional computer, and yet it operated 100 times faster than a high-end single-processor workstation for some of its configurations. The defect-tolerant architecture of Teramac, which incorporates a high communication bandwith that enables it to easily route around defects, has significant implications for any future nanometer-scale computational paradigm. It may be feasible to chemically synthesize individual electronic components with less than a 100 percent yield, assemble them into systems with appreciable uncertainty in their connectivity, and still create a powerful and reliable data communications network. Future nanoscale computers may consist of extremely large-configuration memories that are programmed for specific tasks by a tutor that locates and tags the defects in the system.

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Cite This Study

Heath et al. (1998) studied this question.

synapsesocial.com/papers/6a06a91772f02181265821cehttps://doi.org/10.1126/science.280.5370.1716
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