A Defect-Tolerant Computer Architecture: Opportunities for Nanotechnology

Отказоустойчивая архитектура компьютера: возможности для нанотехнологий
R. Stanley Williams, James R. Heath, Philip J. Kuekes, Gregory S. Snider
1998-06-12

Teramac computerdefect-tolerant architecturefault-tolerant routingmassively parallel computingnanometer-scale computation
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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For some configurations, Teramac operated 100 times faster than a high-end single-processor workstation.
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Future nanocomputers may use extremely large configurable memories programmed by a tutor that identifies and tags system defects for task-specific operation.
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Its defect-tolerant architecture uses high-bandwidth communication to route around defective components, enabling reliable computation despite extensive hardware faults.
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Teramac remained operational despite approximately 220,000 hardware defects that could individually be fatal in conventional computers.
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The architecture suggests that nanoscale computers could be built from imperfectly synthesized components and uncertain interconnections while maintaining powerful, reliable data communications.

Teramac massively parallel experimental computer with approximately 220,000 hardware defects

Defect-tolerant computer architecture, including high-bandwidth routing around defects and its implications for reliable nanoscale computing

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1998-06-12
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R. Stanley Williams
James R. Heath
Philip J. Kuekes
Gregory S. Snider
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