Circuit techniques for dynamic variation tolerance

Three circuit techniques for dynamic variation tolerance are presented: (i) Sensors with adaptive voltage and frequency circuits, (ii) Tunable replica circuits for timing-error prediction with error recovery, and (iii) Embedded error-detection sequential circuits with error recovery. These circuits...

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Bibliographic Details
Published in2009 46th ACM/IEEE Design Automation Conference pp. 4 - 7
Main Authors Bowman, Keith, Tschanz, James, Wilkerson, Chris, Lu, Shih-Lien, Karnik, Tanay, De, Vivek, Borkar, Shekhar
Format Conference Proceeding
LanguageEnglish
Published New York, NY, USA ACM 26.07.2009
IEEE
SeriesACM Conferences
Subjects
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ISBN9781605584973
1605584975
ISSN0738-100X
DOI10.1145/1629911.1629915

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Summary:Three circuit techniques for dynamic variation tolerance are presented: (i) Sensors with adaptive voltage and frequency circuits, (ii) Tunable replica circuits for timing-error prediction with error recovery, and (iii) Embedded error-detection sequential circuits with error recovery. These circuits mitigate the clock frequency guardbands for dynamic variations, thus improving microprocessor performance and energy-efficiency. These circuits are described with a focus on the different trade-offs in guardband reduction and design overhead. Opportunities for CAD to further enhance microprocessor performance and energy efficiency are offered.
ISBN:9781605584973
1605584975
ISSN:0738-100X
DOI:10.1145/1629911.1629915