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An 80-Tile Sub-100-W TeraFLOPS Processor in 65-nm CMOS

IEEE Journal of Solid-State Circuits · 2008 · Vol. 43(1) · pp. 29–41
Sriram VangalJason HowardGreg RuhlSaurabh DigheH. WilsonJames TschanzD. FinanA. SinghTiju JacobShailendra JainVasantha ErraguntlaClark RobertsYatin HoskoteNitin BorkarShekhar Borkar

Abstract

This paper describes an integrated network-on-chip architecture containing 80 tiles arranged as an 8x10 2-D array of floating-point cores and packet-switched routers, both designed to operate at 4 GHz. Each tile has two pipelined single-precision floating-point multiply accumulators (FPMAC) which feature a single-cycle accumulation loop for high throughput. The on-chip 2-D mesh network provides a bisection bandwidth of 2 Terabits/s. The 15-FO4 design employs mesochronous clocking, fine-grained clock gating, dynamic sleep transistors, and body-bias techniques. In a 65-nm eight-metal CMOS process, the 275 mm <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sup> custom design contains 100 M transistors. The fully functional first silicon achieves over 1.0 TFLOPS of performance on a range of benchmarks while dissipating 97 W at 4.27 GHz and 1.07 V supply.

Interconnection Networks and SystemsParallel Computing and Optimization TechniquesEmbedded Systems Design TechniquesCMOSChipComputer scienceTransistorTileComputer hardwareParallel computingEmbedded systemElectrical engineeringOptoelectronics

Funding

  • Intel Corporation
  • Tulane University
Citations
625
FWCI
78.90
field-weighted impact
References
20
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100%
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Cited by
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References
An algorithm for the machine calculation of complex Fourier series
Mathematics of Computation · 1965 · 12,024 citations
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