具有现场可编程V/sub /元件的FPGA的最佳体偏置电压集

Takashi Kawanami, M. Hioki, Y. Matsumoto, T. Tsutsumi, T. Nakagawa, T. Sekigawa, H. Koike
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引用次数: 7

摘要

具有现场可编程Vth元件的FPGA通过灵活地控制晶体管的阈值电压(Vth),可以实现高性能和低功耗,而不受位置和路由的限制。由于FPGA中特定电路块的晶体管Vth是从体偏置电压集(BBVS)定义的一组Vth值中选择的,因此在现场可编程Vth方法的设计决策过程中,充分选择BBVS是很重要的。本文介绍了带现场可编程Vth元件的FPGA中,BBVS的选择对静态功耗降低的影响。为了在几种备选体偏置电压中选择最佳的BBVS,我们提供了几种BBVS。结果表明,最好的BBVS实现了显著的静态功耗降低,在没有性能下降的情况下,仅为传统FPGA的1/30。此外,对BBVS中高v值晶体管体偏置电压的优化选择研究表明,高v值晶体管的深反向体偏置不一定能提供最优条件,优化是必要的
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal set of body bias voltages for an FPGA with field-programmable V/sub th/ components
An FPGA with field-programmable Vth components can attain both high performance and low power consumption, without placement and routing constraints, by flexibly controlling the threshold voltage (Vth) of transistors. Since Vth for transistors for a specific circuit block in an FPGA is chosen from a set of Vth values defined by body bias voltage set (BBVS), adequate selection of BBVS is important in the design decision process in a field-programmable Vth method. In this paper, the effect of the selection of BBVS on static power reduction in an FPGA with field-programmable Vth components was presented. To select the optimal BBVS among several supplied body bias voltage candidates, several BBVSs are provided. The results show that the best BBVS achieves remarkable static power reduction, to as little as 1/30 the value in a conventional FPGA without performance degradation. In addition, the study on the optimal selection of body bias voltage for high-Vth transistor in a BBVS reveals that deep reverse body bias for high-Vth transistor does not necessarily offer the optimal condition, and optimization is necessary
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