Evaluation of granularity on threshold voltage control in flex power FPGA

M. Hioki, Takashi Kawanami, T. Tsutsumi, T. Nakagawa, T. Sekigawa, H. Koike
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引用次数: 9

Abstract

The flex power FPGA can flexibly control speed and power in a trade-off relationship by a flexible assignment of proper threshold voltage generated from body-bias units to transistors. This paper evaluates static power consumption and an area-overhead by the body-bias units on various threshold voltage control granularity in the flex power FPGA. There is also a trade-off relationship between the static power consumption and the area-overhead for granular control of the threshold voltages. Both a grain size and its style of division have a strong influence on the trade-off. Own evaluation results show that static power reduces less than 1/5 of original level, while increase an area overhead of less than 40%. If an area increase of 50% is allowed, then the reduction in static power consumption to 1/10 or less is obtained
柔性电源FPGA中阈值电压控制的粒度评价
柔性功率FPGA通过对体偏置单元产生的阈值电压进行灵活的赋值,实现了对速度和功率的权衡控制。本文对柔性电源FPGA中不同阈值电压控制粒度的体偏置单元的静态功耗和面积开销进行了评估。对于阈值电压的粒度控制,静态功耗和面积开销之间也存在权衡关系。粒度及其划分方式对权衡都有很大的影响。自身评价结果表明,静功耗降低不到原水平的1/5,而面积开销增加不到40%。如果允许增加50%的面积,则静态功耗降低到1/10或更少
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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