Low-Energy Pipelined Multiple-Valued Current-Mode Circuit with 8-Level Static Current-Source Control

M. Natsui, T. Arimitsu, T. Hanyu
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引用次数: 4

Abstract

A static current-source control technique in a multiple-valued current-mode (MVCM) circuit is proposed for a low-energy pipelined system. A current-control block embedded in each pipeline stage generates current control signals, which minimizes the amount of current flows depending on a given condition. The use of this current-source control technique makes it possible to reduce the power dissipation with maintaining the operating frequency. The efficiency of the proposed technique in a pipelined MVCM multiplier is confirmed by using HSPICE simulation under 0.13um CMOS technology. The MVCM circuit using the proposed technique achieves 65.1% power reduction compared with a conventional MVCM implementation at the operating frequency of 100MHz and 26.5% reduction at 500MHz with 6.88% area overhead.
具有8级静态电流源控制的低能量流水线多值电流模式电路
针对低功耗流水线系统,提出了一种多值电流模式(MVCM)电路的静态电流源控制技术。在每个管道级中嵌入一个电流控制块,产生电流控制信号,根据给定条件将电流流量最小化。采用这种电流源控制技术,可以在保持工作频率的情况下降低功耗。在0.13um CMOS工艺下,采用HSPICE仿真验证了该技术在流水线式MVCM乘法器中的有效性。与传统MVCM电路相比,采用该技术的MVCM电路在100MHz工作频率下功耗降低65.1%,在500MHz工作频率下功耗降低26.5%,面积开销为6.88%。
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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