CB-Power: a hierarchical cell-based power characterization and estimation environment for static CMOS circuits

W. Shen, Jiing-Yuan Lin, Jyh-Ming Lu
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引用次数: 1

Abstract

In this paper, we present CB-Power, a hierarchical cell-based power characterization and estimation environment for static CMOS circuits. The environment is based on a cell characterization system for timing, power and input capacitance and on a cell-based power estimator. The characterization system can characterize basic, complex and transmission gates. During the characterization, input slew rate, output loading, capacitive feedthrough effect and the logic state dependence of nodes in a cell are all taken into account. The characterization methodology separates the power consumption of a cell into three components, e.g., capacitive feedthrough power, short-circuit power, and dynamic power. With the characterization data, a cell-based power estimator (CBPE) embedded in Verilog-XL is used for estimating the power consumption of a circuit. CB-Power is also a hierarchical power estimator. Macrocells such as flip-flops and adders are partitioned into primitive gates during power estimation. Experimental results on a set of MCNC benchmark circuits show that CB-Power provides within 6% error of SPICE simulation on average while the CPU time consumed is more than two orders of magnitude less.
CB-Power:一种基于分层单元的静态CMOS电路功率表征和估计环境
在本文中,我们提出了CB-Power,一种基于分层单元的静态CMOS电路功率表征和估计环境。该环境基于用于时序、功率和输入电容的单元表征系统以及基于单元的功率估计器。该表征系统可以对基本门、复杂门和传输门进行表征。在表征过程中,考虑了输入压摆率、输出负载、电容馈通效应和单元中节点的逻辑状态依赖性。表征方法将电池的功耗分为三个部分,例如,电容馈通功率,短路功率和动态功率。利用表征数据,Verilog-XL中嵌入的基于单元的功率估计器(CBPE)用于估计电路的功耗。CB-Power也是一个分层功率估计器。在功率估计时,触发器和加法器等大单元被划分为原始门。在一组MCNC基准电路上的实验结果表明,CB-Power与SPICE模拟的平均误差在6%以内,而CPU时间消耗则减少了两个数量级以上。
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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