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Implementation of delay and power monitoring schemes to reduce the power consumption

机译:实施延迟和电源监控方案以减少功耗

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As process technology shrinks, the adaptive leakage power compensation scheme will become more important in realizing high-performance and low-power applications. In order to minimize total active power consumption in digital circuits, one must take into account sub-threshold leakage currents that grow exponentially as technology scales. This describes to predict how dynamic power and sub-threshold power must be balanced. The exclusive supply voltage control switching makes stable operations. The threshold voltage control successfully maintains a ratio of switching to leakage current and which represents the reduced power consumption. The goal of this paper is to: i) Maintains the optimized body bias conditions. ii) Maintains the best power-delay tradeoff. The results with a 180-nm CMOS device explain that the proposed architecture causes in the successful optimization of power.
机译:随着制程技术的发展,自适应泄漏功率补偿方案在实现高性能和低功率应用中将变得越来越重要。为了使数字电路中的总有功功率消耗最小,必须考虑亚阈值泄漏电流,该阈值泄漏电流随着技术规模的增长呈指数增长。这描述了预测必须如何平衡动态功率和亚阈值功率。专用的电源电压控制开关使运行稳定。阈值电压控制成功地维持了开关电流与泄漏电流的比率,并且代表了降低的功耗。本文的目标是:i)保持最佳的车身偏置条件。 ii)保持最佳的电源延迟权衡。使用180纳米CMOS器件的结果说明,提出的体系结构可成功地优化功耗。

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