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A power management control scheme for ultra-low power SoCs

机译:超低功耗SoC的电源管理控制方案

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摘要

Because the subthreshold current has an exponential relationship with the supply voltage and the threshold voltage (Vth), it leads to the delay changes exponentially with PVT. To mitigate the impacts caused by PVT variations, increasing the power supply voltage is a simple and effective method. In this paper, a power management control (PMC) scheme for ultra-low power SoCs is proposed. According to the different blocks, different delay detection circuits are inserted into the corresponding critical delay paths. To validate the proposed PMC scheme, a design example for subthreshold SRAM is implemented. The simulation results show that the proposed PMC scheme can mitigate the effects caused by PVT fluctuations upon the subthreshold SRAM circuit effectively at the minimum cost of the power.
机译:由于亚阈值电流与电源电压和阈值电压(V th )呈指数关系,因此导致延迟随PVT呈指数变化。为了减轻由PVT变化引起的影响,提高电源电压是一种简单有效的方法。本文提出了一种用于超低功耗SoC的电源管理控制(PMC)方案。根据不同的块,将不同的延迟检测电路插入相应的关键延迟路径中。为了验证所提出的PMC方案,实现了亚阈值SRAM的设计示例。仿真结果表明,所提出的PMC方案能够以最小的功率成本有效地缓解PVT波动对亚阈值SRAM电路的影响。

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