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Low power finite state machine synthesis using power-gating

机译:使用功率门控的低功率有限状态机综合

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摘要

Power-gating turns off the power supply of a portion of the circuit completely, resulting in total elimination of power consumption for that part However, it also necessitates that the sub-circuit to be activated should be charged for some time before its activation. This critical issue can influence the decomposition of a finite state machine (FSM) for its power gated implementation. In this paper we have presented a power-gating method that integrates FSM partitioning with state encoding, thus providing a total solution to the problem of power-aware FSM synthesis. It shows better results, in terms of dynamic and leakage power consumption, compared to the existing techniques reported in the literature.
机译:电源门控完全关闭了电路的一部分的电源,从而完全消除了该部分的功耗。但是,这也需要在要激活的子电路激活之前先对其充电一段时间。这个关键问题可能会影响有限状态机(FSM)的功率门控实现。在本文中,我们提出了一种将FSM分区与状态编码集成在一起的功率门控方法,从而为功率敏感的FSM综合问题提供了一个整体解决方案。与文献中报道的现有技术相比,它在动态功耗和泄漏功耗方面显示出更好的结果。

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