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Revisited Design of Short-pulse Power Gated Approach of Subthreshold Leakage Reduction Technique in Combinational Circuits

机译:复述组合电路亚阈值泄漏技术的短脉冲功率门控方法的设计

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Low power consumption is the ultimate goal of the circuit designers of any application and specifically, the life time of event-driven nature of low duty cycle applications like Wireless Sensor Networks (WSN) relies on the design of power-stringent battery-operated devices. At all the hierarchical level of the sensor nodes, low duty cycling is the practicing solution in saving the unwanted power consumption. However, the rapid power squanderer at the sleep state of the circuit is the subthreshold leakage. The exact saving of the leakage can be done by suppressing the short-channel effects of the transistors only at the circuit-level and the two techniques Modified Power Gating (MPG) and Short-pulse POwer Gated Approach (SPOGA, hereafter called as SPOGA_old) are proposed and implemented in the combinational circuits in the previous works of the research. In spite of good subthreshold leakage reduction, the limitations of the proposed techniques are loading effect, state-retention and leakage estimation method. In order to provide an efficient sleep state subthreshold leakage reduction in combinational circuits of low duty cycle application, the limitations are addressed with a revisited design of SPOGA_old, called as SPOGA technique. The illustration of the proposed SPOGA technique with CMOS inverter is done using Cadence GPDK090. From the simulation results, it is clearly seen that the Subthreshold Leakage Reduction Ratio (SLRR) is high and proved the efficacy of the SPOGA technique in subthreshold leakage reduction.
机译:低功耗是任何应用的电路设计人员的最终目标,具体地,无线传感器网络(WSN)等低占空比应用的事件驱动性质的寿命依赖于电源严格的电池操作装置的设计。在传感器节点的所有分层级别,低循环是节省不需要的功耗的实践解决方案。然而,电路睡眠状态下的快速功率堆垛机是亚阈值泄漏。可以通过抑制晶体管的短信效应仅在电路电平和两种技术改装功率门控(MPG)和短脉冲功率门控方法(Spoga,以后称为Spoga_old)来完成泄漏的确切节省在研究的前一项工作中的组合电路中提出和实施。尽管有很好的亚阈值泄漏减少,所提出的技术的局限性是加载效果,状态保留和泄漏估计方法。为了提供低占空比应用的组合电路的有效睡眠状态子泄漏减少,限制是通过重新讨论的spoga_old设计,称为spoga技术。使用CMOS逆变器的提出的Spoga技术的插图是使用Cadence GPDK090完成的。从仿真结果中,清楚地看出,亚阈值泄漏比率​​(SLRR)高,并证明了SPOGA技术在亚阈值泄漏减少中的功效。

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