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An Adiabatic Charge Pump Based Charge Recycling Design Style

机译:基于绝热泵的电荷回收设计风格

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Adiabatic CMOS circuits reduce the energy consumption by supplying the charge at a rate significantly lower than the inherent RC delay of a gate. However, such a technique inherently trades energy for delay. In this work, we propose to incorporate an adiabatic charge pump to recycle charge for energy reduction. The adiabatic component, charge pump, is placed away from the critical paths. The adiabatic delays are overlapped with the computing path logic delays resulting in no change in the computation speed. One implementation scheme that taps the ground-bound charge in a capacitor (virtual ground) and then uses an adiabatic charge-pump to feed internal virtual Vdd nodes is described. The method has been implemented in DSP computations such as FIR filter, DCT/IDCT filters and FFT filters. Complete design details and performance analysis are presented. Simulation results in SPICE indicate that the proposed scheme reduces energy consumption in these DSP circuits by as much as 15% with no loss in performance.
机译:绝热CMOS电路通过以显着低于门的固有RC延迟的速率提供电荷来降低能量消耗。然而,这种技术本质地交易了延迟的能量。在这项工作中,我们建议将绝热电荷泵融入能量减少的电荷。绝热部件电荷泵远离关键路径。绝热延迟与计算路径逻辑延迟重叠,从而导致计算速度没有变化。一种实现方案,其将电容器(虚拟接地)中的接地电荷分开,然后使用绝热电荷泵来馈送内部虚拟VDD节点。该方法已在DSP计算中实现,例如FIR滤波器,DCT / IDCT滤波器和FFT滤波器。提供了完整的设计细节和性能分析。 Spice的仿真结果表明,所提出的方案将这些DSP电路中的能耗降低多达15%,性能没有损失。

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