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Energy recovery clock gating scheme and negative edge triggering flip-flop for low power applications

机译:能量恢复时钟门控方案和低边沿触发触发器,适用于低功耗应用

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Energy recovery is a technique developed for low power digital circuits. Energy recovery clocking is an effective method for reducing the clock power in which the conventional square wave clock signal is replaced by a trapezoidal clock. This modification in the clock signal prevents the application of existing clock gating solutions. In this paper, a clock gating solution for energy recovery clocking is proposed by gating the flip-flops. Further, all the existing energy recovery clocked flip-flops are positive edge triggered. But in a synchronous system, it is advantageous to have both positive and negative edge triggered flip-flops in the same system. There has not been a negative edge triggered energy recovery flip-flop in the literature so far. In this paper, we propose a design of negative edge triggered flip-flop with the clock gating feature. The proposed design is simulated using the industrial standard Austria micro systems 350nm process technology Tanner spice(T-spice) tool. The simulation results show that the design is as power efficient as the existing positive edge triggered energy recovery flip-flops and is well suited for low power applications.
机译:能量回收是针对低功率数字电路开发的技术。能量恢复时钟是一种减少时钟功率的有效方法,在该方法中,常规方波时钟信号被梯形时钟所代替。时钟信号的这种修改阻止了现有时钟门控解决方案的应用。本文通过对触发器进行门控,提出了一种用于能量恢复时钟的时钟门控解决方案。此外,所有现有的能量回收时钟触发器均由上升沿触发。但是在同步系统中,在同一系统中同时具有正和负边沿触发触发器是有利的。到目前为止,在文献中还没有一个下降沿触发的能量恢复触发器。在本文中,我们提出了一种具有时钟门控功能的负边沿触发触发器的设计。拟议的设计使用工业标准的奥地利微系统350nm工艺技术Tanner spice(T-spice)工具进行了仿真。仿真结果表明,该设计与现有的上升沿触发能量恢复触发器一样,具有高功率效率,非常适合于低功耗应用。

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