首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >Dynamic Flip-Flop Conversion: A Time-Borrowing Method for Performance Improvement of Low-Power Digital Circuits Prone to Variations
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Dynamic Flip-Flop Conversion: A Time-Borrowing Method for Performance Improvement of Low-Power Digital Circuits Prone to Variations

机译:动态触发器转换:一种可借以改善低功率数字电路性能变化的时间借用方法

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摘要

Dynamic flip-flop (FF) conversion is a method of time borrowing (TB) for improving the performance of digital systems prone to variations. The first type of this method (Type A), which was previously presented, suffers from a large inefficient transparency window. In this brief, we present an improved structure for this method (Type B) that mitigates this problem by automatically closing the window after the arrival of late data at timing critical FFs. This method was compared with soft edge FF and dynamic clock stretching through simulations on different ITC’99 benchmarks. We defined a parameter called improvement efficiency, which is the ratio of the timing yield improvement to the power overhead of TB. According to the simulation results, the efficiency of Type A is on average 269% more than the best results of other methods when considering only the setup time violations. But, when taking both the setup time and the hold time violations into account, Type B is on average 46% more efficient than the best results of other methods. The simulations also show that the yield improvement of this method increases in higher clock frequencies and it remains the most efficient method when reducing the voltage down to near-threshold region.
机译:动态触发器(FF)转换是一种借用时间(TB)的方法,用于改善易于变化的数字系统的性能。先前介绍的该方法的第一种类型(类型A)遭受着效率低下的透明窗口大的困扰。在本摘要中,我们为该方法(类型B)提供了一种改进的结构,该结构通过在关键数据FF处迟到数据到达后自动关闭窗口来缓解此问题。通过在不同的ITC’99基准上进行仿真,将该方法与软边FF和动态时钟延展进行了比较。我们定义了一个称为改善效率的参数,它是定时产量改善与TB功耗之间的比率。根据仿真结果,仅考虑设置时间违规时,A类效率平均比其他方法的最佳结果高269%。但是,同时考虑建立时间和保持时间违规时,类型B的效率平均比其他方法的最佳结果高46%。仿真还表明,在较高的时钟频率下,该方法的良率提高,并且在将电压降低至接近阈值区域时仍然是最有效的方法。

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