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Inverting Versus Non-Inverting Dynamic Logic for Two-Phase Latch-free Nanopipelines

机译:两相无闩锁纳米管线的反相与同相动态逻辑

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Very fine grained latch-free pipelines are successfully used in critical parts of high performance systems. These approaches are based in Domino logic and multi-phase clock schemes. Reducing the number of logic levels per clock phase and the number of phases to the minimum is a potential way to push the limits of speed. However the implementation of such architectures with just one logic level per clock phase and two clock phases is a challenge which requires extremely full-custom design and exhibits robustness concerns. In this paper we show that the non-inverting feature of Domino plays a critical role in these difficulties. We analyze and compare the performance of two-phase gate-level pipelines implemented with Domino and with ILP, an inverting dynamic gate we have proposed. Our experiments confirm that ILP pipelines are much more robust and could simplify design.
机译:细粒度的无闩锁管道已成功用于高性能系统的关键部分。这些方法基于Domino逻辑和多相时钟方案。将每个时钟相位的逻辑电平数量和相位数量减少到最小是提高速度极限的一种潜在方法。然而,这样的架构的实现仅每个时钟相位一个逻辑电平和两个时钟相位,这是一个挑战,需要极其完全定制的设计并表现出鲁棒性问题。在本文中,我们证明了Domino的同相功能在这些困难中起着至关重要的作用。我们分析并比较了使用Domino和我们提出的反向动态门ILP实现的两相门级流水线的性能。我们的实验证实,ILP管道更加健壮,可以简化设计。

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