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Conditional Data Mapping Flip-Flops for Low-Power and High-Performance Systems

机译:适用于低功耗和高性能系统的条件数据映射触发器

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This paper introduces a new family of low-power and high-performance flip-flops, namely conditional data mapping flip-flops (CDMFFs), which reduce their dynamic power by mapping their inputs to a configuration that eliminates redundant internal transitions. We present two CDMFFs, having differential and single-ended structures, respectively, and compare them to the state-of-the-art flip-flops. The results indicate that both CDMFFs have the best power-delay product in their groups, respectively. In the aspect of power dissipation, the single-ended and differential CDMFFs consume the least power at data activity less than 50%, and are 31% and 26% less power than the conditional capture flip-flops at 25% data activity, respectively. In the aspect of performance, CDMFFs achieve small data-to-output delays, comparable to those of the transmission-gate pulsed latch and the modified-sense-amplifier flip-flop. In the aspect of timing reliability, CDMFFs have the best internal race immunity among pulse-triggered flip-flops. A post-layout case study is demonstrated with comparison to a transmission-gate flip-flop. The results indicate the single-ended CDMFF has 34% less in data-to-output delay and 28% less in power at 25% data activity, in spite of the 34% increase in size
机译:本文介绍了一个新的低功耗和高性能触发器系列,即条件数据映射触发器(CDMFF),该触发器通过将其输入映射到消除冗余内部转换的配置来降低其动态功耗。我们介绍了两个分别具有差分和单端结构的CDMFF,并将它们与最新的触发器进行比较。结果表明,两个CDMFF分别在其组中具有最佳的功率延迟乘积。在功耗方面,单端CDMFF和差分CDMFF在数据活动小于50%时消耗的功率最少,分别比条件捕获触发器在25%数据活动时的功耗少31%和26%。在性能方面,CDMFF实现了较小的数据输出延迟,与传输门脉冲锁存器和改进型感测放大器触发器的延迟相当。在时序可靠性方面,CDMFF在脉冲触发的触发器中具有最佳的内部竞争抗扰性。与传输门触发器相比,展示了布局后案例研究。结果表明,尽管大小增加了34%,但单端CDMFF在数据活动为25%时,数据到输出的延迟减少了34%,功率减少了28%。

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