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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Low-Power Retentive True Single-Phase-Clocked Flip-Flop With Redundant-Precharge-Free Operation
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Low-Power Retentive True Single-Phase-Clocked Flip-Flop With Redundant-Precharge-Free Operation

机译:低功耗保留真正的单相时钟触发器,具有冗余预充电操作

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摘要

As basic components, optimizing power consumption of flip-flops (FFs) can significantly reduce the power of digital systems. In this article, an energy-efficient retentive true-single-phase-clocked (TSPC) FF is proposed. With the employment of input-aware precharge scheme, the proposed TSPC FF precharges only when necessary. In addition, floating node analysis and transistor level optimization are employed to further ensure the high energy efficiency of the FF without significantly increasing the area. Postlayout simulations based on SMIC 55-nm CMOS technology show that at a supply voltage of 1.2 V, the power consumption of the proposed FF is 84.37% lower than that of conventional transmission-gate flip-flop (TGFF) at 10% data activity. The reduction rate is increased to 98.53% as the data activity goes down to 0%. When the supply voltage decreases to 0.6 V, the proposed FF consumes only 0.411 fJ/cycle at 10% data activity, which is 84.23% lower than TGFF. Measurement results of ten test chips demonstrate the great energy efficiency of the proposed FF. Furthermore, the CK-to-Q delay of the proposed FF is 26.18% lower than that of TGFF at a supply voltage of 1.2 V.
机译:作为基本成分,优化的功率消耗触发器(FF)等可以显著减少数字系统的功率。在本文中,高能效的保持真单相时钟(TSPC)FF提出。随着就业输入感知预充电方案,建议TSPC FF只在必要时会预充电。此外,浮置节点分析和晶体管级优化被采用以进一步确保FF的高能量效率,而不会增加显著的区域。后布局模拟基于中芯55纳米CMOS技术表明,在1.2伏的电源电压,所提出的FF的功率消耗比在10%的数据活动性的常规传输门触发器(TGFF)的下84.37%。作为数据活性降低到0%的压下率提高到98.53%。当电源电压降低到0.6V时,所提出的FF消耗在10%数据活动,这是比低TGFF%84.23仅0.411 FJ /循环。十测试芯片测试结果证明了FF的巨大的能量效率。此外,提出的FF的CK-到Q延迟是26.18%比TGFF的下部在1.2伏的电源电压

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