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Comparative study and optimization of synchronous and asynchronous comparators at near-threshold voltages

机译:近阈值电压同步和异步比较器的比较研究与优化

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We optimize and compare the performance of synchronous and asynchronous comparators across near-threshold and nominal supply voltage (0.5~1V). Comparators are the key components that determine the fundamental performance of analog-to-digital conversion in control and digital-signal processing (DSP) systems. While the asynchronous comparator has been considered inferior, operation of transistors in the near-threshold regime grants asynchronous comparators opportunities to improve power efficiency due to the more reduction in crowbar current than saturation drain current. We propose an enhanced asynchronous CSDA based comparator capable of achieving a superior latency vs. quiescent power dissipation trade-off to the synchronous clocked comparator in the near-threshold regime, a metric that is beneficial particularly to event-driven control systems. In-depth optimization and comparison results are presented.
机译:我们优化并比较跨越阈值和标称电源电压(0.5〜1V)的同步和异步比较器的性能。比较器是确定控制和数字信号处理(DSP)系统中的模数转换的基本性能的关键组件。虽然异步比较器被认为是较差的,但近阈值制度中的晶体管的操作授予异步比较器机会,以提高功率效率,因为占·挤压漏极电流的挤压杆电流越减少。我们提出了一种增强的异步CSDA基于CSDA的比较器,其能够实现近阈值制度的同步时钟比较器的卓越延迟与静态计数器折衷的比较器,这是一个有利于事件驱动的控制系统的度量。提出了深入的优化和比较结果。

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