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CURRENT SENSING COMPLETION DETECTION IN SINGLE-RAIL ASYNCHRONOUS SYSTEMS

机译:单轨异步系统中的电流感测完成检测

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摘要

In this article, an alternative approach to detecting the computation completion of combinatorial blocks in asynchronous digital systems is presented. The proposed methodology is based on well-known phenomenon that occurs in digital systems fabricated in CMOS technology. Such logic circuits exhibit significantly higher current consumption during the signal transitions than in the idle state. Duration of these current peaks correlates very well with the actual computation time of the combinatorial block. Hence, this fact can be exploited for separation of the computation activity from static state. The paper presents fundamental background of addressed alternative completion detection and its implementation in single-rail encoded asynchronous systems, the proposed current sensing circuitry, achieved simulation results as well as the comparison to the state-of-the-art methods of completion detection. The presented method promises the enhancement of the performance of an asynchronous circuit, and under certain circumstances it also reduces the silicon area requirements of the completion detection block.
机译:在本文中,提出了一种用于检测异步数字系统中组合块计算完成的替代方法。所提出的方法基于在以CMOS技术制造的数字系统中发生的众所周知的现象。与在空闲状态下相比,这种逻辑电路在信号转换期间表现出明显更高的电流消耗。这些电流峰值的持续时间与组合块的实际计算时间非常相关。因此,可以利用这一事实来将计算活动与静态分离。本文介绍了解决替代完成检测的基本背景及其在单轨编码异步系统中的实现,所提出的电流检测电路,获得的仿真结果以及与最新完成检测方法的比较。提出的方法有望增强异步电路的性能,并且在某些情况下还可以减少完成检测模块的硅面积要求。

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