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Investigation and Design of a Threshold element for the Fault Self-Timed Circuits

机译:故障自定时电路阈值元件的研究与设计

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G-flip-flops are the important elements of the so-called asynchronous circuits and self-timed circuits. These flip-flops are the threshold elements, the basis of the neural networks. At present, analog-to-digital converters use threshold elements too. The number of inputs n and the threshold of operation m characterize threshold elements named THmn. In the event, that n is not equal to m; a THmn can be useful in fault-tolerant systems. For example, redundancy self-timed circuits consist of m channels and only n from them are workable. However, available references describe elements that have a threshold for transition to the "1" state, the return to zero occurs without taking into account failures. The paper presents investigation of THmn transition functions and circuits in order to clarify the features of their functioning. Authors proposes new element - hysteresis flip-flop 3/4 for the fault tolerant asynchronous and self-timed circuits that have threshold both for the set "1" and returning to zero. The paper provides an assessment of the effectiveness of the proposed device.
机译:G触发器是所谓的异步电路和自定时电路的重要元素。这些触发器是阈值元素,是神经网络的基础。目前,模数转换器也使用阈值元件。输入数n和操作阈值m表征了名为THmn的阈值元素。在这种情况下,n不等于m; THmn在容错系统中很有用。例如,冗余自定时电路由m个通道组成,只有n个通道可用。但是,可用的参考文献描述了具有过渡到“ 1”状态的阈值的元素,在不考虑故障的情况下会返回零。本文介绍了THmn转换函数和电路的研究,以阐明其功能。作者提出了一种新的元件-滞后触发器3/4,用于容错异步和自定时电路,该电路的阈值既针对设置的“ 1”,又返回至零。本文提供了对所提出的设备的有效性的评估。

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