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Conservative QCA Gate (CQCA) for Designing Concurrently Testable Molecular QCA Circuits

机译:保守QCA门(CQCA)用于设计同伴可测试的分子QCA电路

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Nanocircuits based on molecular QCA are prone to high error rates. In this paper, we present a novel conservative logic gate termed 'CQCA' (conservative QCA) to design concurrently testable circuits for molecular QCA.  In conservative logic gates, there would be an equal number of 1s in the output as there would be on the input.  Thus, conservative logic gates are parity preserving, that is, the parity of the input vectors is equal to the output vectors.  CQCA is proposed in this work as molecular QCA is based on majority voting. We analyzed the fault patterns in existing popular conservative Fredkin gate and proposed CQCA gate due to single missing/additional cell defect in molecular QCA. We found that if there is a fault in molecular QCA implementation of Fredkin and CQCA gates, there is a parity mismatch between the input and the output; otherwise the input parity is same as output parity. Thus, any permanent and transient fault in molecular QCA can be concurrently detected if implemented with conservative Fredkin and CQCA gates. We applied novel method of using majority and minority voting to detect the fault in conservative gates. We propose to use CQCA gate compared to existing popular Fredkin gate as CQCA excels Fredkin gate in parameters of complexity(number of majority voter), speed and area. The results are well supported by synthesizing standard benchmark combinational functions. The QCA design of 2 pair 2 rail checker is also presented for the first time ever in literature.  The design of QCA layouts and the verification of the designs are performed using the QCADesigner and HDLQ tools.
机译:基于分子QCA的纳米电路容易出现高误差率。在本文中,我们提出了一种新的保守逻辑门被称为“CQCA”(保守QCA)来设计用于分子QCA的并发可测试的电路。在保守逻辑门中,输出中存在相同数量的1S,因为输入有关。因此,保守逻辑门是奇偶校验,即,输入矢量的奇偶校验等于输出矢量。 CQCA在这项工作中提出,因为分子QCA基于多数投票。我们分析了现有流行保守桥盖门中的故障模式,并且由于分子QCA中的单次缺失/额外的细胞缺陷而提出的CQCA门。我们发现,如果分子QCA的错失于Fredkin和CQCA盖茨,则输入和输出之间存在奇偶频道不匹配;否则,输入奇偶校验与输出奇偶校验相同。因此,如果用保守的FREDKIN和CQCA栅极实施,可以同时检测分子QCA中的任何永久性和瞬态故障。我们应用了多数和少数群体投票的新方法,以检测保守门的故障。我们建议使用CQCA门与现有流行的Fredkin门相比,因为CQCA Excels在复杂性参数(多数选民数量),速度和区域的参数中。通过综合标准基准组合函数来支持结果。在文献中的第一次,也介绍了2对2轨检查器的QCA设计。使用QCadesigner和HDLQ工具执行QCA布局的设计和设计的验证。

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