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Design Multipurpose Circuits with Minimum Garbage Outputs Using CMVMIN Gate

机译:使用CMVMIN门设计具有最小垃圾输出的多用途电路

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Quantum-dot cellular automata (QCA) suggest an emerging computing paradigm for nanotechnology. The QCA offers novel approach in electronics for information processing and communication. QCA have recently become the focus of interest in the field of low power nanocomputing and nanotechnology. The fundamental logic elements of this technology are the majority voter (MV) and the inverter (INV). This paper presents a novel design with less garbage output and minimum quantum cost in nanotechnology. In the paper we show how to create multipurpose reversible gates. By development of suitable gates in logic circuits as an example, we can combine MFA and HS in one design using CMVMIN gate. We offer CMVMIN gate implementations to be used in multipurpose circuit. We can produce concurrent half adder/subtractor and one bit comparator in one design using reversible logic gates and CMVMIN gates. Also, a2×4decoder from recent architecture has been shown independently. We investigate the result of the proposed design using truth table. A significant improvement in quality of the calculated parameters and variety of required outputs has been achieved.
机译:量子点细胞自动机(QCA)提出了一种新兴的纳米技术计算范式。 QCA为信息处理和通信提供了电子学方面的新颖方法。 QCA最近已成为低功耗纳米计算和纳米技术领域的关注焦点。该技术的基本逻辑元素是多数表决器(MV)和反相器(INV)。本文提出了一种新颖的设计,在纳米技术中具有更少的垃圾产生量和最小的量子成本。在本文中,我们展示了如何创建多功能可逆门。以在逻辑电路中开发合适的门为例,我们可以使用CMVMIN门将MFA和HS组合到一种设计中。我们提供用于多用途电路的CMVMIN门实现。我们可以使用可逆逻辑门和CMVMIN门在一种设计中产生并发的半加法器/减法器和一位比较器。另外,已经独立地示出了来自最新架构的2×4解码器。我们使用真值表调查建议设计的结果。计算参数的质量和所需输出的各种类型已实现了显着改善。

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