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A Novel Approach to Design a 4-Bit Binary Comparator Circuit with Reversible Logic using CDSM Gate

机译:使用CDSM门设计具有可逆逻辑的4位二进制比较器电路的新颖方法

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摘要

In the recent scenario of microelectronic industry, the reversible logic is considered as the burgeonic technology for digital circuit designing. It deals with the aim to generate digital circuits with zero power loss characteristics. Optical computing, Nanotechnology, Low power CMOS design and Digital Signal Processing (DSP) processors are leading areas of development with the concept of reversible logic. Researchers have already proposed various subsystems of the computer for the creation of low power loss devices with the help of numerous available reversible logic gates. Here in this paper, the authors have proposed a new reversible gate named as CDSM gate with 4×4 size. This CDSM gate is used to design optimized 4-bit binary comparator. The optimization is improved as compared to the existing designs based on some significant performance parameters such as total number of gates, garbage outputs generated, constant inputs and quantum cost. Comparators are widely used in various computing applications such as counters, convertor, Central Processing Unit (CPU) and control circuits etc. The comparator circuits using reversible logic can be visualized as a low power loss subsystem for the development of improved digital systems.
机译:在微电子工业的最新情况下,可逆逻辑被认为是用于数字电路设计的新兴技术。它旨在生成具有零功耗特性的数字电路。光学计算,纳米技术,低功耗CMOS设计和数字信号处理(DSP)处理器是可逆逻辑概念的领先发展领域。研究人员已经提出了计算机的各种子系统,以借助众多可用的可逆逻辑门来创建低功耗设备。在这里,作者提出了一种新的可逆门,称为CDSM门,尺寸为4×4。该CDSM门用于设计优化的4位二进制比较器。与现有设计相比,基于一些重要的性能参数(例如门的总数,产生的垃圾输出,恒定的输入和量子成本),优化得到了改善。比较器广泛用于各种计算应用中,例如计数器,转换器,中央处理器(CPU)和控制电路等。使用可逆逻辑的比较器电路可视化为低功耗子系统,用于开发改进的数字系统。

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