量子点元胞自动机的1位和2位比较器设计与分析

A. Mallaiah, G. N. Swamy, K. Padmapriya
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引用次数: 0

摘要

在计算机计算机的数字运算中,比较器是至关重要的设备单元,由CMOS创新而成。另一个名为量子元胞自动机(QCA)的过程将取代CMOS轮廓,具有有关区域、控制利用率和延迟的影响。主QCA电路设计了逆变器和多数选民入口通道。在本文中,我们利用时钟方法180o失相时钟混合来概述1位比较器和对比度以及当前结果。新提出的电线交叉计划减少了配置所需的电池数量,功率和面积的必要性。此外,我们计划了2位比较器,11个多数投票人,2个面积为0.38 um^2的交叉器,203个细胞。设计的1位比较器对比和过去的结果,细胞,区域,延迟分别显示53.57%,50%,33.32%的改善。
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1-bit and 2-bit Comparator Designs and Analyses for Quantum-Dot Cellular Automata
In computerized PCs number of arithmetic operations, the comparator is the vital equipment unit, composed of CMOS innovation. Another procedure named as Quantum Cellular Automata (QCA) will supplant the CMOS outlines, having leverage concerning zone, control utilization, and latency. The primary QCA circuits planned with the inverter and majority voter entryways. In this paper, we utilize the clocking method 180o out of phase clock hybrid to outline the 1-bit comparator and contrast and the current outcomes. The new proposed wire crossing plan lessens the quantity of cells required to configuration, power and area necessities. Besides, we planned 2-bit comparator with 11 number of majority voters, 2 number of crossovers with 0.38 um^2 area, 203 number of cells. The designed 1-bit comparator contrast and the past outcomes where cells, region, defer demonstrates 53.57%, 50%, 33.32% improvement respectively.
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