Effective binary to BCD converter using QuantumDot Cellular Automata

A. Sasikala, S. Maragatharaj, S. Jayadevi
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引用次数: 4

Abstract

Quantum Dot Cellular Automata (QCA) is an emerging nanotechnology in the field of Quantum electronics for the low power consumption and high speed of operational phenomenon. Such type of circuit can be used in many digital applications where CMOS circuits cannot be used due to high leakage and low switching speed. The code converters are the basic units for conversion of data to perform arithmetic operations. A new effective binary to BCD converter design using QuantumDot Cellular Automata is presented in this paper. Compared to the available code converters in VLSI technology, this method of using Quantum dots reduces area and increases switching speed. 3-input Majority gate is the basic and universal gate in QCA design. In accordance with the code converter design using 3-input majority gate logic, a 5-input majority gate logic structure is also used here to design the binary to gray code converter. This replacement improves the speed of the system by reducing number of clock cycles required to produce the output.
使用量子点元胞自动机的有效二进制到BCD转换器
量子点元胞自动机(Quantum Dot Cellular Automata, QCA)是量子电子学领域新兴的纳米技术,具有低功耗和高运算速度的特点。这种类型的电路可以用于许多数字应用,而CMOS电路由于高泄漏和低开关速度而不能使用。代码转换器是进行数据转换以执行算术运算的基本单元。提出了一种利用量子点元胞自动机设计的有效的二进制- BCD转换器。与VLSI技术中可用的代码转换器相比,这种使用量子点的方法减少了面积并提高了开关速度。三输入多数门是QCA设计中的基本门和通用门。根据采用3输入多数门逻辑的码变换器设计,这里也采用5输入多数门逻辑结构来设计二进灰码变换器。这种替换通过减少产生输出所需的时钟周期数来提高系统的速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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