Energy Dissipation and Cell Displacement Analysis of QCA Multiplexer for Nanocomputation

Angshuman Khan, R. Arya
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引用次数: 9

Abstract

The multiplexer is an elementary component of digital electronics. In the domain of communication engineering, a large number of data may come from multiple sources to be passed only through a single output port, hence multiplexer is a most important and fundamental device in almost all technical fields. In the area of nano-communication or nano-electronics, Quantum-dot Cellular Automata (QCA) is eye-catching due to its very little or negligible energy dissipation, promptness, and small facet. The energy dissipation analysis of a QCA multiplexer has been discussed in this article. An addition of this, the effect of cell displacement on QCA multiplexer has been presented in this article as during the layout construction there is a chance of misplacing or displacing of QCA cells which affect the performance of the circuits adversely. The energy dissipation analysis results that the total energy dissipation is 1.06e-002 eV and average energy dissipation per cycle is 9.67e-004 eV of QCA multiplexer. According to cell displacement analysis if there is a decrease in displacement value, then the magnitude of both positive and negative polarization increases.
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纳米计算QCA复用器的能量耗散和单元位移分析
多路复用器是数字电子学的基本组成部分。在通信工程领域,大量的数据可能来自多个来源,而仅通过一个输出端口就可以传递,因此多路复用器是几乎所有技术领域中最重要和最基础的设备。在纳米通信或纳米电子学领域,量子点元胞自动机(Quantum-dot Cellular Automata, QCA)以其极小或可忽略不计的能量耗散、快速性和小尺寸而引人注目。本文讨论了QCA多路复用器的能量损耗分析。除此之外,本文还介绍了单元位移对QCA多路复用器的影响,因为在布局构建过程中,QCA单元有可能错位或移位,这会对电路的性能产生不利影响。分析结果表明,QCA复用器的总能耗为1.06e-002 eV,每周期平均能耗为9.67e-004 eV。根据细胞位移分析,如果位移值减小,则正负极化的大小都增大。
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