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A study on a quantum-dot cellular automata based asynchronous circuit design.

机译:基于量子点元胞自动机的异步电路设计研究。

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摘要

Scope and method of study. Quantum-Dot Cellular Automata (QCA) is one of the most emerging technologies. It has been introduced as a possible alternative to CMOS (Complementary Metal Oxide Semiconductor). The main objective of this thesis work is to apply CMOS based asynchronous methodology to QCA paradigm. The concept of QCA clocking is quite different from that of CMOS clocking. In the QCA, the clock is used as a control signal in stead of a data signal. Inherited characteristics of QCA, such as the way to hold state, the way to synchronize data flows, and the way to power QCA cells make the design of QCA circuits quite different from VLSI. This also introduces a variety of new challenges to the design and the greatest challenges are due to the fact that the overall timing of a QCA circuit is mainly dependent on its layout. In order to eliminates "Layout=Timing" constraint from QCA circuits, delay-insensitive data encoding scheme such as NCL(Null Convention Logic) are applied to the QCA paradigm. Proposed QCA-based NCL full adder illustrates how NCL prevents timing constraint from QCA circuits.; Findings and conclusions. Basically, "Layout=Timing" constraint forces synchronous QCA circuits to waste many buffers for synchronization purpose. Applying NCL to QCA eliminates the "Layout=Timing" problem as well as the delay buffers from QCA circuits. The NCL provides numerous advantages such as easier floorplanning, increased circuit density, decreased QCA cell count, and reduced circuit complexity. Especially, NCL is more suitable for a large scale circuit design.
机译:研究范围和方法。量子点元胞自动机(QCA)是最新兴的技术之一。它已被引入作为CMOS(互补金属氧化物半导体)的可能替代品。本文工作的主要目的是将基于CMOS的异步方法应用于QCA范例。 QCA时钟的概念与CMOS时钟的概念完全不同。在QCA中,时钟代替数据信号用作控制信号。 QCA的继承特性,例如保持状态的方式,同步数据流的方式以及为QCA单元供电的方式,使得QCA电路的设计与VLSI完全不同。这也给设计带来了许多新的挑战,最大的挑战是由于QCA电路的总体时序主要取决于其布局这一事实。为了从QCA电路中消除“布局=定时”约束,将对延迟不敏感的数据编码方案(如NCL(空约定逻辑))应用于QCA范式。提议的基于QCA的NCL全加器说明了NCL如何防止来自QCA电路的时序约束。结论和结论。基本上,“布局=时序”约束迫使同步QCA电路浪费许多缓冲区用于同步。将NCL应用于QCA消除了“布局=定时”问题以及QCA电路的延迟缓冲器。 NCL具有许多优势,例如更容易的布局规划,增加的电路密度,减少的QCA单元数以及降低的电路复杂性。尤其是,NCL更适合大规模电路设计。

著录项

  • 作者

    Choi, Myungsu.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Computer Science.
  • 学位 M.S.
  • 年度 2005
  • 页码 49 p.
  • 总页数 49
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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