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A New Clocking Scheme for Quantum-dot Cellular Automata Based Designs with Single or Regular Cells

机译:一种新的单点或常规细胞的Quantum-Dot蜂窝自动机设计的新时钟方案

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Quantum-Dot Cellular Automata (QCA) is one of the newest technologies that play very important role to design Nano scale electronic devices that are likely to meet the requirements of the modern digital systems, as compared to micro fabricated devices in CMOS technology. In this paper, we proposed a new clocking scheme for QCA circuits, in which single phase cells (90? or regular cells are used. We design combinational circuits with single phase cells. According to the previous clocking schemes there are no such schemes exist where only single phase cells are used for crossing as well as data propagation. In previous coplanar crossover schemes both cells (90?and 45? are used for circuit design. The main limitation of these schemes is that there is a possibility of cross coupling between the two wires (one of 90?and another is 45? during fabrication, when placement of any cells are misaligned. In the new scheme only single phase cells are used, so there is no misalignment of cells. Simulation results indicate that our designs with new clocking scheme achieve same results in comparison to the best previous relevant works. Simulation and verification are carried out by QCADesigner.
机译:量子点的细胞自动机(QCA)是扮演非常重要的角色设计有可能满足现代数字系统的要求相比,在CMOS技术制造的微型器件纳米尺度的电子设备的最新技术之一。在本文中,我们提出了QCA电路新的时钟方案,其中单相电池(90?或常规细胞使用。我们设计的组合电路单相细胞。根据此前的时钟方案有没有这样的计划存在哪里只有单个相的细胞用于交叉以及数据传播。在以前的共面交叉方案两个小区(90?和45?用于电路设计。这些方案的主要限制是,存在之间的交叉耦合的可能性两根导线(90一个?,另一种是45?制造,当任一单元的放置没有对准期间,在新的方案中,仅使用单个相位单元,所以没有单元的错位。仿真结果表明,我们的新设计时钟方案达到相同的结果相比,最先前的相关工作。仿真和验证是由QCADesigner进行。

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