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Design of novel inverter and buffer in Quantum-dot Cellular Automata (QCA)

机译:量子点元胞自动机(QCA)中新型反相器和缓冲器的设计

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Quantum-dot Cellular Automata (QCA) is an emerging nanotechnology to reduce size as well as power consumption of switching devices for Very Large Integrated Circuits (VLSI). Moreover QCA circuits offer an advantage of very high device density, high speed, high fan out, and lower circuit complexity. The QCA based circuits have been used for implementations of basic logic gates like AND, OR, NOT as well as XOR/XNOR gates. This paper aims at the design of a programmable inverter/buffer using proposed XOR gate. The proposed circuit can be used as an inverter (NOT gate) or a buffer (pass gate). The programmable inverter/buffer has been designed and simulated based on intensive discrete arithmetic analysis. In addition, 2-bit and 3-bit programmable inverter/buffer has also been designed and implemented in this paper. The proposed design enjoys the features of small area, superior performance factors in respect of speed and circuit stability. The simulation results have been verified using QCADesigner tool version 2.0.3.
机译:量子点元胞自动机(QCA)是一种新兴的纳米技术,旨在减小超大型集成电路(VLSI)的开关器件的尺寸和功耗。此外,QCA电路具有以下优点:非常高的器件密度,高速,高扇出和较低的电路复杂性。基于QCA的电路已用于实现基本逻辑门(例如AND,OR,NOT)以及XOR / XNOR门。本文旨在使用提出的异或门设计可编程反相器/缓冲器。所提出的电路可以用作反相器(​​非门)或缓冲器(通过门)。可编程逆变器/缓冲器已基于密集的离散算术分析进行了设计和仿真。此外,本文还设计并实现了2位和3位可编程反相器/缓冲器。所提出的设计具有面积小,在速度和电路稳定性方面的优越性能的特征。使用QCADesigner工具版本2.0.3验证了仿真结果。

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