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Characterization, test, and logic synthesis of and-or-inverter (AOI) gate design for QCA implementation

机译:用于QCA实现的和/或反相器(AOI)门设计的表征,测试和逻辑综合

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Quantum-dot cellular automata (QCA) offers a new computing paradigm for nanotechnology. The basic logic elements of this technology are the majority voter (MV) and the inverter (INV). However, an experimental evaluation has shown that MV is not efficiently used during technology mapping by existing logic-synthesis tools. In this paper, we propose the design and characterization of a novel complex, yet very small, QCA logic gate: the and-or-inverter (AOI) gate. The paper presents a detailed simulation-based analysis of the AOI gate, as well as the study of QCA defects and their effects at the logic level. The AOI implements a universal logic gate; all elementary gates can be implemented by the AOI gate. Moreover, many two-level logic functions can be directly implemented by a single AOI gate. The AOI gate performs quite favorably, in terms of digital logic synthesis. Unlike MV, this gate is efficiently used by existing logic-synthesis tools. Our experimental data on synthesis of complex designs show that using the AOI gate instead of MV, results in up to 23.9% logic area savings, while improving the overall delay.
机译:量子点自动机(QCA)为纳米技术提供了一种新的计算范例。该技术的基本逻辑元素是多数表决器(MV)和逆变器(INV)。但是,实验评估表明,现有的逻辑综合工具在技术映射过程中并未有效使用MV。在本文中,我们提出了一种新颖而又非常小的QCA逻辑门:“与或反相器(AOI)”门的设计和特性。本文介绍了基于仿真的AOI门的详细分析,以及QCA缺陷及其在逻辑级别上的影响的研究。 AOI实现了通用逻辑门。所有基本门都可以通过AOI门实现。此外,可以通过单个AOI门直接实现许多两级逻辑功能。就数字逻辑综合而言,AOI门的性能相当出色。与MV不同,此门可被现有的逻辑综合工具有效地使用。我们关于复杂设计综合的实验数据表明,使用AOI门代替MV,可节省多达23.9%的逻辑面积,同时改善了总体延迟。

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