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Simulation-based Design of Modular QCA Circuits

机译:基于模拟的模块化QCA电路设计

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The design of Quantum-dot Cellular Automata (QCA) circuits and systems is still in an infancy stage; a modular technique which relies on building blocks referred to as tiles, is proposed in this paper. This approach consists of first analyzing the logic capabilities of the basic tiles (inclusive of simulation) followed by logic mapping and connecting the tiles to form the desired circuit. The 3 x 3 QCA grid is presented as an example of basic block. Five types of tiles can be constructed using the 3 x 3 grid. A logic characterization of these ties is presented by using a coherence vector simulation engine. It is shown that the 3 x 3 grid is not only area efficient, but it also offers versatile logic operation. Various QCA circuits designed using the tile-based method are presented and compared with conventional gate-based design as well as the SQUARES methodology [12].
机译:Quantum-Dot蜂窝自动机(QCA)电路和系统的设计仍处于初期阶段;本文提出了一种依赖于称为瓦片的构建块的模块化技术。该方法包括首先分析基本瓦片的逻辑能力(包括模拟),然后是逻辑映射和连接图块以形成所需电路。 3×3 QCA网格作为基本块的示例。可以使用3 x 3网格构建五种类型的瓦片。通过使用相干向量仿真发动机提出了这些关系的逻辑表征。结果表明,3 x 3网格不仅有效地区,而且还提供多功能逻辑操作。使用基于图块的方法设计的各种QCA电路,并与传统的基于栅极的设计以及方块方法进行比较[12]。

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