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Novel Efficient Circuit Design for Multilayer QCA RCA

机译:多层QCA RCA的新型高效电路设计

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摘要

The novel emerging technology, QCA technology, is a candidate for replacing CMOS technology. Full Adder (FA) circuits are also widely used circuits in arithmetic circuits design. In this paper, two new multilayer QCA architectures are presented: one-bit FA and 4-bit Ripple Carry Adder (RCA). The designed one-bit multilayer FA architecture is based on a new XOR gate architecture. The designed 4-bit multilayer QCA RCA is also developed based on the designed one-bit multilayer QCA FA. The functionality of the designed architectures are verified using QCADesigner tool. The results indicate that the designed architecture for 4-bit multilayer QCA RCA requires 5 clock phases, 125 QCA cells, and 0.17m(2) area. The comparison results confirm that the designed architectures provide improvements compared with other adder architectures in terms of cost, cell count, and area.
机译:新兴技术,QCA技术,是替代CMOS技术的候选者。 完整的加法器(FA)电路也广泛使用算术电路设计中的电路。 在本文中,提出了两个新的多层QCA架构:单位FA和4位纹波携带加法器(RCA)。 设计的一位多层FA架构基于新的XOR门架构。 设计的4位多层QCA RCA也基于设计的一位多层QCA FA开发。 使用QCadeIgner工具验证设计架构的功能。 结果表明,4位多层QCA RCA的设计架构需要5个时钟阶段,125个QCA细胞和0.17米(2)区域。 比较结果证实,与成本,细胞计数和区域的其他加法器架构相比,设计的架构提供了改进。

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