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A novel reversible design for double edge triggered flip-flops and new designs of reversible sequential circuits

机译:用于双边触发触发器的新颖可逆设计和可逆时序电路的新设计

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In recent years, reversible computing and reversible logic has rapidly emerged as one of the promising technologies for designing low-power circuits. It has applications in nanotechnology, quantum computing, quantum dot cellular automata (QCA), DNA computing, optical computing and even in CMOS low-power designs. In this work, we propose basic circuits of reversible sequential logic which are the building blocks of a sequential CPU. First, a novel design of a reversible D-flip flop is proposed which is two times faster than the conventional D flip- flop as well as its reversible counterparts. Further new designs of a sequential shift register, reversible adder and multiplier is proposed. These circuits can be used for constructing a reversible CPU which has sequential elements. Practical implementation of the proposed designs can be achieved with the existing technologies in CMOS and nanotechnology.
机译:近年来,可逆计算和可逆逻辑已迅速成为设计低功耗电路的有前途的技术之一。它在纳米技术,量子计算,量子点细胞自动机(QCA),DNA计算,光学计算甚至CMOS低功耗设计中都有应用。在这项工作中,我们提出了可逆顺序逻辑的基本电路,它们是顺序CPU的基础。首先,提出了一种新颖的可逆D型触发器设计,该设计比常规D型触发器及其可逆同类触发器快两倍。提出了顺序移位寄存器,可逆加法器和乘法器的其他新设计。这些电路可用于构建具有顺序元素的可逆CPU。可以使用CMOS和纳米技术中的现有技术来实现建议设计的实际实现。

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