Application of Reversible Logic in Implement of High Speed Low Power Combinational and Sequential Circuits

PATTETI MAMATHA, .P ANIL KUMAR, Rupa kumar Dhanavath

Abstract


 - Reversible logic has conferred itself as a distinguished technology that plays an essential role in Quantum Computing. Quantum computing devices in theory operate at immoderate high speed and consume infinitesimally less power. analysis tired this paper aims to utilize the thought of reversible logic to interrupt the traditional speed-power trade-off, thereby obtaining a step nearer to grasp Quantum computing devices. To demonstrate this analysis, numerous combinable and serial circuits are enforced like a 4-bit Ripple-carry Adder, (8- bit X 8-bit) Wallace Tree number, and also the management Unit of associate degree 8-bit GCD processor victimization Reversible gates. the ability and speed parameters for the circuits are indicated, and compared with their typical non-reversible counterparts. The comparative applied mathematics study proves that circuits using Reversible logic so are quicker and power economical. The styles conferred during this paper were simulated victimization Xilinx fourteen.4 software.

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