Performance Enhancement of Reversible Binary to Gray Code Converter Circuit using Feynman gate

Kamal Prakash Pandey · International Journal for Research in Applied Science and Engineering Technology · 2018

In the field of engineering design and development, nanometer technology implementation minimizes the power consumption of logic circuits and makes it energy efficient. Reversible logic circuits design is one of the promising trending engineering developments that have importance due to less dissipation of heat and low power consumption. In digital systems, code converter circuits is used for enhancing security of data, reducing the complexity of arithmetic operations and thereby reducing the hardware required, dropping the level of switching activity leading to more speed of operation and power saving etc. Also, for the efficient and faster implementation we need to optimize the quantum cost and garbage outputs for final implementation. Normally delay has been very least concerned in the optimization in the design implementation. In this proposed work, we have presented the novel design of the reversible Binary to gray converter that is based on the optimization based on the delay, quantum cost and garbage outputs. The synthesis is done on Xilinx 14.1 tool and X power analyzer has been used for the validation of the power consumption.

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