Monte-Carlo simulation of a 10T Full adder for propagation delay optimizations

Abstract

Monte Carlo analysis generates random variations in parameter values by drawing them probabilistically from a defined distribution. Monte Carlo simulations were performed for full adders to find out the reliability against random variation of parameters Such as voltage, temperature, power and delay. In this paper Monte Carlo simulations done for two full adders by the channel length variation to find out the propagation delay .The proposed full adder Monte Carlo simulations done for N=10 iterations in Tanner EDA tools at 250nm,180nm technology. The worst case delay for newly proposed full adders is 14.47865ns with standard deviation of 110.2ps for 180nm and 18.533ns with standard deviation of 301.965ps for 250nm technology.

Authors and Affiliations

S. Sasi Kiran, B. Ravichander, J. Ramaiah, G. Vinatha

Keywords

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  • EP ID EP28374
  • DOI -
  • Views 304
  • Downloads 6

How To Cite

S. Sasi Kiran, B. Ravichander, J. Ramaiah, G. Vinatha (2016). Monte-Carlo simulation of a 10T Full adder for propagation delay optimizations. International Journal of Research in Computer and Communication Technology, 5(1), -. https://europub.co.uk/articles/-A-28374