A compact spike-timing-dependent-plasticity circuit for floating gate weight implementation. Smith, A. W., McDaid, L. J., & Hall, S. Neurocomputing, 124:210-217, 2014.
A compact spike-timing-dependent-plasticity circuit for floating gate weight implementation. [link]Paper  A compact spike-timing-dependent-plasticity circuit for floating gate weight implementation. [link]Link  bibtex   
@article{ journals/ijon/SmithMH14,
  added-at = {2013-10-28T00:00:00.000+0100},
  author = {Smith, Andy W. and McDaid, L. J. and Hall, Steve},
  biburl = {http://www.bibsonomy.org/bibtex/2882399c9b88788a290ff97c0b817ba27/dblp},
  ee = {http://dx.doi.org/10.1016/j.neucom.2013.07.007},
  interhash = {6f5618a8210c37201a6e55e7da866000},
  intrahash = {882399c9b88788a290ff97c0b817ba27},
  journal = {Neurocomputing},
  keywords = {dblp},
  pages = {210-217},
  title = {A compact spike-timing-dependent-plasticity circuit for floating gate weight implementation.},
  url = {http://dblp.uni-trier.de/db/journals/ijon/ijon124.html#SmithMH14},
  volume = {124},
  year = {2014}
}

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