Nikolaos Papandreou, Thomas Parnell, et al.
GLSVLSI 2014
Phase-change materials and devices have received much attention as a potential route to the realization of various types of unconventional computing paradigms. In this letter, we present non-von Neumann arithmetic processing that exploits the accumulative property of phase-change memory (PCM) cells. Using PCM cells with integrated FET access devices, we perform a detailed study of accumulation-based computation. We also demonstrate efficient factorization using PCM cells, a technique that could pave the way for massively parallelized computations.
Nikolaos Papandreou, Thomas Parnell, et al.
GLSVLSI 2014
Thomas Parnell, Nikolaos Papandreou, et al.
NVMTS 2015
Tobias Bachmann, Wabe W. Koelmans, et al.
Nanotechnology
Daniel Grogg, Christopher L. Ayala, et al.
MEMS 2014