3D nanosystems enable embedded abundant-data computing

Author:

Hwang William1,Aly Mohamed M. Sabry1,Malviya Yash H.1,Gao Mingyu1,Wu Tony F.1,Kozyrakis Christos1,Wong H.-S. Philip1,Mitra Subhasish1

Affiliation:

1. Stanford University

Funder

National Science Foundation

Semiconductor Research Corporation

Defense Advanced Research Projects Agency

Stanford SystemX Alliance

Publisher

ACM

Reference24 articles.

1. H.Y. Chen etal "HfOx based vertical resistive random-access memory for cost-effective 3D cross-point architecture without cell selector " IEDM 2012. 10.1109/IEDM.2012.6479083 H.Y. Chen et al. "HfOx based vertical resistive random-access memory for cost-effective 3D cross-point architecture without cell selector " IEDM 2012. 10.1109/IEDM.2012.6479083

2. D.J. Frank and L. Chang "Technology Optimization for High Energy-Efficiency Computation " IEDM Short Course 2012. D.J. Frank and L. Chang "Technology Optimization for High Energy-Efficiency Computation " IEDM Short Course 2012.

3. G. Hills "Variation-Aware Nanosystem Design Kit" https://nanohub.org/resources/22582 G. Hills "Variation-Aware Nanosystem Design Kit" https://nanohub.org/resources/22582

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