English

Temperature-Insensitive Analog Vector-by-Matrix Multiplier Based on 55 nm NOR Flash Memory Cells

Emerging Technologies 2016-11-12 v1

Abstract

We have fabricated and successfully tested an analog vector-by-matrix multiplier, based on redesigned 10x12 arrays of 55 nm commercial NOR flash memory cells. The modified arrays enable high-precision individual analog tuning of each cell, with sub-1% accuracy, while keeping the highly optimized cells, with their long-term state retention, intact. The array has an area of 0.33 um^2 per cell, and is at least one order of magnitude more dense than the reported prior implementations of nonvolatile analog memories. The demonstrated vector-by-vector multiplier, using gate coupling to additional periphery cells, has ~2% precision, limited by the aggregate effect of cell noise, retention, mismatch, process variations, tuning precision, and capacitive crosstalk. A differential version of the multiplier has allowed us to demonstrate sub-3% temperature drift of the output signal in the range between 25C and 85C.

Cite

@article{arxiv.1611.03379,
  title  = {Temperature-Insensitive Analog Vector-by-Matrix Multiplier Based on 55 nm NOR Flash Memory Cells},
  author = {X. Guo and F. Merrikh Bayat and M. Prezioso and Y. Chen and B. Nguyen and N. Do and D. B. Strukov},
  journal= {arXiv preprint arXiv:1611.03379},
  year   = {2016}
}

Comments

4 pages, 11 pages

R2 v1 2026-06-22T16:48:27.114Z