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Stochastic Computing Based on Volatile GeSe Ovonic Threshold Switching Selectors

  • Zheng Chai
  • , Pedro Freitas
  • , Wei Dong Zhang
  • , Firas Hatem
  • , Robin Degraeve
  • , Sergiu Clima
  • , Jian Fu Zhang
  • , John Marsland
  • , Andrea Fantini
  • , Daniele Garbin
  • , Ludovic Goux
  • , Gouri Sankar Kar
  • Liverpool John Moores University
  • Interuniversitair Micro-Elektronica Centrum

科研成果: 期刊稿件文章同行评审

7 引用 (Scopus)

摘要

Stochastic computing (SC) is a special type of digital compute strategy where values are represented by the probability of 1 and 0 in stochastic bit streams, which leads to superior hardware simplicity and error-Tolerance. In this letter, we propose and demonstrate SC with GeSe-based Ovonic Threshold Switching (OTS) selector devices by exploiting their probabilistic switching behavior. The stochastic bit streams generated by OTS are demonstrated with good computation accuracy in both multiplication operation and image processing circuit. Moreover, the bit distribution has been statistically studied and linked to the collective defect de/localization behavior in the chalcogenide material. Weibull distribution of the delay time supports the origin of such probabilistic switching, facilitates further optimization of the operation condition, and lays the foundation for device modelling and circuit design. Considering its other advantages such as simple structure, fast speed, and volatile nature, OTS is a promising material for implementing SC in a wide range of novel applications, such as image processors, neural networks, control systems and reliability analysis.

源语言英语
文章编号9169720
页(从-至)1496-1499
页数4
期刊IEEE Electron Device Letters
41
10
DOI
出版状态已出版 - 10月 2020
已对外发布

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