Area and Thickness Scaling of NbOx-Based Threshold Switches for Oscillation Neurons

  • Kim, Hyun Wook; 
  • Kang, Heebum; 
  • Hong, Eunryeong; 
  • Woo, Jiyong
Citations

WEB OF SCIENCE

8
Citations

SCOPUS

7

초록

The reversible transition between the on and off states of threshold switches under a constant pulse generates voltage oscillation, which can be exploited for compact neuron element in neuromorphic systems. Because the transition voltages play an important role in the oscillation behavior, area and thickness scaling analysis of NbOx-based devices is performed to identify the underlying mechanism. The threshold voltage (V-th) is sensitive to the device area, indicating that the on state of the device is achieved by the local formation of a conductive phase. On the other hand, the area-independent hold voltage (V-hold) becomes smaller due to the higher compliance current and increased temperature ambient, which implies that spontaneous dissolution of the phase is retarded. Through HSPICE simulation, we reveal that the greater difference between V-hold and V-th enables a high degree of freedom of oscillation frequency modulation.

키워드

Threshold switching; NbOx; voltage oscillation; neuromorphic neuron
제목
Area and Thickness Scaling of NbOx-Based Threshold Switches for Oscillation Neurons
저자
Kim, Hyun Wook; Kang, Heebum; Hong, Eunryeong; Woo, Jiyong
DOI
10.1109/JEDS.2022.3169745
발행일
2022
유형
Article
저널명
IEEE Journal of the Electron Devices Society
권
10
페이지
397 ~ 401