Wang Changhong, He Wei, Tong Yi, Zhao Rong
Engineering Product Development Singapore University of Technology and Design 8 Somapah Road, Singapore 487372.
Sci Rep. 2016 Mar 14;6:22970. doi: 10.1038/srep22970.
Low-power and high-density electronic synapse is an important building block of brain-inspired systems. The recent advancement in memristor has provided an opportunity to advance electronic synapse design. However, a guideline on designing and manipulating the memristor's analog behaviors is still lacking. In this work, we reveal that compliance current (Icomp) of electroforming process played an important role in realizing a stable analog behavior, which is attributed to the generation of conical-type conductive filament. A proper Icomp could result in a large conductance window, good stability, and low voltage analog switching. We further reveal that different pulse conditions can lead to three analog behaviors, where the conductance changes in monotonic increase, plateau after initial jump, and impulse-like shape, respectively. These behaviors could benefit the design of electronic synapse with enriched learning capabilities. This work will provide a useful guideline for designing and manipulating memristor as electronic synapses for brain-inspired systems.
低功耗高密度电子突触是受脑启发系统的重要组成部分。忆阻器的最新进展为推进电子突触设计提供了契机。然而,目前仍缺乏关于设计和操纵忆阻器模拟行为的指导方针。在这项工作中,我们揭示了电形成过程中的合规电流(Icomp)在实现稳定的模拟行为中起着重要作用,这归因于锥形导电细丝的产生。适当的Icomp可导致大的电导窗口、良好的稳定性和低电压模拟开关。我们进一步揭示了不同的脉冲条件可导致三种模拟行为,其电导变化分别呈单调增加、初始跳跃后趋于平稳和脉冲状。这些行为将有利于设计具有丰富学习能力的电子突触。这项工作将为设计和操纵忆阻器作为受脑启发系统的电子突触提供有用的指导方针。