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Capacitive neural network with neuro-transistors.

Zhongrui WangMingyi RaoJin-Woo HanJiaming ZhangPeng LinYunning LiCan LiWenhao SongShiva AsapuRivu MidyaYe ZhuoHao JiangJung Ho YoonNavnidhi Kumar UpadhyaySaumil JoshiMiao HuJohn Paul StrachanMark BarnellQing WuHuaqiang WuQinru QiuR Stanley WilliamsQiangfei XiaJ Joshua Yang
Published in: Nature communications (2018)
Experimental demonstration of resistive neural networks has been the recent focus of hardware implementation of neuromorphic computing. Capacitive neural networks, which call for novel building blocks, provide an alternative physical embodiment of neural networks featuring a lower static power and a better emulation of neural functionalities. Here, we develop neuro-transistors by integrating dynamic pseudo-memcapacitors as the gates of transistors to produce electronic analogs of the soma and axon of a neuron, with "leaky integrate-and-fire" dynamics augmented by a signal gain on the output. Paired with non-volatile pseudo-memcapacitive synapses, a Hebbian-like learning mechanism is implemented in a capacitive switching network, leading to the observed associative learning. A prototypical fully integrated capacitive neural network is built and used to classify inputs of signals.
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