Integrated circuit neural networks using ferroelectric analog memory

L. Clark, R. Grondin, S. Dey
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引用次数: 1

Abstract

The application of ferroelectric thin-film capacitors as synapses in integrated circuit implementation of artificial neural networks is described. A continuous-valued synapse where the synaptic efficacy is controlled by the polarization of a ferroelectric capacitor element is presented. The ferroelectric analog synapse utilizes nondestructive readout. A ferroelectric capacitor circuit model has been added to the SPICE circuit simulation program and is complete with respect to current vs. time, polarization, and current vs. voltage responses. The simulated response in characterization circuits is shown to closely model that of lead zirconate titanate (PZT) thin-film capacitors. Simulation and experimental results show the proposed synapse circuit to possess a number of favorable characteristics, including very infrequent refresh and fine programming granularity.<>
利用铁电模拟存储器的集成电路神经网络
介绍了铁电薄膜电容器作为突触在人工神经网络集成电路实现中的应用。提出了一种连续值突触,其中突触效能由铁电电容器元件的极化控制。铁电模拟突触利用非破坏性读出。一个铁电电容电路模型已经添加到SPICE电路仿真程序中,并且在电流与时间、极化和电流与电压响应方面是完整的。表征电路中的模拟响应与锆钛酸铅(PZT)薄膜电容器的响应非常接近。仿真和实验结果表明,所提出的突触电路具有一些良好的特性,包括非常不频繁的刷新和良好的编程粒度。
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