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Bio-Inspired Neurons Based on Novel Leaky-FeFET with Ultra-Low Hardware Cost and Advanced Functionality for All-Ferroelectric Neural Network

机译:生物启发神经元基于新型泄漏FEFET,具有超低的硬件成本和全铁电神经网络的先进功能

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For the brain-inspired neuromorphic computing, various emerging memory devices, including FeFET, have been applied to develop the artificial synapses, while the artificial neurons are still mostly CMOS-implemented and suffer from high-hardware-cost issue, especially when expanding advanced functions. In this work, a novel leaky-FeFET (L-FeFET) based on partially crystallized Hf0.5Zr0.5O2 layer is designed to mimic biological neurons. For the first time, we propose and experimentally demonstrate a capacitor-less L-FeFET neuron for basic leaky-integrate-and-fire function with ultra-low hardware cost of only one transistor and one resistor. Furthermore, a new hybrid L-FeFET-CMOS neuron is implemented to expand advanced spike-frequency adaption with almost half of hardware cost compared with CMOS neuron. This work provides a highly-integrated and inherently-low-energy implementation for neuron and the possibility for all-ferroelectric neural networks.
机译:对于脑激发的神经形态计算,已经应用了各种新出现的记忆装置,包括FEFET,用于开发人工突触,而人工神经元仍然主要是CMOS实现的,并且遭受高硬件成本问题,特别是在扩展高级功能时。在这项工作中,基于部分结晶的HF的新型泄漏 - FEFET(L-FEFET) 0.5 Zr. 0.5 O. 2 层设计为模拟生物神经元。我们第一次提出并通过实验展示了一种用于基本漏型 - 整合的电容器的电容器L-FEFET神经元,以超低的硬件成本仅为一个晶体管和一个电阻。此外,实施了一种新的混合L-FEFET-CMOS神经元,以扩展与CMOS神经元相比几乎一半的硬件成本的先进峰值频率适应。这项工作为神经元提供了高度集成和固有的低能量实现,以及全铁电神经网络的可能性。

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