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Analog Circuit Implementation of a Cortical Neuron

机译:模拟电路实现皮质神经元

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摘要

Cortical neurons play a predominant role in major functions like motor and sensory actions, cognition, perception, etc. The analysis, modeling of cortical neurons facilitates the implementation of faster and smarter neuromorphic architectures. This paper presents the implementation of an analog CMOS circuit that resembles the functionality of cortical neurons. This silicon neuron circuit comprises only 14 MOSFETS and is capable of providing various kinds of spiking patterns such as regular, fast-spiking, and bursting, just by varying bias voltages. This property enables the fabrication of many neurons onto a single chip and exhibits flexibility of emulating different neuronal behaviors with a little modification in bias voltages. This makes a circuit that can be used as a basic cell in the implementation of spiking neural networks, brain-inspired circuits, and cognitive robots, etc. The circuit is analyzed for its performance and the simulations are carried out using cadence virtuoso at 180nm technology node.
机译:皮质神经元在主要功能中起主要作用,如电机和感官动作,认知,感知等。分析,皮质神经元的建模促进了更快和更智能的神经形式架构的实施。本文介绍了类似于皮质神经元功能的模拟CMOS电路的实现。该硅神经元电路仅包括14个MOSFET,并且能够通过不同的偏置电压提供诸如规则,快速尖峰和破裂的各种尖峰图案。该属性使许多神经元制造在单个芯片上,并具有在偏置电压下稍微改变模拟不同神经元行为的灵活性。这使得可以用作实施尖刺神经网络,脑启发电路和认知机器人等基本单元的电路。该电路分析其性能,并在180nm技术使用Cadence Virtuoso进行模拟节点。

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