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Magnetic Domain Wall Based Synaptic and Activation Function Generator for Neuromorphic Accelerators

机译:基于磁畴壁的神经型促进剂的突触和激活功能发生器

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摘要

Magnetic domain walls are information tokens in both logic and memory devices and hold particular interest in applications such as neuromorphic accelerators that combine logic in memory. Here, we show that devices based on the electrical manipulation of magnetic domain walls are capable of implementing linear, as well as programmable nonlinear, functions. Unlike other approaches, domain-wall-based devices are ideal for application to both synaptic weight generators and thresholding in deep neural networks. Prototype micrometer-size devices operate with 8 ns current pulses and the energy consumption required for weight modulation is <= 16 pJ. Both speed and energy consumption compare favorably to other synaptic nonvolatile devices, with the expected energy dissipation for scaled 20 nm devices close to that of biological neurons.
机译:磁畴壁是逻辑和存储器设备中的信息令牌,并且对诸如结合存储器中逻辑的神经形态加速器等应用特别感兴趣。 这里,我们示出了基于磁畴壁的电动操纵的器件能够实现线性,以及可编程非线性功能。 与其他方法不同,基于域壁的设备是应用于突触权重发生器的理想选择和深神经网络中的阈值处理。 原型千分尺尺寸装置用8个NS电流脉冲操作,重量调制所需的能量消耗<= 16 pj。 速度和能量消耗既有利地比较其他突触非易失性器件,预期的电能耗散为缩放20nm器件,接近生物神经元。

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