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Programmable analog synapse and neural networks incorporating same

机译:可编程模拟突触和包含其的神经网络

摘要

An analog synapse circuit for an artificial neural network requiring less circuitry and interconnections than prior synapses, while affording better weight programming means uses two complementary floating- gate MOSFETs with tunneling injection in an inverter configuration, with each MOSFET storing a weight value. This weight value is set by storing a charge injected by Fowler-Nordheim tunneling, or other tunneling means, into the floating-gate, which shifts the threshold voltage of the device. A programming line applies a current pulse to the MOSFET floating gate to write or erase this stored charge, thereby adjusting the weight of the MOSFET. The two MOSFETs are connected with the gate electrodes connected together and the drain electrodes connected together to provide a common gate and common drain between the two MOSFETs. An input line is connected to the common gate, and an output line is connected to the common drain. The source electrodes of each MOSFET are connected to reference voltages. The synapse circuit may be used in either a feedforword or feedback network, and may be expanded from two to four quadrant operation. The synapse provides a single output current line which represents a function of the input voltage and the stored weights. A plurality of such synapses may be configured in a network, wherein the output lines of each synapse are connected at a current summing node at the input of a neuron. An active load in the input of the neuron allows for both excitatory and inhibitory output current from the synapse circuit.
机译:用于人工神经网络的模拟突触电路比以前的突触需要更少的电路和互连,同时提供更好的权重编程,它在逆变器配置中使用两个具有隧道注入的互补浮栅MOSFET,每个MOSFET存储一个权重值。通过存储由Fowler-Nordheim隧穿或其他隧穿手段注入到浮栅中的电荷来设置此权重值,这会使器件的阈值电压发生偏移。一条编程线将电流脉冲施加到MOSFET浮置栅极以写入或擦除此存储的电荷,从而调整MOSFET的重量。两个MOSFET连接在一起,栅极连接在一起,而漏极连接在一起,以在两个MOSFET之间提供公共栅极和公共漏极。输入线连接到公共栅极,输出线连接到公共漏极。每个MOSFET的源极都连接到参考电压。突触电路可以用在前馈或反馈网络中,并且可以从两个象限操作扩展到四个象限操作。突触提供单个输出电流线,该输出电流线表示输入电压和存储的权重的函数。可以在网络中配置多个这样的突触,其中每个突触的输出线在神经元的输入处的电流求和节点处连接。神经元输入中的活动负载允许来自突触电路的兴奋性和抑制性输出电流。

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