Positive-feedback (PF) device and its operation scheme to implement pulse width modulation (PWM) function was proposed and demonstrated, and the device operation mechanism for implementing PWM function was analyzed. By adjusting the amount of the charge stored in the n- floating body (Qn), the potential of the floating body linearly changes with time. When Qn reaches to a threshold value (Qth), the PF device turns on abruptly. From the linear time-varying property of Qn and the gate bias dependency of Qth, fully functionable PWM neuron properties including voltage to pulse width conversion and hard-sigmoid activation function were successfully obtained from a single PF device. A PWM neuron can be implemented by using a single PF device, thus it is beneficial to extremely reduce the area of a PWM neuron circuit than the previously reported one.
翻译:提议并演示了用于实施脉冲宽调控功能(PWM)的设备及其操作方案,并分析了用于实施 PWM 功能的设备操作机制。通过调整在 n 浮体(Qn) 中储存的充电量,漂浮体随时间线性变化的潜力。当 Qn 达到临界值(Qth) 时, PF 设备会突然旋转。从Qn 的线性时间分配属性和Qth 的门性偏向依赖性,从一个单一的PFP 设备中成功获得了完全可起作用的PWM 神经特性,包括脉冲宽转换和硬性小类激活功能。 使用单个PPFM 设备可以实施PWM 神经元,因此,与以前报告的那样,大大缩小PWM 神经电路的面积是有益的。