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Digital signal propagation delay in a nano-circuit containing reactive and resistive elements

机译:包含电抗和电阻元件的纳米电路中的数字信号传播延迟

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摘要

The transient switching delay in a microano-scale circuit containing resistive and reactive elements are sternly affected by the surge in the resistance arising from sub-linear current-voltage (J-V) characteristics limited by the velocity and current saturation. The saturation arises due to the realignment of randomly oriented velocity vectors to the unidirectional streamlined ones in a high electric field when voltage applied across a resistor exceeds its decreasing critical value with reduced channel length. The frequency response /= 1/27πt_t is affected by a transit time delay T_r, is lower than that predicted from the application of Ohm's law. The resistance surge dramatically boosts the RC time constant and switching delay and attenuates the L/R time constant and switching delay.
机译:包含电阻性和电抗性元件的微/纳米级电路中的瞬态切换延迟会受到由速度和电流饱和度限制的亚线性电流-电压(J-V)特性引起的电阻浪涌的严重影响。当在电阻器上施加的电压超过其减小的临界值并减小通道长度时,在高电场中,随机取向的速度矢量重新排列为单向流线形矢量,就会出现饱和。频率响应/ = 1 /27πt_t受传输时间延迟T_r的影响,该延迟比根据欧姆定律的应用所预测的要低。电阻浪涌极大地提高了RC时间常数和开关延迟,并削弱了L / R时间常数和开关延迟。

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