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Variation resilient reliable design of trigger pulse generator

机译:触发脉冲发生器的变形功能可靠性设计

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摘要

This study presents a robust design of a trigger pulse generator that produces trigger pulses of variable widths/durations that are tuned using an external control as per the requirements. The proposed design comprises two elementary modules: a delay element and an XOR circuit. The proposed circuit is implemented using a 16 nm CMOS technology node and simulation results have been verified using theSPICEsimulator. Various performance parameters such as power consumption, power delay-product, energy-delay product and impact of key circuit parameters [supply voltage (V-DD), channel length (Lg), gate width (Wg), channel doping concentration (N-A), oxide thickness (T-OX), threshold voltage (V-T) and carrier mobility (mu(o))] on the duration of trigger pulses have been studied in-depth and performance parameters are compared with circuits already available in the literature. The proposed circuit produces trigger pulses of a minimum width of 191.3 ps at a nominal supply of 1.0 V with an average power consumption of 160 nW. The width of the trigger pulses can be varied from 191.3 to 457.2 ps using an external control from 1.0 to 0.7 V, respectively, at 16 nm technology node.
机译:本研究介绍了触发脉冲发生器的稳健设计,该触发脉冲发生器产生根据要求使用外部控制调谐的可变宽度/持续时间的触发脉冲。所提出的设计包括两个基本模块:延迟元件和XOR电路。所提出的电路使用16nm CMOS技术节点实现,并使用Thespicicsimulator验证了仿真结果。各种性能参数,如电力消耗,功率延迟 - 产品,能量延迟产品和钥匙电路参数的影响[电源电压(V-DD),通道长度(LG),栅极宽度(WG),通道掺杂浓度(NA)已经研究了触发脉冲持续时间的氧化物厚度(T-OX),阈值电压(VT)和载流子迁移率(MU(O)),并将性能参数与文献中已经可用的电路进行比较。所提出的电路在1.0V的标称电源下产生最小宽度为191.3 ps的触发脉冲,其平均功耗为160 nW。触发脉冲的宽度可以在16nm技术节点中使用1.0至0.7V的外部控制,从191.3到457.2 ps变化。

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