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An energy-efficient level converter with high thermal variation immunity for sub-threshold to super-threshold operation

机译:具有高热变化抗扰性的节能型电平转换器,适用于亚阈值至超阈值操作

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摘要

A multiple supply voltage scheme is an emerging approach to reduce power dissipation. The scheme requires a level converter as a bridge for different voltage domains. Conventional level converters fail to work in sub-threshold region due to the pull-down devices and the pull-up devices operate in sub-threshold and super-threshold region respectively. By employing diode-connected PMOS transistors, multiple-threshold-voltage CMOS (MTCMOS), and stack leakage reduction techniques, the proposed cross-coupled level converter achieves small propagation delay, low power consumption, and best power-delay-product (PDP) performance. Also, the reverse short channel effect is utilized to provide our level converter better process/thermal variation immunity. We also propose a dual edge-triggered explicit-pulsed level-converting flip flop (LCFF) concept combining a DCVSPG latch and our level converter. The proposed cross-coupled level converter is designed using TSMC 65nm bulk CMOS technology. It functions correctly across all process corners for a wide input voltage range, from 150mV to 1V. The level converter has a propagation delay of 52ns and a power dissipation of 21nW when the input voltage is 150mV.
机译:多电源电压方案是一种减少功耗的新兴方法。该方案需要电平转换器作为不同电压域的桥接。常规的电平转换器由于下拉装置而不能在亚阈值区域中工作,而上拉装置分别在亚阈值区域和超阈值区域中操作。通过采用二极管连接的PMOS晶体管,多阈值CMOS(MTCMOS)和减少堆栈泄漏的技术,所提出的交叉耦合电平转换器实现了较小的传播延迟,低功耗和最佳的功率延迟乘积(PDP)性能。同样,反向短通道效应可为我们的液位转换器提供更好的过程/热变化抗扰性。我们还提出了一个结合了DCVSPG锁存器和我们的电平转换器的双边沿触发显式脉冲电平转换触发器(LCFF)概念。提出的交叉耦合电平转换器是使用TSMC 65nm体CMOS技术设计的。它可以在150mV至1V的宽输入电压范围内的所有工艺角上正常工作。当输入电压为150mV时,电平转换器的传播延迟为52ns,功耗为21nW。

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