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首页> 外文期刊>Science, Measurement & Technology, IET >0.8-V 1.4-nW multi-decade frequency range true RMS to DC converter based on two-quadrant current squarer circuit
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0.8-V 1.4-nW multi-decade frequency range true RMS to DC converter based on two-quadrant current squarer circuit

机译:基于两象限电流平方器电路的0.8V 1.4nW十年频率范围真RMS直流转换器

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摘要

A low-voltage ultra-low-power two-quadrant current squarer based-true RMS to DC converter circuit is presented in this study. The proposed current squarer is based on two translinear loops with matched NMOS transistors operating in the weak inversion region. Ultra-low-power dissipation of 1.4 nW, multi-decade frequency range of 0.5 Hz-55 kHz and large input dynamic range of 72 pA-1 nA (with error <3%) are the main achievements of the proposed design while constructed of only ten transistors. Post-layout simulations with 0.8-V supply voltage using HSPICE software in 0.18 mu m TSMC CMOS process (level-49 parameters) verified the good functionality of the proposed circuit. Moreover, Monte Carlo analysis is performed to validate the satisfactory PVT robustness and reliability of the design's performance.
机译:本研究提出了一种基于低电压,超低功率,两象限电流平方器的真均方根直流转换器电路。拟议的电流平方器基于两个跨线性环路,其中两个匹配的NMOS晶体管工作在弱反转区域。该设计在构造时,主要的成就是1.4 nW的超低功耗,0.5 Hz-55 kHz的数十年频率范围以及72 pA-1 nA的大输入动态范围(误差<3%)。只有十个晶体管。使用HSPICE软件在0.18μm的TSMC CMOS工艺(49级参数)中使用0.8 V电源电压进行布局后仿真,证明了所提出电路的良好功能。此外,执行蒙特卡洛分析以验证令人满意的PVT鲁棒性和设计性能的可靠性。

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