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A Novel Ultra-Low-Power, Low-Voltage, Ultra-High Output Resistance and Uniquely High Bandwidth Femto-Ampere Current Mirror

机译:新型超低功耗,低压,超高输出电阻和独特的高带宽毫微安电流镜

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摘要

In this paper, a novel ultra-low-power, low-voltage, ultra-high output resistance and uniquely high bandwidth (BW) femto-ampere current mirror is proposed. Pre-layout results with HSPICE in TSMC 0.18 CMOS technology are given at 1.2 v power supply that prove such exceptional features of the proposed current mirror as: ultra-low consumed power of 1.56 , ultra-high output resistance of 1.98 , very low output voltage of 91 mv and most exceptionally, the extra high BW of 26.5 MHz that is, so far, unique at such extra low minimum output current of 1.8 fA. Also, post-layout plus Monte Carlo simulation results are performed with CADENCE in the same abovementioned technology. Most favorably, this study also proves the same exceptional quality of the features as: the same ultra-low consumed power, fairly the same output voltage of 92 mv, ultra-high output resistance of 1.45 and still uniquely high BW of 17.5 MHz but at extra low output current of 5.5 fA. Good robustness of the proposed current mirror against PVT non-idealities is also proved by Monte Carlo simulations.
机译:本文提出了一种新颖的超低功耗,低压,超高输出电阻和独特的高带宽(BW)飞安电流镜。在1.2 v电源下以TSMC 0.18 CMOS技术在HSPICE上进行的预布局结果证明了拟议电流镜的特殊功能:超低功耗1.56,超高输出电阻1.98,非常低的输出电压它具有91 mv的输出功率,最特别的是26.5 MHz的超高带宽,到目前为止,在1.8 fA的超低最小输出电流下,它是独一无二的。同样,在上述相同的技术中,用CADENCE进行布局后加蒙特卡罗模拟结果。最有利的是,这项研究还证明了以下特性的出色品质:相同的超低功耗,相当相同的92 mv输出电压,1.45的超高输出电阻以及17.5 MHz的独特高带宽,但在5.5 fA的超低输出电流。蒙特卡洛仿真还证明了所提出的电流镜对PVT非理想性的良好鲁棒性。

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