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Analysis and design of a high-compliance ultra-high output resistance current mirror employing positive shunt feedback

机译:具有正并联反馈的高兼容超高输出电阻电流镜的分析与设计

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摘要

This paper reports a novel high-compliance, very accurate and ultra-high output resistance current mirror. These features are achieved by employing a combination of negative and positive feedbacks in the proposed circuit. This makes the proposed current mirror unique in gathering ultra-high output resistance, high compliance, and high accuracy ever demanded merits. The principle of operation of this structure is discussed, its main formulas are derived and its outstanding performance is verified by Cadence post-layout simulations. Designed in the IBM 130-nm standard CMOS process, the circuit consumes 230 x 110 mu m(2) of silicon area. Post-layout simulation results indicate that with a 3.3-V power supply, output voltage compliance of 0.93V(Supply) is achieved at a maximum output current of 96 mu A. Moreover, an extremely ultra-high output resistance of 320 G Omega is achieved, which is one of the highest reported values of output resistance for current mirrors implemented using regular CMOS technology. The -3 dB upper cut-off frequency of the proposed circuit is 100 MHz and the output/input current transfer error is 0.1%. The whole circuit, including bias circuitry, consumes 0.57 mW when delivering 96 mu A to the load. Copyright (C) 2014 John Wiley & Sons, Ltd.
机译:本文报道了一种新颖的高一致性,非常精确的超高输出电阻电流镜。通过在建议的电路中组合使用负反馈和正反馈来实现这些功能。这使得所提出的电流镜在收集超高输出电阻,高顺从性和高精度方面独树一帜。讨论了该结构的工作原理,推导了其主要公式,并通过Cadence后布局仿真验证了其出色的性能。该电路采用IBM 130 nm标准CMOS工艺设计,消耗230 x 110μm(2)的硅面积。布局后的仿真结果表明,使用3.3V电源时,最大输出电流为96μA时,输出电压顺从性为0.93V(电源)。此外,其超高输出电阻为320 G Omega这是使用常规CMOS技术实现的电流镜输出电阻报告的最高值之​​一。拟议电路的-3 dB高截止频率为100 MHz,输出/输入电流传输误差为0.1%。当向负载提供96μA电流时,包括偏置电路在内的整个电路的功耗为0.57 mW。版权所有(C)2014 John Wiley&Sons,Ltd.

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