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A 0.5-V power-efficient low-noise CMOS instrumentation amplifier for wireless biosensor

机译:用于无线生物传感器的0.5V高效节能低噪声CMOS仪表放大器

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This paper presents a low-power, low-noise CMOS instrumentation amplifier intended for use in wireless bio-potential monitoring system. It employs a capacitively-coupled topology to achieve high power efficiency. In order to depress the noise, chopper-stabilized technique is used and a transconductance-boost technique is introduced in low-noise amplifier (LNA). All MOS transistors implemented in LNA are biased in subthreshold region with a supply voltage of 0.5 V to reduce the power consumption. Moreover, a DC-servo loop (DSL) is implemented to realize a high-pass corner for electrode offset cancellation. Implemented in a 0.18 mu m CMOS process, the front-end circuit occupies 0.48 mm(2) and draws 1.5 mu A. The capacitively-coupled chopper-stabilized instrumentation amplifier (CCIA) draws 800 nA and its input-referred noise is 3.5 mu V-rms integrated from 0.5 to 1 kHz, which results in a NEF of 3.8 and a PEF of 7.2 respectively. The whole circuit achieves 98 dB CMRR and 73 dB PSRR. The total input-referred noise of the front-end instrumentation amplifier including the DSL is 4.3 mu V-rms integrated from 0.5 to 1 kHz. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种旨在用于无线生物电势监测系统的低功耗,低噪声CMOS仪表放大器。它采用电容耦合拓扑以实现高功率效率。为了降低噪声,使用了斩波稳定技术,并在低噪声放大器(LNA)中引入了跨导增强技术。 LNA中实现的所有MOS晶体管都在0.5 V的电源电压下阈值区域内偏置,以降低功耗。此外,实现了直流伺服环路(DSL)以实现用于消除电极偏移的高通拐角。前端电路采用0.18μmCMOS工艺实现,占地0.48 mm(2),消耗1.5μA电流。电容耦合斩波稳定仪表放大器(CCIA)吸收800 nA电流,其输入参考噪声为3.5μA。 V-rms从0.5到1 kHz积分,分别导致NEF为3.8和PEF为7.2。整个电路实现98 dB CMRR和73 dB PSRR。包括DSL在内的前端仪表放大器的总输入等效噪声为4.3μV-rms,积分范围为0.5至1 kHz。 (C)2016 Elsevier Ltd.保留所有权利。

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