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A novel low-noise fully differential CMOS instrumentation amplifier with 1.88 noise efficiency factor for biomedical and sensor applications

机译:新型低噪声全差分CMOS仪表放大器,具有1.88的噪声效率系数,适用于生物医学和传感器应用

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In this paper, we present a novel instrumentation amplifier (INA) topology for mobile bio-medical data acquisition platforms. The proposed INA features a PMOS-NMOS complimentary transistor input pair biased in sub-threshold region to effectively boost the transconductance of the input pair and reduce the input referred noise. There are two embedded common-mode feedback circuits which help to establish the common-mode voltages without consuming extra power. One is at the output of the first stage (i.e. at the drain connection of the complimentary transistors) and the other at the final output stage. The INA provides a measured gain of 40 dB and a bandwidth of 11 kHz. The measured integrated noise is 0.78 mu V-rms (50 mHz to 11 kHz) with measured CMRR of greater than 100 dB. The proposed amplifier is versatile and hence capable of conditioning various bio-potential signals like Electrocardiogram (ECG), Electroencephalogram (EEG), Electromyogram (EMG) and Electrooculogram (EOG) as well as signals produced from sensors. A prototype chip has been fabricated in UMC 180 nm mixed-mode CMOS technology operating at 1.8 V power supply and occupying an area of 415 x 230 mu m(2). The simulation and experimentally measured results are presented in this paper. NEF (noise efficiency factor) of 1.88 is obtained from measurement results. Hence the amplifier features for the first time a very low NEF (1.88) and high CMRR (>100 dB). A compact ExG conditioning and acquisition system has been developed and used to measure ECG, EEG, EMG and EOG signals from human subjects by deploying the proposed INA. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了一种用于移动生物医学数据采集平台的新型仪表放大器(INA)拓扑。拟议中的INA具有在亚阈值区域内偏置的PMOS-NMOS互补晶体管输入对,以有效地提高输入对的跨导并降低输入参考噪声。有两个嵌入式共模反馈电路,可帮助建立共模电压而不会消耗额外的功率。一个在第一级的输出(即在互补晶体管的漏极连接处),另一个在最后的输出级。 INA提供40 dB的测量增益和11 kHz的带宽。测得的积分噪声为0.78μV-rms(50 mHz至11 kHz),测得的CMRR大于100 dB。所提出的放大器用途广泛,因此能够调节各种生物电势信号,例如心电图(ECG),脑电图(EEG),肌电图(EMG)和眼电图(EOG)以及传感器产生的信号。原型芯片已采用UMC 180 nm混合模式CMOS技术制造,工作于1.8 V电源,占地面积为415 x 230μm(2)。本文介绍了仿真结果和实验测量结果。从测量结果获得1.88的NEF(噪声效率因子)。因此,该放大器首次具有非常低的NEF(1.88)和很高的CMRR(> 100 dB)。已经开发出紧凑的ExG调节和采集系统,并通过部署拟议的INA来测量来自人类受试者的ECG,EEG,EMG和EOG信号。 (C)2016 Elsevier Ltd.保留所有权利。

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