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全集成生物电位采集模拟前端集成电路

Fully Integrated Biopotential Acquisition Analog Front-End IC.

作者信息

Song Haryong, Park Yunjong, Kim Hyungseup, Ko Hyoungho

机构信息

Department of Electronics, Chungnam National University, Daejeon, 305-764, Korea.

出版信息

Sensors (Basel). 2015 Sep 30;15(10):25139-56. doi: 10.3390/s151025139.

Abstract

A biopotential acquisition analog front-end (AFE) integrated circuit (IC) is presented. The biopotential AFE includes a capacitively coupled chopper instrumentation amplifier (CCIA) to achieve low input referred noise (IRN) and to block unwanted DC potential signals. A DC servo loop (DSL) is designed to minimize the offset voltage in the chopper amplifier and low frequency respiration artifacts. An AC coupled ripple rejection loop (RRL) is employed to reduce ripple due to chopper stabilization. A capacitive impedance boosting loop (CIBL) is designed to enhance the input impedance and common mode rejection ratio (CMRR) without additional power consumption, even under an external electrode mismatch. The AFE IC consists of two-stage CCIA that include three compensation loops (DSL, RRL, and CIBL) at each CCIA stage. The biopotential AFE is fabricated using a 0.18 μm one polysilicon and six metal layers (1P6M) complementary metal oxide semiconductor (CMOS) process. The core chip size of the AFE without input/output (I/O) pads is 10.5 mm². A fourth-order band-pass filter (BPF) with a pass-band in the band-width from 1 Hz to 100 Hz was integrated to attenuate unwanted signal and noise. The overall gain and band-width are reconfigurable by using programmable capacitors. The IRN is measured to be 0.94 μVRMS in the pass band. The maximum amplifying gain of the pass-band was measured as 71.9 dB. The CIBL enhances the CMRR from 57.9 dB to 67 dB at 60 Hz under electrode mismatch conditions.

摘要

本文介绍了一种生物电位采集模拟前端(AFE)集成电路(IC)。该生物电位AFE包括一个电容耦合斩波仪表放大器(CCIA),以实现低输入参考噪声(IRN)并阻断不需要的直流电位信号。设计了一个直流伺服环路(DSL),以最小化斩波放大器中的失调电压和低频呼吸伪影。采用交流耦合纹波抑制环路(RRL)来降低由于斩波稳定引起的纹波。设计了一个电容阻抗增强环路(CIBL),即使在外部电极不匹配的情况下,也能在不增加功耗的情况下提高输入阻抗和共模抑制比(CMRR)。AFE IC由两级CCIA组成,每个CCIA级包括三个补偿环路(DSL、RRL和CIBL)。该生物电位AFE采用0.18μm单晶硅和六层金属(1P6M)互补金属氧化物半导体(CMOS)工艺制造。不带输入/输出(I/O)焊盘的AFE核心芯片尺寸为10.5mm²。集成了一个带通在1Hz至100Hz带宽内的四阶带通滤波器(BPF),以衰减不需要的信号和噪声。通过使用可编程电容器,总增益和带宽可重新配置。在通带中测得的IRN为0.94μVRMS。通带的最大放大增益测得为71.9dB。在电极不匹配条件下,CIBL在60Hz时将CMRR从57.9dB提高到67dB。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a2e/4634463/d32d93092fb9/sensors-15-25139-g001.jpg

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