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Low-noise high input impedance 8-channels chopper-stabilized EEG acquisition system

机译:低噪声,高输入阻抗,8通道斩波稳定的EEG采集系统

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This paper presents the design and implementation of an 8-channel low-noise chopper-stabilized analog front-end (AFE) for electroencephalogram (EEG) acquisition system. Each channel of the AFE is composed of an AC-coupled chopper instrumentation amplifier (ACCIA), a programmable gain amplifier (PGA), and a buffer. A positive feedback loop is adopted to boost its input impedance while the low-pass property suppresses the chopping ripple. The proposed AFE is implemented in 0.35 gm CMOS technology with the ADC, MUX, digital part and other control blocks. Post-layout simulation results show that the AFE achieves 46/52/58/64 dB programmable gain, 108 dB CMRR, and 0.32 μVrms input-referred noise for a bandwidth of 0.5-150 Hz. Each channel consumes 7.5 μA from a 3 V supply.
机译:本文介绍了一种用于脑电图(EEG)采集系统的8通道低噪声斩波稳定模拟前端(AFE)的设计和实现。 AFE的每个通道均由一个交流耦合斩波仪表放大器(ACCIA),一个可编程增益放大器(PGA)和一个缓冲器组成。采用正反馈环路来提高其输入阻抗,同时低通特性可抑制斩波纹波。拟议的AFE通过0.35 gm CMOS技术与ADC,MUX,数字部分和其他控制模块一起实现。布局后的仿真结果表明,在带宽为0.5-150 Hz的情况下,AFE可以实现46/52/58/64 dB的可编程增益,108 dB的CMRR和0.32μV输入参考噪声。每个通道从3 V电源消耗7.5μA电流。

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