A low power biopotential amplifier in 0.35um CMOS for portable EEG signal amplification

Yong Hooi Lim, Likun Xia
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Abstract

In this paper, a low power differential biopotential amplifier (BPA) targeted for front-end electroencephalogram (EEG) signal amplification is reported. The proposed BPA is chopper stabilized to minimize flicker noise or 1/f noise, improving the fidelity of the signal measurement. This work aims to provide a low power BPA design solution for portable EEG application. This work proposes a non-overlapping clocking scheme for demodulation chopping for chopping artifacts reduction while maintaining low power consumption. This work is simulated in MIMOS 0.35um CMOS process and has achieved around 57dB of gain, ultra-low power consumption of 0.81μW with noise performance of 347nV/sqrt(Hz) and supply voltage of 1.8V.
一种用于便携式脑电图信号放大的0.35um CMOS低功耗生物电位放大器
本文报道了一种用于前端脑电图信号放大的低功率差分生物电位放大器(BPA)。所提出的双酚a是斩波稳定,以减少闪烁噪声或1/f噪声,提高信号测量的保真度。本课题旨在为便携式脑电图应用提供一种低功耗双酚a设计方案。本文提出了一种用于解调斩波的非重叠时钟方案,以减少斩波伪影,同时保持低功耗。该工作在MIMOS 0.35um CMOS工艺上进行了仿真,获得了57dB左右的增益、0.81μW的超低功耗、347nV/sqrt(Hz)的噪声性能和1.8V的电源电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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