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一种用于电容式生物电势测量的新型高输入阻抗前端。

A novel high input impedance front-end for capacitive biopotential measurement.

机构信息

School of Electronic Science and Engineering, Nanjing University, Nanjing, Jiangsu Province, China.

UAV Research Institute, Nanjing University of Aeronautics and Astronautics, Nanjing, Jiangsu Province, China.

出版信息

Med Biol Eng Comput. 2018 Aug;56(8):1343-1355. doi: 10.1007/s11517-017-1781-0. Epub 2018 Jan 8.

Abstract

For capacitive biopotential measurement, a novel high input impedance front-end is proposed. The input impedance of the front-end can achieve more than 100 GΩ by matching the peripheral parameters. The front-end's noise model is provided, and noise optimization is given further. The analysis shows the proposed front-end can achieve at least two orders of input impedance more than the non-inverting amplifier circuit with the same peripheral parameters at the cost of only increasing twice input-referred noise. The final experimental results verify the analysis and show the front-end's feasibility of capacitive sensing electrocardiogram signal. Graphical abstract A novel high input impedance front-end is proposed, which impedance can achieve more than 100 GΩ by matching the peripheral parameters. The analysis and noise optimization results show the proposed front-end can achieve at least two orders of input impedance more than the non-inverting amplifier circuit with the same peripheral parameters at the cost of only increasing twice input-referred noise. The final experimental results verify the analysis and show its feasibility of capacitive sensing electrocardiogram signal.

摘要

针对容性生物电势测量,提出了一种新型高输入阻抗前端。通过匹配外围参数,前端的输入阻抗可以达到 100GΩ 以上。提供了前端的噪声模型,并进一步给出了噪声优化。分析表明,与具有相同外围参数的反相放大器电路相比,在仅增加两倍输入参考噪声的情况下,所提出的前端可以实现至少两个数量级的输入阻抗。最终的实验结果验证了分析,并展示了前端对电容式感应心电图信号的可行性。

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