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Preamplifiers for non-contact capacitive biopotential measurements

机译:用于非接触前置放大器电容生物电势测量

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摘要

Non-contact biopotential sensing is an attractive measurement strategy for a number of health monitoring applications, primarily the ECG and the EEG. In all such applications a key technical challenge is the design of a low-noise trans-impedance preamplifier for the typically low-capacitance, high source impedance sensing electrodes. In this paper, we compare voltage and charge amplifier designs in terms of their common mode rejection ratio, noise performance, and frequency response. Both amplifier types employ the same operational-transconductance amplifier (OTA), which was fabricated in a 0.35um CMOS process. The results show that a charge amplifier configuration has advantages for small electrode-to-subject coupling capacitance values (less than 10 pF - typical of noncontact electrodes) and that the voltage amplifier configuration has advantages for electrode capacitances above 10 pF.
机译:对于许多健康监测应用(主要是ECG和EEG),非接触式生物电势感测是一种有吸引力的测量策略。在所有这些应用中,关键的技术挑战是为典型的低电容,高源阻抗感测电极设计一种低噪声跨阻前置放大器。在本文中,我们从共模抑制比,噪声性能和频率响应方面比较了电压和电荷放大器设计。两种类型的放大器都采用相同的运算跨导放大器(OTA),该器件以0.35um CMOS工艺制造。结果表明,电荷放大器配置对于较小的电极-对象耦合电容值(小于10 pF-非接触电极的典型值)具有优势,而电压放大器配置对于大于10 pF的电极电容具有优势。

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