Yield-oriented biopotential amplifier design for PCB-based active dry electrodes

Carlos E. Teixeira, Luís H. C. Ferreira
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引用次数: 2

Abstract

In physiological measurement systems, the most critical stages are the transduction and the amplification, mainly when tolerances of components are taken into account. In this case, if there is a small difference between DC input voltages of the biopotential amplifier, its DC output voltage may be saturated, even when DC suppression circuits are used. In this paper, we propose an active biopotential electrode and, based on a yield-oriented analysis, a maximum gain condition that guarantees a constant DC output voltage of the proposed biopotential amplifier without using laser trimming. A DC Monte-Carlo simulation is performed to demonstrate our results and an experimental procedure is also carried out to analyze the proposed system by measuring heartbeat frequency.
基于pcb的有源干电极的产量导向生物电位放大器设计
在生理测量系统中,最关键的阶段是转导和放大,主要是在考虑组分的公差时。在这种情况下,如果生物电位放大器的直流输入电压相差很小,即使使用直流抑制电路,其直流输出电压也可能饱和。在本文中,我们提出了一种有源生物电位电极,并基于面向产量的分析,最大增益条件,以保证所提出的生物电位放大器的直流输出电压恒定,而无需使用激光修整。通过直流蒙特卡罗模拟来验证我们的结果,并通过测量心跳频率来分析所提出的系统。
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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