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A novel fully differential biopotential amplifier with DC suppression

机译:一种新型全差分生物电位放大器,具有直流抑制功能

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摘要

Fully differential amplifiers yield large differential gains and also high common mode rejection ratio (CMRR), provided they do not include any unmatched grounded component. In biopotential measurements, however, the admissible gain of amplification stages located before dc suppression is usually limited by electrode offset voltage, which can saturate amplifier outputs. The standard solution is to first convert the differential input voltage to a single-ended voltage and then implement any other required functions, such as dc suppression and dc level restoring. This approach, however, yields a limited CMRR and may result in a relatively large equivalent input noise. This paper describes a novel fully differential biopotential amplifier based on a fully differential dc-suppression circuit that does not rely on any matched passive components, yet provides large CMRR and fast recovery from dc level transients. The proposed solution is particularly convenient for low supply voltage systems. An example implementation, based on standard low-power op amps and a single 5-V power supply, accepts input offset voltages up to /spl plusmn/500 mV, yields a CMRR of 102dB at 50 Hz, and provides, in accordance with the AAMI EC38 standard, a reset behavior for recovering from overloads or artifacts
机译:如果全差分放大器不包含任何不匹配的接地元件,则它们会产生较大的差分增益并具有较高的共模抑制比(CMRR)。然而,在生物电势测量中,位于直流抑制之前的放大级的允许增益通常受电极失调电压限制,电极失调电压会使放大器输出饱和。标准解决方案是先将差分输入电压转换为单端电压,然后再实现其他所需功能,例如直流抑制和直流电平恢复。但是,这种方法产生的CMRR有限,并且可能导致相当大的等效输入噪声。本文介绍了一种基于全差分直流抑制电路的新型全差分生物电势放大器,该电路不依赖任何匹配的无源元件,但具有大的CMRR和从直流电平瞬变中的快速恢复能力。所提出的解决方案对于低电源电压系统特别方便。一个示例实现基于标准的低功耗运算放大器和单个5V电源,接受高达/ spl plusmn / 500 mV的输入失调电压,在50 Hz时产生102dB的CMRR,并根据AAMI EC38标准,用于从过载或工件中恢复的重置行为

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