Suppr超能文献

一种具有有源电流反馈稳定的 11μw、双电极跨阻生物信号放大器。

An 11 μ w, two-electrode transimpedance biosignal amplifier with active current feedback stabilization.

出版信息

IEEE Trans Biomed Circuits Syst. 2010 Apr;4(2):93-100. doi: 10.1109/TBCAS.2009.2032096.

Abstract

A novel two-electrode biosignal amplifier circuit is demonstrated by using a composite transimpedance amplifier input stage with active current feedback. Micropower, low gain-bandwidth product operational amplifiers can be used, leading to the lowest reported overall power consumption in the literature for a design implemented with off-the-shelf commercial integrated circuits (11 μW). Active current feedback forces the common-mode input voltage to stay within the supply rails, reducing baseline drift and amplifier saturation problems that can be present in two-electrode systems. The bandwidth of the amplifier extends from 0.05-200 Hz and the midband voltage gain (assuming an electrode-to-skin resistance of 100 kΩ) is 48 dB. The measured output noise level is 1.2 mV pp, corresponding to a voltage signal-to-noise ratio approaching 50 dB for a typical electrocardiogram (ECG) level input of 1 mVpp. Recordings were taken from a subject by using the proposed two-electrode circuit and, simultaneously, a three-electrode standard ECG circuit. The residual of the normalized ensemble averages for both measurements was computed, and the power of this residual was 0.54% of the power of the standard ECG measurement output. While this paper primarily focuses on ECG applications, the circuit can also be used for amplifying other biosignals, such as the electroencephalogram.

摘要

一种新型的双电极生物信号放大器电路通过使用具有有源电流反馈的复合跨阻放大器输入级来实现。可以使用微功耗、低增益带宽积运算放大器,从而实现了文献中报道的使用现成商用集成电路实现的设计中最低的总功耗(11 μW)。有源电流反馈迫使共模输入电压保持在电源轨内,从而减少了双电极系统中可能存在的基线漂移和放大器饱和问题。放大器的带宽从 0.05-200 Hz 扩展,中频电压增益(假设电极到皮肤的电阻为 100 kΩ)为 48 dB。测量的输出噪声电平为 1.2 mV pp,对于典型的 1 mVpp ECG 电平输入,对应于接近 50 dB 的电压信噪比。通过使用所提出的双电极电路和同时使用三电极标准 ECG 电路从一个对象进行了记录。计算了这两个测量的归一化总体平均值的残差,并且该残差的功率是标准 ECG 测量输出功率的 0.54%。虽然本文主要关注 ECG 应用,但该电路也可用于放大其他生物信号,例如脑电图。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验