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A New Technique to Implement Ultra-low Frequency Analog Filters for Electrophysiological Signal Acquisitions

机译:实现用于电生理信号采集的超低频模拟滤波器的新技术

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This paper describes a new method to implement ultra-low frequency analog filters for electrophysiological signal acquisitions. Unlike the traditional pseudo-resistor or trans conductor-capacitor architectures, the proposed continues time filters employed current steering integrators which help decrease the capacitor area and reducing the total harmonic distorting (THD) simultaneously. Three basic structures (high pass, notch and low pass filters) were designed by proposing this technique and were implemented by 0.18 µm CMOS technology. Measurement results showed that the-3 dB of the low pass and high pass filters were 220 Hz and 0.05 Hz and notch frequency center of notch filter 50 Hz. Besides, the three filters'' THD were measured to be-76 dB, -76 dB and -80 dB which are the lowest values with the comparison with other state-of-the-arts.
机译:本文介绍了一种用于实现超低频模拟滤波器的电生理信号采集的新方法。与传统的伪电阻器或跨导体电容器架构不同,建议的持续时间滤波器采用电流控制积分器,有助于减小电容器面积并同时降低总谐波失真(THD)。通过提出该技术,设计了三种基本结构(高通,陷波和低通滤波器),并通过0.18 µm CMOS技术实现。测量结果表明,低通和高通滤波器的-3 dB分别为220 Hz和0.05 Hz,陷波滤波器的陷波频率中心为50 Hz。此外,三个滤波器的THD测量值分别为-76 dB,-76 dB和-80 dB,这是与其他最新技术相比的最低值。

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