首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A −68 dB THD, 0.6 mm2 Active Area Biosignal Acquisition System With a 40–320 Hz Duty-Cycle Controlled Filter
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A −68 dB THD, 0.6 mm2 Active Area Biosignal Acquisition System With a 40–320 Hz Duty-Cycle Controlled Filter

机译:A -68 DB THD,0.6 mm2有源区生物可爱采集系统,具有40-320 Hz占空比控制过滤器

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This paper presents a reconfigurable front-end (FE) circuit for acquiring various low-frequency biomedical signals. An energy and area-efficient tunable filter is proposed for adapting the FE bandwidth to the signal of interest. The filter is designed using a switched-R-MOSFET-C (SRMC) technique to realize the needed ultra-low cutoff frequency. An 8-bit SAR ADC, following the filter, quantizes the signal, while the SAR control logic is re-used to accurately program the filter bandwidth from 40 Hz to 320 Hz with a 40 Hz step. The prototype chip includes the complete FE system, formed of an instrumentation amplifier (IA), a programmable-gain amplifier (PGA), and the proposed tunable filter followed by the SAR ADC. Implemented in 0.13 $mu ext{m}$ CMOS technology, the IC occupies a 0.6 mm(2) active area while consuming 6.3 $mu ext{W}$ dc power from a 2-V supply. Measurement results show a FE gain range of 43-55 dB with an integrated input-referred noise ( ${V_{ext {IRN}}}$ ) of 3.45 $mu V_{ext {rms}}$ , a 66 dB dynamic range (DR), and a total-harmonic distortion (THD) of -68 dB at an input amplitude of 6 $ext{m}V_{PP}$ . The effective number of bits (ENOB) for the ADC is 7.921 bits at 1-kS/s. In real-time Electrocardiogram (ECG), Electromyography (EMG), and Electroencephalography (EEG) measurements, high-fidelity waveforms are acquired using the proposed FE IC, validating the system's reconfigurability and high-linearity.
机译:本文介绍了用于获取各种低频生物医学信号的可重新配置的前端(FE)电路。提出了一种能量和区域有效的可调谐滤波器,用于将FE带宽调整到感兴趣的信号。该滤波器使用开关R-MOSFET-C(SRMC)技术设计,实现所需的超低截止频率。在过滤器之后的8位SAR ADC量量量量化信号,而SAR控制逻辑被重新使用,以便使用40 Hz步骤将滤波器带宽精确地编程到320Hz。原型芯片包括由仪表放大器(IA),可编程增益放大器(PGA)的完整FE系统,以及所提出的可调滤波器,然后是SAR ADC。在0.13 $ mu text {m} $ CMOS技术中实现,IC占用0.6 mm(2)个活动区域,同时消耗6.3 $ mu text {w} $ dc电源,从2v供电。测量结果显示FE增益范围为43-55 dB,具有集成的输入引用的噪音($ {v _ { text {irn}} $)为3.45 $ mu v _ { text {rms} $,a 66 DB动态范围(DR)和总谐波失真(THD)为-68dB,输入幅度为6 $ text {m} v_ {pp} $。 ADC的有效数量(ENOB)为1-KS / s的7.921位。在实时心电图(ECG),肌电图(EMG)和脑电图(EEG)测量中,使用所提出的FE IC获取高保真波形,验证系统的可重新配置性和高线性。

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