IEEE Trans Biomed Circuits Syst. 2018 Aug;12(4):774-783. doi: 10.1109/TBCAS.2018.2814699. Epub 2018 Apr 6.
This paper presents a 1.2 V 36 μW reconfigurable analog front-end (R-AFE) as a general-purpose low-cost IC for multiple-mode biomedical signals acquisition. The R-AFE efficiently reuses a reconfigurable preamplifier, a current generator (CG), and a mixed signal processing unit, having an area of 1.1 mm2 per R-AFE while supporting five acquisition modes to record different forms of cardiovascular and respiratory signals. The R-AFE can interface with voltage-, current-, impedance-, and light-sensors and hence can measure electrocardiography (ECG), bio-impedance (BioZ), photoplethysmogram (PPG), galvanic skin response (GSR), and general-purpose analog signals. Thanks to the chopper preamplifier and the low-noise CG utilizing dynamic element matching, the R-AFE mitigates ${\text{1}}\text{/}f$ noise from both the preamplifier and the CG for improved measurement sensitivity. The IC achieves competitive performance compared to the state-of-the-art dedicated readout ICs of ECG, BioZ, GSR, and PPG, but with approximately 1.4×-5.3× smaller chip area per channel.
本文提出了一种 1.2V、36μW 的可重构模拟前端(R-AFE),作为一种通用的低成本 IC,用于多模式生物医学信号采集。R-AFE 高效地复用了一个可重构前置放大器、一个电流发生器(CG)和一个混合信号处理单元,每个 R-AFE 的面积为 1.1mm2,支持五种采集模式,以记录不同形式的心血管和呼吸信号。R-AFE 可以与电压、电流、阻抗和光传感器接口,因此可以测量心电图(ECG)、生物阻抗(BioZ)、光电容积脉搏波(PPG)、皮肤电反应(GSR)和通用模拟信号。得益于斩波前置放大器和利用动态元件匹配的低噪声 CG,R-AFE 减轻了前置放大器和 CG 产生的 1/f 噪声,从而提高了测量灵敏度。与 ECG、BioZ、GSR 和 PPG 的最先进专用读取 IC 相比,该 IC 具有竞争力的性能,但每个通道的芯片面积大约小 1.4×-5.3×。