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Multimodal Analog Front End for Wearable Bio-Sensors

机译:用于可穿戴生物传感器的多模式模拟前端

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Wearable sensors afford convenience in daily health monitoring, though many challenges in the development of such systems need to be overcome. Here, we present a low-power, multimodal analog front end (AFE) for wearable health monitoring sensors based on novel system architecture and very large scale integration circuit design methods. The AFE integrated circuit was designed with the standard 65-nm CMOS technology. Three sensor AFEs, bio-potential, photoplethysmography (PPG), and bioelectrical impedance analyser (BIA) were integrated on the same die with an area of 2.5 × 2.5 mm2. The power consumption for each AFE mode was <0.4 mW and did not exceed 2 mW for all three modes with a 1.2 V power supply. Results from each individual AFE showed high-quality, motion-robust signals (electrocardiogram, PPG, and BIA) that correlated with those obtained from clinical grade gold-standard devices for similar applications. Such multi-functional, non-intrusive systems permit users to effortlessly self-monitor multiple clinically relevant physiological parameters.
机译:可穿戴式传感器为日常健康监控提供了便利,尽管在此类系统开发中需要克服许多挑战。在这里,我们基于新颖的系统架构和超大规模集成电路设计方法,为可穿戴式健康监测传感器提供了一种低功耗,多模式模拟前端(AFE)。 AFE集成电路采用标准的65纳米CMOS技术设计。将三个传感器AFE,生物电势,光电容积描记法(PPG)和生物电阻抗分析仪(BIA)集成在面积为2.5×2.5 mm2的同一芯片上。每种AFE模式的功耗均<0.4 mW,并且对于具有1.2 V电源的所有三种模式,功耗均不超过2 mW。每个单独的AFE的结果均显示了高质量,运动健壮的信号(心电图,PPG和BIA),这些信号与从用于类似应用的临床级金标准设备获得的信号相关。这种多功能,非侵入式系统允许用户轻松地自我监测多个临床相关的生理参数。

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