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A Multi-Functional Physiological Hybrid-Sensing E-Skin Integrated Interface for Wearable IoT Applications

机译:用于可穿戴物联网应用的多功能生理混合传感E-Skin集成接口

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This paper presents a flexible multi-functional physiological sensing system that provides multiple noise-immune readout architectures and hybrid-sensing capability with an analog pre-processing scheme. The proposed multi-functional system is designed to support five physiological detection methodologies of piezo-resistive, pyro-resistive, electro-metric, opto-metric and their hybrid, utilizing an in-house multi-functional e-skin device, in-house flexible electrodes and a LED-photodiode pair. For their functional verification, eight representative physiological detection capabilities were demonstrated using wearable device prototypes. Especially, the hybrid detection method includes an innovative continuous measurement of blood pressure (BP) while most previous wearable devices are not ready for it. Moreover, for effective implementation in the form of the wearable device, post-processing burden of the hybrid method was much reduced by integrating a proposed analog pre-processing scheme, where only simple counting process and calibration remain to estimate the BP. This multi-functional sensor readout circuits and their hybrid-sensing interface are fully integrated into a single readout integrated circuit (ROIC), which is designed to implement three readout paths: two electrometric readout paths and one impedometric readout path. For noise-immune detection of the e-skin sensor, a pseudo-differential front-end with a ripple reduction loop is proposed in the impedometric readout path, and also state-of-the-art body-oriented noise reduction techniques are adopted for the electrometric readout path. The ROIC is fabricated in a CMOS process and in-house e-skin devices and flexible electrodes are also fabricated.
机译:本文介绍了一种柔性多功能生理传感系统,可提供多种噪声免疫读数架构和具有模拟预处理方案的混合传感能力。所提出的多功能系统旨在支持压电,热电电阻,电测,光指标和其混合的五种生理检测方法,利用内部多功能电子皮肤装置,内部内部柔性电极和LED光电二极管对。对于它们的功能验证,使用可穿戴设备原型来证明八个代表性的生理检测能力。特别是,混合检测方法包括血压(BP)的创新持续测量,而最先前的可穿戴设备尚未准备好。此外,对于可穿戴装置的形式的有效实现,通过集成所提出的模拟预处理方案,杂种方法的后处理负担大大降低,其中仅依赖于简单的计数处理和校准来估计BP。这种多功能传感器读数和它们的混合传感接口完全集成到单个读出集成电路(ROIC)中,旨在实现三个读数路径:两个电气读出路径和一个阻抗读出路径。对于E-SKIN传感器的噪声免疫检测,在阻抗读出路径中提出了具有纹波减少环的伪差分前端,并且还采用了最先进的身体定向降噪技术电动读出路径。 ROIC在CMOS工艺中制造,也制造内部E-SKEC装置和柔性电极。

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