用于生物医学可穿戴应用的自主自供电电位器架构。

Javier Aguilar, Albert Álvarez-Carulla, Valeria Colmena, Oscar Carreras, Genis Rabost, M. Puig-Vidal, J. Colomer-Farrarons, Xavier Muñoz, P. Miribel-Català, J. Punter-Villagrasa
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引用次数: 2

摘要

在这项工作中,我们提出了一种设想的用于生物医学可穿戴应用的自主自供电电位器架构。该架构被认为是电化学一次性传感器的多功能和紧凑的模拟前端,特别是作为可穿戴非侵入性生物医学设备的关键组件。该结构由一个定制的三电极恒电位器、一个用于功率调节和产生适当电化学传感器工作所需的偏置电压的电源管理电路以及一个用于发电的能量收集电路组成。初步表征和验证表明,恒电位器放大器具有良好的分辨率、线性度和工作范围,工作电压为±1.5V (450μW),能够作为一个独立的单元工作,同时可高度定制不同的电化学传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Autonomous self-powered potentiostat architecture for biomedical wearable applications.
In this work, we present an architecture of an envisaged autonomous self-powered potentiostat for biomedical wearable applications. This architecture has been conceived as a versatile and compact analog front-end for electrochemical disposable sensors, specifically as a key component of a wearable non-invasive biomedical device. This architecture is composed by a custom made three electrode potentiostat, a power management circuit for power regulation and to generate the bias voltage needed for proper electrochemical sensor operation, and finally an energy harvesting circuit for power generation. Initial characterization and validation of the potentiostat amplifier demonstrates good resolution, linearity and range, operating at ± 1.5V (450μW), being able to operate as an autonomous unit while being highly customizable for different electrochemical sensors.
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