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一种用于可穿戴健康监测系统的超低功耗前端集成电路。

An ultra low-power front-end IC for wearable health monitoring system.

作者信息

Hella Mona M

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2016 Aug;2016:1906-1909. doi: 10.1109/EMBC.2016.7591094.

Abstract

This paper presents a low-power front-end IC for wearable health monitoring systems. The IC, designed in a standard 0.13μm CMOS technology, fully integrates a low-noise analog front-end (AFE) to process the weak bio-signals, followed by an analog-to-digital converter (ADC) to digitize the extracted signals. An AC-coupled driving buffer, that interfaces between the AFE and the ADC is introduced to scale down the power supply of the ADC. The power consumption decreases by 50% compared to the case without power supply scaling. The AFE passes signals from 0.5Hz to 280Hz and from 0.7Hz to 160Hz with a simulated input referred noise of 1.6μVrms and achieves a maximum gain of 35dB/41dB respectively, with a noise-efficiency factor (NEF) of the AFE is 1. The 8-bit ADC achieves a simulated 7.96-bit resolution at 10KS/s sampling rate under 0.5V supply voltage. The overall system consumes only 0.86μW at dual supply voltages of 1V (AFE) and 0.5 V (ADC).

摘要

本文介绍了一种用于可穿戴健康监测系统的低功耗前端集成电路。该集成电路采用标准的0.13μm CMOS技术设计,完全集成了一个低噪声模拟前端(AFE)来处理微弱的生物信号,随后是一个模数转换器(ADC)将提取的信号数字化。引入了一个交流耦合驱动缓冲器,用于在AFE和ADC之间进行接口连接,以降低ADC的电源供应。与不进行电源缩放的情况相比,功耗降低了50%。AFE能通过0.5Hz至280Hz以及0.7Hz至160Hz的信号,模拟输入参考噪声为1.6μVrms,分别实现最大增益35dB/41dB,AFE的噪声效率因子(NEF)为1。8位ADC在0.5V电源电压下、10KS/s采样率时实现了模拟7.96位分辨率。整个系统在1V(AFE)和0.5V(ADC)的双电源电压下仅消耗0.86μW。

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