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2-Channel Electroencephalography Sensor Frontend for Portable Health Condition Monitoring Applications

机译:2通道型电气术传感器前端用于便携式健康状况监控应用

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摘要

This work presents a 2-channel electroencephalography (EEG) sensor frontend for portable health condition monitoring applications. The proposed scheme includes a compact and low power voltage mode EEG amplifier, successive approximation (SAR) analog-to-digital converter (ADC) with serial peripheral interface (SPI), where it can be easily installed in a safety helmet without giving much discomfort to the human subject. The EEG amplifier is implemented using CMOS 0.18 μm technology with 1.8 V supply. The measurement results per amplifier channel showed power consumption of 540 nW, input referred noise of 6.27 μV_(rms) within the bandwidth from 0.45 Hz to 250 Hz, and core area of 0.0198 mm~2. Furthermore, the EEG frontend operation is demonstrated with an actual EEG measurement setup, where the EEG signals are obtained from three different human subjects.
机译:这项工作介绍了一个2通道的脑电图(EEG)传感器前端,用于便携式健康状况监控应用。 所提出的方案包括紧凑且低功耗电压模式EEG放大器,连续逼近(SAR)模数转换器(ADC),具有串行外围接口(SPI),可以轻松安装在安全头盔中而不会产生太多不适 对人类主题。 EEG放大器采用CMOS0.18μm技术实现,具有1.8 V电源。 每个放大器通道的测量结果显示540 NW的功耗,输入的引用噪声为6.27μV_(RMS),从0.45Hz到250 Hz,核心面积为0.0198mm〜2。 此外,使用实际的EEG测量设置对EEG前端操作进行说明,其中EEG信号是从三个不同的人类受试者获得的。

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