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A chopped ultra-low-power, low-noise wearable EEG amplifier with pseudo-resistor calibration

机译:具有伪电阻校准的切碎的超低功耗,低噪声可穿戴EEG放大器

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This paper presents an ultra-low power, low noise chopper stabilized amplifier which is suitable for wearable EEG applications. The topology used is fully differential so as to have increased immunity to supply noise, and increased dynamic range. The amplifier is designed to handle ±50mV dc electrode offset, while preserving the EEG signal. A dc servo loop (DSL) is used to reject the dc offset and the chopping ripple is reduced through a dc offset calibration loop. A new resistor calibration technique is proposed for reducing the variation in pseudo-resistor value from 5000% to 8.25%. The amplifier is implemented in 0.18μm CMOS technology, and can operate with a total current of 1.8μA, achieving NEF of 3.31. The amplifier achieved a PSRR of 120.5dB and a CMRR of 131.62dB. The current consumption of 1.8μA affirms suitability of this implementation for coin cell battery operated wearable EEG recording headset. The achieved input referred noise of 0.45μV in the frequency band of 0.5-50Hz is desirable for EEG systems.
机译:本文介绍了超低功耗,低噪声斩波器稳定放大器,适用于可穿戴的EEG应用。所使用的拓扑是完全差异的,以便增加免疫力以供电噪音,并且增加动态范围。放大器设计用于处理±50mV DC电极偏移,同时保留EEG信号。 DC伺服环(DSL)用于拒绝DC偏移,通过DC偏移校准环路减小了斩波纹波。提出了一种新的电阻校准技术,用于将伪电阻值的变化从5000%降至8.25%。放大器以0.18μm的CMOS技术实现,并且可以以1.8μA的总电流为单位,实现3.31的NEF。放大器达到了120.5dB的PSRR和CMRR为131.62dB。电流消耗为1.8μA确认这一实施的适用于硬币电池电池的可穿戴EEG记录耳机。对于EEG系统,希望在0.5-50Hz的频带中实现0.45μV的所达到的输入噪声。

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