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A Fully Integrated Analog Front End for Biopotential Signal Sensing

机译:完全集成的模拟前端,用于生物电势信号传感

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A low-power fully-integrated analog front end for biopotential sensors is proposed. The signal conditioning circuitry features an integrating sampler and a digital-assisted electrode offset-cancellation loop. The chip is fabricated in a standard 0.18-μm CMOS process. The supply voltage is 1.2 V and the quiescent current is 7.7 μA. Measurement results show that the analog front end achieves an in-band gain of 58 dB, a noise spectrum density of 46nV/√Hz and can tolerate ±60 mV electrode offset. The THD is below 1% with a 2mVpp input. The analog signal is converted to digital code at 5kS/s by a 12-bit SAR ADC with 63.2 dB SNDR. The prototype IC is experimented with capturing ECG on human beings.
机译:提出了一种用于生物电势传感器的低功耗全集成模拟前端。信号调理电路具有集成采样器和数字辅助电极失调消除环路。该芯片采用标准的0.18μmCMOS工艺制造。电源电压为1.2 V,静态电流为7.7μA。测量结果表明,模拟前端可实现58 dB的带内增益,46nV /√Hz的噪声频谱密度,并可以承受±60 mV的电极偏移。使用2mVpp输入时,THD低于1%。带有63.2 dB SNDR的12位SAR ADC将模拟信号以5kS / s的速率转换为数字代码。原型IC经过实验,可以捕获人类的心电图。

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