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Continuous Time Level Crossing Sampling ADC for Bio-Potential Recording Systems

机译:连续时间道口采样aDC用于生物电位电生理记录系统

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摘要

In this paper we present a fixed window level crossing sampling analog to digital convertor for bio-potential recording sensors. This is the first proposed and fully implemented fixed window level crossing ADC without local DACs and clocks. The circuit is designed to reduce data size, power, and silicon area in future wireless neurophysiological sensor systems. We built a testing system to measure bio-potential signals and used it to evaluate the performance of the circuit. The bio-potential amplifier offers a gain of 53 dB within a bandwidth of 200 Hz-20 kHz. The input-referred rms noise is 2.8 µV. In the asynchronous level crossing ADC, the minimum delta resolution is 4 mV. The input signal frequency of the ADC is up to 5 kHz. The system was fabricated using the AMI 0.5 µm CMOS process. The chip size is 1.5 mm by 1.5 mm. The power consumption of the 4-channel system from a 3.3 V supply is 118.8 µW in the static state and 501.6 µW with a 240 kS/s sampling rate. The conversion efficiency is 1.6 nJ/conversion.
机译:在本文中,我们介绍了用于生物电势记录传感器的固定窗口电平交叉采样模数转换器。这是首次提出并完全实现的固定窗口电平交叉ADC,无需本地DAC和时钟。该电路旨在减少未来无线神经生理传感器系统中的数据大小,功耗和硅面积。我们构建了一个测试系统来测量生物电势信号,并将其用于评估电路的性能。生物电势放大器在200 Hz-20 kHz的带宽内提供53 dB的增益。输入参考均方根噪声为2.8 µV。在异步电平交叉ADC中,最小增量分辨率为4 mV。 ADC的输入信号频率高达5 kHz。该系统是使用AMI 0.5 µm CMOS工艺制造的。芯片尺寸为1.5毫米乘1.5毫米。在静态下,采用3.3 V电源供电的4通道系统的功耗为118.8 µW,采样率为240 kS / s时的功耗为501.6 µW。转换效率为1.6 nJ /转换。

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