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首页> 外文期刊>Biomedical Circuits and Systems, IEEE Transactions on >CMOS Low Current Measurement System for Biomedical Applications
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CMOS Low Current Measurement System for Biomedical Applications

机译:用于生物医学应用的CMOS低电流测量系统

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摘要

We present a micro-chip implementation of a low current measurement system for biomedical applications using capacitive feedback that exhibits 190 fA of RMS noise in a 1 kHz bandwidth. The sampling rate is selectable up to 100 kHz. When measuring the amplifier noise with a 10 G Ω resistor and a 47 pF capacitor at the input, typical of cell membrane capacitance in DNA and patch clamp experiments, the measured RMS noise was 2.44 pA on a 50 pA signal in a 10 kHz bandwidth. Two channels were implemented on 630 × 440 μm2 using a 0.5- μm 3-metal 2-poly CMOS process. Each channel consumes 1.5 mW of power from a 3.3 V supply. We measured the characteristics of an artificial lipid bilayer similar to the ones used in DNA sequencing experiments via nanopores.
机译:我们介绍了使用电容性反馈的生物医学应用低电流测量系统的微芯片实现,该电容性反馈在1 kHz带宽内展现190 fA的RMS噪声。采样率最高可达100 kHz。在输入端使用10 GΩ电阻和47 pF电容器测量放大器噪声时,这是DNA和膜片钳实验中典型的细胞膜电容,在10 kHz带宽,50 pA信号下,测得的RMS噪声为2.44 pA。使用0.5-μm的3-metal 2-poly CMOS工艺在630×440μm 2 上实现了两个通道。每个通道从3.3 V电源消耗1.5 mW的功率。我们测量了类似于通过纳米孔在DNA测序实验中使用的人工脂质双层的特征。

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