A low power multi-frequency current mode lock-in amplifier for impedance sensing

Jinlong Gu, N. Mcfarlane
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引用次数: 5

Abstract

We show the design of a low-power, multi-frequency on-chip current-mode lock-in amplifier for biomedical impedance sensing. This lock-in amplifier obtains the phase and magnitude of the input signals in analog domain and therefore does not require a digital signal processing module. It is composed of translinear bandpass filters, 4-quadrant subthreshold multipliers, translinear low pass filters, translinear pythagorators and dividers. Monte Carlo results show that 80% of the devices will perform according to specifications with a power consumption of 207.7 μW. Experimental results of the bandpass modules show the impedance spectrum can be determined at the 100 Hz, 1 kHz, 10 kHz and 100 kHz frequency points.
用于阻抗传感的低功率多频电流模式锁相放大器
我们展示了一种用于生物医学阻抗传感的低功耗、多频率片上电流模式锁定放大器的设计。该锁相放大器在模拟域中获得输入信号的相位和幅度,因此不需要数字信号处理模块。它由跨线性带通滤波器、四象限亚阈值乘法器、跨线性低通滤波器、跨线性毕达哥拉斯器和分法器组成。蒙特卡罗结果表明,80%的器件性能符合规格,功耗为207.7 μW。实验结果表明,该带通模块可以在100hz、1khz、10khz和100khz频率点上确定阻抗谱。
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