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Microinductive signal conditioning with resonant differential filters: high-sensitivity biodetection applications

机译:带谐振差分滤波器的微感应信号调理:高灵敏度生物检测应用

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摘要

Inductive-based devices integrated with Si technology for biodetection applications are characterized, using simple resonant differential filter configurations. This has allowed the corroboration of the viability of the proposed circuits, which are characterized by their very high simplicity, for microinductive signal conditioning in high-sensitivity sensor devices. The simulation of these simple circuits predicts sensitivities of the differential output voltage which can achieve values in the range of 0.1-1 V/nH, depending on the coil parameters. These very high-sensitivity values open the possibility for the experimental detection of extremely small inductance changes in the devices. For real microinductive devices, both series resistance and parasitic capacitive components contribute to the decrease of the differential circuit sensitivity. Nevertheless, measurements performed using micro-coils fabricated with relatively high series resistance and coupling parasitic effects have allowed detection of changes in the range of 2 nH. which are compatible with biodetection applications with estimated detection limits below the picomolarity range.
机译:使用简单的谐振差分滤波器配置,可以对与Si技术集成在一起的,用于生物检测应用的基于电感的器件进行表征。这已经证实了所提出的电路的可行性,其以非常高的简单性为特征,用于高灵敏度传感器设备中的微感应信号调节。这些简单电路的仿真预测了差分输出电压的灵敏度,该灵敏度可达到0.1-1 V / nH的值,具体取决于线圈参数。这些非常高的灵敏度值为实验检测器件中极小的电感变化打开了可能性。对于实际的微电感器件,串联电阻和寄生电容组件均会导致差分电路灵敏度降低。然而,使用具有较高串联电阻和耦合寄生效应的微线圈进行的测量允许检测到2 nH范围内的变化。与生物检测应用兼容,其估计检测限低于皮摩尔度范围。

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