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Differential Microfluidic Sensors Based on Dumbbell-Shaped Defect Ground Structures in Microstrip Technology: Analysis Optimization and Applications

机译:微带技术中基于哑铃形缺陷地面结构的差分微流传感器:分析优化和应用

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摘要

A microstrip defect ground structure (DGS) based on a pair of dumbbell-shaped slots is used for sensing. The device is a differential sensor consisting of a pair of mirrored lines loaded with a dumbbell-shaped DGS, and the output variable is the cross-mode transmission coefficient. Such a variable is very sensitive to asymmetries in the line pair, e.g., caused by an asymmetric dielectric load in the dumbbell-shaped DGSs. Therefore, the sensor is of special interest for the dielectric characterization of solids and liquids, or for the measurement of variables related to complex permittivity changes. It is shown in this work that by adding fluidic channels on top of the dumbbell-shaped DGSs, the device is useful for liquid characterization, particularly for the measurement of solute concentration in very diluted solutions. A sensitivity analysis useful for sensor design is carried out in this paper.
机译:基于一对哑铃形槽的微带缺陷接地结构(DGS)用于感测。该设备是一个差分传感器,由一对装有哑铃形DGS的镜像线组成,输出变量为交叉模式传输系数。这样的变量对线对中的不对称非常敏感,例如,由于哑铃形DGS中的不对称介电负载而引起。因此,对于固体和液体的介电特性或与复介电常数变化有关的变量的测量,传感器特别有用。这项工作表明,通过在哑铃形DGS的顶部添加流体通道,该设备可用于液体表征,特别是用于测量极稀释溶液中的溶质浓度。本文进行了对传感器设计有用的灵敏度分析。

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