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A Microwave Microfluidic Sensor Based on a Dual-Mode Resonator for Dual-Sensing Applications

机译:基于双模式谐振器的微波微流体传感器用于双传感应用

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摘要

In this paper, we propose a novel microwave microfluidic sensor with dual-sensing capability. The sensor is based on a dual-mode resonator that consists of a folded microstrip line loaded with interdigital lines and a stub at the plane of symmetry. Due to the specific configuration, the resonator exhibits two entirely independent resonant modes, which allows simultaneous sensing of two fluids using a resonance shift method. The sensor is designed in a multilayer configuration with the proposed resonator and two separated microfluidic channels—one intertwined with the interdigital lines and the other positioned below the stub. The circuit has been fabricated using low-temperature co-fired ceramics technology and its performance was verified through the measurement of its responses for different fluids in the microfluidic channels. The results confirm the dual-sensing capability with zero mutual influence as well as good overall performance. Besides an excellent potential for dual-sensing applications, the proposed sensor is a good candidate for application in mixing fluids and cell counting.
机译:在本文中,我们提出了一种具有双重传感能力的新型微波微流体传感器。该传感器基于双模谐振器,该双模谐振器由一条折叠的微带线和一个在对称平面上的短截线组成,该微带线装有叉指线。由于特定的配置,谐振器表现出两个完全独立的谐振模式,这允许使用谐振位移方法同时感测两种流体。该传感器采用多层结构设计,具有建议的谐振器和两个分离的微流体通道,一个与叉指线缠绕在一起,另一个位于桩头下方。该电路是使用低温共烧陶瓷技术制造的,并且通过测量其对微流体通道中不同流体的响应来验证其性能。结果证实了具有零相互影响以及良好的整体性能的双重感应能力。除了在双重传感应用方面具有巨大潜力外,拟议的传感器还是混合流体和细胞计数应用的理想选择。

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