M. Nawi, A. A. Manaf, Mohamad Faizal Abd Rahman, M. Arshad, O. Sidek
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摘要

本文介绍了一种新型的基于流体的单侧电极压力传感器的研制。传感器的结构由容器和电极组成。对于容器,膜和微通道结合在一个结构中。同时,在前人研究的基础上,对共面电极的设计进行了扩展。提出了以少量液体为传感元件的微流控技术来测量外部压力。当外部压力施加到传感器上时,膜发生偏转,液体在微通道内移位。感应电极使用电双层概念测量变化,并给出电容输出。该传感器采用印刷电路板(PCB)工艺制成电极,容器采用聚合物工艺制成。之所以选择PDMS这样的聚合物,是因为它适合作为膜来实现。由于其介电常数,甲醇被用作液体。采用LCR计记录和测量不同施加压力下的数据实验。在压力为2kPa至30kPa时,展示了电容响应。传感器灵敏度为0.06pF/kPa。输出电容的标准差为0.04。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel of fluidic based one side electrode type pressure sensor
This paper presents the development of the novel fluidic based one side electrode pressure sensor. The structure of the sensor consists of container and an electrode. For the container, the membrane and microchannel were combined in one structure. Meanwhile, the design of the electrode was extended from the pattern of coplanar electrode based on the previous study. The microfluidic technology by using a small amount of liquid as a sensing element was proposed to measure the external pressure. When the external pressure was applied to the sensor, the membrane was deflected and the liquid displaced inside the microchannel. The sensing electrode measured the changes using electrical double layer concepts and gave the output in capacitance. The sensor was successfully fabricated for electrode using printed circuit board (PCB) process and the container using polymer fabrication process. The polymer such as PDMS was chosen because it was suitable to be implemented as a membrane. The methanol was used as a liquid due to its dielectric constant. The data experiment was recorded and measured using LCR meter for different applied pressure. The capacitance response was demonstrated for pressure 2kPa until 30kPa. The sensitivity of the sensor was 0.06pF/kPa. Also, the standard deviation of output capacitance equaled to 0.04.
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