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Capacitive humidity sensors based on a newly designed interdigitated electrode structure

机译:基于新设计的叉指式电极结构的电容式湿度传感器

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This paper presents a study of capacitive humidity sensors constructed based on a newly designed interdigitated electrode (IDE) structure with a polyimide (PI) sensing layer fabricated using micro-electro-mechanical system (MEMS) technology. The humidity sensors use an IDE with increased height, formed by the surface micromachining of a silicon substrate. The fabricated sensors showed higher sensitivity in variable ambient relative humidity (RH) when compared with the humidity sensors of a conventional IDE since the horizontal electric field lines, generated between the thick electrodes, are confined to the PI sensing layer. The effect of the thickness of the PI layer was also investigated. The fabricated sensors with a 4-μm-thick PI layer showed a higher sensitivity of 37.1 fF/%RH when compared with those of a 2- and 3-μm-thick PI layers, indicating that the properties of the sensors depend on the thickness of the PI layer. This is because the amount of the fringing electric field lines passing through the PI is determined by the PI thickness. In addition, the sensor with the 4-μm-thick PI showed very slight hysteresis with a maximum of 2.87%RH and displayed high stability with a variation range of 0.06 pF.
机译:本文介绍了一种电容式湿度传感器的研究,该电容式湿度传感器基于一种新设计的叉指式电极(IDE)结构,该结构采用微机电系统(MEMS)技术制成,聚酰亚胺(PI)传感层。湿度传感器使用具有更高高度的IDE,该IDE是通过硅基板的表面微加工形成的。与常规IDE的湿度传感器相比,所制造的传感器在可变的环境相对湿度(RH)中显示出更高的灵敏度,因为在厚电极之间产生的水平电场线被限制在PI传感层内。还研究了PI层厚度的影响。与厚度为2和3μm的PI层相比,厚度为4μm的PI层传感器的灵敏度更高,为37.1 fF /%RH,这表明传感器的性能取决于厚度PI层的这是因为穿过PI的边缘电场线的数量由PI厚度确定。此外,具有4μm厚PI的传感器显示出非常轻微的磁滞现象,最大值为2.87%RH,并显示出高稳定性,变化范围为0.06 pF。

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