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MEMS-based humidity sensor with integrated temperature compensation mechanism

机译:具有集成温度补偿机制的基于MEMS的湿度传感器

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摘要

This study applies conventional micro-electro-mechanical systems (MEMS) techniques to develop a novel low-cost humidity sensor comprising a silicon substrate, a freestanding cantilever and an integrated resistive thermal sensor. The cantilever has a composite structure comprising a thin layer of platinum (Pt) deposited on a silicon nitride layer and then covered with a polyimide sensing layer. The cantilever deflected in the upward direction as water molecules absorbed by the polyimide sensing layer. The humidity sensor chip caused a measurable change in the resistance of the platinum layer. By compensating the change in the measured resistance by the ambient temperature, the absolute value of the relative humidity can be directly derived. The experimental results show that the sensor has a time-response of 0.9 s when exposed to a sudden humidity change of 65%RH to 95%RH. The sensitivity of the sensors decreases as the temperature increases. Furthermore, the sensor with the longest Pt resistor has the greatest sensitivity. In additions, the temperature-calibrated resistance signal generated by the sensor varies linearly with the ambient humidity.
机译:这项研究应用常规的微机电系统(MEMS)技术来开发一种新型的低成本湿度传感器,该传感器包括硅基板,独立式悬臂和集成电阻热传感器。悬臂具有复合结构,该复合结构包括沉积在氮化硅层上,然后覆盖有聚酰亚胺传感层的铂薄层(Pt)。悬臂随着水分子被聚酰亚胺传感层吸收而向上偏转。湿度传感器芯片导致铂层电阻的可测量变化。通过用环境温度补偿测量电阻的变化,可以直接得出相对湿度的绝对值。实验结果表明,传感器在65%RH至95%RH的突然湿度变化下具有0.9 s的时间响应。传感器的灵敏度随着温度的升高而降低。此外,具有最长Pt电阻的传感器具有最大的灵敏度。此外,传感器产生的温度校准电阻信号会随环境湿度线性变化。

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