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A High Temperature Capacitive Pressure Sensor Based on Alumina Ceramic for in Situ Measurement at 600 °C

机译:基于氧化铝陶瓷的高温电容压力传感器用于600°C的原位测量

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摘要

In response to the growing demand for in situ measurement of pressure in high-temperature environments, a high temperature capacitive pressure sensor is presented in this paper. A high-temperature ceramic material-alumina is used for the fabrication of the sensor, and the prototype sensor consists of an inductance, a variable capacitance, and a sealed cavity integrated in the alumina ceramic substrate using a thick-film integrated technology. The experimental results show that the proposed sensor has stability at 850 °C for more than 20 min. The characterization in high-temperature and pressure environments successfully demonstrated sensing capabilities for pressure from 1 to 5 bar up to 600 °C, limited by the sensor test setup. At 600 °C, the sensor achieves a linear characteristic response, and the repeatability error, hysteresis error and zero-point drift of the sensor are 8.3%, 5.05% and 1%, respectively.
机译:为了应对在高温环境下对压力进行现场测量的需求不断增长,本文提出了一种高温电容式压力传感器。传感器使用了高温陶瓷材料-氧化铝,原型传感器由电感,可变电容和采用厚膜集成技术集成在氧化铝陶瓷基板中的密封腔组成。实验结果表明,所提出的传感器在850°C下具有超过20分钟的稳定性。在高温和高压环境中的表征成功地证明了在压力范围为1至5 bar(最高600°C)下的传感能力,受传感器测试设置的限制。在600°C时,传感器实现线性特性响应,并且传感器的重复性误差,磁滞误差和零点漂移分别为8.3%,5.05%和1%。

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