面向气象探空的微型热敏电阻设计及性能研究
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TH811 TN37

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中国科学院“西部之光”基金(2021-XBQNXZ-003)项目资助


Design and performance study of miniatured thermistor for meteorological sounding
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    摘要:

    针对高空气象探测用温度传感器存在响应时间长、测温精度差以及辐射误差大等现状,研制了一种封装体积小、响应速 度快、抗辐照能力强的温度传感器。 采用固相法制备了 Mn-Ni-Cu-Fe-O 基片状热敏电阻,尺寸分别为 0. 4 mm × 0. 4 mm × 0. 25 mm 与 0. 6 mm×0. 6 mm×0. 25 mm。 在片状热敏电阻敏感元表面依次沉积绝缘膜和铝金属反射薄膜。 结果表明,研制的热 敏电阻在-80℃ ~ 60℃范围内,其阻值范围分别为 1 000 kΩ~ 4. 2 kΩ 与 375 kΩ~ 1. 6 kΩ;热耗散系数为 1. 034 mW/ ℃ ,响应时间 为 0. 63 s。 利用太阳光模拟器对热敏电阻进行太阳辐射测温误差研究,在 100 W/ m 2 的辐照强度下测温误差最小为 0. 22℃ 。 该热敏电阻有望应用在高空气象探测的探空仪中。

    Abstract:

    In response to the common problems of long response time, poor temperature measurement accuracy, and high radiation error of temperature sensors used in high-altitude detection, a temperature sensor with small packaging volume, fast response speed, strong radiation resistance is developed. Mn-Ni-Cu-Fe-O-based chip thermistors with dimensions of 0. 4 mm×0. 4 mm×0. 25 mm and 0. 6 mm× 0. 6 mm×0. 25 mm are prepared by the solid-phase method. On the sensitive surface of the chip thermistor, an insulation film and an aluminum metal reflector film are deposited sequentially. The results show that the resistance range of the developed thermistor is 1 000~ 4. 2 kΩ and 375 ~ 1. 6 kΩ in the temperature range of - 80℃ to 60℃ . Thermal dissipation and response speed tests are conducted on the thermistor, and the results show a thermal dissipation coefficient of 1. 034 mW/ ℃ and a response time of 0. 63 s for the developed sensor. The temperature measurement error of the thermistor is studied by using a solar simulator, and the minimum temperature measurement error is 0. 22℃ under an irradiance intensity of 100 W/ m 2 . The thermistor has the potential to be used in the sounding instrument of high-altitude meteorological detection.

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刘 熠,王军华,霍 鹏,常爱民,姚金城.面向气象探空的微型热敏电阻设计及性能研究[J].仪器仪表学报,2023,44(8):258-264

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  • 在线发布日期: 2023-12-19
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