Wide Range Temperature Sensors for Harsh Environments

M. Elbuluk, A. Hammoud, R. Patterson
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Abstract

Silicon-on-insulator (SOI) parts are designed for high temperature applications and the potential exists about their performance at cryogenic temperature conditions. In this paper, the performance of SOI devices and circuits were evaluated under extreme temperatures and thermal cycling. Two oscillator circuits were constructed using a new SOI 555 timer chip and used as temperature sensors in harsh environments encompassing jet engines and space mission applications. The circuits, were evaluated between -190degC and +200degC. The output of each circuit produced a stream of square pulses whose frequency was a function of the sensed temperature. The results indicate that both circuits performed relatively well over the entire test temperature range. In addition, the performance of either circuit did not undergo any change after subjecting the circuits to limited thermal cycling over the temperature regime of -190degC and +200degC, and the circuits were able to cold start at -195degC.
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适用于恶劣环境的宽量程温度传感器
绝缘体上硅(SOI)部件是为高温应用而设计的,其在低温条件下的性能存在潜力。本文对SOI器件和电路在极端温度和热循环下的性能进行了评估。使用新型SOI 555定时器芯片构建了两个振荡器电路,并将其用作恶劣环境中的温度传感器,包括喷气发动机和太空任务应用。电路在-190°c和+200°c之间进行评估。每个电路的输出产生一串方波脉冲,其频率是被测温度的函数。结果表明,在整个测试温度范围内,两种电路的性能都相对较好。此外,在-190°c和+200°c的温度范围内,对电路进行有限的热循环后,两种电路的性能都没有发生任何变化,并且电路能够在-195°c冷启动。
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