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Temperature Feedback Control for Improving the Stability of a Semiconductor-Metal-Oxide (SMO) Gas Sensor

机译:温度反馈控制可提高半导体金属氧化物(SMO)气体传感器的稳定性

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摘要

Stability is a major concern of semiconductor-metal-oxide (SMO) gas sensors in practical applications, as they may cause false alarm problems. Ambient temperature is a major factor affecting the SMO gas sensor's stability. In this paper, we use a novel way to improve temperature stability of SMO (tin oxide) gas sensors by applying a temperature feedback control circuits which are compatible with our microelectromechanical systems senor fabrication. A built-in platinum temperature sensor can precisely detect the sensor's working temperature. It provides feedback information to compensate the microheater's current to maintain the sensor's working temperature constant, regardless of ambient temperature change. Test results showed that, with this approach, significant improvement of stability has been achieved compared to SMO gas sensors without temperature compensation under the same ambient variation. The algorithm is realized through a hardware circuit, whose advantages include real time, large feedback gain, and low cost.
机译:在实际应用中,稳定性是半导体金属氧化物(SMO)气体传感器的主要关注点,因为它们可能会引起误报问题。环境温度是影响SMO气体传感器稳定性的主要因素。在本文中,我们采用一种新颖的方法,通过应用与我们的微机电系统传感器制造兼容的温度反馈控制电路来提高SMO(氧化锡)气体传感器的温度稳定性。内置的铂金温度传感器可以精确检测传感器的工作温度。它提供反馈信息以补偿微加热器的电流,以保持传感器的工作温度恒定,而不管环境温度如何变化。测试结果表明,与在相同环境变化下没有温度补偿的SMO气体传感器相比,采用这种方法可以显着提高稳定性。该算法通过硬件电路实现,其优点是实时,反馈增益大,成本低。

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