Temperature effects on photoacoustic carbon dioxide sensor developed using mid-IR LED

Lucky A. Ishaku, D. Hutson, D. Gibson
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引用次数: 8

Abstract

The demand for low-cost, small size and low power consumption gas sensors that can have long operation life is on the rise. This paper presents a work on the effect that temperature has on a type of these sensors. It is a novel resonant photoacoustic carbon dioxide sensor made from mid-IR LED and MEMS microphone. Results obtained from the sensor show that there is photoacoustic (PA) signal loss when temperature increases. Also, higher temperatures decrease the sensor's sensitivity and quality factor but cause a proportional increase on the resonance frequency. The results show that the effect of temperature on photoacoustic sensors is significant and has to be taken into account at the design stage and compensated. This aspect would be a major objective of future work. However, change in resonance frequency caused by temperature variation was tracked throughout the measurement to ensure that the sensor was operated in the resonant mode, which offers the advantage of natural signal amplification.
中红外LED光声二氧化碳传感器的温度效应
对低成本、小尺寸、低功耗、工作寿命长的气体传感器的需求正在上升。本文介绍了温度对此类传感器的影响。它是一种由中红外LED和MEMS麦克风组成的新型谐振光声二氧化碳传感器。实验结果表明,温度升高会引起光声信号的损耗。此外,较高的温度会降低传感器的灵敏度和质量因子,但会导致共振频率成比例地增加。结果表明,温度对光声传感器的影响是显著的,必须在设计阶段加以考虑和补偿。这方面将是今后工作的一个主要目标。然而,在整个测量过程中跟踪温度变化引起的谐振频率变化,以确保传感器在谐振模式下工作,从而提供了信号自然放大的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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