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Reducing thermal transient induced errors in thermopile sensors in ear thermometer applications

机译:减少耳温计应用中热电堆传感器中的热瞬态引起的误差

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摘要

In ear thermometers and similar applications, thermopile sensors have to face a challenging thermal environment. The steady-state sensor temperature as well as the change of sensor temperature, heat flow, and thermal gradients have a significant impact on the sensor's reading. As opposed to the well-known steady-state sensor temperature (so-called "ambient temperature"), the effects of thermal transients have not jet been understood well in the past. They occur when the sensor warms up while the thermometer is inserted into the ear. They have to be treated in addition to the traditional (steady state) ambient temperature compensation. Isothermal packaging of the sensor significantly reduces the error due to thermal transients. This can be combined with mathematical prediction of the remaining error. Based on an analytical thermal model, we show that the error can be represented by a series of derivatives of the sensor housing temperature. Numerical calculation and compensation of the error in only first order combined with an isothermal package allows for an error reduction by the factor of 30.
机译:在耳温计和类似的应用中,热电堆传感器必须面对充满挑战的热环境。传感器的稳态温度以及传感器温度,热流和热梯度的变化对传感器的读数有重大影响。与众所周知的稳态传感器温度(所谓的“环境温度”)相反,过去并没有很好地理解热瞬变的影响。当温度计插入耳朵时,传感器预热时会发生这种情况。除了传统的(稳态)环境温度补偿外,还必须对它们进行处理。传感器的等温包装大大降低了由于热瞬变引起的误差。可以将其与剩余误差的数学预测结合起来。基于解析热模型,我们表明误差可以由传感器外壳温度的一系列导数表示。仅对一阶误差进行数值计算和补偿,并与等温套件结合使用,可使误差降低30倍。

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