Institute of Electrical Engineering and Electronics, Poznan University of Technology, Piotrowo 3A, 60-965 Poznan, Poland.
Institute of Electric Power Engineering, Poznan University of Technology, Piotrowo 3A, 60-965 Poznan, Poland.
Sensors (Basel). 2021 Jul 23;21(15):5000. doi: 10.3390/s21155000.
This article describes the measuring system and the influence of selected factors on the accuracy of thermographic temperature measurement using a macrolens. This method enables thermographic measurement of the temperature of a small object with an area of square millimeters as, e.g., electronic elements. Damage to electronic components is often preceded by a rise in temperature, and an effective way to diagnose such components is the use of a thermographic camera. The ability to diagnose a device under full load makes thermography a very practical method that allows us to assess the condition of the device during operation. The accuracy of such a measurement depends on the conditions in which it is carried out. The incorrect selection of at least one parameter compensating the influence of the factor occurring during the measurement may cause the indicated value to differ from the correct value. This paper presents the basic issues linked to thermographic measurements and highlights the sources of errors. A measuring stand which enables the assessment of the influence of selected factors on the accuracy of thermographic measurement of electronic elements with the use of a macrolens is presented.
本文描述了使用微距镜头进行热成像温度测量的测量系统以及选定因素对测量精度的影响。该方法能够测量面积为平方毫米的小物体的温度,例如电子元件。电子元件的损坏通常伴随着温度的升高,而诊断此类元件的有效方法是使用热像仪。在满载条件下诊断设备的能力使热成像成为一种非常实用的方法,使我们能够在运行期间评估设备的状况。这种测量的准确性取决于进行测量的条件。至少有一个参数选择不当,补偿测量过程中发生的因素的影响,可能会导致指示值与正确值不同。本文介绍了与热成像测量相关的基本问题,并强调了误差的来源。本文提出了一种测量台,该测量台能够评估使用微距镜头对电子元件进行热成像测量时选定因素对测量精度的影响。