首页> 外文期刊>Journal of Micromechanics and Microengineering >Dynamic and static thermal study of micromachined heaters: the advantages of visible and near-infrared thermography compared to classical methods
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Dynamic and static thermal study of micromachined heaters: the advantages of visible and near-infrared thermography compared to classical methods

机译:微机械加热器的动态和静态热研究:与传统方法相比,可见光和近红外热像仪的优势

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摘要

We report on the dynamic and static thermal characterization of microsystems using a visible and near-infrared (NIR) thermography system based on a low-cost standard CCD sensor. The interest of this method is that it is possible to obtain a true spatial resolution better than 500 nm, which is necessary in high spatial resolution applications (microsystem applications). Another interesting point of this optical method is that the temperature error versus the emissivity error is always very low (compared to infrared thermography). We show, in this study, that this behavior originates in the high sensitivity of Planck's law in this wavelength range (compared to infrared range). Thus, we demonstrate the principal advantages of this method for micromachined heater application. Thermal measurements (in dynamic and static modes) were performed on micro-heaters commonly used in microsystems, platinum- and silicon-based micromachined heaters. The results show the capability of the method in terms of the thermal resolution and spatial resolution as well as the capacity to quickly obtain static and dynamic thermal images of the studied sample.
机译:我们使用基于低成本标准CCD传感器的可见光和近红外(NIR)热成像系统报告微系统的动态和静态热特性。该方法的兴趣在于,可以获得高于500 nm的真实空间分辨率,这在高空间分辨率应用程序(微系统应用程序)中是必需的。这种光学方法的另一个有趣之处在于,温度误差与发射率误差始终非常低(与红外热成像法相比)。在这项研究中,我们表明,这种行为源自该波长范围内(与红外范围相比)普朗克定律的高灵敏度。因此,我们证明了该方法在微机械加热器应用中的主要优势。热测量(以动态和静态模式进行)是在微系统中常用的微加热器,基于铂和硅的微机械加热器中进行的。结果显示了该方法在热分辨率和空间分辨率方面的能力,以及快速获得所研究样品的静态和动态热图像的能力。

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