A pixel-by-pixel thermal conductance tuning mechanism for uncooled microbolometers

N. Topaloglu, P. Nieva, M. Yavuz, J. Huissoon
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引用次数: 6

Abstract

The increase in the demand of using infrared detectors for thermal imaging of high temperature scenes initiated the research in microbolometer arrays with high operation temperature range. An efficient way of increasing this range is tuning the thermal conductance of the microbolometer array by electrostatic actuation, which is achieved by applying an actuation voltage to the substrate. However, using the substrate for actuation does not support pixel-by-pixel actuation, limiting the capabilities of the tunability. In this research, we demonstrate applying the actuation voltage to the micromirror which is located below the microbolometer. To avoid contact of the microbolometer to the micromirror, stoppers are used. We report that the thermal conductance is doubled at an actuation voltage of 12 volts, making it an efficient mechanism that can be used at next generation adaptive microbolometers.
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非冷却微辐射热计的逐像素热导调谐机制
红外探测器用于高温场景热成像需求的增加,引发了高工作温度范围微测热计阵列的研究。增加该范围的一种有效方法是通过静电驱动来调整微热计阵列的热导率,这是通过对衬底施加驱动电压来实现的。然而,使用基板驱动不支持逐像素驱动,限制了可调性的能力。在本研究中,我们演示了在微热计下方的微镜上施加驱动电压。为了避免微热计接触到微镜,使用了塞子。我们报告说,在12伏的驱动电压下,热导率增加了一倍,使其成为一种有效的机制,可以用于下一代自适应微辐射热计。
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