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Design and performance of 256x256 bolometer-type uncooled infrared detector

机译:256x256热辐射计式非制冷红外探测器的设计与性能

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Abstract: This paper discusses the design and performance of a 256 $MUL 256 bolometer-type uncooled infrared detector. First, model calculations are carried out to clarify the relations of the noise equivalent temperature difference (NETD) to the electrical properties of the bolometer material. The properties are mainly resistivity, the temperature coefficient of resistance (TCR) and 1/f noise. To obtain real-time images with NETD values smaller than 0.15 K for F/1 optics, vanadium oxide thin film was developed as the bolometer material, having a sheet resistance range of 5 - 50 k approximately ega@/square and a TCR value of $MIN@2%/K. This material did not exhibit thermochroism like VO$-2$/(A), because it was identified as VO$-2$/(B). The bolometer-array was statistically evaluated and put into the infrared camera. Finally, a thermal image with a NETD of 0.15 K was obtained. !14
机译:摘要:本文讨论了256 $ MUL 256热辐射计型非制冷红外探测器的设计和性能。首先,进行模型计算以阐明噪声等效温度差(NETD)与辐射热测量材料的电性能之间的关系。这些属性主要是电阻率,电阻温度系数(TCR)和1 / f噪声。为了获得F / 1光学器件的NETD值小于0.15 K的实时图像,开发出了氧化钒薄膜作为辐射热测量材料,其薄层电阻范围为5-50 k ega / square,TCR值为5。 $ MIN @ 2%/ K。该材料没有表现出像VO $ -2 $ /(A)那样的热变色,因为它被确定为VO $ -2 $ /(B)。对辐射热计阵列进行统计评估,并将其放入红外热像仪中。最后,获得了NETD为0.15 K的热图像。 !14

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