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Standard source for certification of optical-electronic devices

机译:光学电子设备认证的标准来源

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To reduce the error at the certification of optoelectronic devices, sources and detectors of the standard sources and its diaphragm must be thermally stabilized in order to create a uniform background. We developed an uncooled model blackbody TCID-100 with working temperature up to 100℃ with a thermally stabilized transmitter and the diaphragm set. The developed model is a cylinder made of red copper with a conical cavity. Cone length was chosen empirically to provide uniform heating over the entire length of the blackbody cavity. With the developed model, we conducted cavity temperature measurement transmitter, which enabled to evaluate the advantages and drawbacks of the blackbody design. In this article we examined models of blackbodies, the most popular types of cavities and the calculation of the thermal emissivity for them. We have designed blackbody and measured the cavity temperature change over the time.
机译:为了减少光电子设备认证中的错误,必须对标准光源的光源和检测器及其光阑进行热稳定处理,以产生均匀的背景。我们开发了一种不制冷的黑体TCID-100,其工作温度高达100℃,带有热稳定的变送器和膜片套件。研发的模型是带有圆锥形空腔的红铜圆柱体。根据经验选择锥的长度,以在黑体腔的整个长度上提供均匀的加热。利用开发的模型,我们进行了腔体温度测量变送器,从而能够评估黑体设计的优缺点。在本文中,我们研究了黑体模型,最流行的腔体类型以及它们的热发射率计算。我们设计了黑体并测量了随时间变化的腔体温度。

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