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CRYOGENIC CHARACTERIZATION OF LEDS FOR SPACE APPLICATION

机译:空间应用LED的低温表征

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摘要

In the frame of EUCLID project, the Calibration Unit of the VIS (Visible Imager) instrument must provide an accurate and well characterized light source for in-flight instrument calibration without noise when it is switched off. The Calibration Unit consists of a set of LEDs emitting at various wavelengths in the visible towards an integrating sphere. The sphere's output provides a uniform illumination over the entire focal plane. Nine references of LEDs from different manufacturers were selected, screened and qualified under cryogenic conditions. Testing this large quantity of samples led to the implementation of automated testing equipment with complete in-situ monitoring of optoelectronic parameters as well as temperature and vacuum values. All the electrical and optical parameters of the LED have been monitored and recorded at ambient and cryogenic temperatures. These results have been compiled in order to show the total deviation of the LED electrical and electro-optical properties in the whole mission and to select the best suitable LED references for the mission. This qualification has demonstrated the robustness of COTS LEDs to operate at low cryogenic temperatures and in the space environment. Then 6 wavelengths were selected and submitted to an EMC sensitivity test at room and cold temperature by counting the number of photons when LEDs drivers are OFF. Characterizations were conducted in the full frequency spectrum in order to implement solutions at system level to suppress the emission of photons when the LED drivers are OFF. LEDs impedance was also characterized at room temperature and cold temperature.
机译:在EUCLID项目的框架内,VIS(可见光成像仪)仪器的校准单元必须提供准确且特征明确的光源,用于关闭飞行中的仪器进行无噪声校准。校准单元由一组在可见光中朝着积分球发射各种波长的LED组成。球体的输出在整个焦平面上提供均匀的照明。在低温条件下,选择,筛选和鉴定了来自不同制造商的9种LED参考。对大量样品进行测试导致实现了自动测试设备的实现,该设备具有对光电参数以及温度和真空值的完整原位监控。 LED的所有电学和光学参数均已在环境温度和低温条件下进行了监控和记录。汇总这些结果是为了显示整个任务中LED电气和光电特性的总偏差,并为任务选择最合适的LED参考。该资格证明了COTS LED在低温和低温环境下运行的坚固性。然后选择6个波长,并通过计算LED驱动器关闭时的光子数,在室温和低温下进行EMC灵敏度测试。为了在系统级实施解决方案以在LED驱动器关闭时抑制光子的发射,在全频谱中进行了表征。在室温和低温下,LED的阻抗也得到了表征。

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