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Measurement of the thermal characteristics of packaged double-heterostructure light emitting diodes for space applications using spontaneous optical spectrum properties

机译:使用自发光谱特性测量用于太空应用的封装双异质结构发光二极管的热特性

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In this paper, the thermal characteristics of packaged infrared double-heterostructure light emitting diode (DH-LED), used in space applications, are measured under conditions that reproduce space environments. The characterisation uses spontaneous optical spectrum characteristics, current-voltage curves and optical power measured under a primary vacuum (< 10(-2) Torr) at temperatures between -30 and 100 degrees C. The investigations have been specifically oriented toward the extraction of junction temperature in the steady-state regime and junction-to-case thermal resistance. A specific model based on semiconductor theory for electrical transport has been used to calculate the shape of the spontaneous emission spectrum between the band-gap energy and higher energies and its change versus temperature. A linear relation between the junction temperature and the dissipated power has been found for various case temperatures appropriately controlled in a LN2 cryostat. These results confirm that thermal behavior of DH-LEDs depends on both environment temperature and dissipated power level in the active zone and that the junction-to-case thermal resistance is not constant over a large range of temperatures, diminishing at higher currents as already reported by recent papers on high brightness DH-LED. Finally, this study could represent a practical non-destructive method providing qualitative information about variations of junction temperature and junction-to-case thermal resistance taking into account an industrial qualification framework approach based on electroluminescence analysis, frequently measured by manufacturers or end-users. (C) 2007 Elsevier Ltd. All rights reserved.
机译:在本文中,在可复制太空环境的条件下,测量了用于太空应用的封装红外双异质结构发光二极管(DH-LED)的热特性。该表征使用自发光谱特性,电流-电压曲线和在-30至100摄氏度之间的温度下在一次真空(<10(-2)托)下测得的光功率。研究专门针对结的提取稳态温度和结到外壳的热阻。已使用基于半导体理论的用于电传输的特定模型来计算带隙能量和高能之间的自发发射光谱的形状及其随温度的变化。对于在LN2低温恒温器中适当控制的各种壳体温度,已经发现结温与耗散功率之间存在线性关系。这些结果证实,DH-LED的热行为取决于环境温度和有源区中的耗散功率水平,结到外壳的热阻在较大的温度范围内不是恒定的,如已报道的,在较高电流下会减小最近关于高亮度DH-LED的论文。最后,这项研究可以代表一种实用的非破坏性方法,提供有关结温和结至外壳热阻变化的定性信息,同时考虑到基于电致发光分析的工业鉴定框架方法,该方法通常由制造商或最终用户进行测量。 (C)2007 Elsevier Ltd.保留所有权利。

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