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Thermal modelling of high-power laser diodes mounted using various types of submounts

机译:使用各种类型的基座安装的高功率激光二极管的热模型

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摘要

Using three-dimensional thermal modelling of a highpower 980-nm laser diode with a stripe contact width of 100 mm as an example, we analyse the thermal parameters of high-power laser diodes mounted using submounts. We consider a range of thermal conductivities of submounts that includes parameters of widely used thermal compensators based on AlN, BeO and SiC, as well as on CuW and CuMo composites and polycrystalline and single-crystal synthetic diamond with high thermal conductivity. Taking into account experimental overall efficiency vs. pump current data, we calculate the temperature of the active layer as a function of the width, thickness and thermal conductivity of the submount at thermal loads corresponding to cw output powers of 10, 15 and 20 W.
机译:以带状接触宽度为100 mm的高功率980 nm激光二极管的三维热模型为例,我们分析了使用底座安装的高功率激光二极管的热参数。我们考虑了基座的一系列导热系数,其中包括基于AlN,BeO和SiC以及基于CuW和CuMo复合材料以及具有高导热系数的多晶和单晶合成金刚石的广泛使用的热补偿器的参数。考虑到实验性总体效率与泵浦电流数据的关系,我们计算了有源层的温度与底座的宽度,厚度和导热系数的函数关系,该底座在热负荷下对应于10、15和20 W的连续输出功率。

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