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Temperature issues with white laser diodes, calculation and approach for new packages

机译:白色激光二极管的温度问题,新封装的计算和方法

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摘要

Bright white light sources are of significant importance for automotive front lighting systems. Today's upper class systems mainly use HID or LED light sources. As a further step laser diode based systems offer a high luminance, efficiency and allow the realization of new dynamic and adaptive light functions and styling concepts. The use of white laser diode systems in automotive applications is still limited to laboratories and prototypes even though announcements of laser based front lighting systems have been made. But the environment conditions for vehicles and other industry sectors differ from laboratory conditions. There for a model of the system's thermal behavior is set up. The power loss of a laser diode is transported as thermal flux from the junction layer to the diode's case and on to the environment. There for its optical power is limited by the maximum junction temperature (for blue diodes typically 125 - 150°C), the environment temperature and the diode's packaging with its thermal resistances. In a car's headlamp the environment temperature can reach up to 80°C. While the difference between allowed case temperature and environment temperature is getting small or negative the relevant heat flux also becomes small or negative. In early stages of LED development similar challenges had to be solved. Adapting LED packages to the conditions in a vehicle environment lead to today's efficient and bright headlights. In this paper the need to transfer these results to laser diodes is shown by calculating the diodes lifetimes based on the presented model. © 2015 SPIE.
机译:明亮的白光源对于汽车前照明系统至关重要。当今的上层系统主要使用HID或LED光源。作为进一步的步骤,基于激光二极管的系统提供了高亮度,高效率,并允许实现新的动态和自适应光功能以及样式概念。尽管已经宣布了基于激光的前照明系统,但在汽车应用中使用白色激光二极管系统仍然仅限于实验室和原型。但是车辆和其他工业部门的环境条件与实验室条件不同。在那里建立了系统的热行为模型。激光二极管的功率损耗作为热通量从结层传输到二极管的外壳,再到环境。那里的光功率受到最大结温(对于蓝色二极管通常为125-150°C),环境温度以及二极管封装及其热阻的限制。在汽车的前照灯中,环境温度可能高达80°C。尽管允许的外壳温度与环境温度之间的差异变小或为负,但相关的热通量也变小或为负。在LED开发的早期阶段,必须解决类似的挑战。使LED封装适应车辆环境的条件导致了当今高效,明亮的前灯。在本文中,通过基于提出的模型计算二极管的寿命,表明了将这些结果转移到激光二极管的需求。 ©2015 SPIE。

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