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Parametric Compact Thermal Modeling of Power LEDs

机译:电力LED的参数小型热建模

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摘要

Light-emitting diodes are nowadays the most dynamically developing type of light sources. Considering that temperature is the main factor affecting electrical and lighting parameters of these devices, thermal models are essential subcomponents of multidomain models commonly used for simulation of their operation. The authors investigated white power light-emitting diodes soldered to metal core PCBs. The tested devices were placed in a light-tight box on a cold plate and their cooling curves were registered for different diode current and cold plate temperature values. These data allowed the computation of optical and real heating power values and consequently the generation of compact thermal models in the form of Foster and Cauer RC ladders. This rendered possible also the analysis of the influence of the considered factors on compact model element values and their parametrization. Consequently, the resulting models yield accurate estimates of device junction temperature in virtually any realistic operating conditions and they could be easily included in multidomain compact models.
机译:如今发光二极管是最动态的光源类型。考虑到这种温度是影响这些装置的电气和照明参数的主要因素,热模型是多域模型的必要子组件,通常用于模拟其操作。作者调查了焊接到金属芯PCB的白色电力发光二极管。将测试的装置放置在冷板上的轻质箱中,并向不同的二极管电流和冷板温度值注册它们的冷却曲线。这些数据允许计算光学和真实加热功率值,从而以福斯特和Cauer RC梯子的形式产生紧凑的热模型。这也可能还有可能分析考虑因素对紧凑型元素值及其参数化的影响。因此,所产生的模型几乎可以在几乎任何现实的操作条件下均准确估计设备结温,并且可以容易地包括在多域紧凑型号中。

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