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Estimation of LED Junction Temperature Based on Forward Voltage Method for Digital Hardware Implementation

机译:基于正向电压方法的LED结温估计在数字硬件实现中的应用

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In contrast to classical light bulbs, LEDs used for lighting applications achieve greater energy efficiency. Nevertheless, LEDs are not lossless; power loss generates heat in the semiconductor junctions as well as in the light conversion material. High temperature significantly impairs the luminescent material and results in degeneration of the luminescent encapsulation material whereby its transparency is reduced. Avoiding high temperatures of an LED extends the live span and guarantees light quality. Therefore, temperatures of the p-n junction has to be measured and controlled by the LED driver. One considered constraint for implementing a temperature controller in the LED driver is the use of a hardware description language for the digital part to limit design complexity. Common temperature estimation methods are either mathematical to complex to be implemented into the LED driver or not accurate enough to protect p-n junctions against high temperatures. This paper describes a less complex mathematical approach to determine the p-n junction temperature based on the forward-voltage method. The related calculations are of moderate complexity allowing integration into a small size custom IC.
机译:与传统的灯泡相比,用于照明应用的LED具有更高的能源效率。尽管如此,LED并非无损。功率损耗会在半导体结以及光转换材料中产生热量。高温会严重损害发光材料,并导致发光封装材料退化,从而降低其透明度。避免LED的高温会延长寿命,并确保光的质量。因此,必须通过LED驱动器测量和控制p-n结的温度。在LED驱动器中实现温度控制器的一种被考虑的约束条件是对数字部件使用硬件描述语言来限制设计的复杂性。常见的温度估算方法要么是数学上的,要么复杂到要在LED驱动器中实施,要么不够精确,无法保护p-n结免受高温影响。本文介绍了一种基于正向电压方法确定p-n结温的较简单的数学方法。相关计算的复杂度中等,可以集成到小尺寸的定制IC中。

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