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Impact of junction temperature over forward voltage drop for red, blue and green high power light emitting diode chips

机译:结温对红色,蓝色和绿色大功率发光二极管芯片的正向压降的影响

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Commercially available light emitting diodes (LEDs) that have high efficiencies and long lifetime are offered in advanced packaging technologies. Many cooling systems were developed for current LED systems that enable a better removal of heat than counterpart devices offered earlier this decade. On the other hand, these lighting systems are still producing a considerable amount of heat that is still not effectively removed. Especially, p-n junctions of LEDs are the most critical regions where a significant amount of heating occurs, and it is crucial to determine the temperature of this active region to meet the lumen extraction, color, light quality and lifetime goals. In literature, there are some proposed junction temperature measurement methods such as Peak Wavelength Shift, Thermal (Infrared) Imaging and Forward Voltage Change methods mostly focused on blue LEDs. In this study, we are studying three common types of LEDs (Red, Green, and Blue) and comparing their forward voltage drop (Vf) behaviors. A set of theoretical, computational and experimental studies have been performed. It is found that optical power change with temperature in red LEDs are much higher than blue and green chips. The green LED chip experienced the largest slope having the largest change in forward voltage compared to other LED chips.
机译:先进的封装技术提供了具有高效率和长寿命的市售发光二极管(LED)。为当前的LED系统开发了许多冷却系统,这些系统比本世纪初提供的对等设备能够更好地散热。另一方面,这些照明系统仍在产生大量的热量,而这些热量仍然没有被有效地消除。尤其是,LED的p-n结是发生大量发热的最关键区域,因此确定此有源区域的温度以满足流明提取,颜色,光质量和使用寿命的目标至关重要。在文献中,提出了一些结温测量方法,例如峰值波长漂移,热(红外)成像和正向电压变化方法,这些方法主要针对蓝色LED。在这项研究中,我们正在研究三种常见的LED类型(红色,绿色和蓝色),并比较它们的正向压降(Vf)行为。已经进行了一系列的理论,计算和实验研究。发现红色LED中的光功率随温度的变化远高于蓝色和绿色芯片。与其他LED芯片相比,绿色LED芯片的斜率最大,正向电压变化最大。

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