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Light Extraction Improvement for LED COB Devices by Introducing a Patterned Leadframe Substrate Configuration

机译:通过引入图案化的引线框架基板配置来改善LED COB器件的光提取

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We propose a patterned leadframe substrate (PLS) configuration for light-emitting diode chip-on-board devices (LED COBs) with regular triangular structures on it. The mechanism of this method is analyzed through ray dynamics, which indicate that the light-propagating regimes are considerably different as the structure inclination angle $alpha$ changes. For typical encapsulant materials $({rm refractive}~{rm index}=1.41)$, the optimal $alpha$ is 22.5$^{circ}$–45 $^{circ}$. Then the performance of LED COB devices with PLS configurations are verified through 3-D Monte Carlo ray-tracing simulations as well as experimental measurements. Results show that the light-extraction efficiency is significantly improved. A simulated enhancement of 42% and a measured enhancement of 41.07% are observed. These results are in good consistency with the ray dynamic analysis, confirming our predictions about PLS methods. Furthermore, we find that such an LED COB configuration also provides a way to change the angular distribution of intensity from half-peak side angle 101.84$^{circ}$ to 141.80$^{circ}$. The findings of our work represent a new concept for LED COB packaging design of great practicality in building lighting systems.
机译:我们提出了一种图案化的引线框架基板(PLS)配置,用于其上具有规则三角形结构的发光二极管板上芯片设备(LED COB)。通过射线动力学分析了该方法的机理,这表明随着结构倾角αα的变化,光的传播方式显着不同。对于典型的密封材料$({rm折射}〜{rm指数} = 1.41)$,最优的$ alpha $是22.5 $ ^ {circ} $ – 45 $ ^ {circ} $。然后,通过3-D蒙特卡洛光线追踪模拟和实验测量来验证具有PLS配置的LED COB器件的性能。结果表明,光提取效率显着提高。观察到模拟增强为42%,实测增强为41.07%。这些结果与射线动力学分析高度吻合,证实了我们对PLS方法的预测。此外,我们发现这种LED COB配置还提供了一种将强度的角度分布从半峰侧角101.84 $ ^ circ更改为141.80 $ ^ circ的方法。我们工作的发现代表了在建筑物照明系统中非常实用的LED COB封装设计的新概念。

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