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发光二极管球形封装:光传输效率的一个方程

Light-emitting diode spherical packages: an equation for the light transmission efficiency.

作者信息

Moreno Ivan, Bermúdez David, Avendaño-Alejo Maximino

机构信息

Physics Faculty, Universidad Autónoma de Zacatecas, Zacatecas 98060, México.

出版信息

Appl Opt. 2010 Jan 1;49(1):12-20. doi: 10.1364/AO.49.000012.

Abstract

Virtually all light-emitting diodes (LEDs) are encapsulated with a transparent epoxy or silicone gel. Here we analyze the optical efficiency of spherical encapsulants. We develop a quasi-radiometric equation for the light transmission efficiency, which incorporates some ideas of Monte Carlo ray tracing into the context of radiometry. The approach includes the extended source nature of the LED chip and the chip radiance distribution. The equation is an explicit function of the size and the refractive index of the package, and also of several chip parameters such as shape, size, radiance, and location inside the package. To illustrate the use of this equation, we analyze several packaging configurations of practical interest, for example, a hemispherical dome with multiple chips, a flat encapsulation as a special case of the spherical package, and approximate calculations of an encapsulant with a photonic crystal LED or a photonic quasi-crystal LED. These calculations are compared with Monte Carlo ray tracing, giving almost identical values.

摘要

几乎所有发光二极管(LED)都用透明环氧树脂或硅胶进行封装。在此,我们分析球形封装材料的光学效率。我们推导了一个用于光传输效率的准辐射度方程,该方程将蒙特卡罗光线追踪的一些思想融入到辐射度学的范畴中。该方法考虑了LED芯片的扩展光源特性以及芯片的辐射率分布。该方程是封装尺寸、折射率以及几个芯片参数(如形状、尺寸、辐射率和在封装内的位置)的显式函数。为了说明该方程的应用,我们分析了几种实际感兴趣的封装结构,例如,具有多个芯片的半球形圆顶、作为球形封装特殊情况的平面封装,以及光子晶体LED或光子准晶体LED封装材料的近似计算。这些计算结果与蒙特卡罗光线追踪结果进行了比较,二者几乎相同。

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