Electro-thermal modeling of power LED using SPICE circuit solver

C. Negrea, P. Svasta, M. Rangu
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引用次数: 19

Abstract

This paper presents a method of multi-domain modeling for power Light Emitting Diodes (LEDs) with the goal of providing the ability for simultaneous simulations of electrical, thermal and optical behavior. This approach enables engineers to have a better insight into LED critical performance parameters in various operating conditions, by considering the main electrical-thermal and optical interactions. Our proposed multi-domain model integrates an electrical model based on typical diode equations, a dynamic thermal model composed of a Cauer type RC network driven by currnet source, and an optical model derived from the forward current and junction temperature variations of the total luminous flux. The presented approach offers three significant advantages over the traditional single-domain modeling: the effects of packaging and board level thermal management can be evaluated in correlation with electrical parameters, the self heating effect of the junction can be analyzed in the time domain, and the variation of luminous flux output can be observed. The model is defined based on SPICE circuit elements and can be used with any conventional SPICE circuit solver, without the need for solver algorithm modification. The inputs necessary for defining the model are based on standard LED measurements and are often specified in the manufacturer's datasheets. All the necessary algorithms required to obtain the multi-domain model SPICE code were implemented in Matlab.
基于SPICE电路求解器的大功率LED电热建模
本文提出了一种功率发光二极管(led)的多域建模方法,目的是提供同时模拟电学、热学和光学行为的能力。通过考虑主要的电-热和光相互作用,这种方法使工程师能够更好地了解各种工作条件下LED的关键性能参数。我们提出的多域模型集成了基于典型二极管方程的电学模型,由电流源驱动的Cauer型RC网络组成的动态热模型,以及由总光通量的正向电流和结温变化导出的光学模型。与传统的单域建模相比,该方法具有三个显著的优点:封装和板级热管理的影响可以与电参数相关,结的自热效应可以在时域内分析,并且可以观察光通量输出的变化。该模型是基于SPICE电路元件定义的,可以与任何传统的SPICE电路求解器一起使用,而无需修改求解器的算法。定义模型所需的输入是基于标准LED测量,并且通常在制造商的数据表中指定。在Matlab中实现了获取多域模型SPICE代码所需的所有算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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