Suzhou Electric Appliance Research Institute
期刊号: CN32-1800/TM| ISSN1007-3175

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基于不同电流波形下大功率LED芯片光电热性能研究

来源:电工电气发布时间:2016-03-14 15:14 浏览次数:9

基于不同电流波形下大功率LED芯片光电热性能研究 

王信泽,徐玉珍,林维明 
福州大学 电气工程与自动化学院,福建 福州 350108 
 

摘 要:以不同知名厂家的大功率LED芯片为对象,基于简化后的热网络模型,采用积分球测试系统,分析研究了大功率LED芯片的光通量、光效以及色温等输出光性能随输入电流和温度变化的规律。结果表明,在不同输入电流波形驱动时,大功率LED芯片的输出特性有所不同且LED的光电特性受温度的影响明显。
关键词:大功率LED芯片;光电热性能;输出特性
中图分类号:TN312+.8 文献标识码:A 文章编号:1007-3175(2015)04-0005-05


Study on Photoelectric Thermal Performance of High-Power LED Chip Based on Different Current Waveforms 

WANG Xin-ze, XU Yu-zhen, LIN Wei-ming 
College of Electrical Engineering and Automation, Fuzhou University, Fuzhou 350108, China 
 

Abstract: Taking a high power LED chip produced by different well-known manufacturers as the object, this paper used an integrating sphere testing system based on simplified thermal network model, analyzing the rules of output light performance for the high power LED chip, including its light flux, light efficiency and color temperature, which changed with the input current and temperature. The result shows that under different input current waveforms, the output characteristics of the high power LED chip has different photoelectric performances, and the photoelectric characteristics of the LED are significantly influenced by temperature.
Key words: high power LED chip; photoelectric thermal performance; output characteristic


参考文献
[1] Tao X, Hui S Y R.A General Photo-Electro-Thermo-Temporal Theory for Light-Emitting Diode(LED) Systems[C]//IEEE Energy Conversion Congress and Exposition(ECCE),2010:184-191.
[2] Hui S Y R, Qin Y X.A General Photo-Electro-Thermal Theory for Light Emitting Diode(LED) Systems[J].IEEE Transactions on Power Electronics, 2009, 24(8):1967-1976.
[3] 徐玉珍,林维明.一种简化变量的新型LED光电热模型[J].光学学报,2013(5):230-236.
[4] Tao Xuehui, Chen Huanting, Li Sinan, Hui S Y R. A New Noncontact Method for the Prediction of Both Internal Thermal Resistance and Junction Temperature of White Light-Emitting Diodes[J].IEEE Transactions on Power Electronics, 2012, 27(4):2184-2192. 
[5] Sauerlander G, Hente D, Radermacher H.Driver Electronics for LEDs[C]//41st Industry Applications Conference Annual Meeting, 2006.
[6] 王志斌,张跃宾,王忠东,等.基于热阻网络的大功率LED热管散热研究[J].应用光学,2012,33(6):1014-1018.
[7] 李勇,李鹏芳,曾志新.大功率LED典型热沉结构散热性能分析[J].半导体光电,2010,31(5):723-728.
[8] Garcia J, Lamar D G, Costa M A, Alonso J M, Secades M R.An estimator of luminous flux for enhanced control of high brightness LEDs[C]// Proceedings of IEEE PESC, Rhodes, Greece, 2008.
[9] Schmid M, Kuebrich D,Weiland M, Duerbaum T.Evaluation on the Efficiency of Power LEDs Driven with Currents Typical to Switch Mode Power Supplies[C]//Proceedings of IEEE Industry Applications Conference,42nd IAS Annual Meeting,2007.
[10] Negreac,Svasta Paul,Rangu Mariusal, et al.Electro-thermal modeling of power LED using SPICE circuit solver[C]//35th International Spring Seminar on Proceedings of IEEE Electronics Technology (ISSE), 2012.
[11] 肖海清,饶丰,杨帆,等.LED光衰色偏与伏安特性的关系[J].科学技术与工程,2012,20(32):8532-8535.
[12] Loo K H, Lai Y M, Tan S C, Tse C K.On the color stability of phosphor-converted white leds under dc, pwm, and bilevel drive[J].IEEE Transactions on Power Electronics,2012,27(2):974-984.