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交流发光二极管热特性的模拟分析 被引量:7

Thermal Simulation of Alternating Current Light Emitting Diodes
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摘要 由于交流发光二极管(AC-LED)在实际应用中无需交流/直流整流变压器,它的发展越来越被关注。随着器件功率的增大,芯片结温升高,对器件的光通量、光功率及寿命等产生负面影响,所以精确掌握AC-LED的温升规律就成为芯片设计的关键。运用FloEFD有限元软件进行模拟仿真1 W白光AC-LED分别在直流和交变功率驱动下的瞬态热特性,结果表明在加载交变信号情况下,器件结温会以直流信号的结温为中心周期振荡,振荡的频率与输入功率频率相同,但有明显的相位移动。同时,AC-LED在不同的输入功率和频率下的结温变化显示稳态时的平均结温和结温振荡幅度都随功率的增大而线性上升,但随着频率的增大而降低。 Alternating current light emitting diodes(AC-LED) have attracted more and more attentions due to the advantage of free of alternate current(AC)/direct current(DC) converter in practical application.With the increase of input power,the rising junction temperature will have negative influence on the the luminous flux,the optical power,the lifetime and other parameters of LED.Therefore,the understanding of the principle of accurate temperature rise of AC-LED is the key to the chip design.The finite-element analysis software(FloEFD) is used to simulate the transient thermal properties of 1 W white AC-LED driven by DC and AC power respectively.The results show that the junction temperature of AC-LED driven by AC power,fluctuates periodically around that driven by DC power and the fluctuation frequency is the same as that of the input signal,but with an apparent phase shift.Meanwhile,the variation of junction temperature of AC-LED driven at different powers and frequencies shows that the average junction temperature and its fluctuation amplitude increases linearly with the input power at steady state,however,decreases with the increase of frequency.
出处 《光学学报》 EI CAS CSCD 北大核心 2012年第6期173-178,共6页 Acta Optica Sinica
基金 国家自然科学基金(11104230) 福建省产学重大科技项目(2011H6025)资助课题
关键词 光学器件 交流发光二极管 热仿真 结温 热阻 optical devices alternating current light emitting diodes thermal simulation junction temperature thermal resistance
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  • 1谭力,刘玉玲,余飞鸿.光源显色指数的计算方法研究[J].光学仪器,2004,26(4):41-44. 被引量:27
  • 2伊晓燕,郭金霞,马龙,王立彬,陈宇,刘志强,王良臣.倒装结构大功率蓝光LEDs的研制[J].光电子.激光,2006,17(6):693-696. 被引量:10
  • 3郑代顺,钱可元,罗毅.低色温高显色性大功率白光LED的制备及其发光特性研究[J].光电子.激光,2006,17(12):1422-1426. 被引量:19
  • 4H.H.Yen,W.Y.Yeh,H.C.Kuo.GaN alternating current ligth-emitting device[J].Physical Status Solidi (a),2007,204(6):2077-2081.
  • 5Grigory A.Onushkin,Lee Young-Jin,Yang Jung-Ja et al..Efficient alternating current operated white light-emitting diode chip[J].IEEE photon.Technol.Lett.,2009,21(1):33-35.
  • 6J.P.Ao,Hisao Sato,Takashi Mizobuchi et al..Monolithic Blue LED Series Arrays for High-Voltage AC Operation[J].Physical Status Solidi (a),2002,194(2):376-379.
  • 7Jaehee Cho,Jaewook Jung,Jung Hye Chat et al..Alternating-current Light Emitting Diodes with a Diode Bridge Circuitry[J].Japanese J.Appl.Phys.,2007,46(48):L1194-L1196.
  • 8F.S.Hwu,G.J.Sheu,M.T.Lin et al..Method for determining the junction temperature of alternating current light-emitting diodes[J].IET Sci.Meas.& Tchnol.,2009,3(2):159-164.
  • 9Y.Q.Zong,P.T.Chou,M.T.Lin et al..Practical method for measurement of AC-driven LEDs at a given junction temperature by using active heat sinks[J].SPIE,2009,7422(8):742208-1-742208-7.
  • 10H.Morkoc.Handbook of Nitride Semiconductors and Devices,Vol.3[M].Weinheim,Germany:Wiley-VCH,2009,36-39.

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