发光学报
髮光學報
발광학보
CHINESE JOURNAL OF LUMINESCENCE
2010年
1期
96-100
,共5页
田传军%张希艳%邹军%王妍彦
田傳軍%張希豔%鄒軍%王妍彥
전전군%장희염%추군%왕연언
温度%大功率LED%光通量%驱动电压%发光效率
溫度%大功率LED%光通量%驅動電壓%髮光效率
온도%대공솔LED%광통량%구동전압%발광효솔
temperature%high-power light-emitting diode%luminous flux%forward voltage%luminous efficiency
利用板上芯片封装chip-on-board(COB)技术封装大功率LED,比较分析其在不同散热器上的温度变化规律.研究了不同的热平衡温度对大功率LED光通量、电学参数的影响.在实验过程中,光通量、驱动电压、功率和发光效率都呈现出下降的趋势,并且最终稳定在其热平衡值.研究还发现:对于大功率LED照明系统,光通量、驱动电压、发光效率与散热器温度具有线性关系.在电源接通时,随着散热器温度的升高,LED的反向饱和电流迅速升高.通过线性拟合,得到大功率LED照明系统的光通量温度系数、驱动电压温度系数和光效温度系数.
利用闆上芯片封裝chip-on-board(COB)技術封裝大功率LED,比較分析其在不同散熱器上的溫度變化規律.研究瞭不同的熱平衡溫度對大功率LED光通量、電學參數的影響.在實驗過程中,光通量、驅動電壓、功率和髮光效率都呈現齣下降的趨勢,併且最終穩定在其熱平衡值.研究還髮現:對于大功率LED照明繫統,光通量、驅動電壓、髮光效率與散熱器溫度具有線性關繫.在電源接通時,隨著散熱器溫度的升高,LED的反嚮飽和電流迅速升高.通過線性擬閤,得到大功率LED照明繫統的光通量溫度繫數、驅動電壓溫度繫數和光效溫度繫數.
이용판상심편봉장chip-on-board(COB)기술봉장대공솔LED,비교분석기재불동산열기상적온도변화규률.연구료불동적열평형온도대대공솔LED광통량、전학삼수적영향.재실험과정중,광통량、구동전압、공솔화발광효솔도정현출하강적추세,병차최종은정재기열평형치.연구환발현:대우대공솔LED조명계통,광통량、구동전압、발광효솔여산열기온도구유선성관계.재전원접통시,수착산열기온도적승고,LED적반향포화전류신속승고.통과선성의합,득도대공솔LED조명계통적광통량온도계수、구동전압온도계수화광효온도계수.
Using the high power light-emitting diode(LED) made by the method of chip-on-board (COB) packaging, this article compared and analyzed the temperature variation discipline on the different thermal radiators. We investigated the relationship between the different thermal equilibrium temperature and photo-electric parameter, such as luminous flux, electrical parameters, and so on. The results shown that when the LED illumination system is turned on, the temperature of the radiator rises rapidly, and keeps in a certain value after a period of time. In this process, the luminous flux, the forward voltage, power and luminous efficiency presents the downward trend. These parameters fluctuate around the equilibrium value. For high-power white light LED illumination systems, luminous flux, forward voltage and luminous efficiency keeps good linear relationship with radiator temperature, respectively. The results also showed that, with the rising of reverse saturation current, the radiator temperature rapidly rises. By linear fitting, luminous flux temperature coefficient, vol-tage temperature coefficient and luminous efficiency temperature coefficient were calculated.Finally, the relation formula of temperature and luminous flux was proposed. By measuring the radiator temperature, the luminous flux can be calculated. It can be used as a kind of calculation methods of luminous flux. High-power white LED lighting system should be reasonable design to improve its thermal dissipation capacity. Reducing equilibrium temperature of high-power LED-lighting system is an effective method to improve performance of the system.