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GLASS CERAMICS FOR SOLID STATE LIGHTING

机译:固态照明的玻璃陶瓷

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Glass ceramic (GC) materials containing a single phase of Ce:YAG micro-crystals were developed from homogeneous glasses in an Y2O3-Al2O3-SiO2 system.The glass ceramics show yellow fluorescence due to the Ce~(3+):5d->4f transition by 460nm excitation.Backward excitation of the GC plate with a blue LED gives white emission,which is binary complementary.From the analyses of the electro-luminescence (EL) measurement data with an integrating,it was revealed that the composite of the GC and a blue LED chip gives high luminous efficiency comparable to that of commercial white LEDs working by the same current power.With increasing GC thickness,the color coordinate (x,y) of the spectra increased owing to the increase of ratio of yellow to blue bands.There exists an optimum thickness for the maximum luminous efficiency,where the GC show maximum yellow fluorescence by absorbing moderate amount of 460nm-light.The variation of color coordinate locus in the CIE chromaticity diagram followed nearly that of the Planckian locus for the black body radiation.The correlated color temperature can also be changed from 8000K to 5000K by increasing GC thickness.With this GC plate,we can avoid the problems of the present packaged white LEDs,i.e.,degradation of organic resin,difficulty in packaging of powder phosphors and so on.
机译:含有单相Ce:YAG微晶的玻璃陶瓷(GC)材料是从Y2O3-Al2O3-SiO2系统中的均匀玻璃中产生的。玻璃陶瓷由于Ce〜(3 +):5d->表示黄色荧光4F通过460nm激发的过渡。使用蓝色LED的GC板的Backward激励给出白色发射,这是二进制互补的。从电致发光(EL)测量数据的分析具有整合,据揭示了综合的复合材料GC和蓝色LED芯片提供高发光效率,与商业白光LED的高发光效率相当,与GC厚度的增加,由于黄色比率的增加,光谱的颜色坐标(x,y)增加蓝色带。存在最大发光效率的最佳厚度,其中GC通过吸收中等量的460nm光显示最大的黄色荧光。CIE色度图中的颜色坐标基因座的变化接近t黑色身体辐射的普朗斯轨迹的帽子。通过增加GC厚度,相关的色温也可以从8000K到5000K改变为5000K。在这个GC板上,我们可以避免目前包装的白光LED的问题,即有机的降级树脂,粉末磷光体难以包装等。

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