首页> 外文会议>61st Electronic Components Technology Conference, 2011 >High humidity resistance of high-power white-light-emitting diode modules employing Ce:YAG doped glass
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High humidity resistance of high-power white-light-emitting diode modules employing Ce:YAG doped glass

机译:采用Ce:YAG掺杂玻璃的大功率白光发光二极管模块的高耐湿性

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The reliability study of thermal shock and damp heat tests for high-power white-light-emitting diode modules (WLEDMs) incorporating Ce:YAG doped glass, instead of conventional Ce:YAG doped silicone, as a phosphor layer is presented. The Ce:YAG doped glass as a phosphor layer is used for the glass to possess high transition temperature (Tg) of 750°C that can exhibit higher thermal stability and humidity resistance than conventional silicone. A comparison study of lumen loss, chromaticity shift, and transmittance loss of high-power WLEDWs with Ce:YAG doped glass and Ce:YAG doped silicone under thermal shock and damp heat tests was performed. The damp heat results showed that the high-power WLEDWs with Ce:YAG doped glass at 2∼8 wt% doping concentrations exhibited 67∼69%, 49∼65%, and 35∼67% better improvements than doped silicone for the lumen loss, chromaticity shift, and transmittance loss, respectively. The damp heat test demonstrated the larger improvement of glass doped in transmittance loss. The thermal shock results showed that the high-power WLEDWs with Ce:YAG doped glass at 2∼8 wt% doping concentrations exhibited 57∼68%, 53∼58%, and 58∼67% better improvements than doped silicone for the lumen loss, chromaticity shift, and transmittance loss, respectively. These results demonstrated that the Ce:YAG doped glass exhibited higher humidity resistance than the Ce:YAG doped silicone under damp heat and thermal shock tests. A better thermal stability and humidity resistance of doped glass phosphor layer may be beneficial to the many applications where the LED modules with high-power and high reliability are demanded.
机译:提出了掺入Ce:YAG的玻璃而不是传统的Ce:YAG的有机硅作为荧光粉层的大功率白光发光二极管模块(WLEDM)的热冲击和湿热测试的可靠性研究。掺有Ce:YAG的玻璃作为荧光粉层,使玻璃具有750°C的高转变温度(T g ),与传统的有机硅相比,它具有更高的热稳定性和耐湿性。对掺有Ce:YAG的玻璃和掺Ce:YAG的有机硅的大功率WLEDW在热冲击和湿热试验下的流明损耗,色度漂移和透射率损耗进行了比较研究。湿热结果表明,掺有Ce:YAG掺杂玻璃的高功率WLEDWs在2〜8 wt%的掺杂浓度下,其光通量损失比掺杂有机硅提高了67〜69%,49〜65%和35〜67%。 ,色度偏移和透射率损失。湿热试验表明掺杂玻璃的透射率损失有了较大的改善。热冲击结果表明,掺有Ce:YAG掺杂玻璃的大功率WLEDWs在掺杂浓度为2〜8 wt%时,其流明损耗比掺杂有机硅提高了57〜68%,53〜58%和58〜67%。 ,色度偏移和透射率损失。这些结果表明,在湿热和热冲击试验中,掺Ce:YAG的玻璃比掺Ce:YAG的有机硅具有更高的耐湿性。掺杂的玻璃磷光体层的更好的热稳定性和耐湿性对于需要具有高功率和高可靠性的LED模块的许多应用可能是有益的。

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