Lifetime predictions for dimmable two-channel tunable white luminaires

J. Davis, A. Smith, Terry Clark, K. Mills, C. Perkins
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引用次数: 2

Abstract

Two-channel tunable white lighting (TWL) systems represent the next wave of solid-state lighting (SSL) systems and promise flexibility in light environment while maintaining the high reliability and luminous efficacy expected with SSL devices. TWL systems utilize LED assemblies consisting of two different LED spectra (i.e., often a warm white assembly and a cool white assembly) that are integrated into modules. While these systems provide the ability to adjust the lighting spectrum to match the physiology needs of the task at hand, they also are a potentially more complex lighting system from a performance and reliability perspective. We report an initial study on the reliability performance of such lighting systems including an examination of the lumen maintenance and chromaticity stability of warm white and cool white LED assemblies and the multi-channel driver that provides power to the assemblies. Accelerated stress tests including operational bake tests conducted at 75°C and 95°C were used to age the LED modules, while more aggressive temperature and humidity tests were used for the drivers in this study. Small differences in the performance between the two LED assemblies were found and can be attributed to the different phosphor chemistries. The lumen maintenances of both LED assemblies were excellent. The warm white LED assemblies were found to shift slightly in the green color direction over time while the cool white LED assemblies shifted slightly in the yellow color direction. The net result of these chromaticity shifts is a small, barely perceptible reduction in the tuning range after 6,000 hours of exposure to an accelerating elevated temperature of 75°C.
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可调光双通道可调白色灯具的寿命预测
双通道可调白色照明(TWL)系统代表了固态照明(SSL)系统的下一波浪潮,在保持高可靠性和高光效的同时,保证了光环境的灵活性。TWL系统利用由两种不同LED光谱组成的LED组件(即,通常是暖白色组件和冷白色组件)集成到模块中。虽然这些系统提供了调节照明光谱以适应手头任务的生理需求的能力,但从性能和可靠性的角度来看,它们也是一个潜在的更复杂的照明系统。我们报告了这类照明系统可靠性性能的初步研究,包括对暖白光和冷白光LED组件的流明维持和色度稳定性的检查,以及为组件提供电源的多通道驱动器。加速压力测试(包括在75°C和95°C下进行的操作烘烤测试)用于LED模块的老化,而在本研究中,驱动程序使用了更严格的温度和湿度测试。发现两种LED组件之间的性能差异很小,这可以归因于不同的荧光粉化学成分。两个LED组件的流明维护都非常出色。随着时间的推移,暖白色LED组件在绿色方向上略有移动,而冷白色LED组件在黄色方向上略有移动。这些色度变化的净结果是一个小的,几乎无法察觉的减少后,6000小时的调谐范围暴露在加速升高的温度为75°C。
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