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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >A phosphor converted RED light for automotive LED rear lamp and compliance with ECE light regulation
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A phosphor converted RED light for automotive LED rear lamp and compliance with ECE light regulation

机译:磷光体转换了汽车LED后灯的红光,并符合ECE光调节

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摘要

In conventional red color lighting LED lamp for vehicles are composed of red color lighting LED and additional transparent or red lenses. Generally red color lighting LED is based on the semiconductor materials as AlGaInP, AlGaAs or GaAsP. Such RED LEDs are mostly affected by temperature. As the temperature increases, the luminous flux droops sharply and lighting efficiency decreases accordingly. In addition, the light color changes due to the wavelength shift phenomenon. This makes the design for automotive ECE regulation for red light very demanding. In this study, it is intended to develop a high-efficiency RED LED light for automobile rear lamps with the phosphor-converted LEDs technology used the characteristics of blue light LED. The luminous flux droop affected by temperature change which is the most important parameter in vehicle lamp performance, is measured, and the compliance with the red light ECE regulation for automobiles is compared and evaluated. For measuring the optical properties, it was performed using the T3Ster TeraLED system. The PC RED LED chips for new development used blue LED based on InGaN (455 nm) and conventional RED LED chips are AllnGaP LEDs (614 nm, 620 nm). To optimize optical properties of PC RED LED, phosphor was applied in 5 grades according to concentration. The best optical properties of PC RED LED shows at the phosphor concentration of 40 %. The results have important implications for improving the performance of automotive red lamps.
机译:在传统的红色照明中,车辆用LED灯由红色照明LED和附加的透明或红色透镜组成。一般来说,红色照明LED基于AlGaInP、AlGaAs或GaAsP等半导体材料。这种红色LED主要受温度影响。随着温度的升高,光通量急剧下降,照明效率相应降低。此外,由于波长偏移现象,光的颜色会发生变化。这使得针对红灯的汽车ECE法规的设计要求非常高。本研究旨在利用蓝光LED的特性,采用荧光粉转换LED技术,开发一种用于汽车尾灯的高效红色LED灯。测量了车灯性能中最重要的参数——温度变化对光通量下降的影响,并比较和评估了汽车对红灯ECE法规的遵从性。为了测量光学特性,使用T3Ster TeraLED系统进行测量。新开发的PC红色LED芯片使用基于InGaN(455nm)的蓝色LED,而传统的红色LED芯片都是NGAP LED(614nm,620nm)。为了优化PC红色LED的光学性能,根据浓度将荧光粉分为5个等级。荧光粉浓度为40%时,PC红色LED的光学性能最佳。研究结果对提高汽车红灯的性能具有重要意义。

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