Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5442609 | Optical Materials | 2017 | 10 Pages |
Abstract
Nowadays, major commercial w-LEDs fabricated by the traditionally gold-wire-welding packaging technology have undergone considerable development as indoor/outdoor lighting sources due to its high-energy utilization efficiency, long service life, environmental friendliness, and excellent chromatic stability. While, new generation applications in projections, automotive lighting, street lighting, plaza lighting, and high-end general lighting need further improvements in power handling and light extraction. Herein, transparent Ce:YAG glass-ceramics (GCs) phosphor was prepared by low-temperature co-sintering polycrystalline Ce:YAG phosphor powder and home-made PbO-B2O3-ZnO-SiO2 glass powder. Thereafter, the flip-chip (FC) w-LEDs were fabricated with the GCs phosphor plates and FC blue chips. The GCs-based FC w-LEDs show not only excellent heat- and humidity-resistance characteristics, but also superior optical performances with an LE of 112.8 lm/W, a CRI of 71.2, a CCT of 6103Â K as well as a chromaticity coordinate of (0.3202, 0.3298), under a high operation current of 400Â mA. The technology route will open a practically commercial feasible approach to achieve excellent performances for advanced high-power FC w-LEDs.
Related Topics
Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
Chaoyang Ma, Yongge Cao, Xiaofei Shen, Zicheng Wen, Ran Ma, Jiaqi Long, Xuanyi Yuan,