DocumentCode
3452676
Title
Use of Anisotropic Laser Etching and Transparent Conducting Layer to Alleviate Current Crowding Effect in Vertical-Structured GaN-Based Light-Emitting Diodes
Author
Wang, Shui-Jinn ; Chen, Tron-Min ; Uang, Kai-Ming ; Chen, Shiue-Lung ; Tsai, Ching-Chung ; Liou, Bor-Wen ; Yang, Su-Hua
Author_Institution
Institute of Microelectronics, Dept. of Electrical Eng., National Cheng Kung Univ., Tainan, Taiwan. Phone: +886-6-2757575-62351, Fax: +886-6-2763882, E-mail: sjwang@mail.ncku.edu.tw
fYear
2006
fDate
26-28 June 2006
Firstpage
29
Lastpage
30
Abstract
An anisotropic laser etching to the surface layer (n-GaN) of vertical-structured GaN-based light-emitting diodes (LEDs) associated with a transparent conducting layer (TCL) to release current crowding effect (CCE) for better light emission uniformity and higher optical efficiency is proposed and demonstrated. The theory behind the proposed scheme was verified by a two-dimensional device simulator (ISE-TCAD), which indicates that immune of CCE would be possible once an optimal combination of the concave-structured n-GaN layer and TCL has been achieved. In experiments, 40-mil LEDs with an anisotropic etching area of 800 ??m in diameter, an etching depth of 1.75 ??m at center, and a 300-nm-thick Indium-Zinc-Oxide (IZO) layer have been successfully prepared. Typical improvement in light output power by 26% at an injection current of 350 mA as compared to the one without anisotropic etching has been obtained.
Keywords
Anisotropic magnetoresistance; Computer science; Etching; Gallium nitride; Laser beams; Laser theory; Light emitting diodes; Microelectronics; Power generation; Proximity effect;
fLanguage
English
Publisher
ieee
Conference_Titel
Device Research Conference, 2006 64th
Conference_Location
State College, PA, USA
ISSN
1548-3770
Print_ISBN
0-7803-9748-7
Type
conf
DOI
10.1109/DRC.2006.305104
Filename
4097521
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