DocumentCode
1100973
Title
Linear Cascade Arrays of GaN-Based Green Light-Emitting Diodes for High-Speed and High-Power Performance
Author
Shi, J.-W. ; Sheu, J.K. ; Wang, C.K. ; Chen, C.-C. ; Hsieh, C.-H. ; Chyi, J.-I. ; Lai, W.C.
Author_Institution
Nat. Central Univ., Taoyuan
Volume
19
Issue
18
fYear
2007
Firstpage
1368
Lastpage
1370
Abstract
In the following study, we demonstrated linear cascade GaN-based light-emitting-diode (LED) arrays at a wavelength of approximately 520 nm. Experimental LEDs were analyzed with the goal to improve the output power and differential efficiency of a single LED. The study shows that using arrays with up to four LEDs connected in series, we can achieve four times the improvement in output power (differential quantum efficiency) under the same bias current as compared to a single LED apparatus. We have also measured the modulation-speed performance of experimental LEDs, and both devices exhibit similar 3-dB bandwidth (90 MHz) under the same bias currents. Experimental results indicate that the cascade connection offers the advantages of significantly enhanced external differential efficiency and provision of a method to use a constant-voltage power supply. The current crowding problem and resistance-capacitance-limited bandwidth degradation issues in a large active area LED can also be minimized using the connection demonstrated in our experiment.
Keywords
III-V semiconductors; gallium compounds; high-speed optical techniques; light emitting diodes; light sources; wide band gap semiconductors; LED arrays; bandwidth 90 MHz; constant-voltage power supply; current crowding; green light-emitting diode; high-power performance; high-speed performance; linear cascade arrays; resistance-capacitance-limited bandwidth degradation; Fiber lasers; High speed optical techniques; Light emitting diodes; Optical arrays; Optical pumping; Optical resonators; Power generation; Pump lasers; Quantum cascade lasers; Semiconductor lasers; Cascade; GaN; light-emitting diode (LED);
fLanguage
English
Journal_Title
Photonics Technology Letters, IEEE
Publisher
ieee
ISSN
1041-1135
Type
jour
DOI
10.1109/LPT.2007.903336
Filename
4292169
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