DocumentCode
2876768
Title
Non-ideal characteristic analysis of GaN-based light-emitting diode using current-voltage (I–V) and low-frequency noise experiment
Author
Park, Jungjin ; Kang, Taewook ; Woo, Daeyoung ; Son, Joong-Kon ; Lee, Jong-Ho ; Park, Byung-Gook ; Shin, Hyungcheol
Author_Institution
Sch. of Electr. Eng., Seoul Nat. Univ., Seoul, South Korea
fYear
2011
fDate
4-7 July 2011
Firstpage
1
Lastpage
4
Abstract
In order to investigate the reliability problem of the GaN-based light-emitting diode (LED), the non-ideal characteristics of the GaN-based LED were analyzed through current-voltage (I-V) and low-frequency noise experiment. Ideality factor, parasitic resistance and parasitic diode were considered to analyze the I-V characteristic. We could find that the parasitic diode makes the forward hump and divides the I-V curve into the parasitic and the main part. Those two parts have much different ideality factor and series resistance value, respectively. Power spectral density (PSD) with various frequency and current were measured to examine the noise characteristic. We could find the high level and the steep slope of the PSD at low currents, which indicate the unstable noise characteristic.
Keywords
III-V semiconductors; electrical resistivity; gallium compounds; light emitting diodes; semiconductor device noise; semiconductor device reliability; wide band gap semiconductors; GaN; LED; current-voltage characteristics; ideality factor; light-emitting diode; low-frequency noise; nonideal characteristic analysis; parasitic diode; parasitic resistance; power spectral density; reliability; series resistance; Light emitting diodes; Low-frequency noise; P-n junctions; Reliability; Resistance; Semiconductor diodes;
fLanguage
English
Publisher
ieee
Conference_Titel
Physical and Failure Analysis of Integrated Circuits (IPFA), 2011 18th IEEE International Symposium on the
Conference_Location
Incheon
ISSN
1946-1542
Print_ISBN
978-1-4577-0159-7
Electronic_ISBN
1946-1542
Type
conf
DOI
10.1109/IPFA.2011.5992713
Filename
5992713
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