DocumentCode
1395516
Title
An Accelerated Test Method for Predicting the Useful Life of an LED Driver
Author
Han, Lei ; Narendran, Nadarajah
Author_Institution
Lighting Res. Center, Rensselaer Polytech. Inst., Troy, NY, USA
Volume
26
Issue
8
fYear
2011
Firstpage
2249
Lastpage
2257
Abstract
This paper proposes an accelerated life-test method for LED drivers that use electrolytic capacitors at the output stage. The type of failure considered here is parametric. Estimated failure rates of power components suggest the electrolytic capacitor used at the driver output stage is the weakest link. As an electrolytic capacitor degrades, its capacitance decreases and its equivalent series resistance increases, contributing to an increase of output current ripple. Thus, the amplitude of the output current ripple is a good indicator of the degradation level of the electrolytic capacitor. Temperature was selected as the acceleration factor because LED drivers are usually exposed to elevated temperatures in typical applications. The current ripple was experimentally found to have a negative impact on light output and efficacy; therefore, the useful life of an LED driver is proposed as the time it takes for the output current ripple to reach its maximum rate of change. The relationship between the capacitor´s positive pin temperature and the useful life of the LED driver was then established using the proposed definition. The accelerated life test shows that the LED driver´s useful life is shortened exponentially, as the output electrolytic capacitor´s operating temperature increases.
Keywords
driver circuits; electrolytic capacitors; equivalent circuits; life testing; light emitting diodes; LED driver; accelerated life-test method; acceleration factor; capacitor positive pin temperature; current ripple; electrolytic capacitors; equivalent series resistance; useful life; Capacitance; Capacitors; Converters; Current control; Driver circuits; Lighting; Reliability; Driver circuits; LEDs; electrolytic capacitors; life estimation; prediction methods; reliability;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2010.2095885
Filename
5658163
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