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This paper studies the interaction of catastrophic failure of the driver and LED luminous flux decay for an integrated LED lamp with an electrolytic capacitor-free LED driver. Electronic thermal simulations are utilized to obtain the lamp’s dynamic history of temperature and current for two distinct operation modes: constant current mode (CCM) and constant light output (CLO) mode, respectively. Driver’s...
Lumen decay of LEDs is affected by time, junction temperature and input current. In LED lamps, both temperature and input current vary with time due to driver's degradation and temperature change of lamps. This paper proposes a lumen decay prediction method which considers effects of operation time, temperature and current by taking the interaction of LED and driver performance into account. In particular,...
In this paper, a systematic approach for reliability assessment of electrolytic capacitor-free LED drivers is developed to investigate the failure rate of MOSFETs in the drivers. An original fly-back driver with electrolytic capacitor and two modified electrolytic capacitor-free drivers are studied, and their performances are compared. Due to LED lumen depreciation during operation, current of the...
With application of accelerated luminous depreciation test method of CSA020 which can reduce the lifetime test from 6,000 hours to less than 2,000 hours, LED lighting products with highly lumen depreciation or short lifetime can be easily screened out. Many potential factors can lead to that highly depreciation issue. This paper attempted to perform highly depreciation cause analysis by investigation...
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