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Performance Characterization and Theoretical Modeling of Emitted Optical Power for High-Power White-LED Devices

机译:大功率白光LED器件发射光功率的性能表征和理论建模

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摘要

In this paper, optical power of high-power white-light-emitting diode (LED) devices is evaluated and characterized. A theoretical model for optical power is proposed. The measurements reveal that optical power decreases exponentially with junction temperature and increases linearly with current. The model considers conjunct effect of current and junction temperature on emitted optical power. The proposed theoretical model of optical power will facilitate the optical and thermal performance evaluation of LED devices and will be helpful to device design. With the presented optical power model, heat power can be estimated, because they are complementary to each other. Then, junction temperature of LED device can be predicted with known heat power. In addition, the optical power model can be applied to eliminate chromaticity shift phenomenon of trichromatic-based white-LED devices, simply by monitoring junction temperature and injection current of each chip. Validity of the optical power model has been verified by experimental measurements on two types of commercial LED devices.
机译:本文对大功率白光发光二极管(LED)器件的光功率进行了评估和表征。提出了光功率的理论模型。测量表明,光功率随结温呈指数下降,随电流呈线性增加。该模型考虑了电流和结温对发射光功率的联合影响。拟议的光功率理论模型将有助于LED器件的光学和热性能评估,并将有助于器件设计。利用提出的光功率模型,可以估算热功率,因为​​它们彼此互补。然后,可以利用已知的热功率来预测LED器件的结温。此外,光功率模型可以通过消除每个芯片的结温和注入电流来消除三基色白光LED器件的色度漂移现象。通过在两种类型的商用LED器件上进行的实验测量,已经验证了光功率模型的有效性。

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