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A General Photo-Electro-Thermal Theory for Light Emitting Diode (LED) Systems

机译:发光二极管(LED)系统的一般光电热理论

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The photometric, electrical, and thermal features of LED systems are highly dependent on one another. By considering all these factors together, it is possible to optimize the design of LED systems. This paper presents a general theory that links the photometric, electrical, and thermal behaviors of an LED system together. The theory shows that the thermal design is an indispensable part of the electrical circuit design and will strongly influence the peak luminous output of LED systems. It can be used to explain why the optimal operating power, at which maximum luminous flux is generated, may not occur at the rated power of the LEDs. This theory can be used to determine the optimal operating point for an LED system so that the maximum luminous flux can be achieved for a given thermal design. The general theory has been verified favorably by experiments using high-brightness LEDs.
机译:LED系统的光度,电学和热学特征高度相互依赖。通过综合考虑所有这些因素,可以优化LED系统的设计。本文提出了将LED系统的光度,电学和热学行为联系在一起的一般理论。该理论表明,热设计是电路设计必不可少的一部分,并将极大地影响LED系统的峰值发光输出。它可以用来解释为什么在LED的额定功率下不会产生最佳光通量的最佳工作功率。该理论可用于确定LED系统的最佳工作点,从而对于给定的散热设计可实现最大光通量。通过使用高亮度LED的实验已很好地验证了一般理论。

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