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Direct junction temperature measurement in high-power LEDs

机译:高功率LED的直接连接温度测量

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The light quality and long-term stability of phosphor converted light-emitting diodes (LEDs) for luminaires depend on the temperature distribution inside the LED chip and the color conversion element. Therefore, a reliable and accurate method to establish the LED's junction temperature is required to further improve and optimize high quality LED luminaires. In this paper we describe the development and application of an innovative junction temperature measurement method which is based on a precise and universally applicable calibration procedure, allowing to use the calibrated LED itself as a temperature sensor under the respective operation condition of interest. This method is based on an extremely fast pulse measurement procedure allowing to record pairs of forward current and voltage drop values periodically every microsecond starting from the first microsecond of a pulse. From these experiments we reap two kinds of result: (1) Independent of the pulse shape in our experiments we observe a constant relation of current-to-voltage drop which we interpret as a constant junction conductivity. Depending on the type of LED (but independent of the packaging technology) we obtain a constant junction conductivity throughout several ten microseconds which we understand as a proof that the junction temperature did not change during this very first pulse phase. (2) The junction conductivity obtained in this moment is a measure for the junction temperature so that a calibration can be made by comparison with an independent steady-state temperature measurement made at zero-current condition. The method has been successfully applied to thermally characterize high-power LED modules as a 3 × 3 LED arrays with color conversion glob tops built-up on an insulated metal substrate (IMS).
机译:磷光体的光质和长期稳定性转换为灯具的发光二极管(LED)取决于LED芯片内的温度分布和彩色转换元件。因此,需要一种可靠且准确的方法来建立LED的结温,需要进一步改进和优化高质量的LED照明器。在本文中,我们描述了一种基于精确和普遍适用的校准程序的创新结温测量方法的开发和应用,允许在感兴趣的相应操作条件下使用校准的LED本身作为温度传感器。该方法基于极快的脉冲测量过程,允许从脉冲的第一微秒开始,周期性地每秒录制正向电流和电压降的对。从这些实验来看,我们收获了两种结果:(1)与我们的实验中的脉冲形状无关,我们观察到我们解释为恒定的结电导率的电流与电压降的恒定关系。取决于LED的类型(但独立于包装技术),我们在整个几十微秒内获得恒定的结导率,我们理解的证明结温在这个非常第一脉冲相位期间没有改变。 (2)在该时刻获得的结电导率是结温的测量,从而可以通过在零电流条件下进行的独立稳态温度测量进行比较来进行校准。该方法已成功应用于热表征大功率LED模块作为3× 3个LED阵列,带有颜色转换的球体上的绝缘金属基板(IMS)内置。

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