首页> 外文会议>Electronic Components and Technology Conference, 2005. Proceedings. 55th >A new thermal measurement technique using nematic liquid crystals with IR laser illumination for visible light emitting devices
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A new thermal measurement technique using nematic liquid crystals with IR laser illumination for visible light emitting devices

机译:使用向列液晶和红外激光照明的新型热测量技术,用于可见光发射设备

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We report a new configuration of nematic liquid crystal thermography (NLCT) that uses laser illumination to improve the contrast of thermal images on light emitting devices (LEDs). The wavelength is selected so that the laser light is not absorbed by the device under measurement. The most important application of this new configuration is to measure the junction temperature of light emitting devices. Traditional NLCT cannot be used on light emitting devices because the light emitted by the device overwhelms the light reflected from the nematic liquid crystal (NLC) layer coated on the device surface. Thus, the temperature information carried by the reflected light is lost. Using laser illumination and a color filter, we have made this difficult measurement a reality. This technique is nondestructive and can be performed in real-time during device operation. It has sub-micron spatial resolution and /spl plusmn/1/spl deg/C temperature accuracy. The thermal resistance of LEDs has been measured with this method. The new measurement configuration is a valuable tool for studying the thermal performance of LEDs. It provides the device engineers and physicists additional information to improve device structures and performance.
机译:我们报告了一种向列液晶热成像(NLCT)的新配置,该配置使用激光照明来改善热成像在发光器件(LED)上的对比度。选择波长,以使激光不被被测设备吸收。这种新配置的最重要应用是测量发光器件的结温。传统的NLCT不能用于发光设备,因为该设备发出的光会淹没从涂覆在设备表面的向列液晶(NLC)层反射的光。因此,反射光所携带的温度信息会丢失。使用激光照明和彩色滤光片,我们使这一困难的测量成为现实。此技术是非破坏性的,可以在设备运行期间实时执行。它具有亚微米的空间分辨率和/ spl plusmn / 1 / spl deg / C温度精度。 LED的热阻已通过这种方法进行了测量。新的测量配置是研究LED热性能的宝贵工具。它为设备工程师和物理学家提供了其他信息,以改善设备的结构和性能。

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