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    Please use this identifier to cite or link to this item: http://ir.lib.ncu.edu.tw/handle/987654321/49488


    Title: 高效能LED關鍵光熱模組元件技術之研究-子計畫三:高適應性檢測LED封裝熱特性技術開發(II);Subproject 3: Highly Adaptive Led Packaging Themal Properties Measurement Technology (Ii)
    Authors: 鍾德元
    Contributors: 光電科學與工程學系
    Keywords: 研究領域:能源工程
    Date: 2011-01-01
    Issue Date: 2012-01-17 18:58:30 (UTC+8)
    Publisher: 行政院國家科學委員會
    Abstract: 本計劃以高功率近紅外光源作為熱源,照射於高功率LED 封裝基板上以模擬高功率 LED 產生之廢熱,由於光源之高度彈性,可以以不同之功率以及光形分佈之高度適應性以模擬各種熱源分佈;而後藉由紅外線熱像儀觀察LED 封裝基板之溫度分佈以求得封裝基板之熱阻,並以有限元素分析法同時進行數值模擬以估計封裝基板內部之介面熱阻;第二年度將著重於以光學系統模擬多LED 晶片封裝基板之熱阻量測、以及發展脈衝模式操作LED 模擬、並對脈衝加熱熱阻量測或近似穩態加熱熱阻量測進行數值模擬與實驗量測之研究。 This project purposes utilizing high power near-infrared as the heating source illuminating on high power LED package subtracts to emulate the waste heat generation of high power LED experimentally. By means of the highly flexibility of light sources, different spatial intensity distribution makes possible adaptively simulate heat source distribution in various cases. Thermal images of the illuminated subtract can be taken and its thermal resistance can then be calculated correspondingly. At the meantime, model of the subtract will be analyzed by finite element analysis to estimate the interface thermal resistance inside the subtract. In the second year, we will devote to development the optical system for simulate multiple LED chip package and measure its thermal resistance as well as pulsed operate LED simulation and study the possibility of pulsed heating thermal resistance measurement and quasi-steady heating thermal resistance measurement. 研究期間:10001 ~ 10012
    Relation: 財團法人國家實驗研究院科技政策研究與資訊中心
    Appears in Collections:[Department of Optics and Photonics] Research Project

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