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New material options for light-emitting diode packaging

机译:发光二极管封装的新材料选择

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摘要

As light-emitting diode (LED) power levels and chip sizes increase, thermal management and thermal stresses, which affect performance, power conversion efficiency and lifetime, are becoming increasingly serious problems. Traditional materials have serious deficiencies in meeting requirements for thermal management and minimization of thermal stresses in high-brightness (HB) LED packaging. Copper, the standard material for applications requiring high thermal conductivity, has a coefficient of thermal expansion (CTE) that is much larger man those of ceramics and semiconductor materials, giving rise to thermal stresses when packages are subjected to thermal excursions. Aluminum has a larger CTE man copper. Traditional materials with low CTEs have thermal conductivities that are little or no better than that of aluminum. There are an increasing number of new packaging materials with low, tailorable CTEs and thermal conductivities up to four times those of copper mat overcome these limitations. The ability to tailor material CTE has been used to solve critical warping problems in manufacturing, increasing yield from 5% to over 99%. Advanced materials fall into six categories: monolithic carbonaceous materials, metal matrix composites, carbon/carbon composites, ceramic matrix composites, polymer matrix composites, and advanced metallic alloys. This paper provides an overview of the state of the art of advanced packaging materials, including their key properties, state of maturity, cost and applications.
机译:随着发光二极管(LED)的功率水平和芯片尺寸的增加,影响性能,功率转换效率和寿命的热管理和热应力正变得日益严重。传统材料在满足高亮度(HB)LED封装中的热管理要求和最小化热应力方面存在严重缺陷。铜是要求高导热率的标准材料,其热膨胀系数(CTE)比陶瓷和半导体材料大得多,当包装经受热偏移时会产生热应力。铝的热膨胀系数大于铜。具有低CTE的传统材料的导热率仅比铝好或没有。越来越多的新包装材料具有低,可定制的CTE和热导率,可克服这些限制的导热系数是铜垫的四倍。定制材料CTE的能力已用于解决制造中的关键翘曲问题,从而将良率从5%提高到了99%以上。先进材料分为六类:整体式含碳材料,金属基复合材料,碳/碳复合材料,陶瓷基复合材料,聚合物基复合材料和高级金属合金。本文概述了高级包装材料的技术水平,包括其关键特性,成熟度,成本和应用。

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