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Copper-Core MCPCB With Thermal Vias for High-Power COB LED Modules

机译:具有热通路的铜芯MCPCB,用于大功率COB LED模块

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摘要

To improve thermal performance of high-power chip-on-board multichip LED module, a copper-core metal core printed circuit board (MCPCB) substrate with copper filled microvias is introduced. As a reference, the performance is compared with alumina module with the same layout by means of thermal simulations and measurements. Up to 55% reduction in the thermal resistance from the LED source to the bottom of the substrate is demonstrated. The excellent performance of the Cu MCPCB module is due to copper-filled microvias under the blue LED chips that occupy the majority of the multichip module. The conclusion was verified by measuring increased thermal resistances of red chips without thermal vias on the Cu MCPCB module. However, as the blue LEDs dominate the thermal power of the module, they also dominate the module thermal resistance. The thermal resistance was demonstrated to correspond with the number of vias as lower thermal resistance was measured on modules with larger number of vias. The Cu MCPCB was processed in standard PCB manufacturing and low cost material, FR4, was utilized for the electrical insulation. Thus, the solution is potentially cost-effective despite the higher cost of copper in comparison with aluminum that is the most commonly used MCPCB core material.
机译:为了提高大功率板载多芯片LED模块的热性能,引入了带有铜填充微孔的铜芯金属芯印刷电路板(MCPCB)基板。作为参考,通过热模拟和测量将性能与具有相同布局的氧化铝模块进行了比较。从LED光源到基板底部的热阻降低了55%。 Cu MCPCB模块的出色性能是由于蓝色LED芯片下方的铜填充微孔占据了多芯片模块的大部分。通过测量在Cu MCPCB模块上没有热过孔的红色芯片的增加的热阻,可以验证该结论。但是,由于蓝色LED支配模块的热功率,因此它们也支配模块的热阻。由于在具有大量通孔的模块上测量到较低的热阻,因此热阻与通孔的数量相对应。 Cu MCPCB在标准PCB制造中进行了处理,而低成本材料FR4用于电绝缘。因此,尽管与最常用的MCPCB芯材铝相比,铜的成本更高,但该解决方案仍具有潜在的成本效益。

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