Thermal analysis of the type of metal design for light emitting diode
So Hyeon Mun, Jong Hwa Choi, Moo Whan Shin
Abstract
So Hyeon Mun, Jong Hwa Choi, Moo Whan Shin
Abstract
Thermal problem is still a bottleneck to limit the stability, reliability, and lifetime of High power light emitting diodes (LEDs). More effective thermal design LED packages with low thermal resistance is critical to improve the performance of LEDs. In this paper we present thermal analysis of type of thermal performances of the plastic package and metal package of LEDs. The analysis was made by transient thermal measurement. The two kind of ceramic packages under investigation employ same configuration of GaN-based chip, but they have different structure, size and distribution thermal vias. Two design of LED packages resulted in significantly different thermal performance. Thermal properties, described as thermal resistance, of two package design, were compared and evaluated. It was demonstrated that the junction temperature decrease with effective contact in the LED packages.
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Thermal problem is still a bottleneck to limit the stability, reliability, and lifetime of High power light emitting diodes (LEDs). More effective thermal design LED packages with low thermal resistance is critical to improve the performance of LEDs. In this paper we present thermal analysis of type of thermal performances of the plastic package and metal package of LEDs. The analysis was made by transient thermal measurement. The two kind of ceramic packages under investigation employ same configuration of GaN-based chip, but they have different structure, size and distribution thermal vias. Two design of LED packages resulted in significantly different thermal performance. Thermal properties, described as thermal resistance, of two package design, were compared and evaluated. It was demonstrated that the junction temperature decrease with effective contact in the LED packages.
Key concepts: Junction temperature, Light-emitting diode, Thermal resistance, Materials science, Thermal management of high-power LEDs, Optoelectronics, Thermal, Thermal analysis