DocumentCode :
649512
Title :
Improving thermal conductivity of polymer composites in embedded LEDs systems
Author :
Yu, Jinpeng ; Cennini, Giovanni
Author_Institution :
Philips Res., Eindhoven, Netherlands
fYear :
2013
fDate :
25-27 Sept. 2013
Firstpage :
176
Lastpage :
180
Abstract :
Polymer embedding of LEDs increases safety and waterproof levels in LED based lighting systems. The embedding allows for mechanical flexibility of these systems. The increase of polymer thermal conductivity has been a research challenge for decades. Here, we suggest materials for enhancing thermal conductivity in polymer embedded LED systems. We demonstrate that thermally conductive fillers into the polymer matrix to form a composite improve heat transfer from the LEDs to the environment. Non metallic Boron Nitride with a high intrinsic thermal conductivity is a good candidate. Thermal conductivity of basic polymer PDMS with various filler size and polymer ratios is reported here. Here, an in situ measurement tool to fast evaluate the quality of the composites in LED applications is demonstrated. Future work will focus on further increasing the thermal conductivity of the composites by using different mixtures.
Keywords :
boron compounds; heat transfer; light emitting diodes; lighting; polymers; thermal conductivity; LED-based lighting systems; filler size; heat transfer; high-intrinsic thermal conductivity; in situ measurement tool; nonmetallic boron nitride; polymer composites; polymer matrix; polymer ratios; polymer-embedded LED systems; safety level; system mechanical flexibility; thermal conductivity improvement; thermally-conductive fillers; waterproof level;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Thermal Investigations of ICs and Systems (THERMINIC), 2013 19th International Workshop on
Conference_Location :
Berlin
Print_ISBN :
978-1-4799-2271-0
Type :
conf
DOI :
10.1109/THERMINIC.2013.6675205
Filename :
6675205
Link To Document :
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