DocumentCode :
2279940
Title :
Study on heat dissipation in Package-on-Package (POP)
Author :
Qiu, Xiang ; Wang, Jun
Author_Institution :
Dept. of Mater. Sci., Fudan Univ., Shanghai, China
fYear :
2010
fDate :
16-19 Aug. 2010
Firstpage :
753
Lastpage :
757
Abstract :
Higher packaging density is driven by the multi-functional requirements and size shrinkage in handheld applications, which was greatly improved by the 3D packaging technologies. Package-on-package (POP) is one of the 3D packaging solutions. In the POP, the package components can be fully tested good prior to integration. However, the structure of POP is much more complex than that of single package and the effects of different components in POP integration need further research during thermal processes, e.g. POP working state or critical temperature environments. The thermal performance estimation relies on the prediction of temperature fields in the POP. A typical type of Package-on-package (POP) combing memory-die and logic-die packages was analyzed by finite element method in this study. The quarter 3D model was built up by ANSYS. The temperature field in the POP under its working state was simulated by considering the thermal convection between the device´s outer surfaces and the air nearby. To understand the effect of components on thermal dissipation, the parametric analysis was performed intensively. The computational results showed the trend of temperature with different material properties. The POP design suggestions were achieved finally.
Keywords :
convection; cooling; finite element analysis; thermal management (packaging); 3D packaging solutions; 3D packaging technology; ANSYS; POP; critical temperature environments; finite element method; heat dissipation; logic-die package; memory-die package; multifunctional requirements; package components; package-on-package; packaging density; parametric analysis; size shrinkage; thermal convection; thermal dissipation; thermal performance estimation; thermal processes; Conductivity; Electronic packaging thermal management; Heat transfer; Heating; Packaging; Substrates;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronic Packaging Technology & High Density Packaging (ICEPT-HDP), 2010 11th International Conference on
Conference_Location :
Xi´an
Print_ISBN :
978-1-4244-8140-8
Type :
conf
DOI :
10.1109/ICEPT.2010.5582707
Filename :
5582707
Link To Document :
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