DocumentCode
2683695
Title
A comparison study of thermal aging effect on mold compound and its impact on leadframe packages stress
Author
Dandong, Ge ; Meng, Chai Chee ; Ian, Koh Liang Kng ; Walter, Mack
Author_Institution
Infineon Technol. Asia Pacific Pte Ltd., Singapore, Singapore
fYear
2011
fDate
25-28 Oct. 2011
Firstpage
403
Lastpage
409
Abstract
This report discloses an advanced approach to improve the prediction of electronic IC packages´ reliability performance by studying packaging materials´ thermo-mechanical properties at different high temperature storage conditions. Package level reliability has been well studied. However, during material screening stage, it is difficult to estimate the impact of IC packaging materials on package reliability performance based on typical material properties such as CTE, Tg and Storage Modulus determined at time zero stage. In this study, 3 types of Epoxy mold compounds (EMCs) were characterized with their thermo-mechanical properties by means of TGA, TMA and DMA at different 175°C high temperature storage (HTS) durations, i.e. 0hr, 1000hrs and 2000hrs respectively. Furthermore, simulation assessments for package stress are conducted for EMC evaluation at package level. The thermo-mechanical properties of EMC materials obtained are used as inputs for static linear simulation. Package stresses are retrieved from the simulation for relative comparison. The simulation results clearly show that the material degradation due to HTS has significant impact on the package stress level especially at high temperature range, which is critical for packages with stringent reliability requirement in automotive industry.
Keywords
ageing; automotive electronics; integrated circuit packaging; integrated circuit reliability; moulding; stress effects; DMA; EMC evaluation; HTS conditions; IC packaging materials; TGA; TMA; automotive industry; electronic IC package reliability; epoxy mold compounds; high temperature storage conditions; leadframe packages stress; material screening; package stress assessment; static linear simulation; thermal aging effect; thermomechanical properties; Electromagnetic compatibility; High temperature superconductors; Resins; Stress; Temperature; Temperature measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Advanced Packaging Materials (APM), 2011 International Symposium on
Conference_Location
Xiamen
ISSN
1550-5723
Print_ISBN
978-1-4673-0148-0
Type
conf
DOI
10.1109/ISAPM.2011.6105740
Filename
6105740
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