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Failure mechanism of FBGA solder joints in memory module subjected to harmonic excitation

Authors
Cinar, YusufJang, JinwooJang, GunheeKim, SeonsikJang, JaeseokChang, JinkyuJun, Yonghyun
Issue Date
Apr-2012
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Citation
MICROELECTRONICS RELIABILITY, v.52, no.4, pp.735 - 743
Indexed
SCIE
SCOPUS
Journal Title
MICROELECTRONICS RELIABILITY
Volume
52
Number
4
Start Page
735
End Page
743
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/165938
DOI
10.1016/j.microrel.2011.11.015
ISSN
0026-2714
Abstract
This paper investigates the failure mechanism of Fine-pitch Ball Grid Array (FBGA) solder joints of memory modules due to harmonic excitation by the experiments and the finite element method. A finite element model of the memory module was developed, and the natural frequencies and modes were calculated and verified by experimental modal testing. Modal damping ratios are also obtained and used in the forced vibration analysis. The experimental setup was developed to monitor resistance variation of FBGA solder joints due to the harmonic excitation under Joint Electron Devices Engineering Council (JEDEC) standard service conditions. Experiments showed that the failure of the solder joints of the memory module under vibration mainly occurs due to resonance. Forced vibration analysis was performed to determine the solder joints having high stress concentration under harmonic excitation. It showed that failure occurs due to the relative displacement between PCB and package and solder joints are the most vulnerable part of the memory module under vibration. It also showed that cracked solder joints in the experiments match those in the simulations with the highest stress concentration.
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COLLEGE OF ENGINEERING (SCHOOL OF MECHANICAL ENGINEERING)
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