DocumentCode
2877021
Title
Sensitivity Investigation of Substrate Thickness and Reflow Profile on Wafer Level Film Failures in 3D Chip Scale Packages by Finite Element Modeling
Author
Xie, Bin ; Shi, Xunqing ; Fan, Xuejun
fYear
2007
fDate
May 29 2007-June 1 2007
Firstpage
242
Lastpage
248
Abstract
3D chip scale package (CSP) is one of the major trends in IC packaging with the application of wafer level films (WLF) for die-to-die or die-to-substrate attachment. However, the WLF failures (voiding/cracking) are often observed in moisture sensitivity test. Substrate thickness and reflow profile were found very sensitive to the WLF failure rate. To investigate the sensitivity of the substrate thickness and the reflow profile, a novel direct concentration approach (DCA) is developed in this study, which allows updating the interfacial continuous condition as the function of the temperature and humidity. The paper also develops a simplified micromechanics-based vapor pressure model to visualize the whole-field vapor pressure corresponding to the instantaneous moisture distribution. With the applications of the DCA and the simplified vapor pressure model to a 3D ultra-thin stacked-die CSP, it was found that the moisture transport and escape during the reflow is the root cause of the WLF failures. A small reduction of the substrate thickness and an in-situ baking during the reflow can reduce greatly the moisture concentration and the vapor pressure at the bottom film, and therefore significantly decrease the WLF failure rate.
Keywords
chip scale packaging; failure analysis; finite element analysis; micromechanics; moisture; sensitivity analysis; 3D chip scale packages; IC packaging; direct concentration approach; finite element modeling; in-situ baking; instantaneous moisture distribution; interfacial continuous condition; micromechanics-based vapor pressure model; moisture sensitivity test; reflow profile; sensitivity investigation; substrate thickness; wafer level film failures; Chip scale packaging; Finite element methods; Integrated circuit modeling; Integrated circuit packaging; Moisture; Semiconductor device modeling; Substrates; Temperature sensors; Testing; Wafer scale integration;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Components and Technology Conference, 2007. ECTC '07. Proceedings. 57th
Conference_Location
Reno, NV
ISSN
0569-5503
Print_ISBN
1-4244-0985-3
Electronic_ISBN
0569-5503
Type
conf
DOI
10.1109/ECTC.2007.373804
Filename
4249890
Link To Document