DocumentCode
2575535
Title
Low Temperature, Wafer Level Au-In Bonding for ISM Packaging
Author
Wang, Qian ; Jung, Kyudong ; Choi, Minseog ; Kim, Woonbae ; Ham, Sukjin ; Jeong, Byunggil ; Moon, Changyoul
Author_Institution
Micro Device & Syst. Lab., Samsung Adv. Inst. of Technol., Gyeonggi-Do
fYear
2006
fDate
26-29 Aug. 2006
Firstpage
1
Lastpage
5
Abstract
A low process temperature, hermetic and reliable wafer level packaging (WLP) technology is required for image sensor module (ISM) packaging. Eutectic bonding is regarded as one of the most common used methods for WLP. Au-Sn metallization system has been applied as a wafer level bonding technology in many applications, but it still has process temperature around 300degC which is not applicable for temperature sensitive materials contained device wafer like ISM. In this paper, a fluxless Au-In solder system with Au, In multilayer metallizations has been developed and fabrication process is also presented, the metallization is achieved using e-beam evaporation, test vehicle was then prepared for bonding quality evaluation. Bonding process is performed at 180degC with static force for a relatively long dwelling time of 30minutes in N2 ambience, finally a void free joint is formed. Microstructure observation reveals a combination of different Au-In intermetallic compounds AuIn2 and AuIn at the interface. Shear strength around 20MPa could be obtained for as-bonded samples, and a remelting temperature over 300degC is confirmed using thermomechanical analysis (TMA) test. Real time helium leak rate test are performed to check hermeticity of the package, samples are also subjected to pressure cooker test (PCT) for evaluation of bonding performance after reliability test
Keywords
alloys; image sensors; metallisation; reliability; wafer bonding; wafer level packaging; 180 C; 30 mins; ISM packaging; e-beam evaporation; eutectic bonding; fluxless solder system; image sensor module packaging; intermetallic compounds; low process temperature; metallization system; reliability test; thermomechanical analysis test; wafer level bonding; wafer level packaging; Gold; Image sensors; Inorganic materials; Metallization; Nonhomogeneous media; Packaging; Temperature sensors; Testing; Wafer bonding; Wafer scale integration; Au-In; ISM; Packaging; WLP;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Packaging Technology, 2006. ICEPT '06. 7th International Conference on
Conference_Location
Shanghai
Print_ISBN
1-4244-0619-6
Type
conf
DOI
10.1109/ICEPT.2006.359741
Filename
4198862
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