DocumentCode
3179635
Title
Through silicon via process for effective multi-wafer integration
Author
Horibe, A. ; Sueoka, K. ; Aoki, T. ; Toriyama, K. ; Okamoto, K. ; Kohara, S. ; Mori, H. ; Orii, Y.
Author_Institution
IBM Res. - Tokyo, Tokyo, Japan
fYear
2015
fDate
26-29 May 2015
Firstpage
1808
Lastpage
1812
Abstract
We propose a novel 3D integration method, called Vertical integration after Stacking (ViaS) process. The process enables 3D integration at significantly low cost, since it eliminates costly processing steps such as chemical vapor deposition used to form inorganic insulator layers and Cu plating used for via filling of vertical conductors. Furthermore, the technique does not require chemical-mechanical polishing (CMP) nor temporary bonding to handle thin wafers. The integration technique consists of forming through silicon via (TSV) holes in pre-multi-stacked wafers (> 2 wafers) which have no initial vertical electrical interconnections, followed by insulation of holes by polymer coating and via filling by molten metal injection. In the technique, multiple wafers are etched at once to form TSV holes followed by coating of the holes by conformal thin polymer layers. Finally the holes are filled by using molten metal injection so that a formation of interlayer connections of arbitrary choice is possible. In this paper, we demonstrate 3-chip-stacked test vehicle with 50 × 50 μm-square TSVs assembled by using this technique.
Keywords
chemical vapour deposition; conductors (electric); copper; electroplating; polymer films; protective coatings; three-dimensional integrated circuits; 3-chip-stacked test; 3D integration method; Cu; Cu plating; ViaS process; chemical vapor deposition; conformal thin polymer layers; hole coating; inorganic insulator layers; molten metal injection; multiple wafers; multiwafer integration; polymer coating; pre-multistacked wafers; through silicon via holes; through silicon via process; vertical conductors; vertical integration after stacking process; via filling; Insulators; Metals; Polymers; Silicon; Stress; Three-dimensional displays; Through-silicon vias;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Components and Technology Conference (ECTC) , 2015 IEEE 65th
Conference_Location
San Diego, CA
Type
conf
DOI
10.1109/ECTC.2015.7159844
Filename
7159844
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