DocumentCode
3481173
Title
Comparison of Missing Metal Defect Formation on He In-Situ and Furnace Annealed Electroplated Copper Films
Author
Wahab, Y. Abdul ; Ahmad, A.F. ; Awang, Zaiki
Author_Institution
Microwave Technol. Centre, Univ. Teknol. MARA, Shah Alam
fYear
2006
fDate
27-28 June 2006
Firstpage
53
Lastpage
57
Abstract
Copper electrochemical plating (ECP) has contributed to a significant rise in both systematic and random defects. A "missing metal" defect is a critical problem for the 0.13 mum node and normally will only be detected after chemical-mechanical polishing (CMP). Meanwhile, this defect is also strongly dependent on post-electrochemical plating. In addition, Cu films characteristics depend critically on anneal, plating conditions and bath chemistry. This paper presents a comparison of missing metal defect formation on samples annealed using furnace versus He in-situ anneal. All copper deposition and He in-situ anneal processing was performed on the Applied Materials SlimCellTM ECP system. A post-ECP He in-situ anneal processing was carried out over a 60degC to 180degC temperature range, with anneal duration times ranging from 6 s to 2 hours. In the He in-situ anneal process, the wafers began to be ramped at over 100degC with less than a minute soak time. For the furnace anneal, the wafers were loaded for almost an hour with less than 200degC soak temperature. After the annealing process, Cu CMP partial polish was applied as a final step before analyzing the wafers with scanning electron microscope (SEM). Our conclusion is that the missing metal defect levels for furnace and He in-situ anneal are found to be comparable and have no correlation with reflectivity or stress. In this paper we compare the capabilities and performance of different types of annealing processes and their impact on missing metal defect (MMD), an in-line technique developed to reduce total defect count. We will also present correlations of these defects to plating and anneal process parameters.
Keywords
annealing; chemical mechanical polishing; copper; electrolytic polishing; electroplating; helium; integrated circuit interconnections; integrated circuit metallisation; metallic thin films; scanning electron microscopy; Applied Materials SlimCellTM ECP system; CMP; Cu; He; IC interconnections; SEM; chemical-mechanical polishing; copper deposition; copper metallization; furnace annealed electroplated copper films; helium in-situ annealing processing; in-line technique; missing metal defect formation; random defects; scanning electron microscope; size 0.13 mum; systematic defects; temperature 60 C to 180 C; time 6 s to 2 h; total defect count reduction; wafers analysis; Annealing; Chemicals; Chemistry; Copper; Furnaces; Helium; Reflectivity; Scanning electron microscopy; Stress; Temperature distribution; Copper electrochemical plating; He in-situ anneal; chemical-mechanical polishing; furnace anneal; missing metal defect;
fLanguage
English
Publisher
ieee
Conference_Titel
Research and Development, 2006. SCOReD 2006. 4th Student Conference on
Conference_Location
Selangor
Print_ISBN
978-1-4244-0526-8
Electronic_ISBN
978-1-4244-0527-5
Type
conf
DOI
10.1109/SCORED.2006.4339307
Filename
4339307
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