DocumentCode
2557881
Title
Fast first-run silicon repair cases by laser chemical vapor deposition of copper from Cu(hfac)tmvs
Author
Remes, J. ; Moilanen, H. ; Leppävuori, S.
Author_Institution
Microelectron. Lab., Oulu Univ., Finland
fYear
1997
fDate
21-25 Jul 1997
Firstpage
280
Lastpage
283
Abstract
The fast-turnaround ASIC prototype series must be brought into market quickly. Unfortunately, it is often noticed that, despite through simulations, design flaws are introduced into these circuits. The reason for the failure is either in the design or in some processing error. These flaws may usually be corrected by redesigning the layout and putting the IC through a semiconductor fabrication process again which is costly and time consuming. In this work LCVD of copper from Cu(hfac)tmvs has been utilised for the restructuring of IC interconnections. Copper lines were deposited onto passivated ICs in order to achieve new local interconnections between IC structures. The resistivities of the deposited lines were found to be close to copper bulk resistivity. The utilisation of Nd:YAG and XeCl excimer lasers in the cutting of conductor lines is also described. Special practical IC repair case problems and solutions carried out by LCVD system are presented
Keywords
application specific integrated circuits; chemical vapour deposition; copper; integrated circuit interconnections; laser deposition; laser materials processing; maintenance engineering; ASIC; Cu; Cu(hfac)tmvs; IC interconnection; Nd:YAG laser; Si; XeCl excimer laser; copper conductor line cutting; design flaws; failure; laser chemical vapor deposition; resistivity; semiconductor fabrication; silicon repair; turnaround time; Application specific integrated circuits; Chemical lasers; Circuit simulation; Conductivity; Copper; Fabrication; Integrated circuit interconnections; Integrated circuit layout; Prototypes; Silicon;
fLanguage
English
Publisher
ieee
Conference_Titel
Physical & Failure Analysis of Integrated Circuits, 1997., Proceedings of the 1997 6th International Symposium on
Print_ISBN
0-7803-3985-1
Type
conf
DOI
10.1109/IPFA.1997.638353
Filename
638353
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