DocumentCode
1393271
Title
A Metal-Only-ECO Solver for Input-Slew and Output-Loading Violations
Author
Lu, Chien-Pang ; Chao, Mango Chia-Tso ; Lo, Chen-Hsing ; Chang, Chih-Wei
Author_Institution
Mstar Semicond., Hsinchu, Taiwan
Volume
29
Issue
2
fYear
2010
Firstpage
240
Lastpage
245
Abstract
To reduce the time-to-market and photomask cost for advanced process technologies, metal-only engineering change order (ECO) has become a practical and attractive solution to handle incremental design changes. Due to limited spare cells in metal-only ECO, the new added netlist may often violate the input-slew and output-loading constraints and, in turn, delay or even fail the timing closure. This paper presents a framework, named metal-only ECO slew/cap solver (MOESS), to resolve the input-slew and output-loading violations by connecting spare cells onto the violated nets as buffers. MOESS performs two buffer-insertion schemes in a sequential manner to first minimize the number of inserted buffers and then resolve timing violations, if any. The experimental results based on industrial designs demonstrate that MOESS can resolve more violations with fewer inserted buffers and less central processing unit runtime compared to an electronic design automation vendor´s solution.
Keywords
electronic design automation; masks; buffer-insertion schemes; electronic design automation vendor solution; engineering change order; industrial designs; input-slew output-loading violation; metal-only ECO slew-cap solver; photomask cost; time-to-market cost; Central Processing Unit; Costs; Delay; Design engineering; Electronic design automation and methodology; Electronics industry; Joining processes; Runtime; Time to market; Timing; Economic cooperation organization (ECO); physical design; slew/loading violation;
fLanguage
English
Journal_Title
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
Publisher
ieee
ISSN
0278-0070
Type
jour
DOI
10.1109/TCAD.2009.2040011
Filename
5395740
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