DocumentCode :
2096591
Title :
Performance driven multi-layer general area routing for PCB/MCM designs
Author :
Cong, Jason ; Madden, Patrick H.
Author_Institution :
Dept. of Comput. Sci., California Univ., Los Angeles, CA, USA
fYear :
1998
fDate :
19-19 June 1998
Firstpage :
356
Lastpage :
361
Abstract :
We present a new global router appropriate for Multichip Module (MCM) and dense Printed Circuit Board (PCB) design, which utilizes a hybrid of the classical rip-up and reroute approach, and the more recent iterative deletion method. The global router addresses performance issues by utilizing recent results in high performance interconnect design, while still effectively minimizing global congestion. With experiments on the maze-routing component of our global router, we show that the choice of routing cost functions can have a significant impact on final solution quality. The results of a number of previously proposed routers may be improved dramatically by adopting the cost functions we suggest here. We also find little evidence of the "net ordering problem" when our cost functions and routing model are applied. The iterative deletion method is shown to improve global solution quality, particularly when high performance interconnect is required. We evaluate the performance of our global router by comparing the congestion of routes produced by our global router to those of a well known MCM router, V4R. Our global router, MINOTAUR, supports arbitrary numbers of routing layers, differing capacities for each layer, preexisting congestion and obstacles, and high performance interconnect structures (including those which require variable width interconnect).
Keywords :
circuit layout CAD; multichip modules; printed circuit layout; MINOTAUR; Multichip Module; PCB; global router; iterative deletion; maze-routing; Computer science; Cost function; Delay systems; Integrated circuit interconnections; Multichip modules; Packaging; Permission; Printed circuits; Routing; Wiring;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design Automation Conference, 1998. Proceedings
Conference_Location :
San Francisco, CA, USA
Print_ISBN :
0-89791-964-5
Type :
conf
Filename :
724497
Link To Document :
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