DocumentCode :
3407330
Title :
Optimal sizing of high-speed clock networks based on distributed RC and lossy transmission line models
Author :
Zhu, Q. ; Dai, W.W.-M. ; Xi, J.G.
Author_Institution :
Comput. Eng. Board of Studies, California Univ., Santa Cruz, CA, USA
fYear :
1993
fDate :
7-11 Nov. 1993
Firstpage :
628
Lastpage :
633
Abstract :
To achieve delay balance, instead of making the faster path slower by elongating branches, we make slower paths faster by sizing. Given a general clock network, which may includes loops, together with a set of feasible widths for each branch, we formulate the optimal sizing of the clock network as a constrained optimization problem. By turning the skew minimization problem into a least-squares estimation problem, a modified Gauss-Marquardt´s method is used to determine the optimal widths. An efficient initial sizing algorithm is proposed to speed up the sizing process. Instead of using zero-order delay model (path length) or one-order delay model (Elmore delay), we employ a generalized delay model which can handle general RLC and transmission line networks. Experimental results show that this method significantly reduces both the clock skew and path delays from source to terminals.
Keywords :
circuit optimisation; Elmore delay; clock skew; constrained optimization problem; delay balance; distributed RC; general clock network; high-speed clock networks; least-squares estimation problem; loops; lossy transmission line models; modified Gauss-Marquardt´s method; one-order delay model; optimal sizing; path delays; sizing; skew minimization problem; transmission line networks; zero-order delay model; Capacitance; Clocks; Constraint optimization; Delay; Minimization methods; Network topology; Propagation losses; Transmission lines; Very large scale integration; Wire;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer-Aided Design, 1993. ICCAD-93. Digest of Technical Papers., 1993 IEEE/ACM International Conference on
Conference_Location :
Santa Clara, CA, USA
Print_ISBN :
0-8186-4490-7
Type :
conf
DOI :
10.1109/ICCAD.1993.580151
Filename :
580151
Link To Document :
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