Title :
A multi-solver domain decomposition method for rigorous conductor modeling of signal integrity in integrated circuits
Author :
Yang Shao ; Zhen Peng ; Jin-Fa Lee
Author_Institution :
ElectroScience Lab., Ohio State Univ. Univ., Columbus, OH, USA
Abstract :
A frequency-domain multi-solver domain decomposition method is presented to accurately analyze signal integrity problems in multi-scale integrated circuits. In particular, we propose a novel formulation to rigorously account for the conductor loss due to finite conductivities in metals. The proposed non-conformal domain decomposition method follows a hierarchical domain partitioning strategy of the original problem. The most suitable computational electromagnetic technique is employed for each of the subregions. To improve the convergence in the DDM iterations, an optimized Robin type transmission condition is introduced to enforce the field continuities across sub-domain interfaces. Moreover, a hierarchical multi-level fast multiple method is adopted to address the low frequency issues particularly in IC applications. Rigorous numerical experiments validate the potential efficiency and benefits offered by the proposed method.
Keywords :
computational electromagnetics; frequency-domain analysis; integrated circuit modelling; iterative methods; conductor loss; frequency domain multisolver domain decomposition method; hierarchical domain partitioning; hierarchical multilevel fast multiple method; integrated circuits; nonconformal domain decomposition method; optimized Robin type transmission condition; rigorous conductor modeling; signal integrity; Computational modeling; Conductors; Dielectrics; Integrated circuit modeling; Material properties; Mathematical model;
Conference_Titel :
Electromagnetic Theory (EMTS), Proceedings of 2013 URSI International Symposium on
Conference_Location :
Hiroshima
Print_ISBN :
978-1-4673-4939-0