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A memetic algorithm for computing the capacitance coupling in Very Large Scale Integrated (VLSI) circuits is presented in this work. The method is based on an approximate extended version of the method of images, is general and applicable to an arbitrary geometry and configuration of conductors. Simulation results are presented for several practical case studies where our method is compared with a...
In this work, a new automated method for determining the substrate resistance is presented. It exploits a geometric formulation of the current streamlines between coupled structures and builds an analytical model for the substrate resistance. Both simulation and measurement data are utilized in order to show the validity of the proposed scheme. The measurement data are obtained from a fabricated test...
A new model for calculating capacitive and resistive coupling is developed in this work and its implementation in commonly encountered practical cases is presented. The model is based on the geometry of the coupling mechanism and is therefore, in general, scalable and technology independent, while pure 3D effects, like capacitive coupling, are fast and accurately computed. The proposed model is validated...
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