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A framework for low-cost EM-driven design optimization of compact impedance matching transformers is presented. Our technique is based on a bottom-up design where design requirements for the transformer circuit are translated into specifications for its building blocks. These elementary cells are optimized using response features. Subsequently, the entire circuit is fine-tuned using local response...
We enhance a tuning space mapping algorithm through a response correction. We demonstrate that the response corrected tuning model can serve as a high-performance surrogate for fast yield estimation and design centering. We illustrate yield analysis of a second-order tapped-line microstrip filter using our model. We perform yield-driven design on a double-ring filter example and verify the design...
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