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Article
A Methodical Approach for Pcb Pdn Decoupling Minimizing overdesign with Genetic Algorithm Optimization
2022 IEEE International Symposium on Electromagnetic Compatibility and Signal/Power Integrity, EMCSI 2022
  • F. De Paulis
  • Y. Ding
  • M. Cocchini
  • Chulsoon Hwang, Missouri University of Science and Technology
  • S. Connor
  • M. Doyle
  • S. Scearce
  • W. D. Becker
  • Albert E. Ruehli, Missouri University of Science and Technology
  • James L. Drewniak, Missouri University of Science and Technology
Abstract

An optimization routine is applied for the decoupling capacitor placement on Power Distribution Networks to identify the limit beyond which the placement of additional decaps is no longer effective, thus leading to wasting layout area and components, and to a cost increase. A specific test example from a real design is used together with the required target impedance and frequency band of interest for the PDN design. The effectiveness of the decap placement while selecting different layers of the stack-up, and while moving the upper limit of the PDN design band is analyzed. Such analysis leads to helpful insights based on the progression of the input impedance during the optimization process, and to develop useful guidelines for avoiding over-design of the PDN.

Department(s)
Electrical and Computer Engineering
Keywords and Phrases
  • decoupling capacitors,
  • genetic algorithm,
  • optimization,
  • PDN,
  • physical limitation,
  • power integrity
International Standard Book Number (ISBN)
978-166540929-2
Document Type
Article - Conference proceedings
Document Version
Final Version
File Type
text
Language(s)
English
Rights
© 2023 Institute of Electrical and Electronics Engineers, All rights reserved.
Publication Date
1-1-2022
Publication Date
01 Jan 2022
Citation Information
F. De Paulis, Y. Ding, M. Cocchini, Chulsoon Hwang, et al.. "A Methodical Approach for Pcb Pdn Decoupling Minimizing overdesign with Genetic Algorithm Optimization" 2022 IEEE International Symposium on Electromagnetic Compatibility and Signal/Power Integrity, EMCSI 2022 (2022) p. 238 - 243
Available at: http://works.bepress.com/chulsoon-hwang/116/