Suppression of Eddy Current Loss in Multilayer NiFe-Polypyrrole Magnetic Cores Fabricated Using a Continuous Electrodeposition Process
Author:
Affiliation:
1. Department of Electrical and Systems Engineering, University of Pennsylvania, Philadelphia, PA, USA
2. Department of Nanotechnology, University of Pennsylvania, Philadelphia, PA, USA
Funder
NSF National Nanotechnology Coordinated Infrastructure Program of the Singh Center for Nanotechnology
EnaChip, Inc
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering,Energy Engineering and Power Technology
Link
https://ieeexplore.ieee.org/ielam/6245517/9970255/9762470-aam.pdf
Reference24 articles.
1. Integrated Very-High-Frequency Switch Mode Power Supplies: Design Considerations
2. Microfabricated Racetrack Inductors With Thin-Film Magnetic Cores for On-Chip Power Conversion
3. A microfabricated transformer for high-frequency power or signal conversion
4. Anisotropic nanolaminated CoNiFe cores integrated into microinductors for high-frequency dc–dc power conversion
5. Interlamination Insulation Design Considerations for Laminated Magnetics Operating at High Frequencies
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1. High‐Speed and Long‐Distance Spin‐Wave Propagation in Spinel γ‐Fe2O3 Epitaxial Thin Films;Advanced Physics Research;2024-07-08
2. A PCB-Integrated Inductor With an Additively Electrodeposited Laminated NiFe Core for MHz DC–DC Power Conversion;IEEE Transactions on Power Electronics;2023-12
3. Flexible PCB integrated racetrack inductors with sequentially metal-polymer electroplated laminated core;IEEE Transactions on Components, Packaging and Manufacturing Technology;2023
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