Multifunctional Magnetic Nanocomposite Encapsulant for Electromagnetic Interference Shielding in Power Electronics

Author:

Carlton Hayden1,Iradukunda Ange1,Imran Asif2,Myane Sarah3,Akey Noah4,Luo Fang2,Huitink David1

Affiliation:

1. Mechanical Engineering Department, University of Arkansas , 700 Research Center Building, Fayetteville, AR 72701

2. Department of Electrical and Computer Engineering, Stony Brook University , 100 Nicolls Road, Stony Brook, NY 11794-2350

3. Fay Jones School of Architecture and Design, University of Arkansas , 120 Vol Walker Hall, Fayetteville, AR 72701

4. NorthWest Arkansas Community College (NWACC) , 1 College Drive, Bentonville, AR 72712

Abstract

Abstract As power densities and switching frequencies dramatically increase in wide bandgap power electronics, electromagnetic interference (EMI) increasingly impacts power conversion efficiency, and reliability, which requires mitigation for effective operation. Herein, we propose a nanocomposite encapsulant created by directly incorporating magnetic iron oxide nanoparticles into a silicone matrix for the purpose of EMI shielding. The addition of small amounts of particles to the silicone resulted in a 1.7 dBμV drop in EMI intensity; however, the addition of the iron oxide reduced the dielectric breakdown strength of the silicone matrix by 83% with respect to concentration. Further efforts to optimize the dielectric properties of the nanocomposites with respect to the nanoparticle loading are necessary to directly apply this technology; yet the results indicate that magnetic nanocomposites could be a potential avenue toward mitigating EMI in power devices.

Funder

National Science Foundation

Publisher

ASME International

Subject

Electrical and Electronic Engineering,Computer Science Applications,Mechanics of Materials,Electronic, Optical and Magnetic Materials

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