Title :
Quantitative Analysis of High-Frequency Material Properties in Thin-Ribbon Magnetic Cores
Author :
Szewczyk, Marcin ; Kutorasinski, Kamil ; Piasecki, Wojciech
Author_Institution :
ABB Corp. Res. Center, Kraków, Poland
Abstract :
This paper presents quantitative analysis of material properties of magnetic cores wound of thin magnetic tape. Self-consistent model of penetration depth was proposed to include skin effect in calculation of magnetic material parameters. The model was used to extract geometry-independent material parameters based on which quantitative analysis of the material complex permeability was presented. The model is based on the magnetic cores frequency-dependent complex impedance (measured) and on selected basic material parameters (typically provided by manufacturers). The approach is demonstrated on a practical example, in which frequency-dependent saturation current of the magnetic cores was calculated based on the extracted geometry-independent material parameters. The results are presented for three types of nanocrystalline cores, in a frequency range from 1 kHz to 100 MHz.
Keywords :
magnetic cores; magnetic permeability; magnetic tapes; nanomagnetics; nanostructured materials; extracted geometry-independent material parameters; frequency-dependent saturation current; geometry-independent material parameters; high-frequency material properties; magnetic core frequency-dependent complex impedance; magnetic material parameters; material complex permeability; nanocrystalline cores; penetration depth; quantitative analysis; self-consistent model; skin effect; thin magnetic tape; thin-ribbon magnetic cores; Frequency dependence; Frequency measurement; Impedance; Magnetic cores; Permeability; Saturation magnetization; Skin effect; Magnetic cores; magnetic properties; magnetic ribbon; permeability model; saturation current; skin effect;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2015.2422262