DocumentCode :
742176
Title :
Improved Resonator Method for Microwave Testing of Magnetic Composite Sheets
Author :
Jha, Abhishek Kumar ; Akhtar, Mohammad Jaleel
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol. Kanpur, Kanpur, India
Volume :
51
Issue :
9
fYear :
2015
Firstpage :
1
Lastpage :
9
Abstract :
The applications of magnetic composites in electromagnetic shielding, resonance imaging, and biomedical drug research are growing rapidly. Therefore, there is a huge demand to characterize these materials in order to obtain their dielectric and magnetic properties in the microwave frequency range. In this paper, a novel rectangular cavity method is proposed to obtain the complex permeability and permittivity of the test sample placed in the E-plane of the rectangular cavity. The proposed method eliminates the need of physical relocation of a specimen in the H-plane, which is usually required in the case of presently available methods to characterize the magnetic samples. The closed-form formula for this unified approach is developed from the first principle, and is later modified to consider some practical consideration. The proposed method is first numerically tested and verified for various standard samples, where the data are taken from the literature. Thereafter, the X-band rectangular cavity is designed and fabricated to measure a number of available samples. The significance of the proposed approach can be appreciated from the fact that even for finite-size samples, the permeability and permittivity can be extracted with the typical errors of 5% and 2%, respectively.
Keywords :
electromagnetic shielding; magnetic materials; magnetic permeability; permittivity; resonators; E-plane; X-band rectangular cavity; biomedical drug research; complex permeability; dielectric properties; electromagnetic shielding; improved resonator method; magnetic composite sheets; magnetic properties; microwave frequency range; microwave testing; permittivity; physical relocation; rectangular cavity method; resonance imaging; Cavity resonators; Magnetic fields; Permeability; Permeability measurement; Permittivity; Permittivity measurement; Resonant frequency; Absorbing material; cavity perturbation technique; complex permeability; complex permittivity; dielectric properties; resonant method;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2431996
Filename :
7105931
Link To Document :
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