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http://dx.doi.org/10.4191/KCERS.2006.43.2.074

Prototype Electromagnetic-Noise Filters Incorporated with Nano-Granular Co41Fe38Al13O8 Soft Ferromagnetic Thin Films on Coplanar Transmission Lines  

Sohn, Jae-Cheon (Future Technology Research Division, KIST)
Byun, Dong-Jin (Department of Materials Science and Engineering, Korea University)
Publication Information
Abstract
A non-integrated type noise filter on a Coplanar Waveguide (CPW) transmission line is demonstrated by using a highly resistive $Co_{41}Fe_{38}Al_{13}O_8$ nanogranular thin film with the dimensions of $4\;mm (\iota)\times4\;mm(\omega)\times0.1\;{\mu}m(t)$. The noise suppression characteristics are evaluated without placing an insulating layer between the CPW line and the magnetic thin film. The insertion loss is very low being less than 0.3 dB and this low value is maintained up to 2 GHz. At a ferromagnetic resonance frequency of 3.3 GHz, the power loss is very large and the degree of noise attenuation is measured to be 3 dB. This level of noise attenuation is still small for real applications; however, considering the small magnetic volume used in this work, further improvement is expected by simply increasing the magnetic volume and by integrating the magnetic thin film into the CPW transmission line.
Keywords
Nano-granular thin film; Ferromagnetic resonance; Electromagnetic noise; Noise suppressor; Coplanar transmission line;
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  • Reference
1 W. B. Weir, 'Automatic Measurement of Complex Dielectric Constant and Permeability at Microwave Frequencies,' Proc. IEEE, 62 33-6 (1974)
2 A. M. Nicolson and G. F. Ross, 'Measurement of the Intrinsic Properties of Materials by Time-Domain Techniques,' IEEE Trans. Instrum. Meas., IM-19 [4] 377-82 (1970)
3 M. Yamaguchi, K. H. Kim, T. Kuribara, and K. I. Arai, 'Thin-Film RF Noise Suppressor Integrated in a Transmission Line,' IEEE Trans. Magn., 37 [5] 3183-85 (2002)
4 K. H. Kim, M. Yamaguchi, S. Ikeda, and K. I. Arai, 'Modeling for RF Noise Suppressor Using a Magnetic Film on Coplanar Transmission Line,' IEEE Trans. Magn., 39 [5] 3031-33 (2003)   DOI   ScienceOn
5 K. H. Kim, M. Yamaguchi, K. I. Arai, N. Matsushita, and M. Abe, 'Application of Spin Sprayed Ferrite Films on Coplanar Transmission Line for RF Noise Suppression,' Trans. Magn. Soc. Jpn., 3 [4] 133-36 (2003)   DOI   ScienceOn
6 J. C. Sohn, D. J. Byun, and S. H. Lim, 'Nanogranular Co- Fe-Al-O Sputtered Thin Films for Magnetoelastic Device Applications in the GHz Frequency Range,' J. Magn. Mater., 272-276 1500-02 (2004)   DOI   ScienceOn
7 B. C. Wadell, 'Transmission Line Design Handbook,' Norwood, MA: Artech House, 1991
8 W. Barry, 'A Broad-Band, Automated, Stripline Technique for the Simultaneous Measurement of Complex Permittivity and Permeability,' IEEE Trans. Microwave Theory Tech., MTT-34 [1] 80-4 (1986)
9 K. H. Kim, M. Yamaguchi, K. I. Arai, H. Nagura, and S. Ohnuma, 'Effect of Radio-Frequency Noise Suppression on the Coplanar Transmission Line Using Soft Magnetic Thin Films,' J. Appl. Phys., 93 [10] 8002-04 (2003)   DOI   ScienceOn
10 S. Ohnuma, N. Kobayashi, T. Masumoto, S. Mitani, and H. Fujimori, 'Magnetostriction and Soft Magnetic Properties of Co-Fe-Al-O Granular Films with High Electrical Resistivity,' J. Appl. Phys., 85 [8] 4574-76 (1997)   DOI   ScienceOn
11 J. C. Sohn, D. J. Byun, and S. H. Lim, 'Nanogranular Co- Fe-Al-O Films with a High Electrical Resistivity for GHz Magnetoelastic Device Applications,' Phys. Stat. Sol., (a)201 [8] 1786-89 (2004)   DOI   ScienceOn
12 R. W. Ziolkowski, 'Design, Fabrication, and Testing of Double Negative Metamaterials,' IEEE Trans Antennas Propagat., 51 [7] 1516-29 (2003)   DOI   ScienceOn