DOI QR코드

DOI QR Code

Development of Broadband Electromagnetic Wave Absorber for X-band Sensors in Double-layered Type Using Carbon

  • Choi, Chang-Mook (Department of Radio Sciences and Engineering, Korea Maritime University) ;
  • Kim, Dong-Il (Department of Radio Sciences and Engineering, Korea Maritime University) ;
  • Li, Rui (Department of Radio Sciences and Engineering, Korea Maritime University) ;
  • Choi, Dong-Han (Research Institute of Industrial Technology, Korea Maritime University)
  • Published : 2006.12.31

Abstract

In this paper, the EM wave absorbers were designed and fabricated for X -band sensors using Carbon of dielectric material with CPE. The complex relative permittivity of samples is calculated by using measurement results of S-parameter. We simulated the double-layered type EM wave absorber with broad bandwidth using the measured complex relative permittivity by changing the thickness and layer, which was fabricated based on the simulated design The fabricated EM wave absorber consists of 1 mm first layer sheet facing metal with Carbon composition ratio 70 vol. % and 1.5 mm second layer sheet with Carbon composition ratio 60 vol. %. The measured results showed a good agreement to the simulated ones. It is found toot the optimized absorption ability of double-layered type EM wave absorber with thickness of 2.5 mm is higher than 10 dB from 7.8 GHz to 13.3 GHz.

Keywords

References

  1. Eugene, F. K., John, F., Shaeffer, Michael, T. T. (2004), RADAR CROSS SECTION, 2nd Edition, SciTech, pp. 301-303
  2. Kim, D. I., Michiharu Takahashi, Hiroki Anzai, and Jun, S. Y. (1996), 'Electromagnetic Wave Absorber with Wide-Band Frequency Characteristics Using Exponentially Tapered Ferrite,' IEEE Trans. Electromag. Compat., vol. 387, no. 2, pp. 173-177
  3. Kim, D. H., Kim, D. I., Choi, C. M., and Son, J. Y. (2006), 'A Study on Design and Fabrication of Complex Type EM Wave Absorber with Super Wide-band Characteristics,' International Journal of Navigation and Port Research, vol, 30, no. 2, pp. 161-166 https://doi.org/10.5394/KINPR.2006.30.2.161
  4. Kotsuka, Y., Yamazaki, H. (2000), 'Fundamental Investigation on a Weakly Magnetized Ferrite Absorber,' IEEE Trans. Electromag. Compat., vol. 42, no. 2, pp. 116-124 https://doi.org/10.1109/15.852405
  5. Moon, S. H., Shin, S. J., Song, J. M., Kim, D. I., and Kim, K. M. (2003), 'Development of composite Ba ferrite EM wave absorbers for GHz frequency,' J. Korea Electromag, Engin. Soc., vol. 14, no. 12, pp. 1329-1334
  6. Naito, Y. (1987), 'Electromagnetic Wave Absorbers, Tokyo', New Ohm, pp. 73-76
  7. Neo, C. P., Varadan, V. K. (2004), 'Optimization of Carbon Fiber Composite for Microwave Absorber,' IEEE Trans. Electromag. Compat., vol. 46, no. 1, pp. 102-106 https://doi.org/10.1109/TEMC.2004.823618
  8. Soh, T., Hashimoto, O. (2001), 'A Study on Millimeter-Wave Absorber Coating for V Band and W Band,' Trans. IEICE, vol. J84-B, no. 8, pp. 1523-1528