Experimental shielding effectiveness study of metal enclosure with electromagnetic absorber inside

Author:

Nesic Natasa1,Doncov Nebojsa2ORCID,Rupcic Slavko3,Mandric-Radivojevic Vanja3

Affiliation:

1. Department of Information and Communication Technologies, Academy of Applied Technical and Preschool Studies, Niš, Serbia

2. Faculty of Electronic Engineering, University of Niš, Serbia

3. Faculty of Electrical Engineering, University of Josip Juraj Strossmayer, Osijek, Croatia

Abstract

In this paper, the impact of an electromagnetic absorber inside a protective metal enclosure is analyzed. The absorber is put inside the enclosure in order to improve its shielding effectiveness, especially at the first resonant frequency. Different absorber's sheet positions inside the enclosure are analyzed. The absorber sheet dimensions are fitted to correspond the enclosure's walls. The experimental procedure is conducted in a semi-anechoic room. The numerical TLM simulations of the EM filed distribution inside enclosure are conducted in order to consider position of the absorber sheet on different walls.

Funder

Ministry of Education, Science and Technological Development of the Republic of Serbia

Publisher

National Library of Serbia

Subject

General Materials Science

Reference22 articles.

1. N. Nešić, S. Rupčić, V. Mandrić-Radivojević and N. Dončov, "Experimental analysis of a metal enclosure shielding effectiveness improvement with EMI absorber", In Proceedings of the 15th International Online Conference on Applied Electromagnetics - ПЕС 2021, Niš, 2021, pp. 98-101.

2. C. Christopoulos, Principles and Techniques of Electromagnetic Compatibility, 2nd ed. CRS Press, 2007.

3. H. A. Mendez, "Shielding theory of enclosures with apertures", IEEE Trans. Electromagn. Compat., vol. 20, no. 2, pp. 296-305, May 1978.

4. P. M. Robinson, M. T. Benson, C. Christopoulos, F. J. Dawson, D. M. Ganley, C. A. Marvin, J. S. Porter and P. W. Thomas, "Analytical formulation for the shielding effectiveness of enclosures with apertures", IEEE Trans. Electromagn. Compat., vol. 40, no. 3, pp. 240-248, August 1998.

5. C. Christopoulos, The Transmission-Line Modelling (TLM) Method. Piscataway, New Jersey: Wiley-IEEE Press in association with Oxford University Press, May 1995.

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