PhotonIcs and Electromagnetics Research Symposium,
also known as Progress In Electromagnetics Research Symposium
PIERS Proceedings
Published: 2015-07-09
Implementation of Universal RF-shielded Enclosure for IT Equipment Protection
By
Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)317-320
Abstract
In order to decrease the level of radiated emissions from information technology (IT) equipment and in order to protect the IT equipment in high level of electric field strength environment the RF shielded enclosures are needed. In the paper the implementation of universal RF shielded enclosure is presented. The description and the block diagram of the RF-shielded enclosure is presented. In the article the shielding efficiency (SE) of real RF-shielded enclosure is presented. Furthermore the paper presents the methodology and block diagram of laboratory stand for SE measurements conducted in anechoic chamber.
Citation
Leszek Nowosielski, and Marian Tadeusz Wnuk, "Implementation of Universal RF-shielded Enclosure for IT Equipment Protection," Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)317-320
References

1. Kubacki, R., R. Przesmycki, and J. Ferenc, "Wlasności elektromagnetyczne nanokrystalicznego proszku stopu Fe-Si-B-Cu-Nb w zakresie mikrofalowym," Przegla̧d Elektrotechniczny (Electrical Review), NR 12b/2011, 92-95, 2011, ISSN: 0033-2097.        Google Scholar

2. Przesmycki, R., "Measurement and analysis of compromising emanation for laser printer," PIERS Proceedings, Guangzhou, China, August 25–28, 2014.        Google Scholar

3. Przesmycki, R., M. Wnuk, P. Skokowski, and M. Bugaj, "Identification of interface in the complex systems based on radiated emission of mobile computer," PIERS Proceedings, Guangzhou, China, August 25–28, 2014.        Google Scholar

4. Przesmycki, Rafał, Marek Bugaj, and M. Wnuk, "Wideband microstrip antenna," PIERS Proceedings, Guangzhou, China, August 25–28, 2014.        Google Scholar

5. Przesmycki, R. and P. Skokowski, "Dual band microstrip antenna," PIERS Proceedings, Guangzhou, China, August 25–28, 2014.        Google Scholar

6. Kubacki, Roman, Jarosław Ferenc, Rafał Przesmycki, and Marian Wnuk, "The nanocrystalline FeSiBCuNb finemet absorption properties at microwaves," IEEE Transactions on Electromagnetic Compatibility, Vol. 54, No. 1, 93–100, February 2012.
doi:10.1109/temc.2011.2179807        Google Scholar

7. Kubacki, R., M. Wnuk, W. Kolosowski, and J. Sobiech, "New approach to electromagnetic field calculations in the near-field of microwave antennas," Computational Methods and Experimental Measurements, XI Book Series: Computational Engineering, Vol. 4, 413-422, 2003.        Google Scholar

8. Kubacki, R., E. Cwalina, M. Kuchta, and A. Dukata, "Specyfika rozkÃladu pola elektromagnetycznego wewnatrz pomieszczeń i obudów komputerowych od wysokomocowych impulsów elektromagnetycznych," Przegla̧d Elektrotechniczny (Electrical Review), No. 12b, 209-212, 2012.        Google Scholar

9. Kubacki, R. and S. Lamari, "The UWB microstrip antenna with metamaterial and periodic structure," PIERS Proceedings, Guangzhou, China, August 25–28, 2014.        Google Scholar

10. Kubacki, R., "New attempt to building materials permittivity measurements," PIERS Proceedings, Guangzhou, China, August 25–28, 2014.        Google Scholar

11. Lamari, Salim, Roman Kubacki, and Miroslaw Czyzewski, "Frequency range widening of the microstrip antenna with the sierpinski fractal patterned metamaterial structure," 2014 20th International Conference on Microwaves, Radar and Wireless Communications (MIKON), 1–3, June 2014.
doi:10.1109/mikon.2014.6899961        Google Scholar

12. Bugaj, M., "Measurements of wall attenuation in closed spaces inside a building," PIERS Proceedings, Guangzhou, China, August 25–28, 2014.        Google Scholar

13. Bugaj, M., "Attenuation measurements of materials used in construction of buildings," PIERS Proceedings, Guangzhou, China, August 25–28, 2014.        Google Scholar

14. Piotrowski, Zbigniew and Michał Ciołek, "Changing the voice of a subscriber on the example of an implementation of the PSOLA algorithm for the iOS and android mobile platforms," Multimedia Communications, Services and Security (MCSS 2013), 181–193, 2013.
doi:10.1007/978-3-642-38559-9_16        Google Scholar

15. Rozanowski, K., Z. Piotrowski, and M. CiolekMilitary, "Mobile application for driver’s health status remote monitoring," 2013 9th International Wireless Communications and Mobile Computing Conference (IWCMC), 1738–1743, July 2013.
doi:10.1109/iwcmc.2013.6583819        Google Scholar

16. Bajda, A., M. Wrazen, and D. Laskowski, "Diagnostics the quality of data transfer in the management of crisis situation," Electrical Review, Vol. 87, No. 9A, 72-78, 2011.        Google Scholar

17. Laskowski, D., P. Lubkowski, E. Pawlak, and P. Stanczyk, "Anthropo-technical systems reliability, safety and reliability: Methodology and applications," Proceedings of the European Safety and Reliability Conference, ESREL 2014, 399-407, 2014.        Google Scholar

18. Ziółkowski, Cezary and Jan M. Kelner, "Geometry-based statistical model for the temporal, spectral, and spatial characteristics of the land mobile channel," Wireless Personal Communications, Vol. 83, No. 1, 631–652, February 2015.
doi:10.1007/s11277-015-2413-3        Google Scholar

19. Gajewski, P., J. M. Kelner, and C. Ziólkowski, "Dynamic location of the emission sources based on Doppler effect," Przegla̧d Elektrotechniczny (Electrical Review), Vol. 89, No. 7, 223-226, 2013.        Google Scholar

20. Gajewski, Piotr, Cezary Ziolkowski, and Jan M. Kelner, "Using SDF method for simultaneous location of multiple radio transmitters," 2012 19th International Conference on Microwaves, Radar & Wireless Communications, 634–637, Warsaw, Poland, May 2012.
doi:10.1109/mikon.2012.6233581        Google Scholar