Browse > Article
http://dx.doi.org/10.5515/JKIEES.2009.9.2.053

Development of EMC Filter In the High Powered Breaker  

Kim, Eun-Mi (Dept. of Radio Sciences & Engineering, Korea Maritime University)
Jeon, Mi-Hwa (Dept. of Radio Sciences & Engineering, Korea Maritime University)
Kim, Dong-Il (Dept. of Radio Sciences & Engineering, Korea Maritime University)
Ahn, Young-Sup (Dept. of Electronics & Comm. Engineering, Mokpo National Maritime University)
Publication Information
Abstract
Remarkable developments in the electric and electronic industry have given people's daily life much more convenience and abundance. However, in electrical communication, or electric and electronic fields, making electrical and electronic devices more functional, more integrated, and faster have put electromagnetic interference(EMI) into more complex forms, and lots of problems such as interruption, malfunction, or interference by noise between electrical communication systems occurs every day. In this research, the electromagnetic compatibility(EMC) filter in the high powered breaker was designed and fabricated as a counter measure. The filter attenuated noise more than 20${\sim}$50 dB in the range of 10 MHz${\sim}$1.5 GHz. And, when the electric fast transient(EFT) of 4 kV in the level 4 of IEC 61000-4-4 was induced, it was soon suppressed to 600 V.
Keywords
EMI Filter; EMC Filter; Feed-Through Capacitors; Ferrite Beads;
Citations & Related Records
연도 인용수 순위
  • Reference
1 J. K Lee, "The heavy electric machines perfonnance measure", Digital Industry Economy Newspaper, Jun. 2007
2 IEEE Standard Collection Electromagnetic Compatibility, New York: The Institute of Electrical and Electronics Engineers, 1992
3 S. H. Park, Y. M. Kim, "EMI/EMC of electric and electronic device", The Proceedings of the Korean Institute of Illuminating and Electrical Installation Engineers, vol. 13, issue 4, pp. 31-33, 1999
4 Y. J. Sin, "The heavy electric machines that preserve electricity civilization", Science Dong Ah, Sep. 2003
5 Y. -C. Jung, "EMI analysis and solution for low power switching power supply", 2001 The Transactions of the Korean Institute of Power Electronics, vol. 6, no. 2, 2001
6 H. G. Kim, D.-H. Bae, K. C. Min, and D. I. Kim, "A study on development of power cable countermeasuring EFT IEC801-4", Korean Institute of Navigation and Port Research, pp. 107-114, 1995
7 Richard Lee Ozenbaugh, EMI Filter Design, Marcel Dekker, Inc., pp. 56-100, 1996
8 F. D. Martzloff, T. F. Leedy, "Electrical fast transient tests, application and limitation", IEEE Trans Industry Applications, vol. IA-26, pp. 151-159, Jan./ Feb. 1990   DOI   ScienceOn
9 Yoshiyuki Naito, "Fonnulation of frequency dispersion of ferrite permeability", IECE of Japen, vol. J59-C, no. 5, pp. 297-304, May 1976
10 K. C. Min, Noise Comprehensive Countermeasure, Sung An Dang, p. 37, 1991
11 IEC 61000-4-4, "Electromagnetic compatibility part 4: Testing and measurement techniques; Section 4:Electrical fast transientlburst immunity test", 1995
12 Takeshi Ichikawa, Osamu Fujiwara, "An analysis of load effect produced by EMI ferrite core attachment", Technical, Report of IEICE, EMCJ95-39, pp.7-12, 1995
13 C. S. Kim, Conduction Noise Counter Measure and Filter Design Method, Sung An Dang, Jan. 2002