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Common Mode Filter Embedded in Flexible Printed Circuit Board for Multi-Function Cable

다기능 케이블을 위한 연성 회로 기판에 내장된 공통 모드 필터

  • Byun, Jin-Do (Department of Electronics Engineering, Ajou University) ;
  • Jung, Sang-Woon (Department of Electronics Engineering, Ajou University) ;
  • Lee, Keun-Hyung (Department of Electronics Engineering, Ajou University) ;
  • Lee, Hai-Young (Department of Electronics Engineering, Ajou University)
  • Published : 2008.03.31

Abstract

In this paper, a spiral shaped common mode filter(CMF) embedded in a flexible printed circuit board(FPCB) is proposed for a multi-function cable. The CMF embedded in a FPC cable presents a new concept as a multi-function cable by the common mode rejection characteristics without a surface mounted device(SMD) CMF. The embedded CMF has a wideband common mode rejection bandwidth and an enhanced differential mode characteristics compared to conventional CMFs that use a magnetic material such as a ferrite of high loss. The proposed CMF of 3 turn inductors has a common mode rejection bandwidth from 0.4 GHz to 3.12 GHz and has 1.95 dB at 3 GHz, 6.97 dB at 8 GHz improvements of a differential mode insertion loss compared to the commercial LTCC(Low Temperature Co-fire Ceramics) CMFs.

본 논문에서는 FPC(Flexible Printed Circuit) 케이블에 적층된 나선형 인덕터를 내장하여 다기능 케이블을 위한 공통 모드 필터를 제안하였다. 공통 모드 필터가 내장된 FPC 케이블은 별도의 SMD(Surface Mounted Device) 필터 없이 연성 케이블과 공통 모드 차단 특성을 가짐으로서, 다기능 케이블이라는 새로운 개념을 제시한다. 내장된 공통 모드 필터는 광대역의 공통 모드 차단 대역을 가지고 손실이 큰 페라이트와 같은 자성 물질을 사용하지 않아 차동 모드 삽입 손실 및 반사 손실이 향상되었다. 3-turn 인덕터를 가진 공통 모드 필터는 공통 모드차단 대역이 $0.4{\sim}3.12GHz$이며, 페라이트를 적용한 상용 LTCC(Low Temperature Co-fire Ceramic) 공통 모드 필터에 비해 3 GHz에서 1.95 dB, 8 GHz에서 6.97 dB의 향상된 차동 모드 삽입 손실을 갖는다.

Keywords

References

  1. Electrical characteristics of low-voltage differential signaling(LVDS) interface circuits, TIA/EIA-644, National Semiconductor Corp., ANSI/TIA/EIA, 1996
  2. IEEE Standard for Low-Voltage Differential Sig- nals(LVDS) for Scalable Coherent Interface(SCI), 1596.3 SCI-LVDS Standard, IEEE Std. 1596. 3-1996, Jul. 1996
  3. C. R. Paul, Introduction to Electromagnetic Compatibility, New York: Wiley, 1992
  4. C. R. Paul, 'A comparison of the contributions of common mode and differential mode currents in radiated emissions', IEEE Trans. Electromagn. Compt., vol. 31, pp. 189-193, May 1989 https://doi.org/10.1109/15.18789
  5. F. J. Tiley, 'Reducing radiated emissions on high speed signal lines using common mode choke coils', in proc. IEEE Int. Symp. Electromagnetic Compatibility, pp. 435-439, 1995
  6. 홍순관, 플레시블 PCB, 홍릉과학출판사, 2006
  7. Y. Kaizaki, F. Tsuda, and S. Shinohara, 'Development of common mode filter with a multilayer structure', in Proc. IEEE Int. Symp. Electromagnetic Compatibility, pp. 794-794, 1999
  8. T. Sato, S. Ikeda, Y. Hara, K. Yamasawa, and T. Sakuma, 'A new multi-layered common mode filter on Ni-Zn ferrite substrate', IEEE Trans. Magnetics, vol. 37, pp. 2900-2902, Jul. 2001 https://doi.org/10.1109/20.951341
  9. Y. Sudo, K. Watanabe, T. Sato, K. Yamasawa, and Y. Uehara, 'A coplanar coupled line common mode filter using CoZrNb soft magnetic thin film for GHz frequency band', Magnetics Conference, Intermag Asia 2005. Digests of the IEEE International, pp. 1097-1098, Apr. 2005
  10. Bin-Chyi Tseng, Lin-Kun Wu, 'Design of miniaturized common mode filter by multilayer low- temperature co-fired ceramic', in IEEE Transaction on Electromagnetic Compatibility, vol. 46, pp. 571-579, 2004 https://doi.org/10.1109/TEMC.2004.837681
  11. http://www.component.tdk.com