• DocumentCode
    1449559
  • Title

    Cross-Talk Suppression in High-Density Printed Circuit Boards Using Magnetic Composite Filled in Spacing Between Signal Lines

  • Author

    Kayama, Shinji ; Sonehara, Makoto ; Sato, Toshiro ; Yamasawa, Kiyohito ; Miura, Yoshimasa

  • Author_Institution
    Spin Device Technol. Center, Shinshu Univ., Nagano, Japan
  • Volume
    45
  • Issue
    10
  • fYear
    2009
  • Firstpage
    4801
  • Lastpage
    4803
  • Abstract
    Recently, high-density printed circuit boards (HD-PCBs) with less than 50 mum/50 mum line/space has been developed. In the HD-PCB, since the spacing between adjacent signal lines becomes very small, the crosstalk electromagnetic interference among adjacent lines becomes serious. In general, in order to suppress the crosstalk, the ground line is located at the spacing between signal lines because of the decrease of mutual capacitance among adjacent signal lines. The authors have proposed a magnetic method for reducing the crosstalk. The composite magnetic material was filled in the spacing between signal lines instead of the ground line. The magnetic composite is composed of Fe-Si-B-Cr amorphous particles with a mean diameter of 6 mu m and epoxy resin. From the experiments using the PCB-TEG with a 130 mum/50 mum line/space and 25-mm line length, the crosstalk was suppressed in the wide frequency range by using the magnetic composite. In the case of using 51 vol.% amorphous composite, the crosstalk suppression was up to 20 dB around 1 GHz. The influence of the magnetic composite on the transmission and reflection in the main signal line was very small. Therefore, the proposed method is effective for crosstalk suppression without influence on the signal transmission.
  • Keywords
    amorphous magnetic materials; boron compounds; composite materials; crosstalk; interference suppression; iron compounds; polymers; printed circuits; silicon compounds; adjacent signal lines; amorphous particles; composite magnetic material; cross-talk suppression; crosstalk electromagnetic interference; epoxy resin; ground line; high-density printed circuit boards; magnetic method; mutual capacitance; size 130 mum; size 25 mm; size 50 mum; size 6 mum; Crosstalk; Fe-based amorphous particle; high-density printed circuit board (HD-PCB); magnetic composite;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2009.2021406
  • Filename
    5257065