• DocumentCode
    2184990
  • Title

    A study on suppression of self resonance of metal chassis by means of the hybrid magnetic material

  • Author

    Hotta, Yukio ; Li, Xiaohe ; Nitta, Shuichi

  • Author_Institution
    Tokin EMC Eng. Co. Ltd., China
  • fYear
    2000
  • fDate
    2000
  • Firstpage
    320
  • Lastpage
    325
  • Abstract
    Many noise suppression techniques have been applied and put to practical use, but in the near future, the signal processing speed and frequency spectrum will become increasingly higher, and the size of equipment will become smaller, and so new technology to reduce EMI radiation and to enhance immunity are still demanded. It is expected that not only the interference between inter-systems by EMI radiation from the equipment but also the interference inside the equipment causes the degradation of system reliability. The equipment cabinet constructed of conductive materials has self-resonance frequency. When electromagnetic excitation occurs inside the cabinet by EMI radiation from inner circuits, the strong electromagnetic field is generated inside the cabinet at the self-resonance frequency, makes EMI radiation from cabinet increase and degrades the immunity of the inner circuit. To suppress the radiation from the cabinet and interface cable by suppressing Q of the self-resonance and to enhance immunity are requested. The authors propose to use hybrid magnetic materials which contain magnetic material and dielectric material in order to suppress the value of Q and verify the effect
  • Keywords
    dielectric materials; electromagnetic fields; electromagnetic interference; interference suppression; magnetic materials; resonance; EMI radiation; EMI radiation reduction; conductive materials; dielectric material; electromagnetic excitation; electromagnetic field generation; frequency spectrum; hybrid magnetic material; immunity enhancement; inner circuit immunity degradation; interface cable; magnetic material; metal chassis; self resonance suppression; signal processing speed; system reliability degradation; Circuits; Degradation; Electromagnetic fields; Electromagnetic interference; Electromagnetic radiation; Electromagnetic radiative interference; Frequency; Magnetic materials; Noise reduction; Resonance;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Environmental Electromagnetics, 2000. CEEM 2000. Proceedings. Asia-Pacific Conference on
  • Conference_Location
    Shanghai
  • Print_ISBN
    7-5635-0420-6
  • Type

    conf

  • DOI
    10.1109/CEEM.2000.853957
  • Filename
    853957