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    광대역 EMC Filter의 설계 및 제작에 관한 연구 = A Study on Design and Fabrication of Broad-Band EMC Filter

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    https://www.riss.kr/link?id=T8677942

    • 저자
    • 발행사항

      부산 : 한국해양대학교 대학원, 2003

    • 학위논문사항

      학위논문(공학석사) -- 韓國海洋大學校 大學院 , 전파공학과 , 2003年 2月

    • 발행연도

      2003

    • 작성언어

      한국어

    • KDC

      569.91 판사항(3)

    • 발행국(도시)

      부산

    • 형태사항

      iv,55 p. : 삽도 ; 26 cm.

    • 소장기관
      • 국립한국해양대학교 도서관 소장기관정보
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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Since the occupation density of microwave frequency band is highly increased, the electromagnetic environment is getting worse seriously. It is sometimes reported that electronic machines are not normally operated because of the influence of undesired electromagnetic wave. It often gives fatal blow to even human life and thus becomes serious social problems. Some international organizations such as IEC, FCC, CISPR, VCCI, VDE, ANSI, etc., have enacted laws and regulations related to the protection against EMI (Electromagnetic Interference) and EMS (Electromagnetic Susceptibility), are farther strengthening the regulations.
    To meet these tendency, in this thesis, a kind of electromagnetic compatibility (EMC) problems was solved by developing a broad-band EMC filter. As a solution, an EMC filter has been designed which is composed of feed-through capacitors and ferrite beads with high permeability. The proposed EMC filter satisfied the EMC requirements for a wide-band noise signal from 10 MHz to 1.5 GHz in power supply line. The optimum values of the ferrite bead structure and capacitance of the feed-through capacitors was found by calculating the load effect of ferrite beads and the filtering performances.
    As a result, the filter showed excellent differential- and common-mode noises filtering characteristics above with 28 to 70 dB in the frequency band from 10 MHz to 1.5 GHz. The immunity characteristics are improved more than 10 to 30 dB over the frequency band from DC to 1.8 GHz.
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    Since the occupation density of microwave frequency band is highly increased, the electromagnetic environment is getting worse seriously. It is sometimes reported that electronic machines are not normally operated because of the influence of undesired...

    Since the occupation density of microwave frequency band is highly increased, the electromagnetic environment is getting worse seriously. It is sometimes reported that electronic machines are not normally operated because of the influence of undesired electromagnetic wave. It often gives fatal blow to even human life and thus becomes serious social problems. Some international organizations such as IEC, FCC, CISPR, VCCI, VDE, ANSI, etc., have enacted laws and regulations related to the protection against EMI (Electromagnetic Interference) and EMS (Electromagnetic Susceptibility), are farther strengthening the regulations.
    To meet these tendency, in this thesis, a kind of electromagnetic compatibility (EMC) problems was solved by developing a broad-band EMC filter. As a solution, an EMC filter has been designed which is composed of feed-through capacitors and ferrite beads with high permeability. The proposed EMC filter satisfied the EMC requirements for a wide-band noise signal from 10 MHz to 1.5 GHz in power supply line. The optimum values of the ferrite bead structure and capacitance of the feed-through capacitors was found by calculating the load effect of ferrite beads and the filtering performances.
    As a result, the filter showed excellent differential- and common-mode noises filtering characteristics above with 28 to 70 dB in the frequency band from 10 MHz to 1.5 GHz. The immunity characteristics are improved more than 10 to 30 dB over the frequency band from DC to 1.8 GHz.

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    목차 (Table of Contents)

    • 목차
    • Abstract = i
    • Nomenclatures = ii
    • 제1장 서론 = 1
    • 1.1 연구 배경 = 1
    • 목차
    • Abstract = i
    • Nomenclatures = ii
    • 제1장 서론 = 1
    • 1.1 연구 배경 = 1
    • 1.2 연구 목적 = 3
    • 1.3 연구 내용 = 4
    • 제2장 광대역 EMC Filter의 해석 = 5
    • 2.1 전자시스템의 EMC 요구 = 5
    • 2.2 전송선로의 모드 해석 = 11
    • 2.3 EFT 특성 = 16
    • 2.4 EFT의 결합 경로 = 19
    • 2.5 관통형 컨덴서와 페라이트 비드 특성 = 24
    • 제3장 광대역 EMC Filter의 설계 및 제작 = 33
    • 3.1 광대역 EMC 필터의 설계 = 33
    • 3.2 광대역 EMC 필터의 삽입손실 계산 = 35
    • 제4장 광대역 EMC Filter의 특성 분석 = 41
    • 4.1 제작한 광대역 EMC 필터의 삽입손실 측정 분석 = 41
    • 4.2 과도전압(EFT) 특성 분성 = 46
    • 제5장 결론 = 50
    • 참고문헌 = 51
    • 본 연구와 관련된 발표 논문 = 54
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