• Title/Summary/Keyword: impeadance

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Magnetic Impeadance Effects by the Displacement of Amorphous Ribbon (아몰퍼스 리본의 변위에 의한 자기임피던스 효과)

  • 신용진;소대화;김현욱;임재근;강재덕
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.11a
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    • pp.73-76
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    • 1999
  • In this thesis, we fabricate a zero-magnetostrictive amorphous ribbon measure the impeadance effect, and then Investigate possibility as a sensor material. $Co_{72.5}$F $e_{0.5}$M $o_{2}$ $B_{15}$ S $i_{5}$ is used as composition of specimen alloy. We first melt the specimen in high frequency induction furnace and then rapidly quench it by using single roll technique. As the result, we obtain a ribbon where thickness is 12${\mu}{\textrm}{m}$, width is 1mm and length is 93mm. Consequently, it is proved through this study that zero-magnetostrictive amorphous ribbon can be used as an excellent magnetic sensor material.rial.l.

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Study on the analysis of impulse test wave in the short coil (layer)of transformer winding (변압기 권선(층간)단락시의 충격파시험파형분석에 관한 연구)

  • 박민호
    • 전기의세계
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    • v.25 no.5
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    • pp.75-78
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    • 1976
  • The most difficult problem encountered in impulse test of transformer is the determination of exact fauly for coil layer short. This paper is to establish one of improved standards in the above case by means of wave form analysis, based on the equivalent circuits and experimental investigation. During the fault occurs, the local oscillation in fault circuit is applicable where as the reflection wave is utilized to the main circuit. The result current wave form at neutral impeadance point is similar to the wave form by impulse test and has the singular wave form respectively.

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Field Testing of Distribution Line Carrier Communication System for Automation Distribution System (배전자동화용 배전선 반송통신방식의 전송특성시험)

  • Huh, Young;Oh, Won-Rock;Oh, Sang-Ki;Kim, Kwan-Ho;Kim, Yo-Hee;Hyun, Duck-Wha
    • Proceedings of the KIEE Conference
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    • 1989.07a
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    • pp.712-717
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    • 1989
  • A communication system through distribution lines was developed for distribution automation. Since all facilities in distrbution systems are connected by distribution lines, economical communication systems can be realized by using these lines as data transmission lines. But it has a problem in transmission reliability bcause of its sensitivity to noise and impeadance. Therefore, to cope with this problem. measurement and analysis of the communication characteristics are made according to the influence of load impeadence change, signal level and noise generated in load. Field tests were carried out at Kyung Ki branch of the KEPCO for half year starting in Feburary 1988.

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Partial Discharge Measurement of Oil-Paper Insulation by Dual Measuring Impeadance (절연유-절연지에서 이중 임피던스에 의해 부분방전측정)

  • Kim, K.H.;Ryu, H.S.;Sun, J.H.
    • Proceedings of the KIEE Conference
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    • 1996.07c
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    • pp.1778-1780
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    • 1996
  • In this paper, we describe the partial discharge measurement with measuring impedance to have two wide frequency band transformers(filters) in the oil-paper and air insulation. The measuring impedance consists of high and low limiting frequency transformers. This measuring impedance could be measured the partial discharge current wave. We have the results that the amplitude partial discharge pulse ratio of low limiting frequency tranformer to high limiting frequency one is varied in the condition(in oil-paper insulation and air) to generate partial discharge.

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Output Power characteristics of the Piezoelectric Transformer for LCO Backlight with Piezoelectric and Piezoelectric Properties (유전 및 압전특성에 따른 LCD Backlight용 압전 트랜스포머의 출력전력특성)

  • 민석규;류주현;정회승;홍재일;윤현상;손은영
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2000.07a
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    • pp.852-856
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    • 2000
  • In this paper, we investigated the output power, step-up ratio and efficiency properties of piezoelectric transformer with dielectric and piezoelectric characteristics of manufactured ceramics. The piezoelectric transformers with $2.0$\times$10$\times$48[$mm^3$] size were fabricated and its electrical properties were measured. When output power of 6W was constantly maintained, T2 piezoelectric transformer showed the minimum temperature rise of $9(^{\circ}C)$ at $150(K\Omega)$ load resistance. However, T1 piezoelecric transformer showed the temperature rise of $7.2(^{\circ}C)$ at $200(K\Omega)$ load resistance. The 6[w] CCFL (Cold Cathode Fluorescent Lamp) was successfully driven by T1 and T2 piezoelectric transformer but, its temperature rise $\Delta$T[$^{\circ}C)$] was generated more than $20(^{\circ}C)$. It is concluded that we have to design the piezoelectric transformers so that its output impedance correspond to the load impeadance, including any stray capacitance.

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