• Title/Summary/Keyword: Combination surge generator

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Fabrication and Characteristics of a Combination Surge Generator for Testing Shipboard Electrical Systems (선박전기설비 시험용 조합형 써 - 지발생장치의 제작과 특성)

  • 길경석;김윤식
    • Journal of Advanced Marine Engineering and Technology
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    • v.21 no.4
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    • pp.387-392
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    • 1997
  • This paper describes a combination surge generator for carrying out performance tests on the surge protection circuits of shipboard electrical systems. Pspice simulations were performed to decide the values of the parts required and to analyze the characteristics of the generator circuitry. The surge generator fabricated can produce four of the most common surge test waveforms : the O.5i/S/100kHz Ringwave, the 1.2/50$\mu$S voltage, the 8/20$\mu$S current, and the lO/lOOOi/S voltage wave¬forms specified in ANSI Std. C62. Source impedances of the surge generator are 12$\Omega$ in the O.5$\mu$S/100kHz mode, O.5$\Omega$ in the 1.2/50$\mu$S and 8/20$\mu$S mode, and 40$\Omega$in the l0/1000$\mu$S mode, and are determined by the ratio of the maxi¬mum open - circuit voltage to the maximum short - circuit current. Experimental results show that the surge generator provides most of the outputs required for the testing of the surge protection circuits on shipboard electrical systems.

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Fabrication and Characteristics of the Combination Surge Generator (조합형 써지전압.전류발생기의 제작과 특성)

  • Chang, S.H.;Lee, B.H.;Kil, K.S.;Lee, Y.K.;Lee, B.K.;Ohk, Y.H.
    • Proceedings of the KIEE Conference
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    • 1996.07c
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    • pp.1876-1878
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    • 1996
  • This paper describes the combination surge generator for applying performance tests of surge protective devices. The $8/20{\mu}s$ waveform applies to low impedance circuits and components and is commonly used to determine the characteristics of surge protective devices. And the $1.2/50{\mu}s$ waveform applies to high impedance circuits and components and is used for testing dielectric behavior. Therefore, the combination surge generator, which generates $1.2/50{\mu}s$ voltage waveform under open-circuit conditions and $8/20{\mu}s$ current waveform under short-circuit condition, was proposed. Also this generator can produce $10/1000{\mu}s$ as well as $0.5{\mu}s/100kHz$ ring waveform.

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Analysis of Surge Current Path of Flyback Converter by Lightning Surge (뇌서지에 의한 플라이백 컨버터의 서지전류 경로 분석)

  • Park, Jun-Woo;Lee, Kang-Hee;Kim, Jin-Ho;Hong, Sung-Soo;Won, Jae-Sun;Kim, Jong-Hae
    • The Transactions of the Korean Institute of Power Electronics
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    • v.18 no.2
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    • pp.178-183
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    • 2013
  • The study of lightning surge have been conducted on information and communications equipment and power system. However, the research on SMPS itself is an inactive field. This paper analyzes surge current path of flyback converter with the combination wave generator by lightning surge. Also, this paper discloses that there exists the surge current with high-frequency component besides the low-frequency component based on the standard surge current. This high-frequency surge current is the major reason to damage the semiconductor devices such as FET and IC. To confirm the validity of the proposed issue, the analysis and experimental results are presented.

Reliability on the Unintended Trips of Residual Current Operated Circuit Breakers due to Surge Currents (서지전류에 의한 누전차단기의 의도하지 않은 트립에 대한 신뢰성)

  • Lee, Bok-Hee;Kim, Sang-Hyun;Kim, Yoo-Ha
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.26 no.5
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    • pp.79-84
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    • 2012
  • As the huge economical loss and function paralysis of information technology-based systems can be caused by the misoperation of residual current devices(RCDs) due to surge voltages and currents, RCDs shall not operate by surge currents. In this paper, in order to evaluate the reliability of residual current operated circuit-breakers with integral overcurrent protection for household and similar uses((RCBOs) stressed by surges, the unintended trip characteristics of RCBOs under surge currents were experimentally investigated using the combination wave generator. Seven different types of single-phase RCBOs being present on the domestic market were investigated according to KS C IEC 61009-1 standard. As a result, all kinds of specimens were satisfied the requirements for 0.5 [${\mu}s$]/100[kHz] ring wave impulse currents. Most of specimens stressed by the 8/20[${\mu}s$] impulse current tripped at least one or more, and some of them were broken down during consecutive tests. It was found that only one type of specimens meets the L-N mode immunity to the combination wave of 1.2/50[${\mu}s$] impulse voltage and 8/20[${\mu}s$] impulse current.

Characteristics of a Home Panel Board with Surge Protection Device (서-지차단장치 내장형 단위세대 분전반의 특성)

  • 이종혁;송재용;이종호;홍경민;길경석
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2000.05a
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    • pp.480-483
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    • 2000
  • We developed a home electric panel board with surge protection device to protect home electric appliances from transient overvoltages and electromagnetic(EM) noise. In this paper, electrical characteristics of the home electric panel board are described. From the performance test using a combination surge generator standardized in IEC 610004-5, it is confirmed that the proposed home panel board has an excellent surge protection performance. Also, EM noise reduction characteristics of the panel board in ranges from 150 kHz to 30 MHz is estimated by using a network analyser, and the results showed that the panel board has an over 20 45 noise reduction performance.

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Design and Fabrication of a Surge Protective Device for Electrical Mains on Shipboard (전원회로용 서지방호장치의 설계 및 제작)

  • Moon, Seung-Bo;Park, Dae-Won;Song, Jae-Yong;Kil, Gyung-Suk
    • Proceedings of the Korean Society of Marine Engineers Conference
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    • 2005.06a
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    • pp.1035-1040
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    • 2005
  • This paper deals with the design rule and performance results of the surge protective devices (SPDs) for low-voltage mains on shipboard. The proposed SPDs consists of a metal oxide varistors (MOV) and a L-C filter to improve noise-elimination performance. Three kinds of SPDs are fabricated and tested by using a combination surge generator which produce the standard impulse current of 8/20${\mu}s$ 2.1kA. As a results, the proposed SPDs with series L-C filter have more excellent transient blocking and noise reduction performance than the conventional ones.

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Development of a Surge Protective Device for Signal Lines on Shipboard (선박 신호회로용 서지방호장치의 개발)

  • Seo, Hwang-Dong;Song, Jae-Yong;Han, Ju-Seop;Kim, Yoon-Sik;Kil, Gyung-Suk
    • Proceedings of the Korean Society of Marine Engineers Conference
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    • 2005.06a
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    • pp.1161-1165
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    • 2005
  • Due to the miniaturization of electrical components and assembles on signal circuits, transient overvoltages caused by switching operation or lightning surges have become more interesting concern to the field of electrical engineering. In this paper, the development of surge protective devices(SPDs) that can protect sensitive signal device on shipboard from overvoltages are described. Two kinds of SPDs are designed and tested by using a combination surge generator which can produce the standard impulse current of 8/20${\mu}s$ 2.1kA according to the IEC 61000-4-5 standard. From the simulation and experimental results, it is confirmed that the proposed SPDs have an enough protection performance with a low insertion loss and a low clamping voltage.

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Analysis of Impulse Withstand Voltage Performance of Lighting Equipment (조명기기의 임펄스내전압 성능의 분석)

  • Lee, Bok-Hee;Pang, Pyung-Ho
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.28 no.3
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    • pp.91-96
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    • 2014
  • Modern electronic circuits are becoming more vulnerable to damage by surges, and it is required to improve the impulse withstand voltage performance of electrical and electronic equipment. This paper presents the impulse withstand voltage performance of lighting equipment connected to power lines, and the impulse withstand voltage tests for fluorescent lamp, LED lamp and halogen lamp were carried out according to the reference standards under normal service conditions. To conduct performance tests against lightning surge, a combination wave ($1.2/50{\mu}s$ voltage - $8/20{\mu}s$ current) was employed. The test surge was applied between lines or between line and ground of the specimen to be measured. The test surge was applied synchronized at the peak value of the positive and negative AC voltage waves. As a consequence, some specimens satisfied the impulse withstand voltage test criteria, but lighting equipment such as 36W fluorescent lamps, 5W and 5.5W LED lamps and 50W halogen lamp were damaged at the test voltage levels between power lines. It is needed to improve the qualities of lighting equipment to satisfy EMC immunity requirements of equipment for general lighting purposes.

Protection Coordination Associated with Connection Location of Residual Current Devices and Surge Protective Devices (RCD와 SPD의 접속 위치에 따른 보호협조)

  • Lee, Bok-Hee;Park, Hee-Yeoul;Shin, Gun-Jin;Bae, Gwan-Young;Ryu, Chun-Hyoung;Lee, Kang-Hee
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.27 no.3
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    • pp.100-106
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    • 2013
  • In this paper, in order to analyze lightning impulse response characteristics in combined installations of SPDs and RCDs, surge protection coordination between SPDs and RCDs are experimentally investigated by using the combination wave generator. Six different types of single-phase residual current operated circuit-breakers with integral overcurrent protection for household and similar uses(RCBOs) being present on the domestic market are tested according to KS C IEC 61009-1 standard. As a result, when a class I SPD is located on the source side of an RCBO, all kinds of specimens are able to provide the proper coordination between the SPD and RCBOs without nuisance tripping, unintended operation or damage due to test impulse currents. However, in the case that the class II SPD is located on the load side of RCBOs, a lot of L-N mode injected currents is split into the RCBO, and a few RCBOs are damaged. Coordination between SPDs and RCDs is not valid and a role of SPDs is of no use. When combining SPDs with RCDs, it is necessary to select SPDs and RCDs in consideration of the protection voltage level of metal oxide varistor embedded in RCDs.

Surge Protective Device Combined with Varistor and LC Filter on AC Power Circuits (바리스터와 LC필터를 조합한 교류 전원용 서지보호장치)

  • 이복희;이경옥;안창환;이승칠;박정웅
    • The Proceedings of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.11 no.4
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    • pp.109-116
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    • 1997
  • This paper describes the surge protective device combined with varistor and LC low pass filter on AC power circuits. Up to now varistors alone have been used as a surge protective device on AC power circuits, but it gives negative effects on the equipments to be protected due to the steep rise and high remnant voltage. Therefore in this work, for the purpose of improving the cutoff performance of surge protective device on AC power circuits, the hybrid-type surge protective device with varistor and LC filter was designed and prepared. And the experiments for operational characteristics and clamping performance of the surge protective device were carried out with an 1.2/50[$\mu$s] impulse generator. As a result, the proposed surge protective device with the combination of varistors and LC filter can limit the surge voltage to lower value and reduce the value of dV /dt to very small values. Also the attenuation of high-frequency voltages across the output port is effectively provided by LC filter. Therefore this result may be all the more helpful avoiding both damage and upset of electronic systems.

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