• Title/Summary/Keyword: Capacitive divider

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Measurement Range Extension of AC High Voltage using two 200 kV Capacitive Dividers (200 kV 용량형 분압기 2대를 이용한 교류 고전압 측정범위 확장)

  • Jung, Jae-Kap;Lee, Sang-Hwa;Kang, Jeon-Hong;Kim, Myung-Soo;Kim, Yoon-Hyoung;Han, Sang-Gil;Jeong, Jin-Hye;Han, Sang-Ok;Joung, Jong-Man
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.57 no.1
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    • pp.1-5
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    • 2008
  • The output voltage value of AC high voltage source has been usually obtained by multiplying low voltage value measured at both terminals of low voltage resistor by the dividing ratio of the high voltage capacitive divider. From the dividing ratio determined of each 200 kV capacitive divider, we have developed step-up method for measuring the output voltage up to 400 kV using two same type of 200 kV capacitive dividers connected in series. The theoretical dividing ratio of 400 kV capacitive dividers connected in series coincides with that of manufacturer's certification within measurement uncertainty. Thus, this developed step-up method makes it possible to extend the range of output voltage from 200 kV to 400 kV. Furthermore, The dividing ratio of divider under test obtained using this step-up method is consistent with that obtained using one 200 kV high voltage divider within corresponding uncertainties.

High Efficiency Power Controll Circuit for Standby Power Reduction Using Capacitive Divider Power Supply(CDPS) (Capacitive Divider Power Supply(CDPS)를 이용한 대기전력 저감용 고효율 전원제어회로)

  • Shin, Seung-Hwan;Kang, Sung-Muk;Park, Kyoung-Jin;Chang, Keun-Su;Kim, Ho-Seong
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.1155-1157
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    • 2011
  • 본 논문에서는 가전기기의 대기전력 저감을 위해 Capacitive Divider Power Supply(CDPS)로 전원을 공급받는 고효율 전원제어회로를 제안하였다. 이 제어회로는 220 V의 AC 전압을 높은 효율로 기기의 구동용 저전압 DC로 변환하기 위하여 기존의 변압기나 SMPS를 사용하는 대신 커패시터 분압기(Capacitive Divider)를 사용하여 전원을 공급하도록 제작되었으며, 대기 상태에서 교류전력선과 가전기기를 완전히 분리시킨 상태에서 적외선 수신기, MCU, 래치 타입 릴레이 등의 소자를 이용하여 기존 상용 리모컨으로도 전원제어가 가능하도록 설계되었다. 설계된 회로의 소비전력은 2.2 mW이며 본 논문에서 제안한 전원제어회로를 대기전력이 700 mW인 모니터에 적용하여 측정한 결과 대기전력이 7 mW로 낮아지는 것을 확인하였으며, 태양전지를 보조전원으로 추가 할 경우 태양전지에서 공급해주는 전력만큼 대기전력이 감소함을 확인하였다.

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Power Divider using Shunt Open-Stub Loaded Transmission Line (병렬 오픈 스터브가 연결된 전송선로를 이용한 전력분배기)

  • Kwan, Sang-Gun;Kim, Young;Yoon, Young-Chul
    • Journal of Advanced Navigation Technology
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    • v.15 no.5
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    • pp.774-780
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    • 2011
  • This paper presents a Bagley polygon and Gysel divider using open-stub loaded transmission line. The structure of slow-wave characteristic consists of small transmission line and shunt capacitive open stub that have reduced characteristic impedance and phase velocity, so we can implement the small circuit size. To validate the slow-wave characteristics, we are implemented the slow-wave characteristic of Bagley polygon and Gysel divider at center frequency 2.1 GHz. Its characteristics are same, but the circuit size is reduced above 15 % respectively.

Experimental Analysis on Temperature Compensation of Capacitive Voltage Divider for a Pulsed High Voltage Measurement (고전압 펄스신호 측정용 분압기의 온도보상에 관한 실험)

  • Jang, S.D.;Son, Y.G.;Kwon, S.J.;Oh, J.S.;Cho, M.H.
    • Proceedings of the KIEE Conference
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    • 2005.07b
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    • pp.1530-1533
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    • 2005
  • Total 12 units of high power klystron-modulator systems as microwave source is under operation for 2.5-GeV electron linear accelerator in Pohang Light Source(PLS) linac. RF power and beam power of klystron are precisely measured for the effective control of electron beam. A precise measurement and measurement equipment with good response characteristics are required for this. Input power of klystron is calculated from the applied voltage and the current on its cathode. Tiny measurement error severely effects RF output power value of klystron. Therefore, special care is needed to measure precise beam voltage. Capacitive voltage divider(CVD) unit is intended for the measurement of beam voltage of 400 kV generated from the pulsed klystron-modulator system. Main parameter to determine the standard capacitance in the high arm of CVD is dielectric constant of insulation oil. Therefore CVD should be designed to have a minimum capacitance variation due to voltage, frequency and temperature in the measurement range. This paper will discuss the analysis of capacitive voltage divider for a pulsed high-voltage measurement, and the empirical relations between capacitance and oil temperature variation.

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Modified Wilkinson Power Divider for Multiple Harmonics Suppression

  • Kang In-Ho;Xu Hai-Yan
    • Journal of Navigation and Port Research
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    • v.29 no.7
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    • pp.615-618
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    • 2005
  • A new structure of the Wilkinson power divider that can suppress multiple harmonics output is presented The power divider consists of T-type or $\pi$-type capacitive loads and shunt resistors. Experimental results show that this power divider suppresses the second and the third harmonic components to less than -38dB, while maintaining the characteristics of a conventional Wilkinson power divider, featuring an equal power split, a simultaneous impedance matching at all ports and a good isolation between output ports.

Capacitive Voltage Divide for a Pulsed High-Voltage Measurement (펄스형 고전압 측정용 용량성 분압기)

  • Jang Sung-Duck;Son Yoon-Kyoo;Kwon Sei-Jin;Oh Jong-Seok;Cho Moo-Hyun
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.54 no.2
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    • pp.63-68
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    • 2005
  • Total 12 units of high power klystron-modulator systems as microwave source are under operation for 2.5 GeV electron linear accelerator in Pohang Light Source (PLS) linac. The klystron-modulator system has an important role for the stable operation to improve an availability statistics of overall system performance of klystron-modulator system. RF power and beam power of klystron are precisely measured for the effective control of electron beam. A precise measurement and measurement equipment with good response characteristics are demanded for this. Input power of klystron is calculated from the applied voltage and the current on its cathode. Tiny measurement error severely effects RF output power value of klystron. Therefore, special care is needed to measure precise beam voltage. Capacitive voltage divider (CVD), which divides input voltage as capacitance ratio, is intended for the measurement of a beam voltage of 400 kV generated from the klystron-modulator system. Main parameter to determine standard capacitance in the high arm of CVD is dielectric constant of insulation oil. Therefore CVD should be designed to have a minimum capacitance variation due to voltage, frequency and temperature in the measurement range. This paper will be present and discuss the design concept and analysis of capacitive voltage divider for a pulsed high-voltage measurement, and the empirical relations between capacitance effects and oil temperature variation.

Fabrication and Evaluation of AC 400 kV High Voltage Divider using Electric Field Sensor (전기장 센서를 이용한 교류 400 kV 고전압 분압기의 제작 및 평가)

  • Lee, Sang-Hwa;Han, Sang-Gil;Jung, Jae-Kap;Kang, Jeon-Hong;Kim, Yoon-Hyoung;Jeong, Jin-Hye;Han, Sang-Ok
    • The Transactions of the Korean Institute of Electrical Engineers P
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    • v.57 no.3
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    • pp.265-269
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    • 2008
  • Output voltage value of AC high voltage source has usually been obtained by measuring the low arm voltage of high voltage divider or the secondary voltage of high voltage transformer. In this study, we have fabricated the AC 400 kV high voltage divider using high voltage electrode and electric field measurement sensor. The dividing ratio of the fabricated 400 kV high voltage divider was evaluated using reference 400 kV capacitive divider. The dividing ratio of 400 kV high voltage divider is found to be 12,322 and has the good linearity within 0.63 % against AC high voltage up to 400 kV. Therefore, the developed 400 kV high voltage divider could evaluate 400 kV high voltage supply and voltage divider used in industry.

New UWB 1:2 Power Divider with Flat In-Band Splitting and Bandpass Filtering Functions

  • Duong, Thai Hoa;Kim, Ihn-Seok
    • Journal of electromagnetic engineering and science
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    • v.10 no.1
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    • pp.28-34
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    • 2010
  • This paper introduces a new U.S. ultra-wideband(UWB: 3.1~10.6 GHz) 1:2 power divider based on a single section Wilkinson type configuration. The divider provides very flat in-band power splitting, high isolation, low insertion loss, sharp roll-off bandpass filtering, and DC blocking characteristics. The circuit consists of a $\lambda$/4 Y resonator, three capacitively coupled $\lambda$/2 short-circuited lines, and a resistor between the two output ports. The circuit structure was simulated with ADS and HFSS, and realized with low-temperature co-fired ceramic(LTCC) green tape, which has a dielectric constant of 7.8. $|S_{11}|$ better than 10 dB, $|S_{21}|$ and $|S_{31}|$ less than 3.2 dB, with both $|S_{22}|$ and $|S_{32}|$ measured as better than 12 dB for the whole UWB band. Measurement results agree closely with HFSS simulation results. The power divider has a compact size of $4\times9\times0.6mm^3$.

Capacitive Voltage Divider for a Pulsed High-Voltage Measurement (펄스형 고전압 측정용 용량성 전압 분배기)

  • Jang, S.D.;Oh, J.S.;Son, Y.G.;Cho, M.H.
    • Proceedings of the KIEE Conference
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    • 2001.07c
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    • pp.1612-1615
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    • 2001
  • 포항 방사광 가속기 2.5 GeV의 전자선형 가속기는 마이크로웨이브 발생원으로써 80 MW 클라이스트론(klystron) 11대와 입사부에 65 MW 클라이스 트론 1대를 사용한다. 전자빔 에너지의 효율적인 제어를 위하여 고출력 클라이스트론의 RF 전력과 입력 빔의 전력을 정확하게 측정해야 하며 응답특성이 양호한 측정장치와 정밀한 측정이 요구된다. 클라이스트론에 공급되는 전력은 캐소드에 인가되는 전압과 전류의 측정치로 계산된다. 비록 빔 전압측정에서의 작은 오차일지라도 클라이스트론 RF 출력 전력의 결과값에 큰 영향을 미친다. 따라서, 빔 전압의 측정시에 정확한 측정을 위하여 특별한 주의가 요구된다. 고전압 펄스전원장치 인 모듈레이터 (modulator)에서 발생되는 수백 kV(350-400 kV)의 전압을 측정하기 위하여 커패시터의 용량비로 입력전압을 분압하는 용량성 분압기(capacitive voltage divider, CVD)가 사용된다. 고압측 분압용 표준 콘덴서의 정전용량을 결정하는 주요인자는 고전압 절연유의 유전율(dielectric constant)이다. 그러므로, 측정범위 내의 전압, 주파수, 온도에 대하여 정전용량의 변화율이 작도록 설계하여야 한다. 본 논문에서는 펄스형 고전압 신호 측정을 위한 용량성 전압 분배기의 측정원리, 설계분석, 교정시험, 절연유의 온도변화에 따른 정전용량 변화 특성에 대한 실험 결과를 고찰하고자 한다.

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Development for Measurement Range Extension Technique of AC High Voltage Source using Parallel Plates Electrode and Electric Field Sensor (평행판 전극과 전기장 센서를 이용한 교류 고전압 발생원의 측정범위 확장기술 개발)

  • Kang, Jeon-Hong;Ryu, Jae-Cheon;Lee, Sang-Hwa;Kim, Kyu-Tae;Kim, Myung-Soo;Han, Sang-Ok;Jung, Jae-Kap
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.55 no.9
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    • pp.446-451
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    • 2006
  • The output voltage value of AC high voltage source has been usually measured by employing the high voltage divider of inductive or capacitive type. In the study, we have developed a new method for measuring the output voltage up to 60kV using parallel plates electrode and electric field sensor, which are constructed by home-made. Unlikely the conventional method using a high voltage divider, this developed method makes it possible to extend the range of output voltage from known low voltage measurement to high voltage measurement. From the linearity measured between electric field and applied voltage in the output voltage range of 1kV-30kV, the output voltage value up to 60kV can be obtained by the electric field measurement using the electric field sensor. The output voltage value obtained using the method is consistent with that obtained using high voltage divider within corresponding uncertainties.