• Title/Summary/Keyword: Short-circuit mode

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AC/DC Converter Suitable for a Pulsed Mode Switching DC Power Supply (펄스모드 스위칭 직류전원 장치에 적합한 AC/DC 켄버터)

  • Moon S. H.;Nho E. C.;Kim I. D.;Kim H. G.;Chun T. W.
    • Proceedings of the KIPE Conference
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    • 2002.07a
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    • pp.378-381
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    • 2002
  • This paper describes a novel multilevel ad/dc power converter suitable for the protection of frequent output short-circuit. The output dc power of the proposed converter can be disconnected from the load within several hundred microseconds at the instant of short-circuit fault. The rising time of the dc load voltage is as small as several hundred microseconds, and there is no overshoot of the do voltage because the dc output capacitors keep undischarged state. Analysis and simulations are carried out to investigate the operation and usefulness of the proposed scheme.

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The Effect of Current Pulsing Parameters on the Spatter Generation Rate during $CO_2$Shielded Gas Metal Arc Welding ($CO_2$ 용접에서 전류 펄스 조건이 스패터 발생에 미치는 영향)

  • 강덕일;최재호;장영섭;김용석
    • Journal of Welding and Joining
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    • v.16 no.4
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    • pp.63-72
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    • 1998
  • In this study, the effects of the current pulsing conditions, on the spatter generation rate during the $CO_2$ gas metal arc welding (GMAW) were investigated. Normally using the inverter type power supply, of which the welding current waveform was regulated to reduce the spatter generation rate, but in this study pulsing was imposed on the welding current. Observation of the metal transfer phenomena during the pulsed current GMAS indicated that the droplet transfer from the electrode via the short circuit transfer and the repelling transfer mode could be minimized by selecting optimum combinations of pulsing parameters, which include base and peak current, base and pak duration. It was also demonstrated in this study that proper combinations of the pulsing parameters led to reduce generation of spatters during GMAW shielded by $CO_2$ gas.

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A Study on the Effect of External Electromagnetic force in MIG Welding (MIG 용접 시 외부 전자기력이 미치는 영향에 관한 연구)

  • Kim Jae Seong;Kim Yong;Ryu Deok Hui;Lee Bo Yeong
    • Proceedings of the KWS Conference
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    • v.43
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    • pp.171-173
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    • 2004
  • Electromagnetic force is one of the most important factor that effect on metal transfer mode, short-circuit rate, spatter generation rate and mechanical properties of weld metal etc. Also, shielding gas and welding current have influence on metal transfer mode in GMAW. In this paper, different ways for external electromagnetic forces are applied by attaching cylindrically rounded conducting wire solenoid on touch tip holding. With the applied electromagnetic field, the arc transfer mode changes from normal mode to rotating mode and spatter generation decreased in electromagnetic fields(N-pole). In MIG welding, the influences of electromagnetic force on the spatter generation showed different tendency as in the $CO_2$ welding. It is possible reasons were discussed.

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Analog CMOS Performance Degradation due to Edge Direct Tunneling (EDT) Current in sub-l00nm Technology

  • Navakanta Bhat;Thakur, Chandrabhan-Singh
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.3 no.3
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    • pp.139-144
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    • 2003
  • We report the results of extensive mixed mode simulations and theoretical analysis to quantify the contribution of the edge direct tunneling (EDT) current on the total gate leakage current of 80nm NMOSFET with SiO2 gate dielectric. It is shown that EDT has a profound impact on basic analog circuit building blocks such as sample-hold (S/H) circuit and the current mirror circuit. A transistor design methodology with zero gate-source/drain overlap is proposed to mitigate the EDT effect. This results in lower voltage droop in S/H application and better current matching in current mirror application. It is demonstrated that decreasing the overlap length also improves the basic analog circuit performance metrics of the transistor. The transistor with zero gate-source/drain overlap, results in better transconductance, input resistance, output resistance, intrinsic gain and unity gain transition frequency.

A Study on Instantaneous Output Current Control for Short-Circuit Mode Improvement of Inverter Arc Welding Machine (인버터 아크 용접기의 단락이행성능 개선을 위한 순시 출력전류제어에 관한 연구)

  • Chae, Yeong-Min;Go, Jae-Seok;Gu, Ja-Yeol;Mok, Hyeong-Su;Choe, Gyu-Ha;Kim, Hui-Jin
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • v.48 no.5
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    • pp.257-263
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    • 1999
  • Recently the performance of CO2 arc welding machine has been advanced significantly through the adoption of inverter circuit topology which made it possible to control the waveform of welding current and thus to suppress the spatter generation. However, the optimum waveform is still uncertain. As a first step for figuring out the promising waveforms, this study was performed to set-up the experimental system for studying the effect of waveform variables, The system designed in this study is a digital controller using single chip microprocessor of 80C196KC. As a result of performance test of this system, it was demonstrated all of the waveform variables could be set individually and the resultant waveforms appeared to be pretty much the same as the intended one.

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Test Result Analysis of a 1MW HTS Motor for Industry Application

  • Baik, S.K.;Kwon, Y.K.;Kim, H.M.;Lee, E.Y.;Kim, Y.C.;Park, H.J.;Kwon, W.S.;Park, G.S.
    • Progress in Superconductivity and Cryogenics
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    • v.11 no.2
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    • pp.33-36
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    • 2009
  • A 1 MW class HTS (High-Temperature Superconducting) synchronous motor has been developed. This motor is aimed to be utilized for industrial application such as large motors operating in large plants. The HTS field coil of the developed motor is cooled by way of neon thermo siphonmechanism and the stator (armature) coil is cooled by water through hollow copper conductor. This paper also describes evaluation of some electrical parameters from performance test results of our motor, which was conducted at steady state in generator mode and motor mode. Open and short circuit tests were conducted in generator mode while a 1.1 MW rated induction machine was rotating the HTS machine. Electrical parameters such as mutual inductance and synchronous inductance are deduced from these tests. Load test was done upto rating torque during motor mode and efficiency was measured at each load torque.

Development of models for evaluating the short-circuiting arc phenomena of gas metal arc welding (GMA 용접의 단락이행 아크 현상의 평가를 위한 모델 개발)

  • 김용재;이세헌;강문진
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 1997.10a
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    • pp.454-457
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    • 1997
  • The purpose of this study is to develop an optimal model, using existing models, that is able to estimate the amount of spatter utilizing artificial neural network in the short circuit transfer mode of gas metal arc (GMA) welding. The amount of spatter generated during welding can become a barometer which represents the process stability of metal transfer in GMA welding, and it depends on some factors which constitute a periodic waveforms of welding current and arc voltage in short circuit GMA welding. So, the 12 factors, which could express the characteristics for the waveforms, and the amount of spatter are used as input and output variables of the neural network, respectively. Two neural network models to estimate the amount of spatter are proposed: A neural network model, where arc extinction is not considered, and a combined neural network model where it is considered. In order to reduce the calculation time it take to produce an output, the input vector and hidden layers for each model are optimized using the correlation coefficients between each factor and the amount of spattcr. The est~mation performance of each optimized model to the amount of spatter IS assessed and compared to the est~mation performance of the model proposed by Kang. Also, through the evaluation for the estimation performance of each optimized model, it is shown that the combined neural network model can almost perfectly predict the amount of spatter.

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Low Power Consumption Scan Driver Using Depletion-Mode InGaZnO Thin-Film Transistors (공핍 모드 InGaZnO 박막 트랜지스터를 이용한 저소비전력 스캔 구동 회로)

  • Lee, Jin-Woo;Kwon, Oh-Kyong
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.49 no.2
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    • pp.15-22
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    • 2012
  • A low power consumption scan driver using depletion-mode n-type InGaZnO thin-film transistors is proposed. The proposed circuit uses 2 clock signals and generates the non-overlap output signals without the additional masking signals and circuits. The power consumption of the proposed circuit is decreased by reducing the number of the clock signals and short circuit current. The simulation results show that the proposed circuit operates successfully when the threshold voltage of TFT is varied from -3.0V to 1.0V. The proposed scan driver consumes 4.89mW when the positive and negative supply voltage is 15V and -5V, respectively, and the operating frequency is 46KHz on the XGA resolution panel.

A Study on Varactor Tuning Gunn Oscillator for X Band (Varactor 튜닝 X 밴드 Gunn 발진기에 관한 연구)

  • 박한규;천장호
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.15 no.5
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    • pp.39-45
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    • 1978
  • This paper described on the varactor tuning Gunn oscillator for X band. Analyzed the coplanar 2 post case using the dyadic Green's function then derived the obstacle network for the incident TE10 mode. For the electronical tuning, used the tuning varactor diode which has a high speed dynamic response characteristic and high Q. Oscillation frequency, switching mode, and stable oscillation point were calculated by the computer simulation. In the expriments, switching mode was occurred at 18 mm, 32.5 mm of the short tcircuit position, respectively. The general characteristics of the varactor tuning Gunn oscillator were abruptly changed by the moving of the short circuit and the variation of the bias voltage.

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Effect of Delay Time Control on the Spatter Generation in $CO_2$ Welding ($CO_2$ 용접에서 스패터 발생에 미치는 지연시간 제어의 영향)

  • 이창한;김희진;강봉용
    • Journal of Welding and Joining
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    • v.17 no.5
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    • pp.61-68
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    • 1999
  • For the last two decades, waveform control techniques have been successively developed and applied for the inverter welding machines resulting in the substantial reduction of spatter generated in CO₂ welding. One of the constituents commonly involved in those techniques is to delay the instant of current increase to some extent after the initiation of short-circuiting. Although this technique has been known to be quite effective in reducing the spatter generation through the suppression of is instantaneous short circuiting, the delay time necessary for minimum spatter has not been clearly understood. In this study, the control system for varying the delay time was constructed so that the spatter generation rates could be measured over a wide range of delay time, 0.29-2.0 msec. As a result of this study, it was demonstrated that spatter generation rate(SGR) sharply decreased at delay time of 0.6 msec and longer accompanied with the change in characteristics of short circuit mode from the instantaneous short-circuiting(ISC) dominant to normal short-circuiting(NSC) dominant. Another feature that have been found in current waveform of over 0.6msec was the creation of current pulse right after the arc reignition stage. Because of this current pulses weld pool oscillated in wave-like fashion and it looks like to play an important role in developing short circuiting between electrode and weld pool.

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