• Title/Summary/Keyword: pulse forming network(PFN) and power supply

Search Result 6, Processing Time 0.021 seconds

Various Pulse Forming of Pulsed $CO_2$ laser using Multi-pulse Superposition Technique

  • Chung, Hyun-Ju;Kim, Hee-Je
    • KIEE International Transactions on Electrophysics and Applications
    • /
    • v.11C no.4
    • /
    • pp.127-132
    • /
    • 2001
  • We describe the pulse forming of pulsed $CO_2$laser using multi-pulse superposition technique. A various pulse length, high duty cycle pulse forming network(PFN) is constructed by time sequence. That is, this study shows a technology that makes it possible to make various pulse shapes by turning on SCRs of three PFN modules consecutively at a desirable delay time with the aid of PIC one-chip microprocessor. The power supply for this experiment consists of three PFN modules. Each PFN module uses a capacitor, a pulse forming inductor, a SCR, a High voltage pulse transformer, and a bridge rectifier on each transformer secondary. The PFN modules operate at low voltage and drive the primary of HV pulse transformer. The secondary of the transformer has a full-wave rectifier, which passes the pulse energy to the load in a continuous sequence. We investigated laser pulse shape and duration as various trigger time intervals of SCRs among three PFN modules. As a result, we can obtain laser beam with various pulse shapes and durations from about 250 $mutextrm{s}$ to 600 $mutextrm{s}$.

  • PDF

A study on the pulse forming of pulsed $CO_2$ laser using active multi-pulse superposition (능동적 다중 펄스 중첩법(AMPS)을 적용한 펄스형 $CO_2$ 레이저의 펄스 성형에 대한 연구)

  • Chung, Hyun-Ju;Park, Sung-Joon;Jung, Yong-Ho;Song, Gun-Ju;Kim, Hee-Je;Kim, Whi-Young
    • Proceedings of the KIEE Conference
    • /
    • 2001.07c
    • /
    • pp.1631-1633
    • /
    • 2001
  • In manufacturing processes, various and suitable pulse shapes are required for the purpose of material processing and the pulseshape is regarded as a dominant factor due to the specific property of processing materials. Therefore, in this study, a variable pulse width, high duty cycle Pulse Forming Network(PFN) is constructed by time sequently. The power supply for this experiment consists of three switching circuits. The PFN elements operate at low voltage and drive the primary of HV leakage transformer. The secondary of the transformer has a full-wave rectifier, which passes the pulse energy to the load in a continuous sequence of properly phased and nested increments. We investigated laser pulse width as various delay time among three switching circuit. As a result, we tan obtain various laser pulse width from about 4ms to 10ms. The maximum laser pulse width obtained at this experiment was about 10ms at delay time of 4ms among each switching circuit.

  • PDF

A study of the output waveform of solid-state laser of multi-discharge method by various switching control (다수 스위칭 제어를 통한 Multi-Discharge방식의 고체레이저 출력파형 연구)

  • Kwak, S.Y.;Kim, S.G.;Hong, J.H.;Noh, K.K.;Kang, U.;Kim, H.J.
    • Proceedings of the KIEE Conference
    • /
    • 2003.07c
    • /
    • pp.1852-1854
    • /
    • 2003
  • In manufacturing processes, various and suitable pulse shapes are required for the purpose of material processing. In order to make various pulse shapes with variable pulse length and high duty cycle, We have fabricated the power supply consisting 6 SCRs and the Pulse Forming Network(PFN) with the precise delay time control. So our control system has three switching circuits, 3 mesh PFN, and simmer circuit. In addition, we have designed and fabricated the PIC one-chip microprocessor(16F877) to control the delay time of sequential switching.

  • PDF

Operation Characteristic and Harmonic Analysis of 200-MW Modulator (200-MW 모듈레이터의 동작 특성 및 고조파 해석)

  • Park, S.S.;Oh, J.S.;Cho, M.H.;NamKumg, W.
    • Proceedings of the KIEE Conference
    • /
    • 1994.07b
    • /
    • pp.1577-1579
    • /
    • 1994
  • 200-MW pulse modulators(total 11units) for the PLS linac employ the SCR phase control circuit. It controls 3-phase AC line voltage for the high-voltage DC power supply (DCPS, maximum of 25kVDC, 4.2A) which charges the pulse forming network(PFN). The PFN delivers 400kV, 500A, ESW $7.5{\mu}s$ pulse power to the 80-MW klystron amplifier tube. The SCR regulates 3-phase AC power and feeds to the high voltage transformer. Two different types of the transformer configurations namely ${\Delta}-{\Delta}$ and ${\Delta}-Y$, are alternatively installed to 11 modulator units for the suppression of harmonic noises. RC filters and reactors are also installed. Currently, approximately 110-kW of average AC power per unit is consumed at the normal operation level of the modulator with 30pps. This paper presents the operational characteristics of the high power pulse modulator, especially the experimental results of the AC line harmonic components generated by the operation of the high power pulse modulator to suppress the switching noises from the SCR and rectifying diode arrays.

  • PDF

A Design and Implementation of 30w class Er:YAG laser adopted skin and dental clinic. (치과 및 교부과용 30W급 Er:YAG 레이저 설계 및 구현)

  • 김휘영;신경애
    • Proceedings of the IEEK Conference
    • /
    • 2001.06e
    • /
    • pp.211-214
    • /
    • 2001
  • For general laser power supply, the secondary of the power transformer is connected to the rectifier and filter capacitor. The output of a rectifier is connected to a switching element in the secondary of the transformer. So the Dower supply is complicated and the loss of switching is considerably. In addition, according to increasing pulse repetition, charged energy of energy-storage capacitor is not transferred sufficiently to flashlamp, and laser output efficiency decreases. In this raper, to improve laser efficiency, we designed and fabricated the power supply in which the SCR was turned on in zero point by the methods of ZCC(zero crossing control), PFN(pulse forming network) in result, laser output efficiency increased by hte 4% other than conventional supply, when a repetition rate was increased by the 10[pps], In 20(pps), efficiency was increased by about 8%

  • PDF

Development of a High Voltage Semiconductor Switch for the Command Charging o (모듈레이터의 지령충전을 위한 고전압 반도체 스위치 개발)

  • Park, S.S.;Lee, K.T.;Kim, S.H.;Cho, M.H.
    • Proceedings of the KIEE Conference
    • /
    • 1998.07f
    • /
    • pp.2067-2069
    • /
    • 1998
  • A prototype semiconductor switch for the command resonant charging system has been developed for a line type modulator, which charges parallel pulse forming network(PFN) up to voltage of 5 kV at repetition rates of 60 Hz. A phase controlled power supply provides charging of the 4.7 ${\mu}s$ filter capacitor bank to voltage up to 5 kV. A solid state module of series stack array of sixe matched SCRs(1.6 kV, 50 A) is used as a command charging switch to initiate the resonant charging cycle. Both resistive and RC snubber network are used across each stage of the switch assembly in order to ensure proper voltage division during both steady state and transient condition. A master trigger signal is generated to trigger circuits which are transmitted through pulse transformer to each of the 6 series switch stages. A pulse transformer is required for high voltage trigger or power isolation. This paper will discuss trigger method, protection scheme, circuit simulation, and test result.

  • PDF