• Title/Summary/Keyword: Repetition pulse

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A study on the output characteristics of Long-pulse Alexandrite laser for hair removal (제모용 Long-Pulse Alexandrite Laser의 출력 특성 연구)

  • Choi, Jin-Young;Kim, Sang-Gill;Kim, Tae-Kyun;Bark, Jong-Woong;Song, Gun-Ju;Jung, Yong-Ho;Hong, Jung-Hwan;Kim, Hee-Je
    • Proceedings of the KIEE Conference
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    • 2003.07c
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    • pp.1729-1731
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    • 2003
  • Recently many solid-state laser systems were widely used in the medical applications. So it is necessary to study various optimal laser parameters for adopting new medical treatments. Alexandrite laser using switching mode power supply has designed and experimented to adjust a pulse repetition rate by PIC one-chip microprocessor. The fundamental results have been obtained during the first financial year in 2002. We will be able to find out the optimal hair removal characteristics by the repetitive experiments of Alexandrite laser as the parameters such as pulse repetition rate, pulse width, and pulse energy etc.

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Design and evalution of pulsed $CO_2$ laser system using high repetition ratio and high precision (고반복율 및 고정밀방식을 이용한 펄스형 $CO_2$ Laser 시스템 설계 및 평가)

  • 김흥수;김휘영
    • Journal of the Korea Computer Industry Society
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    • v.2 no.8
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    • pp.1055-1062
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    • 2001
  • Study, it is the purpose to develope a cheap and compact pulsed $CO_2$ laser with pulse repetition rate range of 1 KHz. We used a IGBT switched power supply as a power supply, which is cheap and simple comparing to others. PIC one-chip microprocessor was used for precise control of a laser power supply on the control part. And the laser cavity was fabricated as an axial and water cooled type. The laser performance characteristics as various parameters, such as pulse repetition rate, gas pressure, and gas mixture rate have been investigated. The experiment was done under the condition of total pressure of $CO_2$$N_2$:He = 1:3:10, 1:1.5:5, 1:9:15 from 6 Torr to 15 Torr and pulse repetition rate from 100 Hz to 900 Hz. As a result, the maximum average outpu was about 20.5 W at the total pressure of 15 Torr, the gas mixture $CO_2$$N_2$:He = 1:9:15 and the pulse repetition rate of 700 Hz.

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A Study on the High Repetition Rate Pulsed $CO_2$ Laser Using IGBT (IGBT를 이용한 고반복 펄스형 $CO_2$ 레이저 개발에 관한 연구)

  • Chung, H.J.;Kim, D.W.;Lee, D.H.;Yoon, S.H.;Lee, Y.S.;Kim, H.J.;Cho, J.S.
    • Proceedings of the KIEE Conference
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    • 1999.11d
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    • pp.1072-1074
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    • 1999
  • In this study, it is the purpose to develope a cheap and compact pulsed $CO_2$ laser with pulse repetition rate range of 1 kHz. We used a IGBT switched power supply as a power supply, which is cheap and simple comparing to others. PIC one-chip microprocessor was used for precise control of a laser power supply on the control part. And the laser cavity was fabricated as an axial and water cooled type. The laser performance characteristics as various parameters, such as pulse repetition rate gas pressure, and gas mixture rate have been investigated. The experiment was done under the condition of total pressure of $CO_2:N_2$:He = 1.3:10, 1:1.5:5 1:9:15 from 6 Torr to 15 Torr and pulse repetition rate from 100 Hz to 900 Hz. As a result, the maximum average output was about 20.5 W at the total pressure of 15 Torr, the gas mixture $CO_2:N_2$:He = 1:9:15 and the pulse repetition rate of 700 Hz.

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A Study of Low-k Wafer Engraving Processes by Using Laser with Pico-second Pulse Width (자외선 피코초 레이저를 이용한 Low-k 웨이퍼 인그레이빙 특성에 관한 연구)

  • Moon, Seong-Wook;Bae, Han-Seong;Hong, Yun-Suk;Nam, Gi-Jung;Kwak, No-Heung
    • Journal of the Semiconductor & Display Technology
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    • v.6 no.1 s.18
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    • pp.11-15
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    • 2007
  • Low-k wafer engraving process has been investigated by using UV pico-second laser with high repetition rate. Wavelength and repetition rate of laser used in this study are 355 nm and 80 MHz, respectively. Main parameters of low-k wafer engraving processes are laser power, work speed, assist gas flow, and protective coating to eliminate debris. Results show that engraving qualities of low-k layer by using a laser with UV pico-second pulse width and high repetition rate had better kerf edge and higher work speed, compared to one by conventional laser with nano-second pulse width and low repletion rate in the range of kHz. Assist gas and protective coating to eliminate debris gave effects on the quality of engraving edge. Total engraving width and depth are obtained less than $20\;{\mu}m$ and $10\;{\mu}m$ at more than 500 mm/sec work speed, respectively. We believe that engraving method by using UV pico-second laser with high repetition rate is useful one to give high work speed in laser material process.

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ANALYSIS OF ER:YAG LASER IRRADIATION ON CUTTING EFFICACY AND TEMPERATURE CHANGES OF DENTIN (Er:YAG 레이저의 상아질 삭제효과 및 이에 따른 온도변화)

  • Im, Kwang-Ho;Lee, Chang-Seop;Lee, Sang-Ho
    • Journal of the korean academy of Pediatric Dentistry
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    • v.28 no.1
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    • pp.32-44
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    • 2001
  • The purpose of this study was to investigate the effects of Er : YAG laser on cutting efficacy and temperature changes of dentin. We used the dentin specimens of human premolars and molars which contain the physiologic saline and maintain the pulpal pressure in dentinal tubules. Each specimen was exposed to Er : YAG laser with non-contact handpiece type delivery system under different treatment condition of irradiation energy, pulse repetition rate, and exposure time. Two procedures were conducted by the presence of water flow during lasing. The specimens were grouped by thickness of dentin. We investigated the cavity pattern, volume, and temperature change of dentin specimen to determine the cutting efficacy and temperature rise of Er : YAG laser, and obtained following results. 1. Cutting volume of dentin was increased by increasing the irradiation energy, pulse repetition rate, and exposure time(P<0.05). 2. Margins of abulated cavities were sharp and clean and floors of cavities were conical in shape and showing smooth surfaces. Upper diameter of abulated cavities were increasing as laser parameter of irradiation energy, pulse repetition rate, and exposure time were increased. A few cracks were observed on abulated surfaces under treatment condition of laser parameter with 150mJ, 5Hz, and 5sec. 3. Temperature was increased as laser parameter of irradiation energy, pulse repetition rate, and exposure time were increased, and temperature rise was decreased as dentin thickness was increased(P<0.05). 4. Temperature rise was decreased under water flow compared with no water flow during laser exposure(P<0.05). From these results, we think that the method of using a Er:YAG laser would be effective and safe in cutting dentin for clinical application.

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High Repetition Rate Optical Pulse Multiplication with Cascaded Long-period Fiber Gratings

  • Lee, Byeang-Ha;Eom, Tae-Joong;Kim, Sun-Jong;Park, Chang-Soo
    • Journal of the Optical Society of Korea
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    • v.8 no.1
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    • pp.29-33
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    • 2004
  • We propose and demonstrate a novel optical pulse multiplier applicable to OTDM (Optical Time Division Multiplexing) systems using cascaded long-period fiber gratings. We have exploited the fact that each mode in a fiber has a different propagation constant to obtain time delays among optical pulses. The proposed scheme could realize high-frequency optical pulse multiplication for optical short pulse trains. We have successfully implemented two, four, and eight times multiplications with the maximum repetition rate of 416.7 ㎓. The obtained pulse delays are well matched with the simulated ones.

The high repetition operating characteristics of pulsed Nd:YAG laser by parallel mesh and alternating charge-discharge system (병렬 메쉬 및 교번 충.방전 방식에 의한 펄스형 Nd:YAG 레이저의 고반복 동작특성에 관한 연구)

  • Park, K.R.;Kim, B.G.;Hong, J.H.;Kim, W.Y.;Kim, H.J.;Cho, J.S.
    • Proceedings of the KIEE Conference
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    • 1999.11d
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    • pp.1060-1062
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    • 1999
  • Pulsed Nd:YAG laser is used widely for materials processing and instrumentation. It is very important to control the laser energy density in materials processing by a pulsed Nd:YAG laser. A pulse repetition rate and a pulse width are regarded as the most dominant factors to control the energy density of laser beam. In this study, the alternating charge-discharge system was designed to adjust a pulse repetition rate. And the parallel mesh is added to increase laser output power. This system is controlled by one chip microprocessor and allows to replace an expensive condenser for high frequency to a cheap condenser for low frequency. In addition, we have investigated the current pulse shape of flashlamp and the operating characteristics of a pulsed Nd:YAG laser. As a result, it is found that the laser output of the power supply using the parallel mesh and the alternating charge-discharge system is not less than that of typical power supply. As the pulse repetition rate rises from 10pps to 110pps by the step of 20pps at 1000V and 1200V, it is found that the laser efficiency decreases but the laser output power increases about 5W at each step.

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The high repetition operating characteristics of pulsed Nd:YAG laser by alternating charge-discharge system (펄스형 Nd:YAG 레이저의 교번 충.방전 방식에 의한 고반복 동작특성)

  • Kim, W.Y.;Park, K.R.;Kim, B.G.;Hong, J.H.;Kang, U.;Kim, H.J.
    • Proceedings of the KIEE Conference
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    • 1999.07e
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    • pp.2204-2206
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    • 1999
  • Pulsed Nd:YAC laser is used widely for materials processing and instrumentation. It is very important to control the laser energy density in materials processing by a pulsed Nd:YAG laser. A pulse repetition rate and a pulse width are regarded as the most dominant factors to control the energy density of laser beam. In this study, the alternating charge-discharge system was designed to adjust a pulse repetition rate. This system is controlled by one chip microprocessor and allows to replace an expensive condenser for high frequency to a cheap condenser for low frequency. In addition. we have investigated the current pulse shape of flashlamp and the operating characteristics of a pulsed Nd:YAG laser. As a result, it is found that the laser output of the power supply using the alternating charge-discharge system is not less than that of typical power supply. As the pulse repetition rate rises from 30pps to 120pps by the step of 30pps at 1200V, it is found that the laser efficiency decreases but the laser output power increases about 6W at each step.

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An Identification Method of Radar Signals using Parallel Processor (병렬프로세서를 활용한 레이더 신호의 식별)

  • Kim, Gwan-Tae;Ju, Young-Kwan;Park, Sang-Hwan;Jeon, Joongnam
    • Journal of the Institute of Electronics and Information Engineers
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    • v.54 no.4
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    • pp.75-80
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    • 2017
  • ES (Electronic Warfare Support System) collects radar signals, and analyzes the signals about frequency, pulse width, PRI (Pulse Repetition Interval), and etc. and then ES compares analyzed result with known radar signals to identify them. But there are two disadvantage. One is that use of known radar signals is in comparing step only. The other is that calculating PRI needs many operations. In this paper proposes a parallel reference correlation algorithm that uses GPGPU (General Purpose Graphics Processing Units) and can identify what signals are in received radar signals without calculating PRI.

A Study on the control of output power and pulse repetition rate in pulsed Nd:YAG laser (펄스형 Nd:YAG 레이저의 출력 에너지 및 펄스 반복률 제어에 관한 연구)

  • Park, K.R.;Kim, B.G.;Moon, D.S.;Hong, J.H.;Kim, W.Y.;Kang, U.;Kim, H.J.;Cho, J.S.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2000.05b
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    • pp.74-77
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    • 2000
  • A pulsed Nd:YAG laser has been used in a wide variety of fields : measuring, material processing and so on. In a material processing, it is very important to control the laser energy density. A pulse repetition rate and a pulse width are regarded as the most dominant factors to control the energy density of laser beam. In this study, pulsed Nd:YAG laser system was designed and manufactured to control the laser output usefully and easily. This system adopted the sequential charge and discharge circuit is controlled by 80196 micro- processor. As a result, it is found that laser output is controlled minutely by changing laser input and pulse repetition rate, and usefully by using 80196 microprocessor.

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