• Title/Summary/Keyword: Vacuum gauge

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Consideration on the Position of the Vacuum Gauge in a Test Dome (진공표준용기에서 진공계위치에 대한 고찰)

  • 인상렬
    • Journal of the Korean Vacuum Society
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    • v.4 no.1
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    • pp.1-5
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    • 1995
  • 진공표준용기에서 압력을 측정하는 진공계의 위치는 측정압력으로부터 계산된 진공펌프의 배기속도가 진실한 값에 얼마나 가까운가를 결정하는 중요한 요소이다. 본 논문에서는 압력을 유효배기확률에 반비례하는 양으로 보아 해석적 방법으로 적절한 진공계위치를 계산하고 있다. 또 진공계가 차지하는 폭과 펌프의 고유배기확률이 압력(또는 배기속도)측정값의 정확도에 미치는 영향에 대해 논의한다.

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Extending the Pressure Limit for Turbomolecular Pump up to 133 Pa by using Conductance-Reducer and Measuring the Pressure Differences in Vacuum Chamber (확장한 진공용기 내부의 압력구배 측정)

  • Hong, S.S.;Khan, Wakil;Kang, S.W.;Yun, J.Y.;Shin, Y.H.
    • Journal of the Korean Vacuum Society
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    • v.19 no.1
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    • pp.1-9
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    • 2010
  • A dynamic flow system has been developed which can be used for vacuum gauge calibration by comparison method - a calibration method in which the reading of the gauge under calibration is compared to another calibrated vacuum gauge called the "secondary standard" - and other vacuum-related experiments. The chamber of the calibration system is pumped by a turbomolecular pump (TMP), backed by a scroll pump. As maximum acceptable pressure at the inlet of a TMP is 0.1 Pa, above which the TMP decelerates, the pumping speed decreases and it becomes more difficult to adjust pressure under such circumstances. In the present work, high pressures of up to 133 Pa have been generated in the chamber of the newly developed dynamic flow control system by installing a well-designed conductance-reducer in the by-pass line and, at the same time, operating the TMP in safe mode. In addition, the gas flow and pressure distribution within the chamber have been investigated for the entire pressure range (0.1 Pa ~ 133 Pa) while generating pressure dynamically. Maximum deviations in pressure (1.6 %) were observed at point C on the chamber, which is close to the gas inlet port on the top of the chamber.

Establishment of Ultrahigh Vacuum Standard down to $10^{-10}$ torr Range ($10^{-10}$ torr까지의 초고진공 표준 확립)

  • Hong, Seung-Su;Im, Jae-Yeong;Park, Jae-Hong;Sin, Yong-Hyeon;Lee, Cheol-Ro;Jeong, Gwang-Hwa
    • Journal of the Korean Vacuum Society
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    • v.2 no.2
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    • pp.139-144
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    • 1993
  • The dynamic calibration system which can calibrate the ultrahigh vacuum pressure down to $10^{-10}$torr has been fabricated. The production and control of minute flow of $10^{-6}~10^{-9}$torr L/s range is done by a porous plug connected to the high vacuum standards system. The base pressure of the UHV standards system down to $10^{-11}$torr range was obtained by refrigerator type cryopump, whose pumping speed is known to be constant. By using the UHV standards system, 2 extractor gauges and 1 nude ion gauge were calibrated and their linearities and scatterings were studied.

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Design and Performance Test of Vacuum Control Valve for Electron Beam Lithography (전자빔 가공기의 진공제어 밸브설계 및 특성평가)

  • Lee Chan-Hong;Lee Hu-Sang
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2005.06a
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    • pp.777-780
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    • 2005
  • The high vacuum in a electron beam lithography is basic condition, because electron beam vanish by collision with air molecules in generally atmosphere. To make high vacuum state, the vacuum control valve is essential. Most vacuum control valve are manual units. So, user of manual vacuum valve must have understanding vacuum process to change from low vacuum to high vacuum state. The user of electron beam lithography are troubled with operation of manual vacuum valve, in case the vacuum chamber is frequently open. In this paper, the design and performance test of auto vacuum control valve for electron beam lithography are described. With the auto vacuum control valve, the high vacuum level can reach 2.8E-5 Torr.

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A study on medium-low pressure gauge for domestic production (중.저기압 압력계의 국산화에 관한 연구)

  • 백용현
    • 전기의세계
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    • v.29 no.8
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    • pp.519-523
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    • 1980
  • The traditional mechanical manometer is improved to develop more convenient and precise manometer in continuous measurement of the gas pressure in medium-low vacuum range (1x10$^{-1}$ -10 Torr.) Glass (solid) is used as a detector material of the improved manometer. Using the strain gauge adhered to thin glass board, mechanical strain corresponding to variation of pressure in measurement system is converted into quantity of electricity, and the quantity of electricity is amplified. Experiments have also shown that the improved manometer have more advantages in reproducibility, measured sensibility, and responsible velocity than taditional one.

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High vacuum packaging and vacuum evaluation for field emission display

  • Jung, S.J.;Woo, K.J.;Lee, N.Y.;Ahn, S.;Moon, G.J.;Kim, K.S.;Kim, M.S.
    • Journal of Korean Vacuum Science & Technology
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    • v.3 no.1
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    • pp.95-97
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    • 1999
  • A 3.12" FED panel was packaged successfully using the anode plate on which phosphors and black matrix were coated and cathode plate containing emitter arrays. The vacuum level of the panel was investigated during panel evacuation, tip-off and getter activation process. The packaged panel exhibited vacuum level below 2${\times}$10-6 Torr. Similar experiments were carried out for 10" panel made of bare plates. In addition, the vacuum level of two panels was compared continuously after tip off process; one with the getter and the other without it.

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Mass balance equation을 이용한 대형 진공용기의 진공도 계산과 측정

  • Kim, Se-Hyeon
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.356-356
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    • 2011
  • 챔버 내부의 압력은 gauge가 달려 있는 몇몇 지점에만 국한되어 읽을 수 있었기 때문에 gauge를 이용한 압력 측정을 통해 보다 상세한 진공도를 구하기란 쉽지 않다. 챔버 내부의 압력은 빔 운전에 적합한 초고진공을 유지하여야 하고, 균일하여야 하므로 신뢰 할 수 있는 방법으로 진공도를 정확히 계산해 볼 필요가 있다. 그리하여 압력에 영향을 미치는 여러 가지 진공 시스템 내부의 요소인 Outgassing, 배기속도, 컨덕턴스, 압력 등을 mass balance equation을 이용해 수식화 하여 정리한다. 이 수식을 가지고 FEA(Finite element analysis)프로그래밍을 이용해 진공도를 계산한다. FEA 프로그래밍에 쓰이는 프로그램은 Matlab, excel을 이용하였다. 이 프로그래밍 결과에 따라 Pressure Profile을 작성 하고, 시간이 변함에 따라 진공도가 어떻게 변하는지 실제로 계산하여 time constant를 구한다. 이 값들을 챔버를 가지고 측정한 데이터와 비교하여본다.

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Calibration uncertainty of a capacitance diaphragm gauge (용량형진공계 교정 불확도)

  • 홍승수;신용현;정광화;임인태;우삼용;김정형;최상철
    • Journal of the Korean Vacuum Society
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    • v.10 no.2
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    • pp.173-181
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    • 2001
  • We calibrated a capacitance diaphragm gauge(CDG) of 1,333 Pa range by using ultrasonic interferometer manometer (UIM) that was a national low vacuum standards system. And its uncertainties were evaluated according to International Organization for Standardization(ISO), they were named to A type uncertainty, B type uncertainty, combined standard uncertainty, and expanded uncertainty, We obtained that the combined standard uncertainties were $1.38 \times10^{-2}\; Pa\sim3.03 \times10^{-1} $Pa and the relative uncertainties(combined standard uncertainty/standard pressure) were $2.3 \times 10^{-4}\;Pa\sim7.9 X\times10^{-3} $Pa for this 1,333 Pa CDG.

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