• 제목/요약/키워드: Drain Performance

검색결과 346건 처리시간 0.021초

인공위성용 추진제/가압제 Fill/Drain 밸브 개발

  • 김수겸;유명종;이균호;최준민
    • 항공우주기술
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    • 제4권2호
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    • pp.65-70
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    • 2005
  • 짧은 국내 우주개발의 역사 속에서도 현재 다목적실용위성 개발사업을 성공적으로 수행하고 있으나 대부분의 핵심부품들에 대해서는 국산화 개발을 시도조차 하지 못하고 있는 실정이다. 중장기 국가우주개발 계획에 따라 향후 우주선진국으로의 진입을 위해서는 핵심부품 국산화 개발은 필수적으로 이루어져야하므로 한국항공우주연구원 다목적위성사업단에서는 (주)한화와 더불어 상대적으로 국산화 접근의 가능성이 높은 추진제/가압제 공급용 Fill/Drain 밸브의 개발을 수행하였다. 본 논문에서는 설계, 제작 및 시험에 걸쳐 Fill/Drain 밸브 개발의 전 과정을 요약하였고, 이 과정을 통해 총 4세트의 개발모델을 국산화 하는데 성공하였으며 인수 시험을 통해 성능 요구조건을 충분히 만족함을 확인하였다.

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Electrical Characteristics of InAlAs/InGaAs/InAlAs Pseudomorphic High Electron Mobility Transistors under Sub-Bandgap Photonic Excitation

  • Kim, H.T.;Kim, D.M.
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제3권3호
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    • pp.145-152
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    • 2003
  • Electrical gate and drain characteristics of double heterostructure InAlAs/InGaAs pseudomorphic HEMTs have been investigated under sub-bandgap photonic excitation ($hv). Drain $(V_{DS})-,{\;}gate($V_{DS})-$, and optical power($P_{opt}$)-dependent variation of the abnormal gate leakage current and associated physical mechanisms in the PHEMTs have been characterized. Peak gate voltage ($V_{GS,P}$) and the onset voltage for the impact ionization ($V_{GS.II}$) have been extracted and empirical model for their dependence on the $V_{DS}$ and $P_{opt} have been proposed. Anomalous gate and drain current, both under dark and under sub-bandgap photonic excitation, have been modeled as a parallel connection of high performance PHEMT with a poor satellite FET as a parasitic channel. Sub-bandgap photonic characterization, as a function of the optical power with $h\nu=0.799eV$, has been comparatively combined with those under dark condition for characterizing the bell-shaped negative humps in the gate current and subthreshold drain leakage under a large drain bias.

물받이를 이용한 유수발전장치의 설계 및 구현 (Design and Implementation of Fluid Flow Generation System by using Water Captures)

  • 손영대;정현석
    • 전기학회논문지
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    • 제61권3호
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    • pp.413-421
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    • 2012
  • This paper proposes the design and implementation of fluid flow generation system by using polypropylene(PP) water capture, which harvests electric energy from the kinetic energy of tidal current or water flow and drives the desired load, and applies it to the discharge drain of Hadong thermal power plant. This experimental system is composed of water captures, driving wheel, gear trains, 10[kW] synchronous generator, and three phase rectifying circuit which drives lamp load for test. The proposed water capturing system which is composed of water captures, rope and driving wheel, rotates as caterpillar according to water flow. This system is very easy to manufacture and more economical than another type of tidal current turbines such as conventional propeller and helical type. Also, we estimated the available fluid flow energy that can be extracted from the cooling water in discharge drain based on drain's cross-sectional area. Therefore, this paper confirms the validity of proposed fluid flow generation system with water captures and the possibility of its application for renewable energy generation in discharge drain of thermal power plant, from the obtained performance characteristic of this energy conversion system.

Gate 및 Drain 바이어스 제어를 이용한 3-way Doherty 전력증폭기와 성능개선 (Performance Enhancement of 3-way Doherty Power Amplifier using Gate and Drain bias control)

  • 이광호;이석희;방성일
    • 대한전자공학회논문지TC
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    • 제48권1호
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    • pp.77-83
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    • 2011
  • 본 논문에서는 차세대 무선통신 중계기 및 기지국용 50W급 Doherty 전력증폭기를 설계 및 제작하였다. Doherty 전력증폭기의 보조증폭기를 구현하기 위하여 Gate 바이어스 조절회로를 사용하였다. Gate 바이어스 조절회로는 보조증폭기를 구현할 수 있으나 Doherty 전력증폭기의 출력특성을 개선하기에는 제한된 특성을 가졌다. 이를 해결하고자 Drain 바이어스 조절회로를 첨가였다. 그리고 Doherty 전력증폭기의 효율을 개선하고자 일반적인 2-way 구조가 아닌 3-way 구조를 적용하여 3-way GDCD(Gate and Drain Control Doherty) 전력증폭기를 구현하였다. 비유전율(${\varepsilon}r$) 4.6, 유전체 높이(H) 30 Mill, 동판두께(T) 2.68 Mill(2 oz)인 FR4 유전체를 사용하여 마이크로스트립 선로와 칩 캐패시터로 정합회로를 구성하였다. 실험결과 3GPP 동작 주파수 대역인 2.11GHz ~ 2.17GHz에서 이득이 57.03 dB이고, PEP 출력이 50.30 dBm, W-CDMA 평균전력 47.01 dBm, 5MHz offset 주파수대역에서 -40.45 dBc의 ACLR로써 증폭기의 사양을 만족하였다. 특히 3-way GDCD 전력증폭기인 일반전력증폭기에 비해 동일 ACLR에 대하여 우수한 효율 개선성능을 보였다.

Effects of the Geometry of Components Attached to the Drain Valve on the Performance of Water Hammer Pumps

  • Saito, Sumio;Takahashi, Masaaki;Nagata, Yoshimi;Dejima, Keita
    • International Journal of Fluid Machinery and Systems
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    • 제4권4호
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    • pp.367-374
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    • 2011
  • Water hammer pumps can effectively use the water hammer phenomenon in long-distance pipeline networks that include pumps and allow fluid transport without drive sources, such as electric motors. The results of experiments that examined the effect of the geometric form of water hammer pumps by considering their major dimensions have been reported. In addition, a paper has also been published analyzing the water hammer phenomenon numerically by using the characteristic curve method for comparison with experimental results. However, these conventional studies have not fully evaluated the pump performance in terms of pump head and flow rate, common measures indicating the performance of pumps. Therefore, as a first stage for the understanding of water hammer pump performance in comparison with the characteristics of typical turbo pumps, the previous paper experimentally examined how the hydrodynamic characteristics were affected by the inner diameter ratio of the drive and lifting pipes, the form of the air chamber, and the angle of the drive pipe. To understand the behavior of the components attached to the valve chamber and the air chamber that affects the performance of water hammer pumps, the previous study also determined the relationship between the water hammer pump performance and temporal changes in valve chamber and air chamber pressures according to the air chamber capacity. For the geometry of components attached to the drain valve, which is another major component of water hammer pumps, this study experimentally examines how the water hammer pump performance is affected by the length of the spring and the angle of the drain pipe.

Effects of the Lift Valve Opening Area on Water Hammer Pump Performance and Flow Behavior in the Valve Chamber

  • Saito, Sumio;Dejima, Keita;Takahashi, Masaaki;Hijikata, Gaku;Iwamura, Takuya
    • International Journal of Fluid Machinery and Systems
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    • 제5권3호
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    • pp.109-116
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    • 2012
  • Water hammer pumps can effectively use the water hammer phenomenon for water pumping. They are capable of providing an effective fluid transport method in regions without a well-developed social infrastructure. The results of experiments examining the effect of the geometric form of water hammer pumps by considering their major dimensions have been reported. However, these conventional studies have not fully evaluated pump performance in terms of pump head and flow rate, common measures of pump performance. The authors have focused on the effects on the pump performance of various geometric form factors in water hammer pumps. The previous study examined how the hydrodynamic characteristics was affected by the inner diameter ratio of the drive and lift pipes and the angle of the drive pipe, basic form factors of water hammer pumps. The previous papers also showed that the behavior of water hammer pump operation could be divided into four characteristic phases. The behavior of temporal changes in valve chamber and air chamber pressures according to the air volume in the air chamber located downstream of the lift valve was also clarified in connection with changes in water hammer pump performance. In addition, the effects on water hammer pump performance of the length of the spring attached to the drain valve and the drain pipe angle, form factors around the drain valve, were examined experimentally. This study focuses on the form of the lift valve, a major component of water hammer pumps, and examines the effects of the size of the lift valve opening area on water hammer pump performance. It also clarifies the behavior of flow in the valve chamber during water hammer pump operation.

Effect of deposition method of source/drain electrode on a top gate ZnO TFT Performance

  • Kopark, Sang-Hee;Hwang, Chi-Sun;Yang, Shin-Hyuk;Yun, Young-Sun;Park, Byung-Chang
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2008년도 International Meeting on Information Display
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    • pp.254-257
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    • 2008
  • We have investigated the effect of source/drain electrode deposition method on a performance of top gate structured ZnO TFT performance. TFT using S/D of ITO film, consisted of bi-layer which deposited by ion beam assisted sputtering at the initial stage then deposited by DC magnetron sputtering, showed better performance compared to that using S/D of ITO deposited by just DC magnetron sputtering. Two ITO films exhibited different grain shapes and these resulted in different etching properties. We also suspect that charge trapping on the glass substrate (back channel) during the ITO film deposition may influence the characteristics of top gate structured ZnO TFT.

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나노 MOSFETs의 노이즈 모델링 및 성능 평가 (Noise Modeling and Performance Evaluation in Nanoscale MOSFETs)

  • 이종환
    • 반도체디스플레이기술학회지
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    • 제19권3호
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    • pp.82-87
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    • 2020
  • The comprehensive and physics-based compact noise models for advanced CMOS devices were presented. The models incorporate important physical effects in nanoscale MOSFETs, such as the low frequency correlation effect between the drain and the gate, the trap-related phenomena, and QM (quantum mechanical) effects in the inversion layer. The drain current noise model was improved by including the tunneling assisted-thermally activated process, the realistic trap distribution, the parasitic resistance, and mobility degradation. The expression of correlation coefficient was analytically described, enabling the overall noise performance to be evaluated. With the consideration of QM effects, the comprehensive low frequency noise performance was simulated over the entire bias range.

고전압 정전기 보호용 DDDNMOS 소자의 더블 스냅백 방지를 위한 최적의 이온주입 조건 결정 (Determination of optimal ion implantation conditions to prevent double snapback of high voltage operating DDDNMOS device for ESD protection)

  • 서용진
    • 전기전자학회논문지
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    • 제26권3호
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    • pp.333-340
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    • 2022
  • 고전압용 정전기 보호소자인 DDDNMOS(double diffused drain N-type MOSFET) 소자의 더블 스냅백 방지를 위한 최적의 이온주입 조건을 결정하기 위해 공정 및 소자 시뮬레이션이 수행되었다. HP-Well, N- 드리프트 및 N+ 드레인 이온주입량의 변화가 더블 스냅백 및 애발란치 브레이크다운 전압에 미치는 영향을 고찰함으로써 더블 스냅백을 방지하여 정전기 보호 성능 개선할 수 있었다. HP-Well 영역보다는 N- 드리프트 영역의 이온주입 농도를 최적으로 설계할 경우, 1차 on 상태에서 2차 on 상태로 전이하는 것을 막아주므로 비교적 양호한 정전기 보호 성능을 얻을 수 있었다. 또한 드리프트 이온주입 농도는 누설전류 및 애발란치 브레이크다운 전압에도 영향을 미치므로 동작전압이 30V보다 큰 공정기술에서는 DPS와 같은 새로운 구조를 적용하거나, 대안으로 여러 공정 변수들을 종합(colligation)하여 적용할 경우 향상된 정전기 보호 성능을 실현할 수 있을 것이다.

VHVI 기유의 제품 적용 기술에 관한 연구 - 건설 중장비용 유압유 (A Study On the Application of VHVI Base Oil - Hydraulic Fluid for Construction Equipment)

  • 권완섭;문우식;윤한희;김경웅
    • Tribology and Lubricants
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    • 제20권1호
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    • pp.33-40
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    • 2004
  • This study represents the newly advanced formulation of hydraulic fluids for extended drain interval and introduces the performance results of used oil samples from various excavators. The used oil samples, in this paper, show that there is a sharp change in viscosity drop and moderate additive depletion when viscosity index of hydraulic oil is very high. For the extension of hydraulic fluid life, it is necessary to improve the stability of viscosity and oxidation. New target properties from the used oil analysis were proposed for extended life. Performance of newly developed hydraulic oil based on used oil analysis is compared with previously used one. The properties of new formulation are the viscosity index of 140 and improved thermal stability consists of VHVI base oil. Field test results showed the possibility of extension of fluid life. Additionally, for development of high performance product, new required propertied and performances were discussed.