• 제목/요약/키워드: Electrostatic current

검색결과 205건 처리시간 0.028초

$256{\times}256$ 픽셀 어레이 저항형 지문센서 (Fingerprint Sensor Based on a Skin Resistivity with $256{\times}256$ pixel array)

  • 정승민
    • 한국정보통신학회논문지
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    • 제13권3호
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    • pp.531-536
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    • 2009
  • 본 논문에서는 개선된 회로를 적용한 $256{\times}256$ 픽셀 저항형 지문센서를 제안하고 있다. 단위 픽셀 수준의 센싱회로는 가변적인 전류를 전압으로 변환하여 이진 디지털 신호로 만든다. 정전기에 효과적으로 대처할 수 있는 인접 픽셀 간 전기적 차폐 레이아웃 구조를 제안하고 있다. 전체회로는 단위 센서 회로를 확장하여 ASIC 설계방식을 통하여 설계한 뒤 로직 및 회로에 대하여 모의실험을 하였다. 전체회로는 $0.35{\mu}m$ 표준 CMOS 공정규칙을 적용하여 센서블록은 전주문 방식을 적용하고 전체 칩은 자동배선 툴을 이용하여 반주문 방식으로 레이아웃을 실시하였다.

3차원 전계해석 기법을 이용한 GIS 삼상 일괄형 스페이서 고찰 (Three-dimensional Analysis for Three-phase Spacers in Gas Insulated System)

  • 강종성;이방욱;강성모;오일성
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2003년도 하계학술대회 논문집 C
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    • pp.1620-1622
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    • 2003
  • Recently, as the technology for the development of high voltage power apparatus using SF6 gas has made remarkable progress, it became possible to develop more compact power apparatus adopting single body substation system. In these gas insulated power apparatus, it is impossible to achieve perfect and safe insulation using only SF6 gas, because some solid insulation parts should be installed to support current-carrying conductor parts for electrical and mechanical safety. When spacers were installed in SF6 gas insulation system, they were exposed to severe electrical intensification which could reduce system insulation performance and restrict the rated operating voltage So, it is necessary to clarify the dielectric characteristics of spacers by analytically and experimentally, in order to design and develop more compact and optimum gas insulated systems. In this paper, the field distribution of three-phase spacers were investigated using three dimensional electrostatic field analysis tool adopting BEM method. And the obtained results were compared to the conventional two dimensional computations. According to these three dimensional calculations, it was possible to find out weak points in the spacer more clearly and these results could be applied to design more compact and optimum three phase spacer developments.

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초전도 자속고정 특성 향상을 위한 $ZrO_2$ 나노점의 형성 연구 (Formation of $ZrO_2$ nanodots for the enhanced flux pinning properties in high $T_c$ superconducting films)

  • 정국채;유재무;김영국;이혜문
    • 한국초전도ㆍ저온공학회논문지
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    • 제10권1호
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    • pp.15-18
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    • 2008
  • To achieve high transport current without degradation under magnetic field, it is essential to artificially generate the pinning sites at which moving magnetic flux can be pinned. In this work, $ZrO_2$ nanodots were formed on the substrate surface using electro-spray deposition method. On top of the nanodots, the extended and effective pinning centers can be created. The positively charged Zr precursor solution was sprayed out from the needle using the corona discharge phenomena. Then, the sprayed precursor was deposited onto the negatively charged substrate surface followed by the heat treatment under the controlled atmosphere. Using the electrostatic force among the charged particles of precursor, evenly distributed and nano-sized dots were formed on the substrate surface. The size and density of the nanodots were studied by Atomic Force Microscopy. Also discussed are the effect of the deposition time and solution concentration on the size and density of the nanodot and processing variables in electro-spray method for the effective flux pinning centers in the superconducting films.

딥러닝 모델 구조에 따른 모르타르의 단위수량 평가에 대한 비교 실험 연구 (Comparative Experimental Study on the Evaluation of the Unit-water Content of Mortar According to the Structure of the Deep Learning Model)

  • 조양제;유승환;양현민;윤종완;박태준;이한승
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2021년도 가을 학술논문 발표대회
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    • pp.8-9
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    • 2021
  • The unit-water content of concrete is one of the important factors in determining the quality of concrete and is directly related to the durability of the construction structure, and the current method of measuring the unit-water content of concrete is applied by the Air Meta Act and the Electrostatic Capacity Act. However, there are complex and time-consuming problems with measurement methods. Therefore, high frequency moisture sensor was used for quick and high measurement, and unit-water content of mortar was evaluated through machine running and deep running based on measurement big data. The multi-input deep learning model is as accurate as 24.25% higher than the OLS linear regression model, which shows that deep learning can more effectively identify the nonlinear relationship between high-frequency moisture sensor data and unit quantity than linear regression.

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Output performance enhanced triboelectric nanogenerator with gear train support

  • Kim, Wook;Hwang, Hee Jae;Choi, Dukhyun
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.415.2-415.2
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    • 2016
  • Triboelectric nanogenerator (TENG) is one of ways to convert mechanical energy sound, waves, wind, vibrations, and human motions to available electrical energy. The principal mechanism to generate electrical energy is based on contact electrification on material surface and electrostatic induction between electrodes. The performance of TENG are dependent on amount of the input mechanical energy and characteristics of triboelectric materials. Furthermore, the whole TENG system including mechanical structure and electrical system can effect on output performance of TENG. In this work, we investigated the effect of gear train on output performance and power conversion efficiency (PCE) of TENG under a given input energy. We applied the gear train on mechanical structure to improve the contact rate. We measured the output energy under a constant input energy by controlling the size of the working gear. We prepared gears with gear ratios (rin/rw) of 1, 1.7, and 5. Under the constant input energy, the voltage and current from our gear-based TENG system were enhanced up to the maximum of 3.6 times and 4.4 times, respectively. Also, the PCE was increased up to 7 times at input frequency of 1.5 Hz. In order to understand the effect of kinematic design on TENG system, we performed a capacitor experiment with rectification circuit that provide DC voltage and current. Under the input frequency of 4.5 Hz, we obtained a 3 times enhanced rectifying voltage at a gear ratio of 5. The measured capacitor voltage was enhanced up to about 8 fold in using our TENG system. It is attributed that our gear-based TENG system could improve simultaneously the magnitude as well as the generation time of output power, finally enhancing output energy. Therefore, our gear-based TENG system provided an effective way to enhance the PCE of TENGs operating at a given input energy.

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Development and Testing of a Prototype Long Pulse Ion Source for the KSTAR Neutral Beam System

  • Chang Doo-Hee;Oh Byung-Hoon;Seo Chang-Seog
    • Nuclear Engineering and Technology
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    • 제36권4호
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    • pp.357-363
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    • 2004
  • A prototype long pulse ion source was developed, and the beam extraction experiments of the ion source were carried out at the Neutral Beam Test Stand (NBTS) of the Korea Superconducting Tokamak Advanced Research (KSTAR). The ion source consists of a magnetic bucket plasma generator, with multi-pole cusp fields, and a set of tetrode accelerators with circular apertures. Design requirements for the ion source were a 120kV/65A deuterium beam and a 300 s pulse length. Arc discharges of the plasma generator were controlled by using the emission-limited mode, in turn controlled by the applied heating voltage of the cathode filaments. Stable and efficient arc plasmas with a maximum arc power of 100 kW were produced using the constant power mode operation of an arc power supply. A maximum ion density of $8.3{\times}10^{11}\;cm^{-3}$ was obtained by using electrostatic probes, and an optimum arc efficiency of 0.46 A/kW was estimated. The accelerating and decelerating voltages were applied repeatedly, using the re-triggering mode operation of the high voltage switches during a beam pulse, when beam disruptions occurred. The decelerating voltage was always applied prior to the accelerating voltage, to suppress effectively the back-streaming electrons produced at the time of an initial beam formation, by the pre-programmed fast-switch control system. A maximum beam power of 0.9 MW (i.e. $70\;kV{\times}12.5\;A$) with hydrogen was measured for a pulse duration of 0.8 s. Optimum beam perveance, deduced from the ratio of the gradient grid current to the total beam current, was $0.7\;{\mu}perv$. Stable beams for a long pulse duration of $5{\sim}10\;s$ were tested at low accelerating voltages.

High Performance ESD/Surge Protection Capability of Bidirectional Flip Chip Transient Voltage Suppression Diodes

  • Pharkphoumy, Sakhone;Khurelbaatar, Zagarzusem;Janardhanam, Valliedu;Choi, Chel-Jong;Shim, Kyu-Hwan;Daoheung, Daoheung;Bouangeun, Bouangeun;Choi, Sang-Sik;Cho, Deok-Ho
    • Transactions on Electrical and Electronic Materials
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    • 제17권4호
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    • pp.196-200
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    • 2016
  • We have developed new electrostatic discharge (ESD) protection devices with, bidirectional flip chip transient voltage suppression. The devices differ in their epitaxial (epi) layers, which were grown by reduced pressure chemical vapor deposition (RPCVD). Their ESD properties were characterized using current-voltage (I-V), capacitance-voltage (C-V) measurement, and ESD analysis, including IEC61000-4-2, surge, and transmission line pulse (TLP) methods. Two BD-FCTVS diodes consisting of either a thick (12 μm) or thin (6 μm), n-Si epi layer showed the same reverse voltage of 8 V, very small reverse current level, and symmetric I-V and C-V curves. The damage found near the corner of the metal pads indicates that the size and shape of the radius governs their failure modes. The BD-FCTVS device made with a thin n- epi layer showed better performance than that made with a thick one in terms of enhancement of the features of ESD robustness, reliability, and protection capability. Therefore, this works confirms that the optimization of device parameters in conjunction with the doping concentration and thickness of epi layers be used to achieve high performance ESD properties.

폐전선 재활용 기술개발 (Development of Recycling Technology for Used Cables)

  • 양정일;오정완;최우진;황선국
    • 자원리싸이클링
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    • 제3권2호
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    • pp.28-34
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    • 1994
  • 폐전선류 등은 재활용가치가 높기 때문에 간단한 처리 방법 등이 개발되어 일부 실용화되어 있는 형편이다. 그러나 아직까지도 일정한 굵기 이하의 가는 폐전선의 효율적인 처리 또는 현재 가행되고 있는 공정중에서도 폐절연물질중에 수반되는 미립동의 유실의 문제점 등이 있다. 따라서 본 연구는 이러한 문제점들을 해결할 수 있는 기초적인 기술방안과 현재는 일정한 종류의 폐전산만을 간단한 처리방법으로 처리하고 있는 실정이지만, 앞으로는 다품종의 폐전선이 처리되어야 할 것을 감안하여 기초적인 실험실 연구를 시도하게 되었다. 톨루엔과 물의 혼합용액을 $86^{\circ}C$까지 가열한 후 5% 고체 비율로 0.4mm dia, 이하의 폐전선을 넣고, 약 10분 정도 처리하면 10~15mm 길이 정도 크기에서도 동과 PE가 분리 가능하다. 이는 현재 건식테이블 비중선별시 적용중인 1~2mm 길이보다 긴 상태에서 분리가 가능케 되므로 미립자 동의 유실을 적게 하고 용융시 비산등의 문제점을 해결할 수 있다. 현재는 일정한 품종의 폐전선만을 재활용하고 있지만, 다품종 혼합폐전선은 분쇄건식 비중선별-정전기선별 등의 혼합 방법을 적용하여야 처리가 가능할 것이며, 본 실험에서 실시한 정전기 선별기는 미립동을 재회수하기 위하여 실험하였으며, 공급 돌러의 속도가 20~50RPM, 고압직류전압이 15~30KV 정도가 양호한 것으로 나타나 있다.

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플라즈마 진단을 위한 이온에너지 분석장치의 제작 및 특성 조사 (Fabrication and Its Characteristics of Ion Energy Spectrometer for Diagnostics of Plasma)

  • 김계령;김완;이용현;강희동
    • 센서학회지
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    • 제7권3호
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    • pp.163-170
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    • 1998
  • 플라즈마 이온온도를 측정하기 위해 정전평판형 이온에너지 분석기를 설계 제작하고 에너지 교정 및 에너지 분해능 등의 특성을 조사하였다. 일정한 검출기 위치에서 이온의 에너지에 따른 편향평판전압은 선형성을 보였으며, $53{\sim}103mm$ 사이의 검출기 위치에서 이온에너지에 대한 최대편향평판전압의 기울기는 $1.61{\sim}0.92$로 검출기위치의 증가에 따라 선형적으로 감소하였다. 본 실험 영역에서 에너지 분해능은 약 $4.16{\sim}11.60%$였으며, 검출기 위치 및 이온에너지의 증가에 따라 향상되었다. 상대적 검출효율은 검출기 위치의 증가에 따라 감소하였다. 제작된 분석기를 다목적 플라즈마 발생장치에 설치하여 DC 플라즈마의 이온에너지 스펙트럼을 측정하였다. 방전전압이 320V, 전류가 0.17A인 DC 플라즈마의 이온온도는 $203{\sim}205eV$로 나타났으며 검출기의 위치에 따른 이온온도의 변화는 없었다. 검출기의 위치에 따른 에너지 분해능은 $18{\sim}21%$로 검출기 위치가 증가할수록 향상되었다.

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직류 마이크로 할로우 음극 방전을 이용한 이단 마이크로 플라즈마 추력기의 배기 플룸의 형상 특성 (Shape Characteristics of Exhaust Plume of Dual-Stage Plasma Thruster using Direct-Current Micro-Hollow Cathode Discharge)

  • ;신지철
    • 한국추진공학회지
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    • 제20권3호
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    • pp.54-62
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    • 2016
  • 이단 마이크로 할로우 음극 방전(MHCD) 플라즈마를 사용하는 마이크로 플라즈마 추력기(${\mu}PT$)에 대한 실험 연구가 수행되었다. 40 sccm의 아르곤 유량과 10 W 미만의 전력으로 보다 더 직진성 있고 긴 침투 길이를 가진 배기 플룸을 만드는 정전기적 가속이 이단 MHCD에 의해 발생되었다. 전압-전류 특성에서는 이단 운전 시 두 번째 단의 가속 전압이 일정하게 되는 최적 영역이 있음을 보였다. 추정된 배기 플룸의 길이가 가속 전압으로 추산된 이론적 배출 속도와 비슷한 증가 경향을 보였다. 다중 채널을 가진 마이크로 플라즈마 추력기는 동일한 총 전력량에 대하여 단일 채널 추력기와 비슷한 특성을 보여, 이는 채널 당 허용 전력량을 낮춰 전체 전력량을 높일 수 있음을 의미한다. 아르곤 원자 분광선의 볼츠만 그래프에서 배기 플룸의 평균 전자 여기 온도는 약 2.6 eV(=약 30,170 K)임이 확인되었다.