• 제목/요약/키워드: Back-contact

검색결과 366건 처리시간 0.034초

Fabrication of Ordered One-Dimensional Silicon Structures and Radial p-n Junction Solar Cell

  • Kim, Jae-Hyun;Baek, Seong-Ho
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.86-86
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    • 2012
  • The new approaches for silicon solar cell of new concept have been actively conducted. Especially, solar cells with wire array structured radial p-n junctions has attracted considerable attention due to the unique advantages of orthogonalizing the direction of light absorption and charge separation while allowing for improved light scattering and trapping. One-dimenstional semiconductor nano/micro structures should be fabricated for radial p-n junction solar cell. Most of silicon wire and/or pillar arrays have been fabricated by vapour-liquid-solid (VLS) growth because of its simple and cheap process. In the case of the VLS method has some weak points, that is, the incorporation of heavy metal catalysts into the growing silicon wire, the high temperature procedure. We have tried new approaches; one is electrochemical etching, the other is noble metal catalytic etching method to overcome those problems. In this talk, the silicon pillar formation will be characterized by investigating the parameters of the electrochemical etching process such as HF concentration ratio of electrolyte, current density, back contact material, temperature of the solution, and large pre-pattern size and pitch. In the noble metal catalytic etching processes, the effect of solution composition and thickness of metal catalyst on the etching rate and morphologies of silicon was investigated. Finally, radial p-n junction wire arrays were fabricated by spin on doping (phosphor), starting from chemical etched p-Si wire arrays. In/Ga eutectic metal was used for contact metal. The energy conversion efficiency of radial p-n junction solar cell is discussed.

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동잡음 저감을 위한 심전도 전극 특성에 대한 연구 (Study on Characteristics of ECG Electrodes for Motion Artifact Reduction)

  • 강영환;박재순;조범기;최상동;정연호
    • 한국전기전자재료학회논문지
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    • 제30권6호
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    • pp.366-371
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    • 2017
  • In this paper, we introduce an electrocardiogram (ECG) system designed to solve problems caused by wetgels and motion artifacts in measuring active movement. The system is called a dry-contact ECG and was designed by considering impedance matching between skin and electrode as well as the frictional electricity between electrode and clothes. In order to create the system, we measured impedance on the skin-electrode interface, and the result was applied to the electronic circuit scheme. Moreover, we added an electrode on the back of the measurement electrode to make a flow path to ground the electrical noise. The final ECG circuit and novel electrode were used to detect real human cardiac signals from a subject who was tested while standing still and walking. The signals obtained from the two activities were nicely shaped, without any motion artifact noise. We took electrode size into account in this study because the impedance depended on the area of the electrode. An electrode of 50 mm diameter showed the best curve for the ECG signal without any electrical noise.

시공 중 수중터널 벌크헤드에 작용하는 충격쇄파압 - 수치해석 및 수리모형실험 - (Wave Impact Pressures Acting on the Underwater Tunnel Bulkhead under Construction - Numerical Analysis and Hydraulic Model Experiment -)

  • 김선신;안동혁;전인식
    • 한국해안·해양공학회논문집
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    • 제23권2호
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    • pp.139-146
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    • 2011
  • 충격쇄파압은 권파성 파랑이 구조물 전면에 갑자기 충돌할 때 발생하며 접촉면에서 공기포켓의 생성여부에 따라 충격쇄파압의 작용특성이 달라진다. 수괴의 직접적인 충돌에 따른 Wagner형은 접촉면에서 단일 압력 첨두치를 보이는 반면, Bagnold형은 공기포켓의 진동에 의하여 비접촉면에서도 압력의 첨두치를 보이는 특성이 있다. 본 연구에서는 시공 중의 수중터널 벌크헤드의 배면(육측면)에 발생하는 충격쇄파압을 고찰하였다. Navier-Stokes 방정식을 직접 푸는 수치해석을 적용하여 벌크헤드 인근에 발생하는 쇄파를 모의한 결과, 벌크헤드의 배면에서 강한 Bagnold형 충격쇄파압이 발생함을 확인하였다. 본 충격쇄파압의 존재는 동일 조건에 대하여 수행한 수리모형실험에 의해서도 확인되었으며, 실험결과와 수치해석결과가 대체적으로 유사한 성향을 보임을 확인하였다.

후면 위상 패턴을 이용한 투과율 조절 포토마스크 (Transmittance controlled photomasks by use of backside phase patterns)

  • 박종락;박진홍
    • 한국광학회지
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    • 제15권1호
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    • pp.79-85
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    • 2004
  • 후면의 석영면에 위상 패턴을 형성하여 투과율 조절을 구현한 포토마스크에 대해 보고한다. 위상 패턴의 크기와 패턴 조밀도에 따른 조명 동공의 형태 변화에 관한 이론적 결과와 투과율 조절 포토마스크를 사용한 웨이퍼 상 CD(critical dimension) 균일도 개선에 관한 실험적 결과에 대해 기술한다. 투과율 조절을 위한 위상 패턴은 패턴이 형성되지 않은 영역에 대해 180$^{\circ}$의 상대적 위상을 갖도록 석영면을 식각한 콘택홀 형태의 패턴을 사용하였다. 콘택홀 패턴의 크기가 작을수록 본래의 조명동공 형태를 유지하게 되며, 동일한 패턴 조밀도에서 더욱 큰 노광 광세기 저하가 일어남을 알 수 있었다. 패턴 조밀도를 위치별로 변화시켜 CD균일도 개선에 적합한 투과율 분포를 포토마스크 후면에 형성하였다. 투과율 조절 포토마스크를 140nm 디자인 롤을 갖고 있는 DRAM(Dynamic Random Access Memory)의 한 주요 레이어에 적용하여 CD 균일도를 3$\sigma$값으로 24.0nm에서 10.7nm 로 개선할 수 있었다.

저궤도위성 원격측정 데이터 처리를 위한 대용량 메모리 운용 (Mass Memory Operation for Telemetry Processing of LEO Satellite)

  • 채동석;양승은;천이진
    • 항공우주기술
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    • 제11권2호
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    • pp.73-79
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    • 2012
  • 저궤도 위성은 지상과 교신할 수 있는 시간이 매우 제한되어 있으므로 위성에서 생성되는 모든 원격측정 데이터는 대용량 메모리에 저장되었다가 지상교신 시 실시간 데이터와 함께 지상으로 전송된다. 대용량 메모리는 최초 시스템 초기화 과정에서 초기화가 시작되어 각 블록의 상태정보가 생성되고 원격측정데이터를 저장할 수 있는 준비를 한다. 운영 중에 계속적으로 대용량 메모리에 원격측정데이터를 저장하고, 저장된 데이터를 지상으로 전송한다. 그리고 우주환경에서 발생할 수 있는 메모리 오류를 제거하기 위하여 주기적으로 메모리 스크러빙을 수행한다. 본 논문은 저궤도위성 원격측정 데이터 처리를 위한 대용량 메모리 운용방식에 대한 것으로 대용량 메모리 구조, 메모리 초기화 및 메모리 스크러빙 방식, 대용량 메모리를 통한 원격측정데이터 저장 및 전송 방식, 주/부 대용량 메모리 운용 방식에 대해서 기술한다.

단결정 실리콘 태양전지 도핑 확산 공정에서 주입되는 $O_2$ 가스와 PSG 유무에 따른 특성 변화 (The Study on the Characteristic of Mono Crystalline Silicon Solar Cell with Change of $O_2$ Injection during Drive-in Process and PSG Removal)

  • 최성진;송희은;유권종;이희덕
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2011년도 춘계학술발표대회 논문집
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    • pp.105-110
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    • 2011
  • The doping procedure in crystalline silicon solar cell fabrication usually contains oxygen injection during drive-in process and removal of phosphorous silicate glass(PSG). In this paper, we studied the effect of oxygen injection and PSG on conversion efficiency of solar cell. The mono crystalline silicon wafers with $156{\times}156mm^2$, $200{\mu}m$, $0.5-3.0{\Omega}{\cdot}cm$ and p-type were used. After etching $7{\mu}m$ of the surface to form the pyramidal structure, the P(phosphorous) was injected into silicon wafer using diffusion furnace to make the emitter layer. After then, the silicon nitride was deposited by the PECVD with 80 nm thickness and 2.1 refractive index. The silver and aluminium electrodes for front and back sheet, respectively, were formed by screen-printing method, followed by firing in 400-425-450-550-$880^{\circ}C$ five-zone temperature conditions to make the ohmic contact. Solar cells with four different types were fabricated with/without oxygen injection and PSG removal. Solar cell that injected oxygen during the drive-in process and removed PSG after doping process showed the 17.9 % conversion efficiency which is best in this study. This solar cells showed $35.5mA/cm^2$ of the current density, 632 mV of the open circuit voltage and 79.5 % of the fill factor.

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단결정 실리콘 태양전지의 도핑 최적화를 위한 확산 온도에 대한 연구 (Optimization of Drive-in Temperature at Doping Process for Mono Crystalline Silicon Solar Cell)

  • 최성진;송희은;유권종;유진수;한규민;권준영;이희덕
    • 한국태양에너지학회 논문집
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    • 제31권1호
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    • pp.37-43
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    • 2011
  • In this paper, the optimized doping condition of crystalline silicon solar cells with $156{\times}156\;mm^2$ area was studied. To optimize the drive-in temperature in the doping process, the other conditions except variable drive-in temperature were fixed. These conditions were obtained in previous studies. After etching$7\;{\mu}m$ of the surface to form the pyramidal structure, the silicon nitride deposited by the PECVD had 75~80nm thickness and 2 to 2.1 for a refractive index. The silver and aluminium electrodes for front and back sheet, respectively, were formed by screen-printing method, followed by firing in 400-425-450-550-$850^{\circ}C$ five-zone temperature conditions to make the ohmic contact. Drive-in temperature was changed in range of $830^{\circ}C$ to $890^{\circ}C$to obtain the sheet resistance $30{\sim}70\;{\Omega}/{\box}$ with $10\;\Omega}/{\box}$ intervals. Solar cell made in $890^{\circ}C$ as the drive-in temperature revealed 17.1% conversion efficiency which is best in this study. This solar cells showed $34.4\;mA/cm^2$ of the current density, 627 mV of the open circuit voltage and 79.3% of the fill factor.

목욕 및 샤워시 행동패턴 및 생리적 변화에 대한 연구 (A Study on Behavior Pattern and Physiological Changes during Bathing and Showering)

  • 정우원;이계한;박경열;전경진
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 추계학술대회 논문집
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    • pp.256-259
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    • 2005
  • Analysis of behavior pattern and thermal response during bathing and showering provides important fundamental data when developing an automatic bathing/showering system. The behavior pattern and physiological changes during bathing/showering were measured und analyzed for the aged male group. We recorded the volunteers showering at front, back, left and right view using four CCTV cameras in order to study the behavior pattern during showering. The photographic data were analyzed by counting the frequencies of body contact and identifying zones where hands could reach. In order to study the thermal response, we measured the blood pressure (B.P), heart rate (H.R), body temperature (B.T.), breathing rate (B.R) for the different water temperatures and the locations of immersion for the young and old age groups. The results showed that the frequencies of body contacts were varied for different body sections. Also there were some body sections where hands could not be reached because of reduced pliability and muscular strength of the aged group. But we observed rather uniform body contact frequencies when a towel was used. In partial immersion bath experiments, we observed the changes of B.P. H.R and B.T in the case of young and old age groups, and the changes were more significant in the young age group.

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기체확산층 압축률과 상대습도가 고분자전해질 연료전지 성능에 미치는 영향 (Effect of Gas Diffusion Layer Compression and Inlet Relative Humidity on PEMFC Performance)

  • 김준섭;김준범
    • 공업화학
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    • 제32권1호
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    • pp.68-74
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    • 2021
  • 고분자전해질 연료전지 성능에서 기체확산층 압축률은 계면 접촉 저항과 전극으로의 반응물 전달 및 전극 내 수분 포화도에 영향을 주는 중요한 변수이다. 본 연구에서는 국내 상용 제품인 JNT20-A3를 이용하여 기체확산층 압축률에 대한 연료전지의 성능 평가를 수행하였다. 전극면적 25 ㎠ 단위 전지를 이용하여 상대습도 조건과 압축률에 대한 전기화학 임피던스 분광법과 분극 곡선을 측정하였다. 기체확산층을 18.6%에서 38.1%으로 압축시켰을 때 상대습도 100, 25% 조건에서 ohmic 저항이 각각 8, 30 mΩ·㎠이 감소하여 기체확산층 압축률이 증가할수록 접촉 저항이 감소하는 것과 동시에 막의 수화도가 증가하는 것을 확인하였다. 상대습도 조건에 대한 ohmic 저항의 변화 경향을 통하여, 압축률을 증가시켰을 때 기체확산층의 기공이 감소하여 공기극에서의 물 역확산과 전해질 막의 수화도가 증가하는 것을 확인하였다.

박형 결정질 실리콘 태양전지에서의 휨현상 감소를 위한 알루미늄층 두께 조절 (Bow Reduction in Thin Crystalline Silicon Solar Cell with Control of Rear Aluminum Layer Thickness)

  • 백태현;홍지화;임기조;강기환;강민구;송희은
    • 한국태양에너지학회 논문집
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    • 제32권spc3호
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    • pp.194-198
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    • 2012
  • Crystalline silicon solar cell remains the major player in the photovoltaic marketplace with 80% of the market, despite the development of various thin film technologies. Silicon's excellent efficiency, stability, material abundance and low toxicity have helped to maintain its position of dominance. However, the cost of silicon materials remains a major barrier to reducing the cost of silicon photovoltaics. Using the crystalline silicon wafer with thinner thickness is the promising way for cost and material reduction in the solar cell production. However, the thinner the silicon wafer is, the worse bow phenomenon is induced. The bow phenomenon is observed when two or more layers of materials with different temperature expansion coefficiencies are in contact, in this case silicon and aluminum. In this paper, the solar cells were fabricated with different thicknesses of Al layer in order to reduce the bow phenomenon. With less amount of paste applications, we observed that the bow could be reduced by up to 40% of the largest value with 120 micron thickness of the wafer even though the conversion efficiency decrease by 0.5% occurred. Since the bowed wafers lead to unacceptable yield losses during the module construction, the reduction of bow is indispensable on thin crystalline silicon solar cell. In this work, we have studied on the counterbalance between the bow and conversion efficiency and also suggest the formation of enough back surface field (BSF) with thinner Al layer application.