• 제목/요약/키워드: Sustain circuit

검색결과 65건 처리시간 0.024초

무전해 니켈 도금액 제조와 복합제에 따른 도금 특성 (Preparation of nickel Plating solution and the characteristics of deposition with complexents)

  • 정승준;박종은;손원근;박수길
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 추계학술대회 논문집 학회본부 C
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    • pp.909-911
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    • 1999
  • Metalization technology of the fine patterns by electroless plating is required in place of electrodeposition as high-density printed circuit boards (PCB) become indispensable with the miniaturization of electronic components. Electroless nickel plating is a suitable diffusion barrier between conductor metals, such as Al and Cu, and solder is essetional in electronic packaging in order to sustain a long period of service. Moreover, Electroless nickel has particular characteristics including non-magnetic property, amorphous structure, wear resistance, corrosion protection and thermal stability. In this study fundamental aspects of electroless nickel deposition were studied with effect of complexeing agents of different kinds. Then, the property of electroless deposit are controlled by the composition of the deposition solution, the deposition condition such as temperature and pH value and so on. the characteristics of the deposits has been carried out.

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LSGM계 음극지지형 고체산화물 연료전지에 적용된 LDC 완충층의 효과 (Effect of the LDC Buffer Layer in LSGM-based Anode-supported SOFCs)

  • 송은화;정태주;김혜령;손지원;김병국;이종호;이해원
    • 한국세라믹학회지
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    • 제44권12호
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    • pp.710-714
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    • 2007
  • LSGM$(La_{0.8}Sr_{0.2}Ga_{0.8}Mg_{0.2}O_{3-{\delta}})$ is the very promising electrolyte material for lower-temperature operation of SOFCs, especially when realized in anode-supported cells. But it is notorious for reacting with other cell components and resulting in the highly resistive reaction phases detrimental to cell performance. LDC$(La_{0.4}Ce_{0.6}O_{1.8})$, which is known to keep the interfacial stability between LSGM electrolyte and anode, was adopted in the anode-supported cell, and its effect on the interfacial reactivity and electrochemical performance of the cell was investigated. No severe interfacial reaction and corresponding resistive secondary phase was found in the cell with LDC buffer layer, and this is due to its ability to sustain the La chemical potential in LSGM. The cell exhibited the open circuit voltage of 0.64V, the maximum power density of 223 $mW/cm^2$, and the ohmic resistance of $0.17{\Omega}cm^2$ at $700^{\circ}C$. These values were much improved compared with those from the cell without any buffer layer, which implies that formation of the resistive reaction phases in LSGM and then deterioration of the cell performance is resulted mainly from the La diffusion from LSGM electrolyte to anode.

3상 계통연계형 태양광 PCS의 단독운전검출을 위한 개선된 무효전력변동기법 (Improved RPV(reactive-power-variation) anti-islanding method for grid-connected three-phase PVPCS)

  • 이기옥;정영석;소정훈;유병규;유권종;최주엽;최익
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년도 제37회 하계학술대회 논문집 B
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    • pp.1159-1160
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    • 2006
  • As the grid-connected photovoltaic power conditioning systems (PVPCS) are installed in many residential areas, this has raised potential problems of network protection on electrical power system. One of the numerous problems is an Island phenomenon. There has been an argument that because the probability of islanding is extremely low it may be a non-issue in practice. However, there are three counter-arguments: First, the low probability of islanding is based on the assumption of 100% power matching between the PVPCS and the islanded local loads. In fact, an island can be easily formed even without 100% power matching (the power mismatch could be up to 30% if only traditional protections are used, e.g. under/over voltage/frequency). The 30% power-mismatch condition will drastically increase the islanding probability. Second, even with a larger power mismatch, the time for voltage or frequency to deviate sufficient to cause a trip, plus the time required to execute the trip (particularly if conventional switchgear is required to operate), can easily be greater than the typical re-close time on the distribution circuit. And, third, the low-probability argument is based on the study of PVPCS. Especially, if the output power of PVPCS equals to power consumption of local loads, it is very difficult for the PVPCS to sustain the voltage and frequency in an island. Unintentional islanding of PVPCS may result in power-quality issues, interference to grid-protection devices, equipment damage, and even personnel safety hazards. So the verification of anti-islanding performance is strongly needed. In this paper, the authors propose the improved RPV method through considering power quality and anti-islanding capacity of grid-connected three-phase PVPCS in IEEE Std 1547 ("Standard for Interconnecting Distributed Resources to Electric Power Systems"). And the simulation and experimental results are verified.

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태양광을 이용한 저전력의 LED 표지병 설계 (A Design of the Cat's Eye System with Low Power Consumption Using Solar Energy)

  • 김근식;김종훈
    • 디지털융복합연구
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    • 제14권1호
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    • pp.181-187
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    • 2016
  • 도로에 설치된 일반적인 재귀반사형 표지병은 우천시나 안개가 끼는 날씨에서는 야간에 운전자의 시인성에 문제를 초래한다. 반면에 LED 표지병은 이러한 조건에서 운전자에게 시인성을 확대시켜준다. 본 논문에서는 태양광을 이용한 LED 도로 표지병에 대하여 30톤급 차량의 하중량에 견디고 국제방수 IP68 규격을 만족하는 구조 설계 결과를 나타낸다. 또한 태양에너지를 충분히 충전하지 못하는 혹설기 등을 고려하여 저 전력을 소모하는 LED 구동회로 설계 기법을 제시한다. 본 LED 표지병은 국내는 물론 해외에서 자동차 전용도로와 자전거 도로에 설치되어 운용되고 있다.

DPLL을 이용한 능동적 단독운전방지를 위한 무효전력변동법 (Reactive Power Variation Method for Anti-islanding Using Digital Phase-Locked-Loop)

  • 이기옥;유병규;유권종;최주엽;최익
    • 한국태양에너지학회 논문집
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    • 제28권2호
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    • pp.64-69
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    • 2008
  • As the grid-connected photovoltaic power conditioning systems (PVPCS) are installed in many residential areas, these have raised potential problems of network protection on electrical power system. One of the numerous problems is an Islanding phenomenon. There has been an argument that it may be a non-issue in practice because the probability of islanding is extremely low. However, there are three counter-arguments: First, the low probability of islanding is based on the assumption of 100% power matching between the PVPCS and the islanded local loads. In fact, an islanding can be easily formed even without 100% power matching (the power mismatch could be up to 30% if only traditional protections are used, e.g. under/over voltage/frequency). The 30% power-mismatch condition will drastically increase the islanding probability. Second, even with a larger power mismatch, the time for voltage or frequency to deviate sufficiently to cause a trip, plus the time required to execute a trip (particularly if conventional switchgear is required to operate), can easily be greater than the typical re-close time on the distribution circuit. Third, the low-probability argument is based on the study of PVPCS. Especially, if the output power of PVPCS equals to power consumption of local loads, it is very difficult for the PVPCS to sustain the voltage and frequency in an islanding. Unintentional islanding of PVPCS may result in power-quality issues, interference to grid-protection devices, equipment damage, and even personnel safety hazards. Therefore the verification of anti-islanding performance is strongly needed. In this paper, improved RPV method is proposed through considering power quality and anti-islanding capacity of grid-connected single-phase PVPCS in IEEE Std 1547 ("Standard for Interconnecting Distributed Resources to Electric Power Systems"). And the simulation results are verified.