• 제목/요약/키워드: High-power LEDs

검색결과 144건 처리시간 0.019초

BaTiO3-Poly Vinylidene Fluoride 복합 압전발전기의 출력특성에 미치는 배합비와 분극의 효과 (Effects of Mixing Ratio and Poling on Output Characteristics of BaTiO3-Poly Vinylidene Fluoride Composite Piezoelectric Generators)

  • 김희태;박상식
    • 한국재료학회지
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    • 제33권12호
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    • pp.517-524
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    • 2023
  • BaTiO3-Poly vinylidene fluoride (PVDF) solution was prepared by adding 0~25 wt% BaTiO3 nanopowder and 10 wt% PVDF powder in solvent. BaTiO3-PVDF film was fabricated by spreading the solution on a glass with a doctor blade. The output performance increased with increasing BaTiO3 concentration. When the BaTiO3 concentration was 20 wt%, the output voltage and current were 4.98 V and 1.03 ㎂ at an applied force of 100 N. However, they decreased when the over 20 wt% BaTiO3 powder was added, due to the aggregation of particles. To enhance the output performance, the generator was poled with an electric field of 150~250 kV/cm at 100 ℃ for 12 h. The output performance increased with increasing electric field. The output voltage and current were 7.87 V and 2.5 ㎂ when poled with a 200 kV/cm electric field. This result seems likely to be caused by the c-axis alignment of the BaTiO3 after poling treatment. XRD patterns of the poled BaTiO3-PVDF films showed that the intensity of the (002) peak increased under high electric field. However, when the generator was poled with 250 kV/cm, the output performance of the generator degraded due to breakdown of the BaTiO3-PVDF film. When the generator was matched with 800 Ω resistance, the power density of the generator reached 1.74 mW/m2. The generator was able to charge a 10 ㎌ capacitor up to 1.11 V and turn on 10 red LEDs.

Chip-on-board 형 세라믹-메탈 하이브리드 기판을 적용한 50와트급 LED 어레이 모듈의 제조 및 방열특성 평가 (Fabrication and Evaluation of Heat Transfer Property of 50 Watts Rated LED Array Module Using Chip-on-board Type Ceramic-metal Hybrid Substrate)

  • 허유진;김효태
    • 마이크로전자및패키징학회지
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    • 제25권4호
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    • pp.149-154
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    • 2018
  • 가로등 및 방폭등용 고출력 LED 조명 시스템의 광원으로서, 다수의 LED 칩이 실장된 50와트급 LED 어레이 모듈을 chip-on-board형 고방열 세라믹-메탈 하이브리드 기판을 사용하여 제작하였다. 고방열 세라믹-메탈 하이브리드 기판은 고열전도 알루미늄 금속 열확산 기판에 저온소결용 글라스-세라믹 절연 페이스트와 은 전극 페이스트를 후막 스크린 공정에 의해 도포한 다음, 건조 후 $515^{\circ}C$에서 동시소성하여 LED 칩을 실장할 세라믹 절연층과 은전극 회로층을 형성하여 제조하였다. 이 하이브리드 기판의 방열특성 평가를 위한 비교 샘플로서 기존의 에폭시 기반 FR-4 복합수지로 만든 써멀비아형 PCB 기판에도 동일한 디자인의 LED 어레이 모듈을 제작한 다음, 다중채널 온도측정장치와 열저항 측정기로 방열특성을 비교 분석하였다. 그 결과, $4{\times}9$ type LED 어레이 모듈에서 세라믹-메탈 하이브리드 기판의 열저항은 써멀비아형 FR-4 기판에 비하여 약 1/3로 나타났으며, 이것은 곧 방열성능이 적어도 3배 이상 높은 것으로 볼 수 있다.

발광 다이오드 광중합기의 복합레진 중합 평가 (Evaluation of New LED Curing Light on Resin Composite Polymerization)

  • 강지은;전새로미;김종빈;김종수;유승훈
    • 대한소아치과학회지
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    • 제41권2호
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    • pp.152-156
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    • 2014
  • 최근 도입된 광범위 스펙트럼의 발광 다이오드 광중합기는 4개의 램프로 구성되어 있으며 다양한 중합 모드를 가지고 있다. 이 연구는 광범위 스펙트럼 발광 다이오드($VALO^{(R)}$, Ultradent, USA) 광중합기와 기존의 발광 다이오드 광중합기 ($Elipar^{TM}$ Freelight 2, 3M ESPE, USA)의 효율을 미세경도 시험을 통해 비교하였다. 연구에 사용한 광중합기는 $VALO^{(R)}$$Elipar^{TM}$ Freelight 2이며 중합 시간은 제조사의 지시에 따랐다. $37^{\circ}C$의 생리식염수에 중합된 레진 시편을 24시간 동안 보관한 후 미세경도 시험을 시행하였다. 시편 상부와 하부의 복합레진 미세경도는 공분산분석을 시행하였다. 광범위 스펙트럼의 발광 다이오드 광중합기를 이용하여 고성능 모드에서 4초, 플라즈마 모드에서 20초 광중합을 실시한 복합레진 시편의 상부는 기존의 발광 다이오드 광중합기에 비해 미세경도가 증가하였으나(p < 0.05), 시편의 하부에서는 실험에 사용된 광중합기 간에 유의성 있는 차이를 보이지 않았다.

The effects of LEDs and duty ratio on the growth and physiological responses of Silene capitata Kom., endangered plant, in a plant factory

  • Park, Jae-Hoon;Lee, Eung-Pill;Han, Young-Sub;Lee, Soo-In;Cho, Kyu-Tae;Hong, Yong-Sik;You, Young-Han
    • Journal of Ecology and Environment
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    • 제42권4호
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    • pp.174-182
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    • 2018
  • Background: In this study, we observed their growth and physiological responses using a variety of duty ratio under the mixed light using red, blue, and white lights. The red+blue mixed light was treated with 95%, 90%, 85%, 80%, and 75% duty ratios and red+blue+white mixed light with 85% and 70% duty ratios. We examined the width and length of leaves, total number of leaves, and number of shoots to examine their growth responses. The physiological responses were studied by measuring their photosynthetic rate, transpiration rate, stomatal conductance, water use efficiency, chlorophyll content, and fluorescence ($F_o$, $F_m$, and $F_v/F_m$). Results: We found that lower duty ratio caused the length and width of the leaves to grow longer under red+blue mixed light but that it did not cause any difference in the red+blue+white mixed light condition. In addition, there was no difference in the number of leaves and shoots among all treatments. In the red+blue mixed light condition, the photosynthetic rate was no difference, but both transpiration rate and stomatal conductance were the highest at 95% duty ratio than in other ratios. Water use efficiency pattern was similar to that of photosynthetic rate; water use efficiency was no difference. Chlorophyll content was the highest at 95% duty ratios, and it was the least at 90%, 85%, and 75% duty ratio. $F_o$ and $F_m$ values were relatively high at 85% and 80% duty ratio and low at 90% duty ratio while $F_v/F_m$ showed no difference. Conclusions: Under the red+blue+white mixed light, all physiological items showed no difference between 70 and 85% treatments. But, photosynthetic rate, water use efficiency, chlorophyll content, and $F_v/F_m$ were relatively greater in the red+blue+white mixed light than in the red+blue mixed light. Therefore, red+blue+white mixed light treated with 70% duty ratio could lessen the environmental stress and save more power when cultivating Silene capitata in a plant factory.