• 제목/요약/키워드: Light source

검색결과 2,714건 처리시간 0.031초

방송조명에서 LED광원의 색 재현성과 평탄도 연구 (A Study on Color Reproduction and Flatness of the LED Light Source in Broadcasting Lighting)

  • 김영진;박구만
    • 방송공학회논문지
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    • 제21권4호
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    • pp.538-551
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    • 2016
  • 방송 제작현장에서는 영상 이미지 표현의 광원으로 Tungsten Halogen 광원이 주 광원으로 사용 되어 왔다. Tungsten Halogen 광원은 그동안 개발된 다른 광원보다 태양광원과 유사한 색 재현성으로 각광받아 왔지만 에너지 효율성의 문제점을 가지고 있었다. 최근 대체 광원으로 고효율의 에너지와 긴 수명의 LED광원이 방송 광원으로 주목받기 시작했다. LED광원은 독특한 발광원리 때문에 카메라를 통한 영상 이미지의 색 재현성과 광원에서 투사되는 빛의 질에 있어서 Tungsten Halogen광원과 다른 특성을 가지고 있다. 이런 특성은 LED광원이 방송 광원으로서 도입이 늦어지는 이유이다. 이에 본 연구에서는 LED 광원의 색 재현성과 빛의 질 특성인 평탄도를 측정하여 기준광원인 Tungsten Halogen과 비교하여 방송 광원으로써의 적합성에 대한 실험 데이터를 제시할 것이다. 또한 LED광원이 방송 광원으로서의 확산되기 위해서 필요한 점이 무엇인지 향후 과제와 기준을 제시하고자 한다.

비구면 광학계를 이용한 고출력 LED 스포트라이트에 관한 연구 (A Study on the LED Spotlight with a High Power using an Aspherical Optical System)

  • 문재일;유경선;현동훈
    • 한국생산제조학회지
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    • 제21권3호
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    • pp.487-492
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    • 2012
  • In this study we researched a spotlight in LED lighting. Ordinary LED spotlight was manufactured with characterized property of traveling straightness of LED light source, but multiple use of shell type LED, a yellow band has formed caused by light source interference between the LED. Also, there was a high miscellaneous light efficiency with losing light source homogeneity and efficiency due to light source control uneasiness. The study uses aspheric reflector and aspheric lens, so we can control the light source of LED spotlight with effectively and we reached surface light source by using COB/COM for LED module. Furthermore it can change its use by a reduced scale of light system. It has been designed to make its various application from low power consumption of bicycle lamp, up to high power consumption of automobile lamps and lighthouse.

집어등 광원으로서 고휘도 발광 다이오우드의 방사 및 수중투과 특성 (Radiation and Underwater Transmission Characteristics of a High-luminance Light-emitting Diode as the Light Source for Fishing Lamps)

  • 최석진
    • 한국수산과학회지
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    • 제39권6호
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    • pp.480-486
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    • 2006
  • The radiation characteristics of a high-luminance light-emitting diode (LED) light source were studied to evaluate its potential as an energy-saving light source for fishing lamps. The angle of the LED light source with 50% illuminance was $8-15^{\circ}$, and it had strong directional characteristics. The wavelengths at which the radiance and irradiance were maxima were 709, 613, 473, 501, 525, and 465 nm for red, orange, blue, peacock blue, green, and white light, respectively. The underwater transmission characteristics of the LED light source were superior in the order blue, white, peacock blue, and green in optical water type I: blue, peacock blue, white, and green in optical water type II; and blue, peacock blue, green, and white in optical water type III. Setting the underwater transmission characteristics of the LED light source in optical water type I at 100%, the transmission of water types II and III decreased to 67 and 17%, respectively. Based on the underwater transmission characteristics calculated in optical water types I-III, the blue and peacock blue LED light sources can be used as an energy-saving light source for fishing lamps.

인공 광원을 이용한 실내 조명 효과에 대한 기초 실험 연구 (Basic Experimental Study on Room Lighting Effects using Artificial Light Source)

  • 김정배
    • 융복합기술연구소 논문집
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    • 제1권1호
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    • pp.29-33
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    • 2011
  • This study is performed to investigate the effect of the artificial light for room lightening. To do that, the experiments were done using the black room with 1m3 and performed to show the effect of the length between the room and light source and light intensities as LUX. The LUX of 18 sites in the room was measured using LUX meter. The length between the room and the light source was chosen as 500mm, 1000mm, and 1500mm and the light intensities was 3 levels. The results were shown the distinct difference between the part directly projected through the light path and non-directly projected. So, the light delivery path have to be modified for next step research. The results were very sensitive for the part directly projected through the light path. This study showed the basic results for room lightening using light source to simulate the solar lightening and was worth in a strict sense as fundamental study.

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포항방사광가속기용 중심자장7.5T를 초전도위글러 개발 (Development of 7.5T Superconducting Wiggler for Pohang Light Source)

  • 배동진;손영욱;윤영덕;김동언;서형석
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1995년도 하계학술대회 논문집 A
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    • pp.18-20
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    • 1995
  • This paper describes a 7.5T magnetic flux density superconducting wiggler that minimize net angular deflection and displacement of an electron rotating along the orbit at storage ring in Pohang Light Source. It consist of dipole superconducting magnet,high uniformity flux distribution due to current source supply,cryostat,vacuum chamber,measurement system. In this paper magnet design procedure, manufacturing, experimental results are contained.

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악성종양의 형광영상 진단을 위한 다파장 여기광원장치의 개발과 평가 (Development and Evaluation of Multi-Wavelength Excitation light Source for Fluorescence Imaging to Diagnose Malignancies)

  • 임현수
    • 대한의용생체공학회:의공학회지
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    • 제30권2호
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    • pp.113-121
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    • 2009
  • This study aims at designing and evaluating light source devices that can stably generate light with various wavelengths in order to make possible PDD using a photosensitizer and diagnosis using auto-fluorescence. The light source was a Xenon lamp and filter wheel, composed of an optical output control through Iris and filters with several wavelength bands. It also makes the inducement of auto-fluorescence possible because it is designed to generate a wavelength band of 380-420nm, 430-480nm, and 480-560nm. The transmission part of the light source was developed to enhance the efficiency of light transmission. To evaluate this light source, the characteristics of light output and wavelength band were verified. To validate the capability of this device as PDD, the detection of auto-fluorescence using mouse models was performed.

3색 LED와 유연 광섬유를 적용한 의류용 로고 디자인 연구 (A Study on the Logo Design for Clothing in Application of the Flexible Optical Fiber with Three-Colors of LED Light Source)

  • 신혜영;이주현
    • 한국의류학회지
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    • 제37권4호
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    • pp.482-490
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    • 2013
  • This study suggests a suitable logo design application of a three colors LED light source and flexible plastic optical fiber (POF). In this study, characteristic relevant brightness of (according to the embodiment conditions of the flexible POF for logo design) for smart clothing were analyzed through two experiments. The suitable conditions of the logo design for three colors of light source were observed in 'Experiment 1'. The angle of $80^{\circ}$ to $100^{\circ}$ and the length of 8cm to 16cm appeared a more suitable condition for green-colored and red-colored light sources. The angle of $80^{\circ}$ to $100^{\circ}$ at a length of 8cm to 12cm appeared a more suitable condition for a blue-colored light source. In 'Experiment 2', a 'Klavika' in small letter was selected as suitable logo design for the application POF. The alphabet was separated by a morpheme, which is the minimal linguistic unit. All alphabets were classified into sixteen morphemes. The luminance of fourteen morphemes (realized by the embroidery method) were measured and analyzed. Subsequently, eight morphemes appeared to show a relatively equal luminance of $3-4cd/m^2$ in a green-colored light source, $2-3cd/m^2$ in red-colored light source, and $2cd/m^2$ in a blue-colored light source. Four of the fourteen morphemes, showed a 20% brighter level of luminance compared to the eight morphemes above, the cast of combination of green or red light source. This result indicates that a flexible POF with 20% less luminance are believed more suitable for four morphemes combined with a green or red light source. The results of this study provide fundamental data for further approaches to clothing logo design for the application of a flexible POF.

광역학적 암진단을 위한 광원장치의 설계 및 평가 (Design and evaluation of light source for photodynamic diagnosis of cancer)

  • 임현수
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 심포지엄 논문집 정보 및 제어부문
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    • pp.73-76
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    • 2007
  • Photodynamic diagnosis(PDD) is a method to diagnose the possibility of cancer, both by the principle that if a photosensitizer is injected into an organic tissue, it is accumulated in the tissue of a malignant tumor selectively after a specific period, and by a comparison of the intensity of the fluorescence of normal tissue with abnormal tissue after investigating the excitation light of a tissue with accumulated photosensitizer. Since the selection of the wavelength band of excitation light has an interrelation with fluorescence generation according to the selection of a photosencitizer, it plays an important role in POD. This study aims at designing and evaluating light source devices that can stably generate light with various kinds of wavelengths In order to make possible PDD using a photosensitizer and diagnosis using auto-fluorescence. The light source device was a Xenon lamp and filter wheel, composed of an optical output control through Iris and filters with several wavelength bands It also makes the inducement of auto-fluorescence possible because it is designed to generate a wavelength band of 380-400. The transmission part of the light source was, developed to enhance the efficiency of light transmission. To evaluate this light source device, the characteristics of the light output and wavelength band were verified. To validate the capability of this device as PDD the detection of auto-fluorescence using mouse was performed.

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세상에서 가장 얇은 그래핀 발광 소자 (The World's Thinnest Graphene Light Source)

  • 김영덕
    • 진공이야기
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    • 제4권3호
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    • pp.16-20
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    • 2017
  • Graphene has emerged as a promising material for optoelectronic applications including as ultrafast and broadband photodetector, optical modulator, and nonlinear photonic devices. Graphene based devices have shown the feasibility of ultrafast signal processing for required for photonic integrated circuits. However, on-chip monolithic nanoscale light source has remained challenges. Graphene's high current density, thermal stability, low heat capacity and non-equilibrium of electron and lattice temperature properties suggest that graphene as promising thermal light source. Early efforts showed infrared thermal radiation from substrate supported graphene device, with temperature limited due to significant cooling to substrate. The recent demonstration of bright visible light emission from suspended graphene achieve temperature up to ~3000 K and increase efficiency by reducing the heat dissipation and electron scattering. The world's thinnest graphene light source provides a promising path for on-chip light source for optical communication and next-generation display module.