• 제목/요약/키워드: Light Source Efficiency

검색결과 330건 처리시간 0.02초

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.

High-brightness Phosphor-conversion White Light Source Using InGaN Blue Laser Diode

  • Ryu, Han-Youl;Kim, Dae-Hwan
    • Journal of the Optical Society of Korea
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    • 제14권4호
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    • pp.415-419
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    • 2010
  • A phosphor-conversion white light source is demonstrated using an InGaN-based blue laser diode (LD) and a yellow-emitting phosphor excited by the blue LD. The photometric and colorimetric properties of this blue-LD-based white light source are characterized. When injection current of the LD is 100 mA, luminous flux and luminous efficiency of the white light are found to be over 5 lm and 10 lm/W, respectively. When injection current is >90 mA, luminance is estimated to be larger than 10 Mcd/$cm^2$. In addition, color characteristics of the white light such as chromaticity coordinates, a correlated color temperature, and a color rendering index are found to be quite stable as current and temperature of the LD varies. The demonstrated LD-based white light source is expected to be used in high-brightness illumination applications with good color stability.

정공주입물질 두께 변화에 따른 유기발광다이오드의 효율 개선 (An Efficiency Improvement of the OLEDs due to the Thickness Variation on Hole-Injection Materials)

  • 신종열;곽의위;김태완;홍진웅
    • 한국전기전자재료학회논문지
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    • 제28권5호
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    • pp.344-349
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    • 2015
  • A new information society of late has arrived by the rapid development of various information & communications technologies. Accordingly, mobile devices which are light and thin, easy and convenient to carry on the market. Also, the requirements for the larger television sets such as fast response speed, low-cost electric power, wider visual angle display are sufficiently satisfied. The currently most widely studied display material, the Organic Light-emitting Diodes(OLEDs) overwhelms the Liquid Crystal Display(LCD), the main occupier of the market. This new material features a response speed of more than a thousand times faster, no need of backlight, a low driving voltage, and no limit of view angle. And the OLEDs has high luminance efficiency and excellent durability and environment resistance, quite different from the inorganic LED light source. The OLEDs with simple device structure and easy produce can be manufactured in various shapes such as a point light source, a linear light source, a surface light source. This will surely dominate the market for the next generation lighting and display device. The new display utilizes not the glass substrate but the plastic one, resulting in the thin and flexible substrate that can be curved and flattened out as needed. In this paper, OLEDs device was produced by changing thickness of Teflon-AF of hole injection material layer. And as for the electrical properties, the four layer device of ITO/TPD/$Alq_3$/BCP/LiF/Al and the five layer device of ITO/Teflon AF/TPD/$Alq_3$/BCP/Lif/Al were studied experimentally.

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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조명용 백색 LED광원의 등기구 형태에 따른 광도 및 기구효율 분석 (The Luminous Intensity and Luminaire Efficiency Analysis of White LED as Luminaire types for General Lighting)

  • 황명근;허창수;서유진
    • 조명전기설비학회논문지
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    • 제18권3호
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    • pp.20-26
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    • 2004
  • 본 논문에서는 조명용 고휘도(HB, high brightness) 백색 LED(light emitting diode)램프의 배열 및 여러 가지 등기구 글로브(globe)의 형태에 따른 광도(luminous intensity)값과 기구효율(luminaire efficiency)을 컴퓨터 시뮬레이션으로 수행하여 비교분석 하였다. 즉, LED의 배열은 가로${\times}$세로(7개${\times}$7개)가 정사각형 형태로 49개를 배열하고, LED 간격은 LED의 발광면 중심부로부터 8.2[mm], 10.0[mm], 15.0[mm]로 각각 3가지로 하였으며, 등기구의 글로브는 LED발광면 중심부에서 30[mm], 50[mm] 떨어진 거리로 구분하였다. 또한 등기구 글로브가 없을 때와 있을때로 구분하여 있을 때에는 글로브 형태를 볼록 원형과 엠보(embossing)형태로 구분하고 엠보는 8.2[mm], 5.0[mm]의 크기에 따른 선택으로 시뮬레이션 27가지로 수행하여 등기구의 글로브 형태에 따른 광도 및 기구효율을 고찰해 봄으로써 앞으로 21세기 디지털조명이라고 일컫는 LED를 사용한 LED 광원(light source) 및 등기구 개발에 많은 도움이 되고자 하였다.

고휘도 발광다이오우드와 집어등 광원의 방사특성 및 단위 전력당 방사량 비교 (Comparison of Radiation Characteristics and Radiant Quantities per unit Electrical Power between High Luminance Light Emitting Diode and Fishing Lamp light Source)

  • 최석진
    • 한국수산과학회지
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    • 제41권6호
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    • pp.511-517
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    • 2008
  • The radiation characteristics and economic efficiency of high - luminance light - emitting diodes (LEDs), a metal halide lamp, and a halogen lamp were studied to evaluate their potential as an energy-saving light source for fishing lamps. The wavelengths at which irradiance was maximum were 709, 613, 473, 501, 525, 465, 578, and 973 nm for red, orange, blue, peacock blue, green, and white LEDs, the metal halide lamp, and the halogen lamp, respectively. If the irradiance characteristics at 300-1,100 nm wavelengths are set as 100%, the irradiance rates at 381-780 nm were 99-78%, 82%, and 24% for the LEDs, metal halide lamp, and halogen lamp, respectively. The economic efficiency was superior in the order metal halide lamp, halogen lamp, peacock blue LED, and blue LED at 381-780 nm and metal halide lamp, peacock blue LED, blue LED, and halogen lamp at 480-520 nm. Based on the radiation characteristics and economic efficiency evaluated at 480-520 nm, the blue and peacock blue LED light sources can be used as energy-saving light sources for fishing lamps.

Simulation of Low Temperature Plasmas for an Ultra Violet Light Source using Coplanar Micro Dielectric Barrier Discharges

  • Bae, Hyowon;Lee, Ho-Jun;Lee, Hae June
    • Applied Science and Convergence Technology
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    • 제25권6호
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    • pp.138-144
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    • 2016
  • The discharge characteristics of pulse-driven coplanar micro barrier discharges for an ultraviolet (UV) light source using Ne-Xe mixture have been investigated using a two-dimensional fluid simulation at near-atmospheric pressure. The densities of electrons, the radiative excited states, the metastable excited states, and the power loss are investigated with the variations of gas pressure and the gap distance. With a fixed gap distance, the number of the radiative states $Xe^*(^3P_1)$ increases with the increasing driving voltage, but this number shows weak dependency on the gas when that pressure is over 400 Torr. However, the number of the radiative states increases with the increase of the gap distance at a fixed voltage, while the power loss decreases. Therefore, a long gap discharge has higher efficiency for UV generation than does a short gap discharge. A slight change in the electrode tilt angle enhances the number of radiative species 2 or 3 times with the same operation conditions. Therefore, the intensity and efficiency of the UV light source can be controlled independently by changing the gap distance and the electrode structure.

Nano 입자를 이용한 Photochromic Lens 개발(1) - Photochromic Lens의 평가방법 및 적용 - (Photochromic Lens development to use Nano particle (1) - Photochromic Lens' estimation method and application -)

  • 김용근;성정섭
    • 한국안광학회지
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    • 제7권2호
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    • pp.169-174
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    • 2002
  • Photochromic lens의 광감성 평가 방법을 만들고, 이를 적용시키기 위하여 Photochromic lens에 UV light source을 조사하였다. UV light 광원을 조사 전과 후의 darkening과 fading 상태의 transmittance(T%)의 파장 의존성을 spectrophotometer, light source, power meter, detecter로 구성된 광학적 장치로 측정한다. 조사 직전의 최대 $T%{\times}{\lambda}$ 면적과 saturated state면적의 상대적 비율을 이용한다. Photochromic lens에서 조사시간 의존성의 평가는 darkening 효율도 ($K_d$)값 ($(1-C_1/A_1)/t_{on}$과 fading 효율도($K_f$)값 ($(C_2/A_2)/t_{on}$을 도입하였다. Darkening과 fading 상태에서 transmittance(T%)의 파장의존성은 $T_m+T_1{\exp}[-(x_0-t)/a]$의 형태를 갖는다. Photochromic lens에서 광감성의 평가 parameter Z, $K_d$, $K_f$를 적용한 결과 각 평가 지수 값을 얻을 수 있다.

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LED 광원의 최적화 설계에 대한 연구 (Optimal Design of Light Source LED)

  • 양복영;이현룡;김용갑
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년도 추계학술대회 논문집 전기물성,응용부문
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    • pp.227-228
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    • 2006
  • there are several methods to raise the LED efficiency. In this paper, we designs a simulation(method) to promote the LED efficiency by attaching another lens to a lead type LED lamp. this concentrates a dispersed light.

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LED광원과 형광광원에 의한 작업면의 휘도 및 색온도 비교 (Comparative Luminance and Correlated Color Temperature of Work-place by a Fluorescent and LED Light Sources)

  • 백승헌;정인영;김정태
    • KIEAE Journal
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    • 제8권6호
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    • pp.21-26
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    • 2008
  • According to the tendency of energy efficiency and environment-friendly chracteristics, demend of High-efficiency lighting using LED(Light Emitting Diode)are being increased actively and applied in various fields. However, In order to adequate application of LED light sources, it is necessary to lighting environment and luminous characteristics of LED light sources. This Study aims to characterize the work-plane lighting environment by LED light sources comparing with fluorescent light sources which are widely used. For the sake of this study, a fluorescent light source and 5 LED light sources were introduced and luminance and correlated color temperature were measured to evaluate luminance contrast. The experimental model is Mock-up which is $4.9m{\times}7.2m$ with a height of 2.9m. The test room was set up partition and desks. Luminance and correlated color temperature were measured work-plane on the desk which was set up local lighting by the Radiant Imaging ProMetric 1400. The optical characteristics data of LED can give a lot of advantages to design LED lighting appliances. Hereafter, the object of research will be conducted to evaluate effects of LED light sources on working performance, survey of visual performance, preference and physiology of subjects.