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LED的光谱分布可调光源的设计 被引量:33
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作者 陈风 袁银麟 +1 位作者 郑小兵 吴浩宇 《光学精密工程》 EI CAS CSCD 北大核心 2008年第11期2060-2064,共5页
介绍了一种光谱分布可调光源的设计,该光源由积分球和大量不同颜色的LED组成。在可见波段,这种光源能产生不同光谱曲线,可以模拟很多不同光源的光谱分布。该项设计通过仿真使光源的光谱分布模拟目标光源的光谱分布,并设计了电源控制箱... 介绍了一种光谱分布可调光源的设计,该光源由积分球和大量不同颜色的LED组成。在可见波段,这种光源能产生不同光谱曲线,可以模拟很多不同光源的光谱分布。该项设计通过仿真使光源的光谱分布模拟目标光源的光谱分布,并设计了电源控制箱精确地控制每个LED模块。光源的面非均匀性为0.53%,角度特性在±10°以内,最大偏差为0.77%。这种新型光源在光辐射测量中可以作为一种传递标准。 展开更多
关键词 发光二板管 可调光源 光辐射测量 光谱分布
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AMOLED亮点不良修复方法 被引量:3
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作者 朱世楠 李楠 《液晶与显示》 CAS CSCD 北大核心 2020年第3期198-204,共7页
为了提高有源矩阵有机发光二极管面板(AMOLED)亮点不良修复成功率,优化设备性能,本文研究一种AMOLED亮点修复方法,实现阴极隔离原理。由装置激光调形机构(Slit)的激光修复设备构造一束固定形状和频率的脉冲激光束。该激光束透过AMOLED... 为了提高有源矩阵有机发光二极管面板(AMOLED)亮点不良修复成功率,优化设备性能,本文研究一种AMOLED亮点修复方法,实现阴极隔离原理。由装置激光调形机构(Slit)的激光修复设备构造一束固定形状和频率的脉冲激光束。该激光束透过AMOLED面板封装层,照射目标亚像素上方阴极膜层,使目标亚像素发光层与面板整体阴极隔断,阴极电子无法迁移至目标亚像素发光层,目标亚像素由亮点变为暗点,达到亮点修复目的。提出并比较了矩形修复法与线修复法,结果表明矩形修复方法成功率为33.5%,容易出现封装层损伤,信赖性风险高;线修复方法成功率为100%,无封装层损伤风险,信赖性风险低。将线修复方法导入量产后,亮点不良修复良率由96.9%提升至100%。 展开更多
关键词 有源矩阵有机发光极体面 亮点 修复 阴极
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Design for SOP AMOLED display panel 被引量:2
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作者 MA Hai-ying XU Bu-heng +3 位作者 WU Chun-ya MENG Zhi-guo XIONG Shao-zhen ZHANG Li-zhu 《Optoelectronics Letters》 EI 2005年第1期27-29,共3页
A novel full color SOP(system on panel) AMOLED display based on the MIUC polycrystalline silicon TFT technique, and a new control circuit for the panel, which can deal with both VGA and DVI input signals have been d... A novel full color SOP(system on panel) AMOLED display based on the MIUC polycrystalline silicon TFT technique, and a new control circuit for the panel, which can deal with both VGA and DVI input signals have been developed. To realize gray-scale a sub-frame technique has been designed and im- plemented by FPGA device, in which an 120 module has been inserted. Through actual circuit, the whole design has been proven and the advantages of the SOP AMOLED display panel have been confirmed. 展开更多
关键词 发光极管 发光材料 显示面 多晶体硅
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Thermal analysis of an innovative flat heat pipe radiator 被引量:1
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作者 寇志海 白敏丽 杨洪武 《Journal of Central South University》 SCIE EI CAS 2011年第2期568-572,共5页
An innovative flat heat pipe radiator was put forward, and it has the features of high efficiency of heat dissipation, compact construction, low thermal resistance, light weight, low cost, and anti-dust-deposition. Th... An innovative flat heat pipe radiator was put forward, and it has the features of high efficiency of heat dissipation, compact construction, low thermal resistance, light weight, low cost, and anti-dust-deposition. The thermal analysis of the flat heat pipe radiator for cooling high-power light emitting diode (LED) array was conducted. The thermal characteristics of the flat heat pipe radiator under the different heat loads and incline angles were investigated experimentally in natural convection. An electro-thermal conversion method was used to measure the junction temperature of the LED chips. It is found that the integral temperature distribution of the flat heat pipe radiator is reasonable and uniform. The total thermal resistance of the flat heat pipe radiator varies in the range of 0.38-0.45 K/W. The junction temperatures of LED chips with the flat heat pipe radiator and with the aluminum board at the same forward current of 0.35 A are 52.5 and 75.2 ℃, respectively. 展开更多
关键词 energy technology thermal analysis flat heat pipe radiator thermal characteristics
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Multichip on Aluminum Metal Plate Technology for High Power LED Packaging
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作者 Choong-mo NAM Mi-hee JI 《Journal of Measurement Science and Instrumentation》 CAS 2010年第3期297-299,共3页
Multichip on Ahnnintnn Metal Plate(MOAMP) technology with simple structure and low thermal resistance is developed for effective heat reratrval of Light Emitting Diode(LED) p-n junction and LED lighting module to ... Multichip on Ahnnintnn Metal Plate(MOAMP) technology with simple structure and low thermal resistance is developed for effective heat reratrval of Light Emitting Diode(LED) p-n junction and LED lighting module to have high reliability. The thermal resistance of LED modules was numerical and experimental. Thermal resistance from the jtnction to aluminten metal plate, considering input power of IFD module using MOAMP technology, is 3.02 K/W, 3.23 K/W for the measured and calculated, respectively. We expect that the reported MOAMP technology with low thermal resistance will be a promising solution for high power LED fighting modules. 展开更多
关键词 - thermal resistance Light Emitting Diode (IFO) aluminum metal plate IHOAMP
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Solar-Powered Direct-Current Loads in Small Buildings
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作者 Prakash Samobat Simon Lannon 《Journal of Energy and Power Engineering》 2015年第9期796-804,共9页
Traditional light bulbs (e.g., incandescent, fluorescent) use too much electricity, convert very little energy into light of sufficient quality and in their production use toxic contaminants. During the last few yea... Traditional light bulbs (e.g., incandescent, fluorescent) use too much electricity, convert very little energy into light of sufficient quality and in their production use toxic contaminants. During the last few years, a new type of light source, LED (light emitting diode) bulb, has gained increasing popularity and its costs are set to plunge even further. LED bulbs offer many advantages over traditional sources, and they can be used as a direct replacement to existing lighting. This paper will use a spreadsheet-based analysis with hourly solar data supplied by Ecotect to show that, the efficiency of LED installations can be increased when used in conjunction with photovoltaic modules, as the two generate (and use) DC (direct-current) electricity, thereby eliminating intermediate-level losses in the electronic circuitry. If a storage battery is included, the solar panels generate electricity during the times when the occupants are not necessarily using the lighting, but the stored electricity can be used to power the lighting when the energy is required. The latest results demonstrate that, a slight reduction in the required floor area to be lit allows the solar-battery-LED system to be implemented in small buildings using a storage battery size that is within the range of present commercial devices. 展开更多
关键词 Energy efficiency photovoltaics LED lighting simulation.
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