• Title/Summary/Keyword: CCFL(Cold cathode fluorescent lamp)

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Study of Blurring Free TFT-LCD Using Short Persistance Cold Cathode Fluorescent Lamp in Blinking Backlight Driving (단잔광 냉음극관을 이용한 잔상없는 TFT-LCD에 관한 연구)

  • Choi, Dae-Seub;Sin, Ho-Chul
    • Journal of Satellite, Information and Communications
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    • v.7 no.3
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    • pp.145-148
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    • 2012
  • In applying LCD to TV application, one of the most significant factors to be improved is image sticking on the moving picture. LCD is different from CRT in the sense that it's continuous passive device, which holds images in entire frame period, while impulse type device generate image in very short time. To reduce image sticking problem related to hold typedisplay mode, we made an experiment to drive TN-LCD like CRT. We made articulate images by turn on-off backlight, and we realized the ratio of Back Light on-off time by counting between on time and off time for video signal input during 1 frame (16.7ms). Conventional CCFL (cold cathode fluorescent lamp) cannot follow fast on-off speed, so we evaluated new fluorescent substances of light source to improve residual light characteristic of CCFL. We realized articulate image generation similar to CRT by CCFL blinking drive and TN-LCD overdriving. As a result, reduced image sticking phenomenon was validated by naked eye and response time measurement.

A Study on the Equivalent Model of an External Electrode Fluorescent Lamp Based on Equivalent Resistance and Capacitance Variation

  • Cho, Kyu-Min;Oh, Won-Sik;Moon, Gun-Woo;Park, Mun-Soo;Lee, Sang-Gil
    • Journal of Power Electronics
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    • v.7 no.1
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    • pp.38-43
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    • 2007
  • An External Electrode Fluorescent Lamp (EEFL) has longer lifespan, higher power efficiency and higher luminance than a Cold Cathode Fluorescent Lamp (CCFL). Moreover, it is easy to drive them in parallel. Therefore, the EEFL is expected to quickly replace the CCFL in LCD backlight systems. However, the EEFL has more complex characteristics than the CCFL with a resistive component, because it has both a resistive component by plasma and a capacitive component by external electrode. In this paper, values of resistance and capacitance are measured at several power levels and at several operating frequencies. They are expressed by a numeral formula based on a linear approximation that represents the equivalent resistance and capacitance as a function of power. Then we made block diagram of the equivalent circuit model using numerical expressions. Simulation waveforms and experimental results are presented to verify the feasibility of the equivalent model.

Implementation of Automatic Detection System for CCFL's Defects based on Combined Lighting (조합조명 기반 CCFL 불량판별 자동화 시스템 구현)

  • Moon, Chang-Bae;Ahn, Young-Hoon;Lee, Hae-Yeoun;Kim, Byeong-Man;Oh, Duk-Whan
    • Journal of Korea Society of Industrial Information Systems
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    • v.15 no.2
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    • pp.69-81
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    • 2010
  • A Cold Cathode Fluorescent Lamp(CCFL) is used as a LCD Monitor's backlight widely. The most common way to check CCFL's defects is an examination with the naked eye. This naked eye examination can cause an examination inconsistency and an industrial disaster. To examine CCFL defects, a shooting equipment and a defect detection algorithm are necessary. This paper shows the shooting environments for checking CCFL and presents some CCFL defect detection algorithms. As a result of experiments, our implementations showed 98.32% of successful defect detection of CCFL.

A New Buck-Boost Half Bridge Inverter for Low Temperature Driving of EEFL (외부전극 형광램프의 저온구동을 위한 새로운 벅부스트 하프브리지 인버터)

  • Cho Kyu-Min;Oh Won-Sik;Moon Gun-Woo;Park Mun-Soo;Lee Sang-Gil
    • Proceedings of the KIPE Conference
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    • 2006.06a
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    • pp.387-389
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    • 2006
  • The LCD TV has many variable functions for consumer. Low temperature driving below minus 20 degree is also one of key functions. Since LCD is not self-luminance device, it is needed backlight system. Recently EEFL(External Electrode Fluorescent Lamp) widely substitutes for CCFL(Cold Cathode Fluorescent Lamp). It is more cheaper, higher efficiency, and easy to drive parallel connection compared to CCFL. In this paper, several conditions for low temperature driving of EEFL are investigated and a new boost-half bridge inverter for low temperature driving is proposed. Mode analysis is described and experimental results is represented to verify validity of the proposed inverter.

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LCD BLU Defects Detection System with Sidelight (측면조명을 이용한 LCD 백라이트 불량검출 시스템)

  • Moon, Chang-Bae;Bark, Jee-Woong;Lee, Hae-Yeoun;Kim, Byeong-Man;Shin, Yoon-Sik
    • The KIPS Transactions:PartB
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    • v.17B no.6
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    • pp.445-458
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    • 2010
  • A Cold Cathode Fluorescent Lamp(CCFL) is used as a LCD Monitor's backlight widely. The most common way to check CCFL's defects is an examination with the naked eye. This naked eye examination can cause examination inconsistencies and industrial disasters. A shooting environment and detection algorithms are important for finding CCFL defects automatically. This paper presents CCFL defect detection algorithms using images captured under the shooting environment with sidelight which is one of the shooting environment we have suggested. The experimental result shows 4.65% of overdetection and 5.37% of unsuccessful defect detection of CCFL.

A Study on the Multiple CCFL Operation and Brightness Improvement (다수의 CCFL 구동과 휘도 향상에 관한 연구)

  • Park, Jung-Oh;Kim, Cherl-Jin;Park, Hyun-Cherl
    • Proceedings of the KIEE Conference
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    • 2008.10c
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    • pp.126-128
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    • 2008
  • This paper presents an architecture for driving multiple paralleled cold cathode fluorescent lamps (CCFLs) for back lighting applications. Multi CCFL operation and increase of brightness, the key to the architecture is a proposed capacitive coupling approach for lamp ignition. This system is consist of a flyback converter, a single inverter to drive multiple lamps and conductive floating reflector. The topology is capable of driving a number of parallel lamps with independent accurate lamp, The capacitive coupling the leakage inductance and stray capacitance creation which it used, current regulation and improving cost effectiveness with significant reduction in size and weight, compared to typical high frequency ac ballast. Experimental demonstration results for ten of parallel CCFLs with simultaneous ignition.

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The effects of short persistent CCFL in Blinking Back Light Unit to reduce blur on TFT-LCD

  • Han, J.M.;Bae, K.W.;Kim, S.Y.;Kim, Y.H.;Lim, Y.J.
    • 한국정보디스플레이학회:학술대회논문집
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    • 2003.07a
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    • pp.694-697
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    • 2003
  • In applying LCD to TV application, one of the most significant factors to be improved is image sticking on the moving picture. LCD is different from CRT in the sense that it's continuous passive device, which holds images in entire frame period, while impulse type device generate image in very short time. To reduce image sticking problem related to hold type display mode, we made an experiment to drive LCD like CRT. We made articulate images by turn on-off backlight, and we realized the ratio of Back Light on-off time by adjusting between on time and off time for video signal input during 1 frame (16.7ms). Conventional CCFL (cold cathode fluorescent lamp) cannot follow fast on-off speed, so we evaluated new fluorescent substances of light source to improve residual light characteristic of CCFL. We realized articulate image generation similar to CRT by blinking drive. As a result, reduced image sticking phenomenon was validated by naked eye and response time measurement.

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Small Electrode Ring Forming by Multi-Forming Process (멀티 성형 가공법을 활용한 전극용 소형 링 성형)

  • Yoon, Il-Chae;Ko, Tae-Jo;Lee, Chun;Kim, Hui-Sul
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.8 no.3
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    • pp.38-45
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    • 2009
  • Recently, LCD Backlight Unit is being replaced from cold cathode fluorescent lamp(CCFL) to external electrode fluorescent lamp(EEFL) because the EEFL has high energy efficiency and long life. Also, it can reduce energy consumption and weight. So far, external electrode ring for EEFL is produced by sheet metal press forming process. Therefore it had low precision and much material loss. To solve these problems, Multi-Forming process that has five step forming process was invented. However, low productivity is another barrier. Product speed that is controlled by the rotational speed cannot be increased due to the unsatisfied design specification. The reason is that the gap between rolled two edge parts of the sheet plate is tightly inspected. Regarding this factor, the understanding of forming behavior to each process is inevitable. This paper describes the CAE analysis of the multi-forming process by PAM-STAMP.

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Pulse Density Modulated ZVS High Frequency Inverter with Reverse Blocking Single Switch for Dielectric Barrier Discharge Lamp Dimming

  • Sugimura Hisayuki;Yasui Kenji;Omori Hideki;Lee Hyun-Woo;Nakaoka Mutsuo
    • Proceedings of the KIPE Conference
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    • 2006.06a
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    • pp.206-209
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    • 2006
  • At present, the cold cathode fluorescent lamp (CCFL) using mercury lamp has been generally used far liquid crystal backlight source of personal computer and car navigation and so on. This kind of lamp is more excellent on luminance performance and cost. However, the requirements of liquid crystal backlight due to a light source without mercury have been strongly increased from a viewpoint of the actual influence on environmental preservation and environmental recycling. As fluorescent lamp without mercury, Dielectric Barrier Discharge based rare gas fluorescent lamp (DBD-FL) using xenon (Xe) gas has been studied so far. This DBD lamp has no influence on the human body and environmental recycle. Its operating life is long because electrode is out. In this paper, the simulation and experimental results of soft switching high frequency inverter with reverse blocking single switch as a high frequency power supply circuit for DBD-FL using Xe gas are comparatively evaluated and discussed from a practical point of view.

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Parallel Operation of CCFLs Considering on Capacitive Coupling (용량성 결합을 고려한 CCFL 병렬 구동)

  • Park, Jung-Oh;Kim, Cherl-Jin;Park, Hyun-Chul
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.1007-1009
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    • 2008
  • This paper presents an architecture for driving multiple paralleled cold cathode fluorescent lamps (CCFLs) for back lighting applications. The key to the architecture is a proposed capacitive coupling approach for lamp ignition. This system is consist of a flyback converter, a single inverter to drive multiple lamps and conductive floating reflector. The topology is capable of driving a number of parallel lamps with independent accurate lamp, current regulation and improving cost effectiveness with significant reduction in size and weight, compared to typical high frequency ac ballast. Experimental demonstration results for ten of parallel CCFLs with simultaneous ignition. This like the EEFL it will be able to use the CCFL is the thing. Also, it investigates the effect where the leakage current goes mad to the Lamp.

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