• Title/Summary/Keyword: Backlight

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Development of new heat dissipated material in metal core PCB for LED backlight source

  • Ban, K.Y.;Lee, D.Y.;Lee, M.J.;Han, C.J.;Han, J.I.
    • 한국정보디스플레이학회:학술대회논문집
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    • 2006.08a
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    • pp.1432-1435
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    • 2006
  • We report on carbon nano-fibers (CNFs) for applying to epoxy as a highly thermal conductive adhesive. In order to fabricate CNFs, electro-spinning process was performed with polyacrylonitrile (PAN) solutions. The sample was stabilized at the annealing temperature of $360^{\circ}C$, and carbonized from 900 to $1100^{\circ}C$. It is shown that the synthesized CNFs have a good thermal conductivity of several hundred W/m K. LED backlight units (BLUs) fabricated with MPCB using CNF-mixed epoxy give a better heat dissipation and higher performance than normal LED BLUs. On the basis of SEM, XRD, and FTIR, the characteristics of CNFs are described.

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Analysis on LGP of LCD Backlight/Frontlight

  • Sah, Jong-Youb;Park, Jong-Ryul
    • 한국정보디스플레이학회:학술대회논문집
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    • 2003.07a
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    • pp.698-700
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    • 2003
  • LGP (Light-Guide Panel) of TFT-LCD Backligh/Frontlight is one of the major components which affect on the product quality of LCD. Since the brightness distribution of LGP is sensitive to the process error in manufacturing, the optical characteristics such as reflection and absorption of LGP pattern should be modeled including the process error. LGP is developed by using the fast and reliable design technology, which uses the concept of the inverse-design, makes the model on the characteristics of uncertainty in the manufacturing process, and designs the dispersion pattern analytically without try-and-error by using an artificial intelligence. The PEA(Process-Error-Adaptive) design gives the best solution in handling the process error. The offset of target in feedback system makes such the best pattern design possible that the brightness distribution is nearly same (more than 90%) with target in regardless of the miscellaneous errors in mass production. The present design method has been also applied to frontlight and multi-side-lamp(eg., four-side-four-lamp) backlight.

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Discharge and Characteristic of Hg-free Flat Fluorescent Lamp (무수은 평판형 형광램프의 제작 및 방전특성)

  • Lee, Myoung-Ho;Lim, Min-Su;Lee, Mun-Ju;Lim, Kee-Joe
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2004.11a
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    • pp.624-627
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    • 2004
  • 본 논문은 LCD Backlight로 사용되고 있는 CCFL의 문제점을 해결하기 위해 간단한 구조를 가지는 mercury-free, Xe 평판형 형광램프에 대한 연구를 하였다. 일반적으로, 수은을 포함한 형광램프는 낮은 온도에서의 휘도문제와 상대적으로 긴 점등시간, 수명과 특히, 환경 문제가 있다. 본 논문에는 화학적으로 안정한 불활성 가스인 Xe을 사용함으로써 기존의 백라이트가 가지고 있는 문제점을 해결하였다. 제작된 8인치$(200{\times}156{\times}10mm)$ 램프는 AC 펄스 전압에 의해 높은 균일도, 안정한 방전, 우수한 전기적 및 광학적 특성을 가진다. 또한 본 연구에서, 무수은 Xe 평판형 형광램프의 전극폭에 대한 전기적 및 광학적 실험을 통하여 90[%]의 균일도에서 $7,000[cd/m^2]$의 휘도와 30[lm/W]의 효율을 얻었다.

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Analysis on LGP with Multi-Side-Lamp (다변 광원 도광판에 대한 연구)

  • Park Jong-Ryul;Sah Jong-Youb
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.29 no.3 s.234
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    • pp.361-368
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    • 2005
  • LGP(Light-Guide Panel) of LCD backlight is one of the major componets which affect on the product quality of LCD. The LGP with multi-side lamp has been analized for pattern design with the uniform distribution of brightness. When given the uniform distribution of brightness as target, the distribution of dot pattern has been designed for superposed distributions of brightness for each lamp. Multi-side lamp has been tested for various types such as ㄴ-, ㄷ-, and ㅁ -shapes. The present study enhances the possibility of LGP with multi-side lamp by showing the pricise control of brightness distribution.

Fabrication of Microlens Array Using Photoresist Thermal Reflow (Photoresist Thermal Reflow를 이용한 Microlens Array 제작)

  • Hwang, Sung-Ki;Baek, Sang-Hoon;Kwon, Jin-Hyuk;Park, Yi-Soon
    • Korean Journal of Optics and Photonics
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    • v.20 no.2
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    • pp.118-122
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    • 2009
  • An optical sheet with microlens array (MLA) is designed and fabricated as a substitute for the prism sheets of LCD backlight. Using photoresist thermal reflow, MLAs were fabricated on PET film with thickness of $100{\mu}m$, and we measured the change of MLA profile in terms of exposure time, reflow temperature and reflow time.

Improvement of Light Guide Panel Performance by Laser Patterning (레이저 가공에 의한 백라이트 도광판 성능 향상)

  • Kim, Y.S.;Kim, T.H.;Park, S.H.;Choi, Y.H.;Choi, E.S.;Shin, Y.J.
    • Laser Solutions
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    • v.10 no.1
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    • pp.29-34
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    • 2007
  • We propose a novel application of laser engraving to patterning of light guide panel (LGP) for backlight. The feasibility of three-dimensional engraved pattern in the LGP was verified by measuring brightness and uniformity. To improve the overall uniformity, we have modified proposed patterns and found improved design for patterns. The tailoring of pattern by using laser engraving method could endow the controllability of uniformity. The proposed LGPs are more efficient in both average brightness and uniformity of illumination than the conventional LGPs which have surface pattern on the panel.

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Transformer-less CCFL Driver for LCD Backlight (LCD 백라이트용 트랜스포머 없는 냉음극관(CCFL) 구동 회로)

  • Choi Eun-Seok;Yoon Hyun-Ki;Moon Gun-Woo;Youn Myung-Joong;Kang Moon-Shik
    • Proceedings of the KIPE Conference
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    • 2006.06a
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    • pp.81-83
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    • 2006
  • The conventional cold cathode fluorescent lamp (CCFL) driver for LCD TV has a transformer for each lamp to step up the high sinusoidal waveform from the low input voltage. The transformer used in the conventional topology causes the driver to have bulky size and high cost. This paper proposes a new transformer-less CCFL driver for LCD backlight that is based on the parallel-loaded resonant inverter topology. This resonant topology enables the circuit to supply enough high voltage for CCFL without a transformer. Also, with current-balancing technique, this transformer-less inverter drives 16 CCFL lamps.

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Measurement Method of a Parasitic Capacitance in LCD Backlight Inverter (LCD 인버터의 기생 용량 측정 방법)

  • Lee Jae-Kwang;Lee Kwang-Il;Yoon Seok;Kwon Gi-Hyun;Roh Chung-Wook;Han Sang-Kyoo;Hong Sung-Soo;SaKong Suk-Chin;Kim Jong-Sun
    • Proceedings of the KIPE Conference
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    • 2006.06a
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    • pp.239-241
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    • 2006
  • 본 논문에서는 Liquid crystal display (LCD) Backlight module중에 Cold cathode fluorescent lamp (CCFL)를 포함한 인버터가 가지고 있는 기생 용량 측정 방법을 고안하였다. CCFL의 부성 저항 특성을 고려하여 램프의 정적 저항 성분을 일정하게 유지시키고 입력 전압 대 출력 전압의 비 중 최대 Gain을 갖는 주파수를 찾아내 기생 용량을 계산하는 Algorithm을 완성하였다. 시뮬레이션과 실험 결과를 통해 비교 검증함으로써 측정 방법의 유효성을 입증하였다.

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Development of a Very Small LED Lamp with a Low-Thermal-Resistance Lead Frame for an LCD Backlight Unit

  • Yu, Soon-Jae;Kim, Do-Hyung;Choi, Yong-Seok;Kim, Hee-Tae
    • Journal of Information Display
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    • v.10 no.2
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    • pp.49-53
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    • 2009
  • In this study, a very small LED packaging lead frame with a low thermal resistance was developed. The cost of the package process was reduced by the use of many small LED lamps, which increased the light emission efficiency. Compared to the large lead frame lamp, however, the optical property of the small LED packaging lead frame lamp was not sufficiently improved because its reflection structure was changed and its reflection area was reduced. The luminous efficiency of the LED lamp reaches 58 lm/W at the current density of 0.16 A/$cm^2$. Using the LED lamps, 46-inch LCD BLU was manufactured. The BLU-made LED lamps have a low power consumption of 146 W and have a slim (10-mm-thick) BLU, keeping good uniformity in terms of brightness, and maintaining good thermal properties.

Numerical Calculation Study on the Generalized Electron Emission Phenomenon

  • Kim, Hee-Tae;Yu, Soon-Jae
    • Journal of Information Display
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    • v.10 no.4
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    • pp.158-163
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    • 2009
  • There are two kinds of well-known electron emissions from metal: field and thermionic emission. For thermionic emission, electrons come out of a metal due to the thermal energy, whereas for field emission, electrons tunnel out of a metal through the strong electric field. In this study, the most general electron emission caused by the temperature and electric field with a free electron gas model was considered. The total current density of electron emission comes from the field emission effect, where the electron energy is lower than vacuum, and from the thermionic-emission effect, where the electron energy is higher than vacuum. The total current density of electron emission is shown as a function of the temperature for a constant electric field, and as a function of the electric field for a constant temperature.