• Title/Summary/Keyword: 수직 시야각

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표면 프리틸트 제어를 통한 새로운 광시야각 수직 배향 LCD 기술 소개

  • Kim, Seong-Min;Lee, Seung-Hui
    • Information Display
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    • v.10 no.1
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    • pp.15-21
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    • 2009
  • 다중 도메인 수직배향 LCD는 러빙 공정을 필요치 않는 다는 장점에서 출발해 현재 액정 TV 시장에서 주를 이루고 있다. 하지만 현재 사용화 되고 있는 제품들이 투과율, 응답속도, 명암대비율 등 성능부분의 개선이 필요하고 공정 측면에서 돌기를 사용하거나 상판 패턴을 필요로 하는데 이러한 공정을 제거하면서도 성능이 우수한 새로운 형태의 수직배향 LCD가 최근 대두되고 있다. 기 발표된 기술들을 정리해 보면 신기술에서는 액정에 UV curing이 가능한 모노머를 소량 도핑 한 후 적절한 셀 구조를 형성해 전압 인가시 중간에 액정 배열에 충돌이 있더라도 최종적으로 안정한 배열을 갖게 만든 다음 UV조사를 통해 양 기판 표면에 모노머가 고분자화되면서 액정 배향 방향과 프리틸트각을 갖게 하도록 만든다. 이러한 신개념의 수직배향 LCD는 종래 LCD에 비해 전기광학 특성이 우수해지고 제조공정도 단순해져 향후 수직배향 LCD의 주를 이룰 것으로 예상된다. 더불어 수직배향 기술은 해마다 새로운 진화를 하고 있으며 앞으로 더 진화를 할 것으로 예상되어 이 부분에 대한 적극적인 연구 지원이 필요하다.

Wide Viewing Angle Characteristics Using Novel Vertical-Alignment 1/6$\pi$ Cell Mode (새로운 VA-1/6$\pi$셀 모드를 이용한 광시야각 특성)

  • 황정연;서대식;한은주;김재형
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.13 no.10
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    • pp.883-886
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    • 2000
  • We have developed a novel vertical-alignment(VA) - 1/6$\pi$ mode that provides a wide viewing angle for nematic liquid crystal (NLC) with negative dielectric anisotropy on a homeotropic polyimide (PI) surfaces. Good voltage-transmittance curves were achieved with the new VA - 1/6$\pi$ cell model without a negative compensation film. The viewing angle of a new VA -1/6$\pi$ cell without a negative compensation film was wider than that of a conventional VA cell. Finally, the wide viewing angle using the new VA-1/6$\pi$ cell mode can be achieved.

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Study of wide viewing angle and response time by using new VA-$\pi$ cell mode cell mode (새로운 VA-$\pi$ cell mode cell mode를 이용한 광시야각 및 응답속도에 관한 연구)

  • 이정호;김진호
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.11a
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    • pp.549-552
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    • 1999
  • We have developed an novel vertical-alignment (VA) - $\pi$ cell mode that provides a wide viewing angle and fast response times for negative dielectric anisotropy nematic liquid crystal (NLC) on a homeotropic polyimide (PI) surfaces. We had the good voltage-transmittance curves and low driving voltages were achieved with the novel VA - $\pi$ cell mode without negative compensation film. Iso-viewing angle characteristics using the novel VA - $\pi$ cell mode without negative compensation film of NLC was also successfully observed. As well a fast response time of 31.7ms for the novel VA - $\pi$ cell mode was measured. Consequently, It is seen that by using the novel VA - $\pi$ cell mode the iso-viewing angle, fast response time, and low driving voltage characteristics can be achieved.

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Image Data Loss Minimized Geometric Correction for Asymmetric Distortion Fish-eye Lens (비대칭 왜곡 어안렌즈를 위한 영상 손실 최소화 왜곡 보정 기법)

  • Cho, Young-Ju;Kim, Sung-Hee;Park, Ji-Young;Son, Jin-Woo;Lee, Joong-Ryoul;Kim, Myoung-Hee
    • Journal of the Korea Society for Simulation
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    • v.19 no.1
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    • pp.23-31
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    • 2010
  • Due to the fact that fisheye lens can provide super wide angles with the minimum number of cameras, field-of-view over 180 degrees, many vehicles are attempting to mount the camera system. Not only use the camera as a viewing system, but also as a camera sensor, camera calibration should be preceded, and geometrical correction on the radial distortion is needed to provide the images for the driver's assistance. In this thesis, we introduce a geometric correction technique to minimize the loss of the image data from a vehicle fish-eye lens having a field of view over $180^{\circ}$, and a asymmetric distortion. Geometric correction is a process in which a camera model with a distortion model is established, and then a corrected view is generated after camera parameters are calculated through a calibration process. First, the FOV model to imitate a asymmetric distortion configuration is used as the distortion model. Then, we need to unify the axis ratio because a horizontal view of the vehicle fish-eye lens is asymmetrically wide for the driver, and estimate the parameters by applying a non-linear optimization algorithm. Finally, we create a corrected view by a backward mapping, and provide a function to optimize the ratio for the horizontal and vertical axes. This minimizes image data loss and improves the visual perception when the input image is undistorted through a perspective projection.

Criterion Suggestion on Relative Disparity, Viewing Distance and Viewing Angle to Minimize 3D Visual Fatigue for Pattern-Retarded Type 3D Display (편광식 3D 디스플레이를 위한 상대적 시차, 시청 거리, 시청 방위에서의 시각피로 최소화 기준 제안)

  • Park, Jong-Jin;Kim, Shinwoo;Li, Hyung-Chul O.
    • Science of Emotion and Sensibility
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    • v.19 no.1
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    • pp.61-70
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    • 2016
  • 3D visual fatigue is known as one of the most important factors that interfere the commercial success of 3D contents. Vergence-accommodation conflict, which is known to occur when an observer watches an image containing binocular disparity presented on a 3D display, has been suggested as a major cause of 3D visual fatigue. This implies that any image incorporating binocular disparity might cause 3D visual fatigue. In order to reduce 3D visual fatigue, it would be necessary to consider indirect ways of reducing 3D visual fatigue as well as eliminating the direct causes of 3D visual fatigue. We have examined the effect of the variables that are expected to affect subjective 3D visual fatigue and these variables included the relative disparity contained in an image, viewing distance and viewing angle. We have also figured out the proper levels of the variables required to minimize 3D visual fatigue. The results indicate that observers began to report significant 3D visual fatigue when the crossed disparity contained in an image exceeded 7.22' and the vertical viewing angle was larger than 15 degree.

Viewing Angle Switching of Vertical Alignment Liquid Crystal Display (수직배향 액정 디스플레이의 시야각 스위칭)

  • Lim, Young-Jin;Jeong, Eun;Choi, Min-Oh;Lee, Seung-Hee
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2006.11a
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    • pp.49-50
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    • 2006
  • We have developed vertical alignment liquid crystal display (VA-LCD), of which the viewing angle can be controlled. The VA-LCD has the function of switching between the wide viewing mode and narrow viewing angle mode using one homogeneous aligned (HA) LC layer and one compensation film with a negative C-plate. The retardation of the HA layer at off axis can be controlled by applying an electric field while keeping the retardation value to be zero at normal direction. Consequently, the device exhibits a viewing mode over $170^{\circ}$ in terms of CR = 10 in wide viewing mode and about $60^{\circ}$ in terms of CR = 2 in narrow viewing angle mode m horizontal direction.

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A Study on wide viewing angle and fast response time using new VA-$\pi$ cell mode (새로운 VA-$\pi$ 셀 모드를 이용한 광시야각과 고속 응답에 관한 연구)

  • 서대식;이정호
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.13 no.4
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    • pp.332-336
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    • 2000
  • We have developed a novel vertical-alignment(VA) -$\pi$ cell mode that provides a wide viewing angle and fast response times for nematic liquid crystal(NLC) with negative dielectric anisotropy on a homeotropic polymide(PI) surfaces. Good voltage-transmittance curves and low driving voltages were achieved with the new VA-$\pi$ cell mode without a negative compensation film. Iso-viewing angle characteristics using the new VA-$\pi$ cell mode without a negative compensation film was also successfully observed. As well a fast response time of 31.7 ms for a new VA-$\pi$ mode was measured. Consequently the iso-viewing angel fast response time and low driving voltage characteristics using a VA-$\pi$ cell can be achieved.

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Optical system design for stereoscopic video-recorder (비디오 입체영상녹화를 위한 광학계 설계)

  • Hong, Kyung-Hee
    • Korean Journal of Optics and Photonics
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    • v.13 no.6
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    • pp.506-509
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    • 2002
  • An optical system for a stereoscopic video recorder is designed with the field of view 42$^{\circ}$ and effective diameter 22 mm. We can use it by attaching it to the front lens of any video camera or camcorder to record a stereoscopic scene. This system is a double Kepler type afocal system to make the image erect and a bi-ocular type to record and display the stereoscopic scene. The optical tube length is folded with several flat mirrors and a beam splitter to be compact. This optical system is composed of 4 groups of lenses and each group serves as a relay lens for minimizing the vignetting effect. Whole field stereoscopic scenes may be captured by perpendicularly polarized alternated recording with a chopper and two perpendicular polarizers, without any loss of light energy. The displayed images may be seen stereoscopically with polarized spectacles and are kinetic because of an afterimage effect.

유리 기판 위에 형성된 랜덤한 분포를 가지는 나노 구조물과 OLED 소자로의 적용 가능성

  • Park, U-Yeong;Hwang, Gi-Ung
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.500-500
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    • 2013
  • 특정한 유기 물질에 전류를 인가했을 때 발광을 하는 특성을 이용한 Organic Light Emitting Diode (OLED)는 뛰어난 색재현성, 적은 전력소모, 간단한 제조공정, 넓은 시야각 등으로 인해 PDP, LCD, LED에 이은 차세대 디스플레이 소자로 많은 관심을 받고 있다. 하지만 OLED는 각기 다른 굴절률을 가지는 다층구조로 되어있어 실질적으로 소자 밖으로 나오는 빛은 원래 생성된 빛의 20% 정도 밖에 되지 않는다. 이러한 광 손실을 줄이기 위해 Photonic Crystal (PC)이나 마이크로 렌즈 어레이(MLA) 부착 등과 같이 특정한 크기를 갖는 주기적인 나노 구조물을 이용한 광추출 효율 상승 방법은 특정 파장의 빛에서만 효과가 있는 한계가 있었으며 고가의 공정과정을 거쳐야 했으므로 OLED 소자의 가격 향상에 일조하였다. 이의 해결을 위해 본 연구는 유리기판 위에 랜덤한 분포를 가지는 나노 구조물 제작 공정법을 제안한다. 먼저 유리기판 위에 스퍼터로 금속 박막을 입혀 이를 Rapid thermal annealing (RTA) 공정을 이용하여 랜덤한 분포의 Island를 가지는 마스크를 제작하였다. 그 후 플라즈마 식각을 이용하여 유리기판에 나노 구조물을 형성하였고 기판 위에 남아있는 마스크는 Ultrasonic cleaning을 이용하여 제거하였다. 제작된나노구조물은 200~300 nm의 높이와 약 200 nm 폭을 가지고 있다. 제작된 유리기판의 OLED 소자로의 적용가능성을 알아보기 위한 광학특성 조사결과는 300~900 nm의 파장영역에서 맨유리와 거의 비슷한 수직 투과율을 보이면서 최대 50%정도의 Diffusion 비율을 나타내고 있고 임계각(41도) 이상의각도에서 인가된 빛의 투과율에 대해서도 향상된 결과를 보여주고 있다. 제안된 공정의 전체과정 기존의 PC, MLA 등의 공정에 비해 난이도가 쉽고 저가로 진행이 가능하며 추후 OLED 소자에 적용될 시 대량생산에 적합한 후보로 보고 있다.

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Double-Layer 3D Rear Projection Display System using Scattering Polarizer Film (후면투사 방식의 이중스크린 3D 프로젝션 디스플레이)

  • Kim, Tae-Ho;Seo, Jong-Wook
    • Korean Journal of Optics and Photonics
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    • v.18 no.6
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    • pp.421-425
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    • 2007
  • A new 3D rear projection display system using double-layer polarization-selective screen systems, one stacked in front of the other, has been developed. The front and rear screens are made of scattering polarizer films, and they either diffuse-scatter or transmit the incident light depending on the polarization state of the light. The near and for images are projected onto the front and rear screens, respectively, using light waves with mutually orthogonal polarization states. The new display system produces clear high-resolution images, which are visible over a wide range of viewing angle. It was found that the impression of depth is pronounced and eyestrain is only comparable to that by 2D display systems.