Abstract:
A stereo-scopic image bitstream generation method is provided to convert playback mode between two dimension/three dimension according to the user's demand. Three dimensional image data is inputted(710). A playback mode information is stored on the bitstream header area for deciding how to reproduce the three dimensional image between two dimensional image playback mode or three dimensional image playback mode(720). The three dimensional image data is stored to the payload area of the three dimensional image bitstream(730).
Abstract:
A backlight unit is provided to display 3D image without changing the structure of image display by a sequential driving by processing an image as right image and left image. In a backlight unit(19), a light guide plate(13) equipped with a plurality of stripe segments(14) having a light passing face corresponding to a plurality of segments. A first light source has at least three monochromatic light sources which displays a first color by combining a homogeneous light having six different wavelength bands. An optical source section(12) includes a second light source(12R) with at least three monochromatic light sources which is combined to display the color. A homogeneous light having six different wavelength bands comes out successively from a plurality of segments.
Abstract:
The display device for two dimension / 3-D display is provided to prevent the brightness lowering and lower the number of component. The apparatus for displaying two dimension / three-dimensional image using the back light for scanning comprises the back light(202) irradiating the polarized light for scanning, the retarder(206) transmitted to the light in which phase is maintained and the light in which phase is delayed, the lenticular array(208) transmitting the light from retarder as the direct light, and the display panel(210) irradiated as the light penetrating the lenticular array.
Abstract:
광경로 이동수단을 가지는 다중표시장치가 개시된다. 개시된 다중표시장치는, 어느 일변이 서로 접하여 연결되는 복수개의 평판표시소자와, 평판표시소자의 경계면에 대해 서로 대칭인 경사면을 가지고 상기 평판표시소자로부터 출사되는 광을 상기 평판표시소자 사이의 경계면 쪽으로 이동시킴으로써 비표시영역이 없는 화상을 표현하는 광경로 이동수단을 구비한다. 화면에 비표시영역을 제거하여 완전한 화상을 표현할 수 있어 해상도와 화질을 향상시킬 수 있는 잇점이 있다.
Abstract:
A high efficient display device supporting both 2D and 3D images is provided to prevent the brightness of a displayed image from being decreased by realizing the 3D image according to a parallax barrier scheme. A high efficient display device includes a backlight unit(31), a polarizing plate(32), a first birefringence element array(33), a second birefringence element array(34), a reflective polarizing plate(35), and a display panel(36). A reflective plate is formed on a bottom of the backlight unit. The polarizing plate passes a specific beam with a specific polarizing direction. The first birefringence element array includes plural first and second birefringence elements, which change polarizing directions of the incident beam. The second birefringence element array includes plural third and fourth birefringence elements, which change polarizing directions of the incident beam. The reflective polarizing plate passes the specific beam from the light passing through the second birefringence element array and reflects the rest incident beam. The display panel displays an image.
Abstract:
A high efficient 2D-3D switchable display apparatus is provided to prevent lowering of resolution by alternately displaying left and right eye images at high speed by using a display panel. A high efficient 2D-3D switchable display apparatus(20) includes a backlight unit(21), a polarizing plate(22), a polarizing switch(23), a birefringence device(24), a reflective polarizing plate(25), a lens array(26), and a display panel(27). A reflective plate(28) is installed at a bottom of the backlight unit. The polarizing plate transmits only light of a specific polarized direction of the light emitted from the backlight unit. The polarizing switch changes a polarization direction of incident light. The birefringence device is formed by alternating a plurality of first and second birefringence devices(24a,24b). The reflective polarizing plate transmits light of a specific polarization direction of the light transmitted from the birefringence device and reflects light of other polarization directions. The lens array splits the incident light into first and second visual fields. The display panel displays an image.
Abstract:
광원쪽에서 입사된 광빔을 그 높이 방향 크기를 축소하여 도파시킨 후에 수평 평면에 대해 45°미만의 각을 이루는 면에서 높이 방향으로 반사시키도록 구성되어 광빔의 축소없이 광학계의 높이를 낮출 수 있도록 된 복합 반사프리즘 및 이를 채용하여, 광원쪽에서 복합 반사프리즘으로 입사되는 큰 직경의 입사 광빔이 액츄에이터 하단을 그 직경보다 낮게 통과하고, 제2프리즘의 제4면에서 반사되면서 원래의 광빔 직경으로 복원될 수 있어, 원하는 개구수를 달성하면서도 소형/박형화가 가능한 광픽업장치가 개시되어 있다.
Abstract:
A high resolution 2D/3D compatible display apparatus is provided to adopt various kinds of display devices such as an LCD panel or a self-emission display device and to be expanded into a multi-view type display apparatus. A high resolution 2D/3D compatible display apparatus(100) includes a display panel(120), a lenticular lens array(140), and a spatial light modulator(160). The display panel arranges display devices thereon. The lenticular lens array has a plurality of lenticular lenses to emit signals separately to a left eye visual field(170) and a right eye visual field(180). The spatial light modulator has a plurality of cells which are switched by being synchronized with vertical scan time of the display panel and changed into a transparent or opaque state. The display panel sequentially displays an even field composed of even rows of data of left eye images and right eye images and an odd field composed of odd rows of data of the left eye images and the right eye images.
Abstract:
A schottky diode and its manufacturing method are provided to simply manufacturing processes without the degradation of characteristics of the schottky diode by forming the schottky diode, a PMOS transistor, an NMOS transistor or a CMOS transistor on the same semiconductor substrate. A schottky diode includes a schottky junction, an ohmic junction, an isolation region, and a well guard ring. The schottky junction(13) includes a first conductive type well and a first electrode for contacting the first conductive type well. The ohmic junction includes a first conductive type high concentration junction region and a second electrode for contacting the first conductive type high concentration junction region. The isolation region(17) is used for isolating the schottky junction and the ohmic junction from each other. The well guard ring(18) is partially overlapped with the schottky junction along an outer periphery of the schottky junction. The schottky diode, an NMOS transistor, a PMOS transistor or a CMOS transistor are formed on the same semiconductor substrate.
Abstract:
중심 파장에 차이가 있는 특정 색광을 조사하는 적어도 두 광원유니트를 포함하여 적어도 두 종류 이상의 색광을 조사하도록 마련된 복수의 광원유니트와, 상기 복수의 광원유니트에서 조사된 색광을 합성하기 위한 복수의 합성기를 포함하는 조명유니트 및 이를 채용한 화상투사장치가 개시되어 있다. 개시된 조명유니트에 의하면, 특정 색광의 광량을 증대시킬 수 있으므로, 화이트 밸런스를 향상시킬 수 있다.