摘要:
The present invention discloses a sub-pixel display structure and a liquid crystal display panel using the same. The sub-pixel display structure includes two electrode portions. One of the electrode portions can perform charge-sharing via a charge-sharing switch. At least one of the two electrode portions is further connected to an extra electrode portion. When being used in a 3D liquid crystal display panel having a patterned phase retarder film, the sub-pixel display structure can satisfy the requirement of 3D view angle by making the extra electrode portion to be shielded by black matrix, and the two electrode portions still remain operatable so that a color washout phenomenon under a large viewing angle can be reduced even in a 3D liquid crystal display panel.
摘要:
The present invention provides a three-dimensional display device and drive method thereof. The three-dimensional display device comprises: a plurality of pixels arranged in matrix, gate driver and source driver; wherein the source driver supplies a constant drive voltage to keep the fourth sub-pixel area stay in dark state during the scanning. In this manner, the effect of the technique is equivalent to increasing the width of the black matrix without sacrificing the aperture ratio so as to improve the vertical view angle of the three-dimensional display device.
摘要:
Disclosed is a liquid crystal display apparatus, which includes a liquid crystal display device and a liquid crystal lens. The liquid crystal lens includes a first glass substrate and a second glass substrate, and a liquid crystal layer is disposed between the first glass substrate and the second substrate. A plurality of first strip-shaped electrodes is disposed on an inner surface of the first glass substrate along a first direction. A plurality of second strip-shaped electrodes is disposed on an inner surface of the second glass substrate along a second direction. The first direction is perpendicular to the second direction. A plurality of overlapping areas is formed by the first strip-shaped electrodes and the second strip-shaped electrodes. The overlapping areas corresponding to pixels of the liquid crystal display device are utilized for implementing two-dimensional display or three-dimensional display according to voltages of the first strip-shaped electrodes and the second strip-shaped electrodes corresponding to the overlapping areas. The present invention further discloses a liquid crystal display system.
摘要:
The present invention provides a display panel and a 3D display device. The display panel comprising: a first substrate comprising multiple data lines, multiple scan lines, and multiple pixel units, wherein the pixel unit comprising three sub-pixel units, and each of the sub-pixel units electrically connects to the same data line sequentially, and each of the sub-pixel units electrically connects to the corresponding scan line, and the scan line corresponding to at least one of the sub-pixel unit and the scan line corresponding to the first sub-pixel unit of the adjacent next pixel unit are disposed side by side; and a second substrate disposed correspondingly to the first substrate and comprising a first black matrix disposed correspondingly to the scan lines. In the present invention, the scan lines corresponding to the multiple sub-pixels are disposed side by side such that increasing the width of the first black matrix between adjacent pixel units and vertical viewing angle and do not reduce the aperture ratio.
摘要:
The present invention discloses a method of driving a 3D LCD. The 3D LCD includes N data lines and 2M scan lines. The driving method includes that scanning two adjacent scan lines of 2M scan lines once a time in order in a first scanning period while outputting data correspondent to a first frame to the N data lines, and turning even number of the 2M scanning lines on in order in a second scanning period while outputting data of a second frame to the N data lines, wherein the first frame is for user's one eye, and the second frame is for user's the other eye.
摘要翻译:本发明公开了一种驱动3D LCD的方法。 3D LCD包括N条数据线和2M条扫描线。 该驱动方法包括:在第一扫描周期内依次扫描2M扫描线的两条相邻的扫描线,同时向N条数据线输出与第一帧对应的数据,并顺序转动偶数个2M条扫描行 在第二扫描期间,同时向所述N条数据线输出第二帧的数据,其中,所述第一帧用于用户的一只眼睛,并且所述第二帧用于另一只眼睛。
摘要:
The present invention provides a display panel and a 3D display device. The display panel comprising: a first substrate comprising multiple data lines, multiple scan lines, and multiple pixel units, wherein the pixel unit comprising three sub-pixel units, and each of the sub-pixel units electrically connects to the same data line sequentially, and each of the sub-pixel units electrically connects to the corresponding scan line, and the scan line corresponding to at least one of the sub-pixel unit and the scan line corresponding to the first sub-pixel unit of the adjacent next pixel unit are disposed side by side; and a second substrate disposed correspondingly to the first substrate and comprising a first black matrix disposed correspondingly to the scan lines. In the present invention, the scan lines corresponding to the multiple sub-pixels are disposed side by side such that increasing the width of the first black matrix between adjacent pixel units and vertical viewing angle and do not reduce the aperture ratio.
摘要:
The present disclosure relates to a pair of 3D glasses and a 3D video playing apparatus. A quarter-wave phase plate is provided at the end of a liquid crystal display (LCD) and the end of the pair of 3D glasses respectively so that the light propagates in the form of the circularly polarized light from a 3D display device to the pair of 3D glasses. Thereby, the technical shortcoming of a decreased luminance of an image or even failure to form an image due to an inappropriate angle included between the pair of 3D glasses and the 3D display device is overcome.
摘要:
The present invention provides a display panel and a 3D display device. The display panel comprising: a first substrate comprising multiple data lines, multiple scan lines, and multiple pixel units, wherein the pixel unit comprising three sub-pixel units, and each of the sub-pixel units electrically connects to the same data line sequentially, and each of the sub-pixel units electrically connects to the corresponding scan line, and the scan line corresponding to at least one of the sub-pixel unit and the scan line corresponding to the first sub-pixel unit of the adjacent next pixel unit are disposed side by side; and a second substrate disposed correspondingly to the first substrate and comprising a first black matrix disposed correspondingly to the scan lines. In the present invention, the scan lines corresponding to the multiple sub-pixels are disposed side by side such that increasing the width of the first black matrix between adjacent pixel units and vertical viewing angle and do not reduce the aperture ratio.
摘要:
The present invention discloses a 3D display device adopting a half-source driving structure. The 3D display device includes a liquid crystal display panel. Gate lines and data lines of the liquid crystal panel are crossed with each other and define multiple pixel regions. Each gate line is bent to have a plurality of arched portions that each arched portion corresponds in position to one pixel region and forms an accommodating area. A switching element in each one of the pixel regions is mounted in the corresponding accommodating area and connected to a pixel electrode. Because the accommodating areas formed by the gate lines can accommodate switching elements, light-exiting positions of the pixel electrodes in adjacent pixel regions can be in line with each other to avoid a color washout problem when the phase retarder film is mounted with a positional error.
摘要:
The present invention discloses a 3D display device adopting a half-source driving structure. The 3D display device includes a liquid crystal display panel. Gate lines and data lines of the liquid crystal panel are crossed with each other and define multiple pixel regions. Each gate line is bent to have a plurality of arched portions that each arched portion corresponds in position to one pixel region and forms an accommodating area. A switching element in each one of the pixel regions is mounted in the corresponding accommodating area and connected to a pixel electrode. Because the accommodating areas formed by the gate lines can accommodate switching elements, light-exiting positions of the pixel electrodes in adjacent pixel regions can be in line with each other to avoid a color washout problem when the phase retarder film is mounted with a positional error.