Abstract:
Disclosed is a stereoscopic image display panel and a stereoscopic image display device including the same, which minimize the degradation of image quality due to crosstalk between left and right images discerned by a viewer, and have enhanced brightness and aperture ratio, wherein the stereoscopic image display panel comprises a first substrate including a plurality of data lines formed at certain intervals apart, a plurality of gate lines formed to intersect the data lines, and first and second pixel groups formed adjacently to each other with two adjacent gate lines therebetween; and a second substrate including a light shield layer formed at one side and other side of each of the first and second pixel groups to have different overlapped widths, and defining an open area of each of the first and second pixel groups, wherein the first and second pixel groups display different stereoscopic images, respectively.
Abstract:
Disclosed is a stereoscopic image display panel and a stereoscopic image display device including the same, which minimize the degradation of image quality due to crosstalk between left and right images discerned by a viewer, and have enhanced brightness and aperture ratio, wherein the stereoscopic image display panel comprises a first substrate including a plurality of data lines formed at certain intervals apart, a plurality of gate lines formed to intersect the data lines, and first and second pixel groups formed adjacently to each other with two adjacent gate lines therebetween; and a second substrate including a light shield layer formed at one side and other side of each of the first and second pixel groups to have different overlapped widths, and defining an open area of each of the first and second pixel groups, wherein the first and second pixel groups display different stereoscopic images, respectively.
Abstract:
A method of authoring experiential learning content includes displaying an authoring window to author the experiential learning content when a request is made to author the experiential learning content; and creating a virtual world by loading and arranging 3D objects and a 2D objects, in the authoring window, which corresponds to a scenario of the experiential learning content. Further, the method includes defining an Action-zone that determines a position where a user is merged in the virtual world; and defining a state by dividing the scenario into a plurality of steps as time goes by based on the scenario to play the experiential learning content from a specific time point, respectively. Furthermore, the method includes defining a processing routine of an event occurred in the state; and authoring the experiential learning content according to the defined Action-zone, the defined state, and the defined processing routine.
Abstract:
A liquid crystal display device includes a liquid crystal display panel having liquid crystal cells, a gate driver for driving gate lines of the liquid crystal display panel, a data driver for driving a first to (2m+1)th data lines of the liquid crystal display panel, wherein the liquid crystal display panel includes first thin film transistors connected to odd numbered data lines arranged on each horizontal line in zigzag with reference to the odd numbered data lines, second thin film transistors connected to even numbered data lines arranged on each horizontal line in zigzag with reference to the even numbered data lines, pixel electrode connected to the first thin film transistor for having a first data signal supplied thereto through the odd numbered data lines, and a common electrode connected to the second thin film transistor for having a second data signal supplied thereto through the even numbered data line and forming a horizontal electric field together with the pixel electrode.
Abstract:
A liquid crystal display device includes a plurality of liquid crystal cells on a substrate, a plurality of drive lines extending along first and second directions and connected to the plurality of liquid crystal cells, a plurality of pad lines extending from each of the plurality of drive lines at a first angle from one of the first and second directions, and a plurality of pads extending at the first angle and connected to each of the plurality of pad lines for supplying external drive signals.
Abstract:
An LCD array substrate includes a plurality of gate lines arranged in a first direction; a plurality of data lines arranged in a second direction to cross the plurality of gate lines; a semiconductor layer formed at overlapping regions of the gate lines and the data lines and extending a predetermined length from the overlapping regions over the gate lines; a drain electrode spaced apart from the overlapping regions of the gate and data lines and disposed partially in contact with the semiconductor layer, the drain electrode having ends extended beyond the semiconductor layer and the gate line; and a pair of pixel electrodes disposed on opposing sides of the gate line and electrically connected with the drain electrode.
Abstract:
A liquid crystal display device includes a plurality of liquid crystal cells on a substrate, a plurality of drive lines extending along first and second directions and connected to the plurality of liquid crystal cells, a plurality of pad lines extending from each of the plurality of drive lines at a first angle from one of the first and second directions, and a plurality of pads extending at the first angle and connected to each of the plurality of pad lines for supplying external drive signals.
Abstract:
A method of manufacturing a liquid crystal display device is provided. The method of manufacturing a liquid crystal display device includes performing an overlapping partitioned exposure process in one or two processes selected from a mask process of forming a gate line, a mask process of forming an active layer, a mask process of forming a source/drain electrode and a mask process of forming a contact hole on a passivation layer.
Abstract:
After the attachment process, a substrate etching process, in which the outer surfaces of the upper and lower substrates are etched to reduce the thickness of the substrates, is performed according to the desired lightening of the substrate. However, since a main seal pattern can be damaged during the substrate etching process, a method of preventing the damage, in which a sub-seal pattern is formed, is suggested. However, if a plurality of unit liquid crystal cells is formed on one substrate, deterioration resulting from a low margin for the sub-seal patterns can occur so that a yield is decreased. In an embodiment according to the present invention, damage of the main seal pattern from the etching solution during the substrate etching process is prevented by the formation of the sub-seal patterns in the exterior of the main seal pattern, and air of the cell interior are easily vented due to the air vent portion having a proper seal pattern for ventilation. Therefore, the yields of the unit liquid crystal cells are increased.
Abstract:
A liquid crystal display device (LCD) includes a liquid crystal panel displaying an image; a transparent plate disposed on the liquid crystal panel; a support member supporting the liquid crystal panel; and a fixing member disposed on the transparent plate, the fixing member coupled with the support member to fix the liquid crystal panel and the transparent plate in place, and to protect the liquid crystal panel and the transparent plate.