Abstract:
A liquid crystal display contains a light source, a light guide panel that directs light from the light source towards a display panel, and optical sheets containing a diffusion sheet that spreads the light from the light guide panel and at least one prism sheet that redirects light from the diffusion sheet in a direction substantially perpendicular to the display panel. The optical sheets contain a region adjacent to the light source that has a hardened part that substantially prevents heat from being transferred to a display region of the optical sheet corresponding to the display region of the display panel and minimizes the temperature difference across the display region. The hardened part is formed on at least opposing sides of the optical sheets, overlaps a non-display region of the display panel and is bent or contains a convex part that projects towards the display panel.
Abstract:
An electrophoretic display (EPD) device and a method of manufacturing the EPD are disclosed. An EPD device includes a first substrate, a second substrate, and an electrophoretic layer. The first substrate includes a plurality of pixel areas, and each pixel area includes a first electrode. The second substrate faces the first substrate and includes a second electrode to form an electric field with the first electrode and a color filter corresponding to the first electrode. The electrophoretic layer is disposed between the first substrate and the second substrate and is controlled by an electric field formed by the first electrode and the second electrode to display an image. An end portion of the color filter extends beyond an end portion of the first electrode.
Abstract:
Disclosed is a liquid crystal display panel and manufacturing method thereof. The liquid crystal display panel includes a thin film transistor substrate, an opposite substrate facing the thin film transistor substrate, a pixel electrode formed on the thin film transistor substrate, and a common electrode formed on the opposite substrate. At least one of the pixel electrode and the common electrode includes conductive nanowires and a conductive filler.
Abstract:
A liquid crystal display contains a light source, a light guide panel that directs light from the light source towards a display panel, and optical sheets containing a diffusion sheet that spreads the light from the light guide panel and at least one prism sheet that redirects light from the diffusion sheet in a direction substantially perpendicular to the display panel. The optical sheets contain a region adjacent to the light source that has a hardened part that substantially prevents heat from being transferred to a display region of the optical sheet corresponding to the display region of the display panel and minimizes the temperature difference across the display region. The hardened part is formed on at least opposing sides of the optical sheets, overlaps a non-display region of the display panel and is bent or contains a convex part that projects towards the display panel.
Abstract:
A method of fabricating a flexible display device, the method including applying an adhesive layer including polyimide on a carrier substrate, laminating a flexible substrate on the adhesive layer, and separating the carrier substrate from the flexible substrate by irradiating a laser beam or light onto the adhesive layer.
Abstract:
An apparatus and method for manufacturing a display device substrate are provided. In one embodiment, the apparatus comprises a clamp for clamping an edge of a plastic substrate, and a tension member applying tension along a surface of the plastic substrate by interacting with the clamp to strain the plastic substrate. Advantageously, the flexible plastic substrate is substantially prevented from deflecting in a manufacturing process thereby reducing defects in the display device substrate.
Abstract:
An LCD includes a thin film display device having a plastic insulating substrate in which lifting of the edge of the thin film is avoided which includes a display region and a non-display region; a gate line assembly formed on the plastic insulating substrate with the use of a shadow mask disposed over the plastic insulating substrate; a gate insulating layer formed on the gate line assembly in the display region; a data line formed on the gate insulating layer and a data pad formed in the non-display region and spaced away from the gate insulating layer; and a passivation layer formed on the data line.
Abstract:
A method of manufacturing a flexible display is provided, which includes adhering a first flexible mother substrate to a first supporter, cutting the first flexible mother substrate to divide the first flexible mother substrate into a plurality of first substrates, and forming a thin film pattern on the first substrates. Thus, the production yield of a flexible display device may be improved and the manufacturing process is more precise and easier.
Abstract:
Systems, methods, and computer-readable media for improving user navigation of a multi-page article on a small screen user device. In embodiments, as a user progresses through the multi-page article, pages and/or lines of text of the multi-page article are cached. In response to a user request to view the multi-page article in a full-page format, the cached content is compared against text of the full-page document and used to determine a presentation of the text that displays nonduplicative content to the user.
Abstract:
Disclosed herein is a novel gluconacetobacter strain having cellulose producing activity. Specifically, the present invention relates to a novel gluconacetobacter strain producing nano-structured cellulose in a highly efficient manner. The cellulose produced by the strain, due to its superb thermodynamic properties, can be characterized as nano-structured bacterial cellulose and therefore utilized as a bio-nano-fiber. Particularly, the cellulose can be impregnated with a resin to form a cellulose-based resin which can be effectively adapted for a substrate for a liquid crystal display (LCD).