Abstract:
Contrast enhancement films for a direct-view display include a substrate having first and second opposing sides, an array of optical microstructures on the first side, and an optically blocking film including an array of apertures on the second side. The contrast enhancement film is configured to mount between a direct-view display panel and an outer panel of the direct-view display.
Abstract:
A display apparatus includes a display and a display filter, wherein the display filter includes a base film, a plurality of reflective elements, and a plurality of light absorbing elements, wherein each of the light absorbing elements corresponds to a reflective element.
Abstract:
Provided are a method of manufacturing a display device including an oxidized porous silicon (OPS) material-based emission source and a display device manufactured using the method. A first and second panels, each of which includes one of sodium oxide (Na2O) and potassium oxide (K2O), are prepared. An OPS material-based emission source is formed on the first panel, and a silicon spacer enclosing the OPS material-based emission source is formed on the first panel. The second panel is anodic bonded to the silicon spacer, so that the first and the second panels are assembled together.
Abstract translation:提供了一种制造包括氧化多孔硅(OPS)材料基发射源和使用该方法制造的显示装置的显示装置的方法。 制备了包括氧化钠(Na 2 O 2)和氧化钾(K 2 O 2)中的一种的第一和第二面板。 在第一面板上形成基于OPS材料的发射源,并且在第一面板上形成包围基于OPS材料的发射源的硅间隔物。 第二面板阳极结合到硅衬垫上,使得第一面板和第二面板组装在一起。
Abstract:
A plasma display panel reduces noise caused by the formation of minute gaps between the first substrate and the second substrate. The plasma display panel includes a first substrate and a second substrate opposing one another with a predetermined gap therebetween, and a sealant formed on opposing surfaces of the first substrate and the second substrate. The sealant is formed around outer circumferential areas of the first substrate and the second substrate to seal the first substrate and the second substrate together. The sealant is formed of regions having a first width of substantially the same size and of regions having a second width greater than the size of the first width.
Abstract:
The present invention is in the field of plasma display panel filters, and more specifically the present invention is in the field of multiple layer plasma display panel filters that can be effectively mounted directly to the front glass surface of a plasma display panel module.
Abstract:
Ribs for an image display medium, which ribs can be retained between a pair of substrates. These image display medium ribs are formed by liquid injection molding (LIM molding), utilizing a heat-curable epoxy resin. In addition, the image display medium ribs are formed so as to have a cell-form arrangement.
Abstract:
A protective plate for a plasma display including a conductive substrate for protecting the plasma display. The conductive substrate includes a substrate having a glass plate and a conductive film formed on a resinous film bonded to the glass plate substrate. The plasma display also includes an electrode in electrical contact with the conductive substrate.
Abstract:
This invention relates to a filter for a plasma display panel having excellent re-workability, durability, and reliability and a plasma display panel including the same. The filter for a plasma display panel of this invention is characterized by including an acrylic pressure-sensitive adhesive composition layer having adhesion after the lapse of a predetermined time period that is at least 1.5 times as great as initial adhesion. Since the inventive filter for a plasma display panel has low initial adhesion, when a defect occurs in a process of attaching the filter for a plasma display panel to an upper glass plate of the panel, a separation process may be easily conducted, and also adhesion increases with the lapse of time, thus exhibiting good durability and reliability without air bubbling and peeling.
Abstract:
A plasma display device including a protective layer disposed adjacent to a front surface of a plasma display panel, a chassis base, wherein a front surface of the chassis base is disposed adjacent to a rear surface of the plasma display panel, circuit units disposed on a rear surface of the chassis base and a conductive member that electrically connects the protective layer to the chassis base, wherein the protective layer serves to filter electromagnetic radiation emitted from the plasma display panel.
Abstract:
This document relates to a display apparatus, and more particularly, to a plasma display panel and a mono-layer optical filter for a PDP and manufacturing method thereof. A plasma display apparatus according to an embodiment of the present invention comprises a front panel, an EMI shielding film comprising metal meshes formed in a mesh type, for shielding EMI incident from the front panel, and a medium layer formed around the metal meshes, for shielding NIR, and an AR/hard coating film coated on at least one surface of the EMI shielding film, for shielding the reflection of light incident from the outside. A method of manufacturing a mono-layer optical filter of a PDP according to an embodiment of the present invention comprises the steps of inputting metal meshed in which a conductive material is formed in a mesh type into a molding unit, injecting a mixture in which resin, a NIR absorbing dye and a color compensating dye are mixed into the molding unit, performing a transparency process so that light can pass, erupting the mixture on which the transparency process has been performed in a thin film form, hardening the mixture and then forming an EMI shielding film, and coating an AR/hard coating film for preventing the reflection of light on one surface of the formed EMI shielding film.