摘要:
A plasma display includes first and second substrates provided opposing one another. A plurality of first electrodes is formed on a surface of the first substrate facing the second substrate. A first dielectric layer is formed covering the first electrodes. A plurality of main barrier ribs is formed on a surface of the second substrate facing the first substrate, the main barrier ribs defining a plurality of discharge cells. A plurality of electrode barrier ribs is formed on the second substrate between the main barrier ribs. Phosphor layers are formed within the discharge cells, and discharge gas included in the discharge cells, where the main barrier ribs are formed integrally to the second substrate, and a second electrode and a second dielectric layer are formed, in this order, on a distal end of each of the electrode barrier ribs. A method of manufacturing the plasma display includes the processes of integrally forming a plurality of main barrier ribs on a plasma display substrate, the main barrier ribs defining a plurality of discharge cells, forming electrode barrier ribs between the main barrier ribs, forming an electrode on a distal end of each of the electrode barrier ribs, and forming a dielectric layer on each of the electrodes.
摘要:
According to embodiments of the invention, a glass paste composition for a dye sensitized solar cell includes a glass frit, an organic binder, and an organic solvent.
摘要:
A gas discharge display device and a method of manufacturing the same. The gas discharge display device includes first and second substrates provided opposing one another. First electrodes are formed on the second substrate, and second electrodes are formed on the first substrate. Barrier ribs are formed between the second electrodes and define concave regions and discharge cells. Further, terminals are formed to an exterior of the discharge cells and are connected to the second electrodes. Gradient surfaces are formed along one end of the concave regions. Also, connecting electrodes are formed on the gradient surfaces for connection to the terminals and the second electrodes. The method includes forming the concave regions using a nozzle for ejecting powder, forming the gradient surfaces using a difference in a cutting rate between a center axis and a periphery of the nozzle, and forming the connecting electrodes.
摘要:
A plasma display includes first and second substrates provided opposing one another. A plurality of first electrodes is formed on a surface of the first substrate facing the second substrate. A first dielectric layer is formed covering the first electrodes. A plurality of main barrier ribs is formed on a surface of the second substrate facing the first substrate, the main barrier ribs defining a plurality of discharge cells. A plurality of electrode barrier ribs is formed on the second substrate between the main barrier ribs. Phosphor layers are formed within the discharge cells, and discharge gas included in the discharge cells, where the main barrier ribs are formed integrally to the second substrate, and a second electrode and a second dielectric layer are formed, in this order, on a distal end of each of the electrode barrier ribs. A method of manufacturing the plasma display includes the processes of integrally forming a plurality of main barrier ribs on a plasma display substrate, the main barrier ribs defining a plurality of discharge cells, forming electrode barrier ribs between the main barrier ribs, forming an electrode on a distal end of each of the electrode barrier ribs, and forming a dielectric layer on each of the electrodes.
摘要:
A plasma display panel (PDP) improves discharge efficiency of each discharge cell without reduction of the opening area of the discharge cells corresponding to each pixel. The PDP includes a front substrate, a rear substrate facing the front substrate, and a barrier rib disposed between the front substrate and the rear substrate for partitioning a plurality of discharge cells. The barrier rib includes a plurality of first and second barrier ribs, first electrodes, second electrodes, and branch electrodes. The first barrier ribs are formed in a first direction, and the second barrier ribs are formed in a second direction which crosses the first direction. The first electrodes are formed in the first barrier ribs at an interval of N first barrier ribs among the first barrier ribs arranged in the first direction, where N is a natural number. The second electrodes are formed in the second barrier ribs so as to cross the first electrodes three-dimensionally. The branch electrodes are disposed in the second barrier ribs, overlapping with at least one of the second electrodes, and extending from the first electrodes.
摘要:
A Plasma Display Panel (PDP) having an increased coating area of a phosphor material and improved brightness and efficiency includes: a front substrate through which light is transmitted and a rear substrate facing the front substrate and in which a plurality of discharge spaces are arranged between the front substrate and the rear substrate; a first electrode arranged on the front substrate; a second electrode arranged on the rear substrate to cross the first electrode and to generate a discharge within one of the discharge spaces between the first electrode and the second electrode; a dielectric layer arranged on the rear substrate facing the discharge spaces and having a plurality of concavo-convex portions in a region defined by the discharge spaces; and a phosphor layer arranged on the concavo-convex portions.
摘要:
A plasma display panel is constructed with sustain electrodes including a plurality of electrically conductive particles. The electrically conductive particles include ceramic particles and coating layers that coat the surface of the ceramic particles, and include at least one selected from the group consisting of metals, alloys, and mixtures thereof. The electrically conductive particles of the coating layers disposed to be adjacent each other are connected to each other to form a current path through the whole of each sustain electrode.
摘要:
A method is for driving a gas discharge type light emission apparatus having an electrode block line(s) constituted by electrode blocks. Scanning of adjacent cathodes, one being in one of two adjacent electrode blocks and the other being in the other electrode block, is effected such that subsequent to the scanning of one adjacent cathode, at least one cathode other than the other adjacent cathode is scanned prior to the scanning of the other adjacent cathode. By the method, crosstalk between adjacent electrode blocks is prevented without the provision of a partitioning member between the adjacent electrode blocks. A gas discharge type light emission apparatus includes an anode(s) on a front substrate and cathodes on a rear substrate. The anodes and cathodes face one another via a discharge gas medium to constitute discharge cells. The anodes are made of a light-blocking material and including windows at positions corresponding to the cathodes. The windows are also provided at positions corresponding to boundaries between adjacent anodes. By providing windows, discharge light emission having a clear shape and a high resolution can be obtained.
摘要:
A gas discharge panel with a plurality of electrically conductive oxide cathode electrodes and a plurality of anode electrodes that are arranged in a matrix in a sealed container. This electrically conductive oxide cathode electrode is formed using, for example, lanthanum chromite, lanthanum calcium chromite, alumina-doped zinc oxide, or antimony-doped tin oxide.