Abstract:
A plasma display device includes a plasma display panel, a chassis base and circuit board assemblies mounted on the chassis base. The plasma display panel includes: a front substrate, a rear substrate, and a plurality of electrodes between the front and rear substrates; and an electrode pattern formed on the rear substrate and separate from the plurality of electrodes. The chassis base is adjacent the rear substrate. The electrode pattern is configured for transmitting power and signals utilized to drive the plurality of electrodes from at least one of the plurality of circuit board assemblies.
Abstract:
A plasma display panel (PDP) includes a first substrate (20) and a second substrate (10) disposed opposite to each other and having a plurality of discharge cells (18) therebetween, and display electrodes (25) disposed in parallel and extending in a predetermined direction on the first substrate, wherein each of the display electrodes respectively includes a plurality of line portions (21,23) spaced apart from each other, and an extension portion (21a,23a) connected to each line portion of the plurality of line portions and extending in the predetermined direction, wherein a first width of the extension portion at a boundary between the extension portion and the plurality of line portions is about equal to a distance between outer edges of outermost line portions the plurality of line portions.
Abstract:
Provided is a method of manufacturing a plasma display device. The device comprises a plasma display panel that has a plurality of terminals formed on each of at least two sides (38,39;40,41) thereof, and a plurality of circuit boards (27;28) to be connected to the terminals. In application of adhesive to the front faces and back faces of the circuit boards (27;28), the adhesive is applied to one of the sides (38;39) having the circuit boards (28) disposed at smaller intervals, and then to one of the sides (40;41) having the circuit boards (27) disposed at larger intervals. Alternatively, the adhesive is applied to a long side (38;39) of the plasma display panel, and then to a short side (40;41) thereof.
Abstract:
A front film (2) for a flat display panel (1) includes a sheet body having the form of a sheet to cover a display surface of a flat display panel. The sheet body has a repair wire (24) attached to a part thereof for repairing an electrode of the flat display panel.
Abstract:
There is disclosed a connection member for connection to an integrated driver to affect space and cost reduction, and a driving device of a plasma display panel. A driving device of a plasma display panel according to an embodiment of the present invention includes an integrated driving circuit installed at one side of a rear substrate to integrally driving a scan electrode and a common electrode which are arranged on a front substrate; an electrode terminal part provided at a location opposite to the integrated driving circuit on the front substrate to lead to the scan electrode and the common electrode; and a connection member, wherein each of both joining parts has a two tier connection structure of a scan electrode pad and a common electrode pad, one joining part is connected to the integrated driving circuit, and the other joining part is connected to the electrode terminal part.
Abstract:
A plasma display panel includes a pair of substrates disposed to face each other, with a discharge space sandwiched therebetween; plural surface-discharge electrode pairs comprising scanning electrodes and common electrodes formed at an inner surface of the front substrate (one of the pair of substrates); and a dielectric layer covering the surface-discharge electrode pairs with respect to the discharge space. Extraction electrode portions of the scanning electrodes are led to an end portion of one side of the front substrate. Extraction electrode portions of the common electrodes are led to an end portion of the other side of the front substrate. An island-shaped assembly electrode terminal portion that commonly connects the extraction electrode portions of the common electrodes is disposed. Plural micro openings are defined in the assembly electrode terminal portion to form a mesh.
Abstract:
There are provided a plasma display panel (PDP) with improved energy recovery efficiency by which EMI generated at the PDP can be offset by an electrical field generated during a sustained discharge, the number of terminals connected to common electrodes (12a) can be reduced by minimizing the current flowing through the common electrodes (12a) without applying a voltage to the common electrodes (12a) during the sustained discharge, and the PDP can be tiled by minimizing the non-luminous area (20a) of the PDP, and a driving method thereof. In the PDP with improved energy recovery efficiency, connection terminals between scanning/common electrodes (12b,12a) and external driving circuits are formed only at a non-luminous area (20b) at one end of a front glass substrate of a three-electrode face discharge PDP, with the non-luminous area (20a) of the other end greatly reduced, positive and negative discharge sustain pulses are alternately applied to an even-numbered scanning electrode (12b) and an odd-numbered scanning electrode (12b), both electrodes are adjacent to each other, thereby suppressing an increase in impedance caused by the non-luminous area.
Abstract:
A plasma display device is provided with one substrate having a plurality of electrode drawing-out portions extending up to a side end thereof for applying an AC voltage to X side electrodes each independently, a second substrate having a plurality of electrode terminal portions formed independently on its electrode-disposed surface, the plural electrode terminal portions being electrically connected respectively to the plural electrode drawing-out portions by a connector portion. The connection of each of the X and Y electrodes with an external power source can thus be made on only the Y side electrode-disposed surface of the second substrate. Besides, the shape of the substrates is simplified.