Abstract:
A plasma display panel includes first and second substrates arranged facing each other, barrier ribs between the first and second substrates, the barrier ribs defining a displaying domain including discharge cells and a non-displaying domain, and first and second discharge electrodes, each discharge electrode including a discharge portion in the displaying domain and an end portion in the non-displaying domain, the discharge electrodes being inside the barrier ribs, wherein a thickness of a portion of a barrier rib covering a portion of a side of an end portion is greater than a thickness of a portion of the barrier rib covering a portion of a side of a discharge portion.
Abstract:
A plasma display panel having an electrode structure that can reduce the damaging of a fluorescent layer that generates green light by ion sputtering is disclosed. The plasma display panel includes: a rear substrate; a front substrate disposed apart from the rear substrate; a plurality of barrier ribs that define discharge cells of blue, green and blue light together with the rear substrate and the front substrate and disposed between the rear substrate and the front substrate; a plurality of sustain electrode pairs extended across the discharge cells; a plurality of address electrodes extended across the discharge cells to cross the sustain electrode pairs; a first dielectric layer that covers the sustain electrode pairs; a second dielectric layer that covers the address electrodes; a plurality of fluorescent layers of red, green, and blue light disposed in each of the discharge cells of red, green and blue light; and a discharge gas filled in the discharge cells, wherein each of the sustain electrodes comprises a bus electrode extended across the discharge cells, main body unit disposed apart from the bus electrode toward the inside of the discharge cell, and a connection unit that connects the bus electrode and the main body unit, the connection unit is disposed apart from the barrier ribs that define the green discharge cells.
Abstract:
A plasma display panel. A first substrate and a second substrate are provided opposing one another with a predetermined gap therebetween. Address electrodes are formed on the second substrate. Barrier ribs are mounted between the first substrate and the second substrate, the barrier ribs defining a plurality of discharge cells. Also, red, green, and blue phosphor layers are formed within each of the discharge cells. Discharge sustain electrodes are formed on the first substrate. The barrier ribs comprise first barrier rib members formed substantially parallel to the direction of the address electrodes, and second barrier rib members obliquely connected to the first barrier rib members and intersecting over the address electrodes. The second barrier rib members are formed to different widths according to discharge cell color such that red, green, and blue discharge cells have different volumes.
Abstract:
A plasma display panel includes opposing first and second substrates provided with a predetermined gap therebetween. Address electrodes are formed on the first substrate. Barrier ribs are mounted in the gap between the first and second substrates to define discharge cells. Phosphor layers are formed within each discharge cell. Sustain electrodes are formed on the second substrate along a direction perpendicular to the address electrodes. The sustain electrodes include scan electrodes and common electrodes. One scan electrode is formed for each row of the discharge cells formed along the direction perpendicular to the address electrodes, and two common electrodes are formed for each such row of the discharge cells. Furthermore, each common electrode is shared among adjacent rows of the discharge cells. The common electrodes are mounted corresponding to non-discharge regions.
Abstract:
A plasma display panel (PDP) that improves a transmittance rate of visible rays, prevents address electrodes from producing a lot of heat, and reduces the occurrence of afterimages from the PDP, and a plasma display apparatus using the PDP are provided. The PDP includes: a substrate through which visible rays displaying an image are transmitted; a plurality of electrode buried walls arranged below the substrate and defining discharge cells; a plurality of pairs of discharge electrodes spaced apart from each other in the electrode buried walls and performing a discharge in the discharge cells; a sealing member arranged below the electrode buried walls, sealing a discharge gas together with the substrate, and formed of a material having a higher thermal conductivity than that of the substrate; and phosphor layers arranged in the discharge cells.
Abstract:
A discharge display apparatus having a discharge display panel and a driving device that drives the discharge display panel is disclosed. The discharge display panel includes a partition-wall plate, address electrodes, common electrodes, and scan electrodes. The partition-wall plate has through-cells and is disposed between first and second substrates. The address electrodes, the common electrodes, and the scan electrodes are all ring-shaped electrodes which surround the through-cells and are disposed in the partition-wall plate. The driving device divides a single frame into a plurality of subfields and performs addressing and sustaining operations in a single subfield. The addressing operation is performed by driving the address electrodes and the scan electrodes, and the sustaining operation is performed by driving the common electrodes and the scan electrodes.
Abstract:
Provided is a plasma display panel and a method of manufacturing the same. The method of manufacturing the plasma display panel includes preparing a front substrate and a rear substrate and arranging the front and rear substrates to face each other; forming an exhaust hole in a discharge sheet; disposing the discharge sheet between the front and rear substrates; sealing a space between the front and rear substrates by coating a sealing member along edge surfaces of the front and rear substrates; and vacuuming the space between the front and rear substrates through an exhaust pipe formed on an outer surface of one of the front and rear substrates and connected to the exhaust pipe. The exhaust hole formed between the substrates has greater diameter than the discharge cells defined by the dielectric walls. Therefore, an inner region of the front substrate and an inner region of the rear substrate are subjected to substantially the same force.
Abstract:
Provided is a plasma display panel (PDP) in which terminals of discharge electrodes are stably disposed. The PDP includes: first and second substrates facing each other and separated by a predetermined distance; a first group of barrier ribs interposed between the first and second substrates, and defining a plurality of discharge cells; pairs of discharge electrodes, each including: a discharge unit arranged in the first group of barrier ribs and causing a discharge; a terminal which is disposed outside the first group of barrier ribs; and a connector which connects the discharge unit and the terminal; and a support element which supports a portion of at least one connector exposed to the outside of the first group of barrier ribs.
Abstract:
A method of selectively performing a reset discharge in a plasma display panel (PDP) and a plasma display device driven by the method are disclosed. In one embodiment, a display image is represented by a plurality of unit frames, and each unit frame is divided into a plurality of sub-fields, and each of the sub-fields includes, in order, a reset period when all discharge cells are initialized, an address period when a discharge cell that is turned on or off is selected from all discharge cells, and a sustain period when a sustain discharge is performed for a discharge cell selected to be turned on in the address period. Furthermore, a reset discharge is performed to initialize all discharge cells in the reset period of the first sub-field of the unit frame, and to initialize only discharge cells, in which a sustain discharge has been previously performed in the sustain periods, in the reset periods of the sub-fields after the second sub-field.
Abstract:
Provided is a plasma display panel having improved electrode-connecting units so as to achieve stable electrical connection between an electrode sheet and a substrate. Provided is also a plasma display panel which simplifies the manufacturing process by forming all of the electrode-connecting units on the same substrate, thereby reducing the manufacturing costs. The plasma display panel includes a pair of substrates spaced apart from each other and arranged substantially parallel to each other, an electrode sheet arranged between the two substrates, in which a barrier structure that define discharge cells where discharge occur and electrodes to which a voltage is applied are formed, sheet-side terminal units arranged outside the electrode sheet and electrically connected to the electrodes, substrate-side terminal units arranged outside one of the two substrates and electrically connected to the sheet-side terminal units, and electrode-connecting units interposed between the sheet-side terminal units and the substrate-side terminal units.