Abstract:
A plasma display panel includes a front substrate and a rear substrate facing each other, two or more electrode sheets having apertures or openings arranged in a uniform pattern for forming discharge spaces between the front substrate and the rear substrate, and including discharge electrodes surrounding at least a part of each of the discharge spaces and extending in one direction. Phosphor layers are located on the front substrate or the rear substrate to correspond to the discharge spaces. and a discharge gas filled in the discharge spaces, wherein projection portions are formed on side surfaces of the discharge electrodes and project into the discharge spaces.
Abstract:
A plasma display panel, and particularly to a surface-discharge plasma display panel that may have an electrode structure in which a pair of discharge sustain electrodes may be arranged at respective discharge cells between two substrates to make the display discharge. The plasma display panel may include igniter electrodes formed over barrier ribs extending from discharge sustain electrodes along the barrier ribs, and protruding toward the inside of discharge cells at their ends.
Abstract:
A plasma display panel (PDP) which can reduce the cost and time of manufacturing a plasma display device, and which can improve heat transfer efficiency of a plasma display device, comprises: a transparent front substrate; a rear substrate disposed parallel to the front substrate; an electromagnetic wave shielding layer fixed on the front substrate; a plurality of discharge cells defined by barrier ribs disposed between the front substrate and the rear substrate; a plurality of address electrodes extending over the discharge cells and disposed in a given direction; a rear dielectric layer covering the address electrodes; a plurality of fluorescent layers disposed in the discharge cells; a plurality of sustaining electrode pairs extending in a direction which crosses the given direction of the address electrodes; a front dielectric layer covering the sustaining electrode pairs; and a discharge gas filling the 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 and a plurality of non-discharge regions. Phosphor layers are formed within each of the discharge cells. Discharge sustain electrodes are formed on the first substrate. The non-discharge regions are formed in areas encompassed by discharge cell abscissas that pass through centers of adjacent discharge cells and discharge cell ordinates that pass through centers of adjacent discharge cells, the non-discharge regions having a width that is at least as large as a width of an end of barrier ribs. Also, a transverse barrier rib is formed extending between each pair of adjacent rows of discharge cells.
Abstract:
Example embodiments relate to a plasma display panel and a method of forming the same, having a first substrate, a second substrate, a barrier rib interposed between the first substrate and the second substrate, a plurality of grooves formed in the second substrate so as to define discharge cells, a barrier rib electrode including a discharge portion located within the barrier rib to perform a discharge, a contact portion exposed from a surface of the barrier rib, and an intermediate portion connecting the discharge portion and the contact portion, and a terminal electrode on at least one of the first and second substrates such that one end of the terminal electrode may be electrically connected to a signal transmission element and other end thereof may be electrically connected to the contact portion of the barrier rib electrode.
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 and a plurality of non-discharge regions. Phosphor layers are formed within each of the discharge cells. Discharge sustain electrodes are formed on the first substrate. The non-discharge regions are formed in areas encompassed by discharge cell abscissas and ordinates that pass through centers of each of the discharge cells. Further, each of the discharge cells is formed such that ends thereof increasingly decrease in width along a direction the discharge sustain electrodes are formed as a distance from a center of the discharge cells is increased along a direction the address electrodes are formed.
Abstract:
A plasma display panel with first and second substrates facing each other, and address electrodes formed on the second substrate. A partition wall is disposed between the first and the second substrates to separately partition a plurality of discharge cells. A phosphor layer is formed within each discharge cell. Discharge sustain electrodes are formed on the first substrate. A thickness of the phosphor layer is designed so that the resulting internal space has a shape corresponding to the diffusion shape of the plasma discharge generated within the discharge cell to optimize brightness of the image and to maximize light emission efficiency.
Abstract:
A plasma display panel (PDP) having increased exhaustion capacity, includes a first substrate, a second substrate spaced apart from the first substrate and having an exhaustion hole, first and second sealing members, and an electrode sheet with at least one exhaustion path, the electrode sheet disposed between the first substrate and the second substrate and having a discharge area and an undischarge area.
Abstract:
Disclosed is a plasma display panel where the shape of the phosphor layer within the discharge cell is optimized to enhance the discharge stability and the luminescence efficiency. In one embodiment, the plasma display panel includes a first substrate and a second substrate facing each other, display electrodes formed on the first substrate, address electrodes formed corresponding to the display electrodes, barrier ribs arranged between the first substrate and the second substrate such that discharge cells are formed at the locations where the display electrodes and the address electrodes correspond to each other, phosphor layers formed within the discharge cells, and a porous dielectric layer formed between the phosphor layers and the second substrate.
Abstract:
Provided is a plasma display panel in which failure of a terminal part structure of discharge electrodes can be prevented. The plasma display panel includes: a pair of panels which are spaced from each other with a predetermined gap therebetween which are opposed to each other; a sheet which is disposed between the pair of panels and includes barrier ribs for defining discharge cells in cooperation with the pair of panels and a dielectric part disposed at an edge of the sheet; discharge electrodes which include discharge parts generating discharge inside the barrier ribs, terminal parts formed in contact with the dielectric part and spaced from each other, and connection parts connecting the discharge parts to the terminal parts; a signal transmission member including wires which are connected to the terminal parts and are spaced from each other, a gap between the wires being smaller than the gap between the terminal parts; phosphor layers which are disposed inside the discharge cells; and discharge gas in the discharge cells. Also provided is a method of making the plasma display panel.