摘要:
A plasma display panel is disclosed. More particularly, the present invention relates to a plasma display panel, which can improve discharge stability as well as brightness and efficiency. The plasma display panel according to the present invention includes transparent electrodes (ITO electrodes) spaced in parallel to each other at a predetermined distance; and metal electrodes each formed on the transparent electrodes (ITO electrodes) in parallel to the transparent electrodes (ITO electrodes) so that the respective transparent electrodes (ITO electrodes) are inclined toward the side where the transparent electrodes face.
摘要:
An interlace-type PDP is driven by an improved driving method so as to achieve a greater operating margin, higher resolution, and higher brightness. The interlace-type PDP is driven using odd and even frames in such a manner that the cells are grouped into cell groups such that each cell group includes two or three cells which are adjacent in a direction crossing the electrode pairs, and the cells are driven in units of cell groups. The grouping of cells is performed differently for even and odd frames such that, in one type of frame, locations of two or three cells grouped into each group are shifted by one cell, in the direction crossing the electrode pairs, from the locations of cells grouped together in the other type of frame.
摘要:
A display device has centers of three sub-pixels arranged to form a triangle together and one side of the triangle is orientated in the same direction as a vertical direction of a displayed image. When a black or white vertical line is displayed, image signal data of left and right pixels adjacent to the black or white vertical line are converted into cyan-biased or magenta-biased image signal data, thereby enhancing the visibility and readability of displayed characters.
摘要:
In order to reduce reactive consumption power and enhance daylight contrast, provided is a plasma display panel including a first substrate and a second substrate that are facing and separated from each other; a plurality of barrier ribs defining a discharge space between the first substrate and the second substrate and forming a plurality of discharge cells; a plurality of X electrodes including a plurality of first extending electrode parts disposed in a stripe pattern on the first substrate, and a plurality of first protruding electrode parts protruding substantially perpendicularly from the first extending electrode parts; a plurality of Y electrodes including a plurality of second extending electrode parts disposed in parallel to the first extending electrode parts of the X electrodes on the first substrate, and a plurality of second protruding electrode parts protruding substantially perpendicularly from the second extending electrode parts, and generating a sustain discharge together with the first protruding electrode parts; a plurality of address electrodes disposed in a stripe pattern on the second substrate and substantially perpendicular to the first extending electrode parts and the second extending electrode parts; and a first dielectric layer formed on the surface of the first substrate to cover the X electrodes and the Y electrodes.
摘要:
A plasma display panel and a driving method thereof that is capable of improving a discharge efficiency as well as preventing a crosstalk. In the panel, an address electrode is included in each discharge cell making a unit pixel of the plasma display panel. A plurality of second sustain electrodes are positioned at each periphery of the discharge cell in a direction crossing the address electrode to receive a second sustaining pulse. At least one of first sustain electrode is positioned at the center of the discharge cell in a direction crossing the address electrode to receive a first sustaining pulse applied alternately with respect to the second sustaining pulse.
摘要:
An interlace-type PDP is driven by an improved driving method so as to achieve a greater operating margin, higher resolution, and higher brightness. The interlace-type PDP is driven using odd and even frames in such a manner that the cells are grouped into cell groups such that each cell group includes two or three cells which are adjacent in a direction crossing the electrode pairs, and the cells are driven in units of cell groups. The grouping of cells is performed differently for even and odd frames such that, in one type of frame, locations of two or three cells grouped into each group are shifted by one cell, in the direction crossing the electrode pairs, from the locations of cells grouped together in the other type of frame.
摘要:
A Plasma Display Panel (PDP) has an opposed discharge structure to reduce its discharge firing voltage and to enhance its luminescence efficiency. The PDP includes: a first substrate and a second substrate arranged to face each other with a space therebetween, the space between the first substrate and the second substrate being divided into a plurality of discharge cells; phosphor layers arranged in the plurality of discharge cells; first electrodes and second electrodes extending in a first direction between the first substrate and the second substrate and alternately disposed in parallel on both sides of respective discharge cells in a second direction intersecting the first direction and shared by adjacent discharge cells, the first electrodes and the second electrodes having floating portions extending toward the second substrate in a direction away from the first substrate and arranged to face one another in spaces corresponding to the respective discharge cells; and address electrodes extending in the second direction between the first substrate and the second substrate, the address electrodes having protruding portions that protrude between the floating portions of the first electrodes and the floating portions of the second electrodes.
摘要:
A plasma display panel capable of improving dark contrast. A unit light emission region is comprised of a display discharge cell in which a discharge is produced between portions of row electrodes X, Y of each row electrode pair (X, Y) opposing each other, and a reset and address discharge cell arranged in parallel with the display discharge cell, in which a discharge is produced between portions of the row electrode Y and a row electrode X of another adjacent row electrode pair (X, Y). The display discharge cell and reset and address discharge cell are communicated with each other. A light absorbing layer is formed in a portion of the reset and address discharge cell opposing the display surface. According to another aspect, the unit light emission region in the display panel comprises a first discharge cell and a second discharge cell comprising a light absorbing layer. A sustain discharge for emitting light for displaying an image is produced in the first discharge cell, while a variety of control discharges causing light emission not associated with a displayed image are produced in the second discharge cell. According to a further aspect, unit light emission regions are formed at intersections of each of a plurality of first row electrodes and second row electrodes alternately formed on the front substrate such that the first row electrode and the second electrode in each pair are arranged in a reverse order to the preceding pair, and each of a plurality of column electrodes.
摘要:
A plasma display panel that permits a high-speed addressing. In the panel, scanning/sustaining electrodes are provided at each discharge cell. Common sustaining electrodes are arranged in parallel to the scanning/sustaining electrodes at each discharge cell. At least two dummy electrodes are provided at the non-display area to supply the non-display area with charged particles in the address interval.
摘要:
A plasma display panel includes a plurality of first bus electrodes and a plurality of second bus electrodes disposed so as to be adjacent on at least one side, a plurality of first discharge electrodes and a plurality of second discharge electrodes that are transparent and extend in a comb-tooth shape in a direction perpendicular to the bus electrodes, a plurality of third electrodes extending in parallel in a vertical direction, and a plurality of horizontal barrier ribs extending in parallel to the third electrodes. Display cells are formed in portions where the first and second bus electrodes face each other and which are defined by the barrier ribs in a horizontal direction. The first discharge electrodes and the second discharge electrodes are alternately disposed for every two cells in the horizontal direction so as to protrude from the first and second bus electrodes, respectively. In each display cell, the first and second discharge electrodes have edges extending in an approximately vertical direction. A gap between the edges of the first and second discharge electrodes is gradually varied.