Abstract:
A plasma display panel with high accuracy of addressing is provided by suppressing spread of address discharge in the column direction. The plasma display panel includes first main electrodes and second main electrodes for row selection and address electrodes for column selection. A discharge space is continuous over the full length of the screen in each column. The address electrode is patterned in such a way that each first area opposed to the second main electrode is smaller than each second area opposed to the metal film of the first main electrode, in corresponding third areas between partitions of each column of the display panel.
Abstract:
An electrode plate, a method of manufacturing the same, a gas discharge panel using an electrode plate, and a method of manufacturing the same are provided by incorporating a relatively simple structure, which can keep electrodes formed on a plate from peeling or becoming misaligned. In the electrode plate, at least one electrode is formed and adhered to a main surface of a plate by a thick film or thin film formation method, wherein of all ends of the electrode, at least an end opposite to an end at a power supply point is adhered to the main surface of the plate with stronger adhesion than the other parts of the electrode. When this electrode plate is used as a front panel glass having a plurality of pairs of display electrodes in a gas discharge panel, at least an end of each bus line opposite to an end at a power supply point is firmly adhered to the surface of the front panel glass, thereby keeping the bus lines formed on respective transparent electrodes from warping and peeling away or becoming misaligned. Such a gas discharge panel can deliver excellent display performance.
Abstract:
An AC type plasma display panel is designed so as to have the relationships of Wb>Wg>Wr and Db>Dg>Dr, where Wb, Wg and Wr denote the widths of blue, green and red discharge cells and Db, Dg and Dr denote the widths of address electrodes (15b, 15g and 15r) corresponding to respective colors. As a result, it is possible to adjust the electric charge stored in the discharge cells due to a write discharge according to colors, thereby making complete lighting write voltages of the discharge cells uniform. This achieves the AC type plasma display panel with an excellent display quality that has less occurrence of erroneous discharge and discharge flicker and an improved white display quality.
Abstract:
The present invention relates to a display device with a color filter used as an electrode which improves both color purity and optical efficiency of the display device and a method for manufacturing the same. The display device with color filters used as electrodes in accordance with the present invention is achieved by forming conductive color filters on an upper substrate. The fabrication process is simple and accordingly the production yield is increased for thereby reducing the manufacturing cost. In addition, the light transmittance and optical efficiency are increased, and the color purity is increased and external light reflection is effectively shut off.
Abstract:
A plasma display panel is provided in which a reliability of addressing is ensured, a flicker is reduced and the area that a cross talk can spread in the column direction is decreased so that a fluctuation of the display can be reduced. The plasma display panel has a first display electrode and a second display electrode that make an electrode pair for surface discharge. The first and the second display electrodes share one electrode for display of neighboring two rows. A partition is provided that divides a discharge gas space in the column direction only in the area where the first display electrode that is not used as a scanning electrode is positioned.
Abstract:
A plasma display panel including a front plate, at least one electrode disposed on the front plate and connected to a drive circuit, a back plate opposing the front plate, the back plate being spaced apart from the front plate, at least one electrode disposed on the back plate and connected to the drive circuit, and a plurality of partition walls disposed between the front plate and the back plate. The partition walls divide a space between the front plate and the back plate into a plurality of display cells. Each of the partition walls is formed by a sheet-like metal plate having an insulated exterior surface, or by laminating a plurality of sheet-like metal plates each having an insulated exterior surface. At least one sheet-like metal plate of each of the partition walls is connected to the drive circuit.
Abstract:
An AC type plasma display panel is designed so as to have the relationships of Wb>Wg>Wr and Db>Dg>Dr, where Wb, Wg and Wr denote the widths of blue, green and red discharge cells and Db, Dg and Dr denote the widths of address electrodes (15b, 15g and 15r) corresponding to respective colors. As a result, it is possible to adjust the electric charge stored in the discharge cells due to a write discharge according to colors, thereby making complete lighting write voltages of the discharge cells uniform. This achieves the AC type plasma display panel with an excellent display quality that has less occurrence of erroneous discharge and discharge flicker and an improved white display quality.
Abstract:
A plasma display panel including a pair of spaced substrates defined with a discharge space therebetween, and two groups of electrodes respectively arranged on the substrates in such a manner that they intersect each other while facing each other, wherein the electrodes included in one of the electrode groups have ring-shaped loops arranged in pixel regions, respectively, and alternating current is applied to the loop electrodes. When alternating current is applied to the loop electrodes, a magnetic field is formed around the loop of each loop electrode. The magnetic fluxes of the magnetic field form an electric field while passing through a discharge space defined in each pixel region. Accordingly, particles of discharge gas are charged.
Abstract:
A surface-discharge type PDP includes plural main electrode pairs formed of first and second sustain electrodes arranged on a first substrate. Each pair extends along a line direction, and the first and second sustain electrodes are in parallel and adjacent to each other. Plural address electrodes arranged on a second substrate opposing the first substrate via a discharge space, each extending along a row direction, a matrix corresponding to a screen to be displayed is formed with the main electrodes and address electrodes, the address electrodes are othogonal to the main electrodes, each of the address electrode is divided into, for example two partial address electrodes separated from each other by a border line located between adjacent main electrode pairs, whereby the screen is divided into two partial screens, wherein a first clearance between the partial address electrodes is substantially larger than a second clearance between main electrode pair adjacent across the border line. The arrangement order of the first and second sustain electrodes may preferably be such that first sustain electrodes of the first and second partial screens face each other via the border line, and the partial address electrodes may not cross over the first sustain electrodes nearest to the border line.
Abstract:
In each of discharge cells of a color plasma display panel, a data electrode is formed so as to cover entire side walls and bottom of the cell. A fluorescent layer is also formed on an entire surface of the data electrode to improve brightness. The barriers are provided by forming a plurality of grooves a glass substrate to reduce flicker of a screen. The surface of the substrate is made black to improve a display contrast.