Abstract:
An AC plasma display panel. A front substrate is opposite a rear substrate, and a plurality of ribs are interposed therebetween, defining a plurality of sub-pixels. The front substrate has a plurality of sustain electrodes extending along a first direction. Each of the sustain electrodes has a auxiliary electrode, a plurality of extending electrodes extending along a second direction and sticking into the corresponding sub-pixels, and a plurality of connecting electrodes, each of which connects adjacent extending electrodes.
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. 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 tubular plasma display (TPD) is composed of an electroded sheet (electroded sheet) attached to an array of plasma tubes. Both the electrode sheet and the plasma tube array contain wire electrodes, which create very electrically conductive lines and the ability to address very large displays. The electroded sheet is composed of a thin flexible polymer substrate with embedded wire sustain electrodes. Each plasma tube is individually sealed and contains a wire address electrode, a hard emissive coating, a color phosphor and a Xenon based plasma gas. Polymer-based color filter coatings may also be applied to the surface of the plasma tubes after they are gas processed and sealed to drastically increase the bright room contrast, brightness, and color purity of the display.
Abstract:
The present invention relates to a plasma display panel and a manufacture method thereof in which a color mixture of emitted light can be prevented and a contrast characteristic can be improved. The plasma display panel includes: a first barrier rib for partitioning a plurality of sub-pixels; and a second barrier rib formed to function as a boundary between one unit pixel constituting of the plurality of sub-pixels and an adjacent unit pixel, and partition the unit pixels, wherein the second barrier rib has a greater width than the first barrier rib. The method includes the steps of: coating a first and second barrier rib paste on a dielectric material formed on a glass; and placing and exposing an irregular pattern mask on the first and second barrier rib paste to form a first barrier rib pattern and a second barrier rib pattern each having a different width.
Abstract:
Disclosed is a plasma display panel. The plasma display panel includes discharge cells having the delta structure, in which a center portion of a dielectric layer provided at each lateral side of the delta-type discharge cell has a width larger than that of a peripheral portion of the dielectric layer, thereby improving the luminous efficiency of the plasma display panel.
Abstract:
A Plasma Display Panel (PDP) has a structure in which three discharge cells are adjacent one another and are arranged in a triangular form, thereby forming one pixel. In pixels arranged in a first direction, an average of 1.5 address electrodes are assigned which belong to the group of electrodes and have a specific angle in the first direction with respect to a surface parallel to the substrates, and at least four sustain electrodes pass through each pixel. Accordingly, the number of address electrodes for implementing a screen having the same horizontal resolution and the number of driving circuit chips required to drive the address electrodes can be reduced, thereby reducing overall power consumption and heat release rate.
Abstract:
A full color three electrode surface discharge type plasma display device that has fine image elements and is large and has a bright display. The three primary color luminescent areas are arranged in the extending direction of the display electrode pairs in a successive manner and an image element is composed by the three unit luminescent areas defined by these three luminescent areas and address electrodes intersecting these three luminescent areas. Further, phosphors are coated not only on a substrate but also on the side walls of the barriers and on address electrodes. The manufacturing processes and operation methods of the above constructions are also disclosed.
Abstract:
A plasma display device is disclosed. The plasma display device includes a plurality of discharge cells and address electrodes passing through the discharge cells. Three discharge cells are associated with one pixel and each address electrode passes through at least two of the three discharge cells. Each discharge cell includes a first edge extending in a first direction and a second edge extending in a second direction crossing the first direction. The ratio of the length of the second edge to the length of the first edge is in the range of about ⅓ to about 4/3.
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.