Abstract:
A plasma display panel is provided. The plasma display panel includes a front substrate; a rear substrate arranged to face the front substrate, a dielectric layer arranged between the front and the rear substrates and at least a portion of the dielectric layer having a first color, plurality of barrier ribs arranged between the front and the rear substrates and at least a portion of the plurality of barrier ribs having a second color, plurality of light absorbing layers arranged between the front substrate and the plurality of barrier ribs, wherein the first and the second colors are subtractive-mixed with each other. The dielectric layer and the plurality of barrier ribs are colored with two complementary colors that essentially filter out nearly all light. Accordingly, it is possible to reduce outdoor daylight reflection and improve image contrast.
Abstract:
A plasma display panel includes a front substrate, a rear substrate that faces the front substrate and is spaced apart from the front substrate by a predetermined distance, an address electrode unit that is formed on the rear substrate, and a display electrode unit that is formed on the front substrate. The rear substrate satisfies the following condition: 1.05≦2Lbh/3Lbv≦1.3 where Lbh is a long side length of the rear substrate and Lbv is a short side length of the rear substrate.
Abstract:
A plasma display panel includes a first substrate and a second substrate opposite to the first substrate. Discharge electrodes are arranged between the first and second substrates and are buried in a dielectric layer. A barrier structure having plurality of barrier ribs is installed between the first and second substrates, defining discharge cells. Phosphor layers are formed within the discharge cells. The first substrate is colored with a first coloring layer, and one of the dielectric layer, the barrier structure, and the phosphor layers is colored with a second coloring layer.
Abstract:
A plasma display panel (PDP) includes a front panel, a rear panel disposed parallel to the front panel, side dielectric layers formed of a dielectric material and disposed between the front panel and the rear panel so as to define a plurality of discharge cells, front discharge electrodes disposed inside the side dielectric layers, and spaced from side surfaces of the discharge cells toward interiors of the side dielectric layers by an electrode-burying depth, rear discharge electrodes disposed inside the side dielectric layers and at a rear side of the first discharge electrodes, and spaced apart from the side surfaces of the discharge cells toward the interiors of the side dielectric layers by the electrode-burying depth, a plurality of phosphor layers corresponding to the discharge cells for emitting visible rays, the phosphor layers having different dielectric constants, and a discharge gas deposited in the discharge cells. An electrode-burying depth corresponding to discharge cells differs according to a magnitude of a dielectric constant of phosphor layers corresponding to the discharge cells.
Abstract:
Provided are a plasma display panel and a method of manufacturing the same. The plasma display panel includes a plurality of substrates; a plurality of discharge electrode pairs formed on an inner surface of one of the substrates; a dielectric layer burying the discharge electrode pairs; barrier ribs disposed between the substrates to define a plurality of discharge cells; red, green, and blue phosphor layer coated on inner walls of the discharge cells, wherein one of the substrate s comprises a display area where an image is displayed and a non-display area corresponding to an edge of the display area and to a region where the discharge electrode pairs are connected to external terminals, and the thickness of the dielectric layer coated in the non-display area gradually increases to a boundary region between the display area and the non-display area, after which the dielectric layer is maintained at a uniform thickness in the display area. Thus, an edge hill, which is a height difference between different areas in a dielectric layer, is removed. Accordingly, a gap between a front panel and a rear panel can be removed when the front panel and the rear panel are assembled, thereby preventing driving noise.
Abstract:
A Plasma Display Panel (PDP) with a great degree of freedom of design for an exhaust pipe and in which a low-voltage address discharge can occur, and an address voltage can be stably maintained, and a flat panel display including the PDP includes: a front substrate; a rear substrate arranged parallel to the front substrate; and a display area interposed between the front substrate and the rear substrate, wherein the widths of regions between at least two opposite edges of the display area and boundary lines of a region where the front substrate and the rear substrate overlap are asymmetric with respect to a center of the display area. Accordingly, an exhaust pipe can be freely arranged, a low-voltage address discharge is possible, and maintenance of an address voltage is improved.
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. Also, external light absorbing members are formed between the second substrate and the barrier ribs layer at areas corresponding to locations of the non-discharge regions.
Abstract:
A lower dielectric layer which increases internal light reflectivity, and a plasma display panel (PDP) including the lower dielectric layer. The lower dielectric layer includes a white pigment of which concentration increases along a direction of light emitted outward from the inside of the PDP to effectively increase the internal light reflectivity.
Abstract:
A PDP includes a first substrate and a second substrate facing each other, a plurality of first discharge electrodes on the first substrate, a first dielectric layer covering the plurality of first discharge electrodes, and a plurality of second discharge electrodes on the second substrate to cross the plurality of first discharge electrodes, wherein a difference between thermal expansion coefficients of the first substrate and the first dielectric layer is greater than or equal to about 2×10−7/° C. and less than or equal to about 17×10−7/° C.
Abstract:
A plasma display panel (PDP) including first and second substrates arranged opposite to each other, a plurality of first electrodes between the first and second substrates, a dielectric layer disposed on the first substrate, a plurality of second electrodes disposed in a direction crossing the first electrodes, and red, green, and blue phosphor layers disposed between the first and second substrates, wherein the dielectric layer includes a lead-free glass and at least one of CoO, CuO, MnO2, Cr2O3, or Fe2O3 as a metal oxide additive.
Abstract translation:一种等离子体显示面板(PDP),包括彼此相对布置的第一和第二基板,第一和第二基板之间的多个第一电极,设置在第一基板上的电介质层,沿与 第一电极和布置在第一和第二基板之间的红色,绿色和蓝色磷光体层,其中介电层包括无铅玻璃和作为金属氧化物添加剂的CoO,CuO,MnO 2,Cr 2 O 3或Fe 2 O 3中的至少一种 。