Abstract:
A gas discharge panel having plural pairs of display electrodes disposed so as to extend through a plurality of cells, each pair being formed from a sustain electrode and a scan electrode. The sustain and scan electrodes each include a plurality of line parts, and an aggregate width of the line parts included in the sustain and scan electrodes is in a range of 22% to 48% inclusive of pixel pitch.
Abstract:
A gas discharge display device for displaying a color image by means of red, green and blue fluorescent substances, wherein a color to be reproduced by light-emission of the red, green and blue fluorescent substances for displaying a white pixel is set to be different from a white color intended for display, and a filter is disposed on a front side of the red, green and blue fluorescent substances for approximating a display color of the white pixel to the white color intended for display.
Abstract:
A gas discharge display device for displaying a color image by means of red, green and blue fluorescent substances, wherein a color to be reproduced by light-emission of the red, green and blue fluorescent substances for displaying a white pixel is set to be different from a white color intended for display, and a filter is disposed on a front side of the red, green and blue fluorescent substances for approximating a display color of the white pixel to the white color intended for display.
Abstract:
The invention provides a glass substrate for a display, having a surface area of 0.1 m2 or more and a thickness of 2.5 mm or less and to be used for a display. The glass substrate has surface projections of 2 pcs/m2 or less, and the surface is not ground
Abstract translation:本发明提供了一种用于显示器的玻璃基板,其表面积为0.1m 2以上,厚度为2.5mm以下,用于显示。 玻璃基板具有2个/ m 2以下的表面突起,并且表面不被研磨
Abstract:
A plasma display panel assembly includes electrodes and a dielectric layer covering the electrodes. The dielectric layer is formed of a low-melting-point glass, and the electrodes are formed of a metal containing a crystallized glass. The metal and the low-melting-point glass are simultaneously fired to complete the electrodes and the dielectric layer. Thus, in a manufacturing process of an AC plasma display panel, the number of firing steps can be reduced.
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:
The present invention relates to plasma display panel and manufacturing method thereof to simplify the manufacturing steps and reduce cost of production. In the present invention, a black layer formed between a transparent electrode and a bus electrode is formed together with a black matrix at the same time. In this case, the black layer is formed together with the black matrix in one. Cheap nonconductive oxide is used as a black powder of a black layer. Specifically, in case the black layer and the black matrix are formed in one, the bus electrode is shifted to a non-discharge area to improve the brightness of the plasma display panel.
Abstract:
A plasma display unit comprises a pair of substrate glasses, discharge electrodes formed on inner surfaces of the substrate glasses, and a fluorescent member disposed between the substrate glasses for emitting light in response to the discharge of the electrode. Each substrate glass used in the plasma display unit essentially consists by weight of 50-65% SiO.sub.2, 2-15% Al.sub.2 O.sub.3, 0-4% MgO, 0-2.9% CaO, 2-13% SrO, 0.5-13% BaO, 10-27% MgO+CaO+SrO+BaO, 0-1% Li.sub.2 O, 2-10% Na.sub.2 O, 2-13% K.sub.2 O, 7-15% Li.sub.2 +Na.sub.2 O+K.sub.2 O, 1-9% ZrO.sub.2, 0-5% TiO.sub.2, 0-1% Sb.sub.2 O.sub.3, and 0-1% As.sub.2 O.sub.3. The substrate glass exhibits small thermal contraction even if subjected to heat treatment at a temperature of 570.degree. C. or more, has a coefficient of thermal expansion of 75-95.times.10.sup.-7 /.degree. C., and is high in volume resistivity and excellent in chemical durability as compared with a soda lime glass.
Abstract:
An object of the invention is to provide a photosensitive glass paste for forming barriers for a PDP, which can be exposed to a great depth, and patterned with high accuracy without being adversely affected by oxygen. The present photosensitive glass paste comprises:a photosensitive resin material containing a resin-based material which can be cured by an acid and a photo-acid-generating agent; andan inorganic material containing a glass powder,the glass powder having the following composition in terms of oxides:PbO: 32 to 42 wt %Bi.sub.2 O.sub.3 : 18 wt % or lessZnO: 8 to 12 wt %B.sub.2 O.sub.3 : 15 to 25 wt %SiO.sub.2 : 10 to 25 wt %Al.sub.2 O.sub.3 : 5 wt % or less, andNa.sub.2 O+K.sub.2 O+Li.sub.2 O: 5 wt % or lesswherein a difference between a refractive index of said photosensitive resin material and a refractive index of said inorganic material is within 0.2.
Abstract translation:本发明的目的是提供一种用于形成能够暴露于大深度的PDP的屏障的感光玻璃浆料,并且以高精度图案化而不受氧气的不利影响。 本发明的感光性玻璃糊包含:含有能够通过酸和光酸发生剂固化的树脂系材料的感光性树脂材料; 和含有玻璃粉末的无机材料,根据氧化物,具有以下组成的玻璃粉末:PbO:32〜42重量%Bi 2 O 3 :18重量%以下ZnO:8〜12重量%B 2 O 3:15〜25重量%SiO 2 :10〜25重量%的Al 2 O 3:5重量%以下,Na 2 O + K 2 O + Li 2 O:5重量%以下,其中所述感光性树脂材料的折射率与所述无机材料的折射率之差在0.2以下。
Abstract:
On a first substrate provided on a display surface of a plasma display panel, bus electrodes (12a, 14a) in X and Y electrode lines (12, 14) forming a pair of display electrode lines are formed with an Ag material containing a black additive (RuO.sub.2, etc.) by a screen printing. This prevents external light from being reflected at the surfaces of the bus electrodes (12a, 14a) on the display side of an FP substrate (10) to improve the display contrast. The bus electrodes (12a, 14a) may be formed as a multi-layer structure. In this case, for example, the lower-layer bus electrodes are formed with a black metal material and the upper-layer bus electrodes are formed with a light-reflecting material layer, which improves light utilization efficiency and further improves the contrast.