Abstract:
A barrier rib paste includes a low-softening point glass powder which contains silicon oxide, aluminum oxide, an alkali metal oxide, and 24 to 37 mol % of boron oxide, and also contains an organic component, wherein the content of an alkali earth metal oxide is 4 mol % or less and the content of zinc oxide is 10 mol % or less.
Abstract:
A glass composition according to the present invention comprises: phosphorus, vanadium and at least one transition metal selected from a group consisting of tungsten, iron, and manganese, the glass composition not containing substances included in the JIG level A and B lists, a softening point of the glass composition being 550° C. or lower.
Abstract:
The present invention provides a flat-panel display member comprising a barrier rib on a glass substrate, wherein the barrier rib contains a low softening point glass as a main component, the barrier rib contains a low softening point glass and the barrier rib is composed of at least two layers, and also a low softening point glass, which is a main component of the uppermost layer of the barrier rib, has an elastic modulus of 80 GPa or less. According to the present invention, the destruction of the barrier rib, which may cause non-lighting or abnormal lighting of discharge cells, has been suppressed.
Abstract:
A back face panel in a plasma display panel is provided with barrier-rib portions, fluorescent barrier-rib portions including a mixed material of a barrier-rib material and a phosphor material and formed on side faces thereof, and a phosphor portion including the phosphor material and formed in a manner so as to cover the fluorescent barrier-rib portions, and each of barrier ribs is formed by each barrier-rib portion and each fluorescent barrier-rib portion, while a phosphor layer is formed by each phosphor portion and each fluorescent barrier-rib portion.
Abstract:
Provided is a dispersant including a hydrophobic moiety with a branched alkyl group and an arylene group and a hydrophilic moiety with an alkylene oxide group and a carboxylic acid group. The alkyl group is a substituted or unsubstituted alkyl group of 5-30 carbon atoms, the arylene group is a substituted or unsubstituted arylene group of 6-30 carbon atoms, and the alkylene oxide group is a substituted or unsubstituted alkylene oxide group of 2-10 carbon atoms. The dispersant has good dispersibility, and a low residual carbon content after sintering. Thus, a paste composition including the dispersant can maintain a low viscosity and disperse many inorganic particles. Thus, an inorganic device prepared using the paste composition can have a low residual carbon content and a high packing density.
Abstract:
Provided is a plasma display panel that includes a plurality of substrates disposed facing each other, a plurality of discharge electrodes disposed within the substrates and a predetermined discharge voltage is applied to the discharge electrodes, barrier ribs which are disposed between the substrates and define discharge cells, and a plurality of phosphor layers coated in the discharge cells to emit a plurality of colors for color images, wherein a raw material for forming at least one phosphor layer of the phosphor layers is mixed in the barrier ribs. The plasma display panel can increase luminous efficiency of discharge cells that have low luminous efficiency and can increase color temperature at full white.
Abstract:
In a plasma display panel where a discharge space is partitioned by lattice-shaped barrier rib which comprises vertical ribs and horizontal ribs, a manufacturing method for the plasma display panel is acquired. This manufacturing method is designed for allowing substantially-linear exhaustion-use through holes parallel to the vertical ribs to be formed on the horizontal ribs with the execution of a simple and convenient processing step. The plasma-display-panel manufacturing method thus acquired includes steps of forming a glass-containing material, which becomes step-difference, into a stripe-shaped configuration at positions of the vertical ribs on a coated film of a barrier rib material formed on a glass substrate, and after that, performing patterning of the lattice-shaped barrier rib.
Abstract:
A mirror magnetic field forming device is disposed in each discharge unit space (or discharge cell) of a plasma display panel. The mirror magnetic field forming device is formed by providing magnetic members for respective two bulkheads facing each other through the discharge unit space. The two magnetic members form a mirror magnetic field in the discharge unit space. The mirror magnetic field prevents electrons from colliding with the bulkheads and disappearing.
Abstract:
Disclosed are a plasma display panel, a apparatus and apparatus for driving the same. The plasma display panel includes a front substrate and a rear substrate that are oppositely arranged to each other, a scan electrode and a sustain electrode formed on the front substrate including a transparent electrode and a bus electrode, an address electrode formed on the rear substrate in a direction that is intersected with the scan electrode and the sustain electrode, and a barrier rib that is arranged in space between the front substrate and the rear substrate so as to form a plurality of discharge cells, wherein the ratio of a net area (ST) of the transparent electrode that transmits a visible ray among the whole area of the transparent electrode against an area (Sc) of the discharge cell is satisfied by the equation: 0.51≦ST/SC≦0.83
Abstract translation:公开了一种等离子体显示面板,其驱动装置和装置。 等离子体显示面板包括彼此相对布置的前基板和后基板,形成在包括透明电极和总线电极的前基板上的扫描电极和维持电极,形成在后基板上的寻址电极 与扫描电极和维持电极相交的方向以及布置在前基板和后基板之间的空间中以形成多个放电单元的隔壁,其中净面积(S 在透明电极的整个区域中透射可见光的透明电极相对于放电单元的面积(Sc)相对于透明电极的面积(Sc)满足以下等式:&lt;&RightArrow;&CenterDot; =“在线公式”end =“lead”?> 0.51 <= S SUB> C sub> <= 0.83 <?in-line-formula description =“In “公式”end =“tail”?>
Abstract:
Tile comprising a substrate coated with at least one array of electrodes which is itself coated with an array of barrier ribs made of a mineral material, the porosity of which is greater than 25%, comprising a porous base underlayer which is inserted between the array of electrodes and the array of barrier ribs and which is made of a mineral material, the porosity of which is greater than 25%. Reinforced porous barrier ribs are obtained; advantageously, this tile does not include a specific dielectric layer; the number of manufacturing steps is limited and the tile can be manufactured entirely at low temperature.