Abstract:
The invention relates to a composite sheet which is used to protect displays, especially plasma displays. The composite sheet is essentially comprised of three sheets. The inner sheet (1) is made of a thermoplastic synthetic material and the outer sheets (2,3) are made of glass. The individual sheets (1,2,3) are firmly joined to each other by means of a thermoplastic polyurethane film (4). The glass sheet (3) facing the display is provided with electric screening (5). The inventive sheet, when detached from the display, can be used in a plurality of ways owing to the construction thereof. It is light, shatterproof and offers a wide range of design opportunities.
Abstract:
A method and apparatus for enhancing the performance of visual display units (52) which utilize plasma display panels (50) wherein the apparatus includes an electrical noise suppressing/chromaticity enhancing accessory device (10) for positioning in front of the viewing surface of a plasma display panel. The accessory device (10) includes a first and a second rigid substrate (30, 30') laminated together by a laminating layer (36), and an optically selective coating (22) providing high photopic transmittance, continuous high electrical conductivity for RFI shielding, and reflectivity specifically within the near-IR region. The laminated layer includes a multiple-dye coating for selectively absorbing IR energy emissions and selectively balancing the chromaticity of the plasma display panel.
Abstract:
The present invention is in the field of plasma display panel filters, and more specifically the present invention is in the field of multiple layer plasma display panel filters comprising a PVB layer. Also included are methods of filtering plasma display panel radiation and plasma display panel devices utilizing plasma display panel filters of the present invention.
Abstract:
Process comprising the following steps: a) deposition of a green layer based on 0.1% to 8% of an organic binder, on a mineral filler and on 0.1% to 13% of a mineral binder; b) formation of the barriers by spraying an abrasive material onto a mask applied against this layer, and then removal of the mask; c) deposition of a phosphor-based green layer; d) baking of the two layers, preferably simultaneously. By virtue of the limited amount of organic binder, the abrasion rate is high; if this content is at least 2%, deterioration of the green barriers is avoided.
Abstract:
The present invention discloses a plasma display panel device and a method of fabricating the same including first and second substrates, a first electrode on the first substrate, a second electrode on the second substrate, a tape material on the second substrate including the second electrode, a plurality of third electrodes completely buried in the tape material, a plurality of barrier ribs connecting the first and second substrates formed on the second substrate, a UV-visible conversion layer on the second substrate including the second substrate between the barrier ribs, and a discharge chamber where discharge occurs between the first and second substrates, wherein the discharge chamber faces toward the second electrode through a single row of one or more capillaries formed in the tape material.
Abstract:
A plasma display having a transparent front panel spaced from a back panel which is a metal core having layers of a dielectric material extending over and bonded to the core. Conductive electrodes are on the surface of or imbedded in the dielectric layer to the back panel. The materials of which the back panel is made are chosen to form a back panel having a thermal coefficient of expansion compatible with that of the front panel. The dielectric material is made from a green ceramic tape which is bonded to the core and cofired with the core to form the back panel. Barrier ribs are formed on the back panel by embossing or scribing the green tape before cofiring the bonded assembly. Slight difference in the TCEs of the front and back panels may be compensated for by heating the panel having the lower TCE to a temperature hotter than the panel having the lower TCE during the frit seal process. Alternatively, the materials for the dielectric may be chosen such that the composite TCE of the cofired assembly matches the TCE of the front panel.
Abstract:
The invention relates to a sheet which is used to protect displays, especially plasma displays.The invention is essentially comprised of a sheet (1) which is made of a thermoplastic synthetic material. The surface of the sheet facing the display is provided with electric screening (2). The inventive sheet (1), when detached from the display, can be used in a plurality of ways owing to the construction thereof It is light, shatterproof and offers a wide range of design opportunities.
Abstract:
The invention relates to a sheet which is used to protect displays, especially plasma displays.The invention is essentially comprised of a sheet (1) which is made of a thermoplastic synthetic material. The surface of the sheet facing the display is provided with electric screening (2). The inventive sheet (1), when detached from the display, can be used in a plurality of ways owing to the construction thereof It is light, shatterproof and offers a wide range of design opportunities.
Abstract:
A plasma display having a transparent front panel spaced from a back panel which is a metal core having layers of a dielectric material extending over and bonded to the core. Conductive electrodes are on the surface of or imbedded in the dielectric layer of the back panel. The materials of which the back panel is made are chosen to form a back panel having a thermal coefficient of expansion compatible with that of the front panel. The dielectric material is made from a green ceramic tape which is bonded to the core and cofired with the core to form the back panel. Barrier ribs are formed on the back panel by embossing or scribing the green tape before cofiring the bonded assembly. Slight differences in the TCEs of the front and back panels may be compensated for by heating the panel having the lower TCE to a temperature hotter than the panel having the lower TCE during the frit seal process. Alternatively, the materials for the dielectric may be chosen such that the composite TCE of the cofired assembly matches the TCE of the front panel.
Abstract:
A method for driving a matrix type of plasma display panel is capable of stably displaying an image in error-discharge free. The plasma display panel including a plurality of row electrodes extending parallel to each other, two adjacent ones of the row electrodes being paired, and a plurality of column electrodes extending perpendicularly to the row electrodes at a given intervals wherein a region in which, one pair of row electrodes and one column electrode are crossed and spaced with a distance to each other at an intersection corresponding to one pixel. The method includes the steps of: applying first resetting pulses to all of the row electrodes simultaneously to cause discharges between all of the pairs of row electrodes, each first resetting pulse including a pulse rise or pulse fall time longer than each duration of the sustain pulse for sustaining a discharge emission as a simultaneous resetting step; applying a second resetting pulse to one of the pair of row electrodes to cause discharge therebetween immediately after applying the first resetting pulse to the one of the pair of row electrodes; applying a scan pulse to every pair of row electrodes and simultaneously applying a pixel data pulse to every column electrode to write pixel data to the associated pixels in accordance with pixel data pulses applied; and applying a series of sustain pulses alternately to one of the row electrode pair and the other thereof to maintain sustain-discharge between the pair of row electrodes.