Abstract:
In an AC plasma display panel having a glaze layer covering address electrodes, a proper amount of conductive filler is introduced into the glaze layer, to lower the volume resistivity of the glaze layer. Thus, generation of spark discharge can be suppressed in driving the display panel.
Abstract:
A surface discharge alternating current plasma display panel has a pair of transparent electrodes supplied with current from metal bus electrodes through connecting portions spaced from each other by slits, a dielectric layer covering the pair of transparent electrodes and the metal bus electrodes and a porous insulating layer covering a part of the dielectric layer over the metal bus electrodes; when surface discharge occurs between the transparent electrodes of the pair, the surface discharge is spread toward the bus electrodes; however, the surface discharge can not exceed the slits; for this reason, the surface discharge is concentrated over the transparent electrodes.
Abstract:
A plasma display panel includes front and rear substrates; anodes in a stripe pattern on a facing surface of the front substrate; a lower electrode coating the entire facing surface of the rear substrate; a dielectric layer coating the lower electrode; an upper electrode coating the dielectric layer in a pattern; and a lattice of partition walls between the upper electrode and the front substrate. The portions of the dielectric layer between the partition walls and not coated with the upper electrode form respective pixels. Sputtering is minimized and there is less damage to the electrodes by the gas, thus extending the length of use of the product. The ferroelectric material of the lower electrode has excellent resistance with respect to the discharge gas and the discharge can be initiated with a low initial discharge starting voltage since the ferroelectric cathode provides enough electrons for the discharge.
Abstract:
An electrode substrate of an AC type plasma display panel has a major surface with electrically connected display electrodes formed thereon and defining a display portion of the substrate. An insulating layer, of a ZnO-containing glass material containing substantially no lead, is formed on and covers the display portion of the major surface. The display electrodes may be a film of a transparent electrically-conducted material or a multi-layer film combination of a transparent electrically-conducted film of a first width and a metal film of a second, narrower width.
Abstract:
A surface discharge type plasma display panel(PDP) includes a pair of front and rear substrates (11, 21) with a discharge space (30) therebetween and a plurality of pair display electrodes on internal surface of either the front or rear substrate. The display electrodes are extending along each display line L. The PDP further includes a light shielding film (45), having a belt shape extending along the display line direction, formed on either internal or outer surface of the front substrate (11) to overlap each area S2 between the adjacent display lines L and sandwiched between the display electrodes X and Y.
Abstract:
A method for fabrication of a display device is provided which comprises the steps of: forming an aluminum electrode having a predetermined configuration on a substrate; and treating the aluminum electrode with a solution containing an oxidizing agent to form on a surface of the aluminum electrode a compound film containing as a principal component a substance derived from the solution containing the oxidizing agent.
Abstract:
A surface discharge type plasma display panel has a dielectric layer facing to a discharge gas space and a pair of sustaining electrodes embedded in the dielectric layer and disposed apart from each other by a discharge gap on one of the substrates spaced parallel to each other at the discharge gas space. The dielectric layer includes a pair of first thickness portions formed on far ends of the electrodes from the discharge gap respectively which are larger than a second thickness portion on facing near ends of the facing electrodes. The dielectric layer is provided with a depth from its surface to the substrate larger than that on the second thickness portion between adjacent the electrodes. This plasma display panel prevents any useless expansion of the surface discharge over the sustaining electrodes. The discharge current is reduced and the electrical load on the deriving circuit for the surface discharge PDP decreases to save a power consumption and further the emission efficiency of the surface discharge type PDP is improved.
Abstract:
A fluorescent gas-discharge color display panel, in which a fluorescent material is excited by a gas-discharge therein, contains a three-component gas mixture of neon, argon and xenon as the discharge gas. Typically, the argon gas component is in the range of from approximately 5 percent to approximately 80 percent, and that of the xenon gas from a minimum sufficient to maintain the Penning effect up to approximately 10 percent. The argon gas component contributes to the gas mixture producing a pure and high peak of green light spectrum and reduces the orange light spectrum emitted directly by the neon gas discharges. Other characteristics, such as operating voltages, brightness, luminous efficacy, and the panel operating life, are satisfactorily maintained. The improved color purity is advantageous for both single and multiple color display by the excited fluorescent material or materials.
Abstract:
A gas discharge device containing at least two electrodes is shown, at least one thereof being insulated from the gas by a dielectric member containing a predetermined beneficial amount of a source of at least one Lanthanide Series rare earth including CeO.sub.2 or La.sub.2 O.sub.3. In one embodiment, a multiple gaseous discharge display/memory panel has an electrical memory and is capable of producing a visual display, the panel having an ionizable gaseous medium in a gas chamber formed by a pair of opposed dielectric charge storage members, each of which is backed by an array of electrodes that are oriented with respect to the array behind the opposing member to define a plurality of discrete discharge volumes constituting a discharge unit.
Abstract translation:示出了包含至少两个电极的气体放电装置,其至少一个通过包含至少一种包含CeO 2或La 2 O 3的至少一种镧系稀土源的预定有益量的电介质构件与气体绝缘。 在一个实施例中,多个气体放电显示器/存储器面板具有电存储器并且能够产生视觉显示器,该面板在由一对相对的介电电荷存储部件形成的气室中具有可电离气体介质, 由相对于相对构件后面的阵列定向的电极阵列支撑,以限定构成放电单元的多个离散排出体。
Abstract:
A gas discharge device containing at least two electrodes is shown, at least one thereof being insulated from the gas by at least one dielectric member containing a predetermined beneficial amount of a source of at least one Lanthanide Series rare earth such as La or Ce. In one embodiment a multiple gaseous discharge display/memory panel has an electrical memory, the panel including an ionizable gaseous medium in a chamber formed by a pair of opposed dielectric charge storage members, each of which is backed by an array of electrodes oriented with respect to the electrodes behind the opposing member to define a plurality of discrete discharge volumes constituting a discharge unit.