Abstract:
The present invention provides a capillary electrode discharge plasma displa y panel device and method of fabricating the same including first and second substrates a first electrode on the first substrate, a second electrode on t he second substrate, a pair of barrier ribs connecting the first and second substrates, a discharge charge chamber between the first and second substrat es defined by the barrier ribs, and a dielectric layer on the first substrate including the first electrode, the dielectric layer having a capillary to provide a steady state UV emission in the discharge chamber.
Abstract:
The present invention discloses a plasma display panel device and a method of fabricating the same including first and second substrates (30, 39), a first electrode (31) on the first substrate (30), a second electrode (38) on the second substrate (39), a dielectric layer (33) on the first substrate (30) including the first electrode (31), a plurality of third electrodes (32) completely buried in the dielectric layer (33), a plurality of barrier ribs (37) connecting the first and second substrates formed on the second substrate (39), a UV-visible conversion layer (35) on the second substrate (39) including the second substrate between the barrier ribs, and a discharge chamber (36) where discharge occurs between the first and second substrates (30, 39), wherein the discharge chamber (36) faces toward the first electrode (31) through a single row of one or more capillaries (34) formed in the dielectric layer (33).
Abstract:
The present invention discloses a plasma display panel and a method of fabricating the same. The plasma display panel of the present invention includes a first electrode (4) on the first substrate (1), a first dielectric layer (6) on the first substrate including the first electrode, a plurality of second electrodes (7) completely buried in the first dielectric layer, a second dielectric layer (8) on the first dielectric layer including the first electrode, a third dielectric layer (12) on the second substrate (2), a plurality of UV visible photon conversion layers (3) on the third dielectric layer, a plurality of barrier ribs (10) between each of the UV visible photon conversion layers and connecting the first and second substrates, and a discharge chamber between the first and second substrates defined by the barrier ribs, wherein the first dielectric layer (6) includes at least one trench type discharge space (9) exposing a portion of the first electrode (4) to the discharge chamber.
Abstract:
A method for fabricating a PDP is disclosed. The method for fabricating a PDP comprising the steps of preparing first and second panels for connecting with each other, forming at least one electrode on the first panel, forming a dielectric layer of PbO on the first panel, sequentially forming Cr and Ni on the PbO layer as a mask material of the PbO layer, performing photolithography and lift-off processes on the Ni/Cr layers to form a mask pattern of Ni/Cr, and etching the PbO layer using the mask pattern of Ni/Cr to form at least one capillary tube within the PbO layer to expose the electrode.
Abstract:
The present invention relates to a plasma display panel and more particularly to a method of fabricating plasma display panels using a laser process. The method of fabricating a plasma display panel includes forming a first dielectric layer on a substrate, forming a second dielectric layer on the first dielectric layer, and forming at least one capillary in the second dielectric layer and a protection layer on a portion of the second dielectric layer where the capillary is formed.
Abstract:
The present invention relates to a plasma display panel and more particularly to a method of fabricating plasma display panels using a laser process. The method of fabricating a plasma display panel includes forming a first dielectric layer (22) on a substrate, forming a second dielectric layer (23) on the first dielectric layer (22), and forming at least one capillary in the second dielectric layer (23) and a protection layer on a portion of the second dielectric layer where the capillary is formed.
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 dielectric layer on the second substrate including the second electrode, a plurality of third electrodes completely buried in the dielectric layer, 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 dielectric layer.
Abstract:
A capillary discharge plasma display panel having a capillary of double size openings and method of fabricating the same is disclosed in the present invention. More specifically, a plasma display panel includes first and second substrates, a first electrode on the first substrate, a first dielectric layer on the first electrode, at least one second electrode on the second substrate, a second dielectric layer on the second electrode, wherein the second dielectric layer has at least one capillary therein, and the capillary comprises first and second openings and the first opening is greater than the second opening in a horizontal width, and at least one discharge space between the first and second dielectric layers and directly adjacent to the first opening of the capillary, thereby exposing a portion of the second electrode to the discharge space through the first and second openings to generate a continuous plasma discharge from the capillary.