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:
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.
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 provides a plasma display panel device and a method of fabricating the same including a first electrode (3) on the first substrate (1), a second electrode (4) on the second substrate (2), a dielectric layer (7) on the second electrode (4) including the second substrate (2), a plurality of third electrodes (5) completely buried in the dielectric layer (7), a pair of barrier ribs (8) connecting the first and second substrates (1, 2) on the dielectric layer (7), and a discharge chamber (10) where discharge occurs between the first and second substrates (1, 2), wherein the discharge chamber (10) faces toward the second electrode (4) through a plurality of rows of capillaries (9), each of the rows includes one or more capillaries (9), formed in the dielectric layer (7).
Abstract:
An apparatus for driving a capillary discharge plasma display panel having first and second substrates spaced apart, a plurality of pairs of first and second electrodes arranged between the first and second substrates, a dielectric layer formed between the first and second electrodes, at least one capillary in the dielectric layer between the each pair of the first and second electrodes for generating a capillary discharge, the apparatus includes a plurality of cells selectively discharging to glow defined by the pairs of the first and second electrodes, and an address circuit for applying a triangular pulse waveform during a sustain period to stabilize the capillary discharge.
Abstract:
A method of fabricating a plasma display panel having a substrate (41) includes the steps of forming an electrode (42) on the substrate (41), forming a dielectric layer (43) on the substrate (41) including the electrode (42), forming at least one capillary (44) in the dielectric layer (43) using dry-etching, wherein the capillary (44) and the electrode (42) are separated apart by a portion of the dielectric layer (43), and sequentially removing the portion of dielectric layer (43) to expose the electrode (42) through the capillary (45).
Abstract:
In a method of driving a capillary discharge plasma display panel which comprises front and rear substrates (1, 2) forming a space discharge therein, an addressing electrode (3) on the front substrate (1), a common electrode (11-1,...11-n) and a plurality of scanning electrodes (12-1,...12-n) on the rear substrate (2), and a dielectric layer (7) covering the common electrode (11-1,...11-n) and the scanning electrodes (12-1,...12-n) and having a capillary (8-1, 8-2) corresponding to the common electrode (11-1,...11-n) and each scanning electrode (12-1,...12-n) in the second dielectric layer (7), the method includes the steps of applying an addressing pulse to the addressing electrode (3) and a first pulse to the common electrode (11-1,...11-n), and a second pulse sequentially from a 1st scanning electrode (12-1,...12-n) to an Nth scanning electrode (12-n) during an addressing period for selecting pixels to be turned on, and applying a first sustaining pulse to the common electrode (11-1,...11-n) and a second sustaining pulse from the 1st scanning electrode (12-1) to the Nth scanning electrode (12-n) during a sustaining period, wherein the first and second sustaining pulses are applied for only discharge time duration.
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.
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:
painel mostrador de plasma e método de fabricar o mesmo um painel mostrador de plasma tendo uma célula de descarga de sulco e um método de fabricar de fabricar o mesmo são revelados na presente invenção. o painel mostrador de plasma tendo uma pluralidade de células de descarga de sulco inclui um substrato transparente (21) tendo pelo menos um sulco isolado (22) em uma célula de descarga, um ou mais eletrodos de sustentação (23) em cada sulco (22) e estendendo-se para fora do sulco (22), um ou mais eletrodos de barramento (24) sobre o eletrodo de sustentação (23 ), e uma camada di elétrica (25) formada sobre toda uma superficie do substrato transparente (21 ), incluindo os eletrodos de sustentação (23), os eletrodos de barramento (24), e o sulco (22), onde a camada dielétrica (25) tem uma primeira porção sobre o fundo do sulco, uma segunda porção fora do sulco do substrato, e uma terceira porção sobre as paredes laterais do sulco, e onde o sulco (22) tem um primeiro comprimentoperpendicular a uma direção dos eletrodos de sustentação (23) e um segundo comprimento paralelo a uma direção dos eletrodos de sustentação (23) e o primeiro comprimento é maior do que o segundo comprimento.