Abstract:
In a method of driving a capillary discharge plasma display panel which comprises front and rear substrates forming a space discharge therein, an addressing electrode on the front substrate, a common electrode and a plurality of scanning electrodes on the rear substrate, and a dielectric layer covering the common electrode and the scanning electrodes and having a capillary corresponding to the common electrode and each scanning electrode in the second dielectric layer, the method includes the steps of applying an addressing pulse to the addressing electrode and a first pulse to the common electrode, and a second pulse sequentially from a 1st scanning electrode to an nth scanning electrode during an addressing period for selecting pixels to be turned on, and applying a first sustaining pulse to the common electrode and a second sustaining pulse to the 1st scanning electrode to the nth scanning electrode during a sustaining period, wherein the first and second sustaining pulses are applied for only discharge time duration.
Abstract:
A method of fabricating a plasma display panel having a substrate includes the steps of forming an electrode on the substrate, forming a dielectric layer on the substrate including the electrode, forming at least one capillary in the dielectric layer using dry-etching, wherein the capillary and the electrode are separated apart by a portion of the dielectric layer, and sequentially removing the portion of dielectric layer to expose the electrode through 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:
A plasma display panel having a trench discharge cell and a method of fabricating the same are disclosed in the present invention. The plasma display panel having a plurality of trench discharge cells includes a transparent substrate (21) having at least one isolated trench (22) in a discharge cell, one or more sustain electrodes (23) in each trench (22) and extended to outside of the trench (22), one or more bus electrodes (24) on the sustain electrode (23), and a dielectric layer (25) formed on an entire surface of the transparent substrate (21) including the sustain electrodes (23), the bus electrodes (24), and the trench (22), wherein the dielectric layer (25) has a first portion on the bottom of the trench, a second portion outside the trench of the substrate, and a third portion on side-walls of the trench, and wherein the trench (22) has a first length perpendicular to a direction of the sustain electrodes (23) and a second length parallel to a direction of the sustain electrodes (23) and the first length is greater than the second length.
Abstract:
El presente invento se refiere a un panel visor de plasma y en particular a un método de fabricar paneles visores de plasma utilizando un procedimiento láser. El método de fabricar un papel visor de plasma incluye formar una primera capa dieléctrica sobre un sustrato, formar una segunda capa dieléctrica sobre la primera capa dieléctrica, y formar por lo menos un capilar en la segunda capa dieléctrica y una capa de protección sobre una porción de segunda capa dieléctrica donde el capilar está formado
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:
En un método de comando de un panel visor de plasma de descarga capilar que comprende un sustrato frontal y un sustrato posterior que forman un espacio de descarga entre los mismos, un electrodo de descarga en el sustrato frontal, un electrodo común y una pluralidad de electrodos de barrido en el sustrato posterior, y una capa dieléctrica que cubre el electrodo común y los electrodos de barrido y que tiene un capilar que corresponde al electrodo común y cada electrodo de barrido en la segunda capa dieléctrica, el método incluye las etapas de aplicar un pulso de descarga al electrodo de descarga y un primer pulso al electrodo común, y un segundo pulso secuencialmente de un primer electrodo de barrido a un eneavo electrodo de barrido durante un período de barrido para seleccionar píxeles a ser activados, y aplicar un primer pulso de sustentación al electrodo común y un segundo pulso de sustentación al primer electrodo de barrido y al eneavo electrodo de barrido durante un período de sustentación; en el que los primeros y los segundos pulsos de sustentación son aplicados solo durante el tiempo de descarga.
Abstract:
La presente revela un dispositivo de panel visor de plasma incluyendo primeros sustratos y segundos sustratos, un primer electrodo sobre el primer sustrato, un segundo electrodo sobre el segundo sustrato, un material de cinta sobre el segundo sustrato incluyendo el segundo electrodo, una pluralidad de terceros electrodos completamente ocultos en el material de cinta, una pluralidad de nervaduras de barrera que conectan el primer sustrato y el segundo sustrato formada sobre el segundo sustrato, una capa de conversion visible por ultravioleta sobre el segundo sustrato incluyendo el segundo sustrato entre las nervaduras de barrera, y una cámara de descarga donde se produce la descarga entre el primer sustrato y el segundo sustrato, en el que la cámara de descarga enfrenta hacia el segundo electrodo a través de una unica hilera de uno o más capilares formados en el material de cinta.
Abstract:
A plasma display panel having a trench discharge cell and a method of fabricating the same are disclosed in the present invention. The plasma display panel having a plurality of trench discharge cells includes a transparent substrate (21) having at least one isolated trench (22) in a discharge cell, one or more sustain electrodes (23) in each trench (22) and extended to outside of the trench (22), one or more bus electrodes (24) on the sustain electrode (23), and a dielectric layer (25) formed on an entire surface of the transparent substrate (21) including the sustain electrodes (23), the bus electrodes (24), and the trench (22), wherein the dielectric layer (25) has a first portion on the bottom of the trench, a second portion outside the trench of the substrate, and a third portion on side-walls of the trench, and wherein the trench (22) has a first length perpendicular to a direction of the sustain electrodes (23) and a second length parallel to a direction of the sustain electrodes (23) and the first length is greater than the second length.
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.