Abstract:
A plasma display panel that includes a first substrate and a second substrate, address electrodes formed on the second substrate, barrier ribs arranged in a space between the first substrate and the second substrate to define a number of discharge cells and non-discharge regions, phosphor layers formed within each of the discharge cells, and display electrodes formed on the first substrate, having a sustain electrode (X electrode) and a scan electrode (Y electrode) in a corresponding pair within each of the discharge cells. The discharge cells are arranged to alternate “A” and “B” sections, where the distances (pitches) between the centers of the adjacent discharge cells are respectively “a” and “b” in which “a” is less than “b”.
Abstract:
A plasma display panel. A first substrate and a second substrate are provided opposing one another with a predetermined gap therebetween. Address electrodes are formed on the second substrate. Barrier ribs are mounted between the first substrate and the second substrate, the barrier ribs defining a plurality of discharge cells. Also, red, green, and blue phosphor layers are formed within each of the discharge cells. Discharge sustain electrodes are formed on the first substrate. The barrier ribs comprise first barrier rib members formed substantially parallel to the direction of the address electrodes, and second barrier rib members obliquely connected to the first barrier rib members and intersecting over the address electrodes. The second barrier rib members are formed to different widths according to discharge cell color such that red, green, and blue discharge cells have different volumes.
Abstract:
Provided is a plasma display panel (PDP) in which terminals of discharge electrodes are stably disposed. The PDP includes: first and second substrates facing each other and separated by a predetermined distance; a first group of barrier ribs interposed between the first and second substrates, and defining a plurality of discharge cells; pairs of discharge electrodes, each including: a discharge unit arranged in the first group of barrier ribs and causing a discharge; a terminal which is disposed outside the first group of barrier ribs; and a connector which connects the discharge unit and the terminal; and a support element which supports a portion of at least one connector exposed to the outside of the first group of barrier ribs.
Abstract:
A novel design for a plasma display panel where a dielectric grid structure is formed between the front and the rear substrate. Some or all of the electrodes are formed within the dielectric grid structure. The electrodes surround individual discharge cells and thus produce a more efficient discharge. A resistive element is built into the electrodes to reduce current and to reduce power consumption. The sustain discharge electrodes, made of X and Y electrodes each are made of at least two separate electrode lines, all four electrodes being formed within the dielectric grid. By such a design, power consumption is reduced and light emission efficiency is improved.
Abstract:
A Plasma Display Panel (PDP) displays images of high image quality by sufficiently exhausting an impurity gas and charging a discharge gas and by preventing cross talk from occurring between discharge cells. The PDP includes a transparent front substrate and a rear substrate facing the front substrate; a plurality of barrier ribs, arranged between the front and rear substrates, and oriented in a direction to define a plurality of discharge cells in which a discharge occurs; a plurality of electrodes adapted to receive electrical potentials to generate electric fields in the discharge cells; a phosphor layer arranged in the discharge cells; and a discharge gas contained within the discharge cells.
Abstract:
A plasma display panel includes a substrate which includes first and second substrates disposed facing each other, a plurality of discharge electrodes disposed along a circumference of a discharge cell formed between the first and second substrates, a dielectric wall which buries the discharge electrodes, and a secondary electron emission amplifying unit which emits the secondary electrons into the discharge space and which is formed on at least a portion of a surface which contacts plasma generated in the discharge space during a discharge. The discharge voltage can be reduced due to an increase in the emission of the secondary electrons.
Abstract:
An electrode sheet for a plasma display panel and a plasma display panel utilizing the same. The electrode sheet for the plasma display panel includes: a dielectric layer having a first surface and a second surface and including a discharge hole for providing a side wall of a discharge space, the dielectric layer being composed of metal oxide (MxOy); and a discharge electrode including a discharge unit around a perimeter of the discharge hole and a connection unit for connecting the discharge unit and another discharge unit to each other, the discharge electrode being within the dielectric layer and composed of metal (M) of the metal oxide (MxOy). Here, the discharge unit of the discharge electrode is within the dielectric layer such that the first surface of the dielectric layer has an area differing from that of the second surface of the dielectric layer.
Abstract translation:一种用于等离子体显示面板的电极片和使用其的等离子体显示面板。 用于等离子体显示面板的电极板包括:介电层,具有第一表面和第二表面,并且包括用于提供放电空间的侧壁的放电孔,所述电介质层由金属氧化物(M x O y)构成; 以及包括排出孔周围的排出单元的放电电极和用于将放电单元和另一个放电单元彼此连接的连接单元,放电电极位于电介质层内并由金属(M)构成 氧化物(MxOy)。 这里,放电电极的放电单元在电介质层内,使得电介质层的第一表面具有与电介质层的第二表面不同的面积。
Abstract:
A plasma display panel is provided in discharge spaces in which phosphor layers are disposed between first and second electrodes which are spaced apart from each other. The cross-sectional area of each discharge space in two regions where the first and second electrodes are respectively arranged has a different structure.
Abstract:
A PDP with improved durability is provided. The PDP includes a first substrate and a second substrate facing the first substrate. An electrode sheet is between the first substrate and the second substrate. The electrode sheet includes barrier ribs, a plurality of discharge cells, discharge electrodes for generating discharge in the discharge cells, and one or more through-holes. A sealant is disposed in the one or more through-holes for sealing the first substrate and the second substrate.
Abstract:
A plasma display panel includes first and second substrates that face each other, a barrier rib structure that is disposed between the first and second substrates to divide a plurality of discharge cells, first and second electrodes that are formed to surround the discharge cells and that extend in a first direction. The first and second electrodes are buried in the barrier rib structure. Address electrodes are formed in a second direction crossing the first direction to correspond to the respective discharge cells, and phosphor layers are formed in the respective discharge cells, such that the discharge cells are divided into red, green, blue, and white discharge cells.