Abstract:
A plasma display panel (PDP) in which oxide film-coated aluminum wire electrodes are formed between adjacent discharge cells while an image is displayed on front surfaces of the discharge cells. The PDP includes a first substrate and a second substrate spaced apart from the first substrate and facing the first substrate. Barrier ribs are disposed between the first substrate and the second substrate and define a plurality of discharge spaces. Discharge electrodes are arranged between adjacent discharge spaces in order to be exposed to the discharge spaces while an image is displayed on front surfaces of the discharge spaces.
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 (PDP) includes: an upper substrate; a lower substrate facing the upper substrate; and a plurality of blocks. Each block includes: a barrier rib of a dielectric material adapted to define discharge cells; upper discharge electrodes including upper discharge portions arranged in the barrier rib and upper connection portions connected to the upper discharge portions and protruding out of the barrier rib; and lower discharge electrodes including lower discharge portions arranged in the barrier rib and separated from the upper discharge portions and lower connection portions connected to the lower discharge portions and protruding out of the barrier rib. Phosphor layers arranged in the discharge cells. The plurality of blocks are connected to each other by connecting the upper connection portions and the lower connection portions thereof.
Abstract:
A plasma display panel in which exhaust performance is improved comprises a lower plate and a upper plate disposed opposite to each other. The lower plate comprises exhaust means for exhausting gas from the plasma display panel. The exhaust means comprises exhaust grooves formed on a front surface of a lower plate (or a back substrate). The exhaust grooves extend in a direction in which address electrodes or sustain electrodes extend.
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.
Abstract:
Example embodiments relate to a plasma display panel including a first flexible substrate and a second flexible substrate opposing each other, a flexible electrode sheet having a plurality of electrodes to define a plurality of discharge spaces, the flexible electrode sheet may be between the first flexible substrate and the second flexible substrate, an exhaustion hole engaged with the second flexible substrate and may connect the discharge spaces to an outside, and a supporting unit installed between the first flexible substrate and the second flexible substrate adjacent to the exhaustion hole may be mounted, so as to connect the discharge spaces to the exhaustion hole.
Abstract:
A plasma display panel includes a back substrate having back barrier ribs partitioning a plurality of discharge cells; a front substrate arranged to be opposite to the back substrate and having front barrier ribs partitioning the discharge cells in cooperation with the back barrier ribs; back discharge electrodes arranged within the back barrier ribs to enclose the discharge cells; front discharge electrodes arranged within the front barrier ribs to enclose the discharge cells; phosphor layers arranged within the discharge cells; and discharge gas arranged within the discharge cells.
Abstract:
A plasma display panel includes first and second substrates facing each other, a first barrier rib structure between the first and second substrates, the first barrier rib structure including first and second barrier rib portions in communication with each other, a second barrier rib structure on the second substrate, the second barrier rib structure aligned with the first barrier rib portion to define a plurality of discharge cells, a plurality of discharge electrodes, each discharge electrode including a discharge part in the first barrier rib portion, a terminal part in communication with the second barrier rib portion, and a connection part between the discharge and terminal parts, a signal transmitting member with conductive wires, the conductive wires being connected to the terminal parts, a support part between the second substrate and the second barrier rib portion of the first barrier rib structure, and photoluminescent layers in the discharge cells.
Abstract:
A structure for connecting terminal parts of electrodes of a plasma display panel (PDP) includes a pair of substrates, barrier ribs arranged between the pair of substrates, a dielectric layer arranged between the pair of substrates, discharge electrodes, each having a discharge part arranged inside the barrier ribs, and an exposed part arranged at an end of the discharge part and outside the barrier ribs, terminal electrodes arranged on the dielectric layer, connection parts including conductive paste electrically connecting the exposed parts with the terminal electrodes, blocking partition walls arranged between the connection parts, and signal transmitting members electrically connected with the terminal electrodes.