摘要:
The present invention is to provide a method of driving an opposed discharge PDP comprising causing a driving circuit of the PDP to apply a sustaining pulse to each of a plurality of sustaining electrodes thereof for showing each of a plurality of sub-fields wherein a phase of the sustaining pulse of any of the sustaining electrodes is 180 degrees different from that of the sustaining pulse of the adjacent sustaining electrode, i.e. a waveform of odd number pixels is 180 degrees different from that of even number pixels in a sustaining period, enabling two adjacent discharge cells discharge in opposite directions so as to eliminate noise caused by vibration of the PDP in discharge, lower peak current and greatly decrease load on sustaining circuit and resulting in prolonging useful life of the circuit and increasing reliability of the circuit.
摘要:
The present invention is to provide a method of driving a high definition opposed discharge PDP comprising transversely disposing a barrier rib on a center of any elongate discharge cells of the opposed discharge PDP to divide the discharge cell into two sub-cells; disposing a sustain electrode on a front substrate corresponding to either sub-cell; causing a driving circuit to apply a sustaining pulse to each of the plurality of sustain electrodes in a sustaining period of each sub-field; and causing a phase of the sustaining pulse on the sustain electrode corresponding to one sub-cell to have a phase difference of 180 degrees relative to that of the sustaining pulse on the sustain electrode corresponding to the other adjacent sub-cell in order to effectively eliminate noise caused by vibration of the opposed discharge PDP in discharge, reducing peak current and electromagnetic interference, and greatly increase both light emitting efficiency and brightness of the opposed discharge PDP.
摘要:
A plasma display panel is provided. The plasma display panel includes N scan electrodes, N auxiliary electrodes, M address electrodes, and N rows and M columns of lighting cells. The ith row of lighting cells among the N rows of lighting cells corresponds to the ith scan electrode among the N scan electrodes and the ith auxiliary electrode among the N auxiliary electrodes. The jth lighting cell in the ith row of lighting cells corresponds to the jth address electrode among the M address electrodes. When the jth lighting cell in the ith row of lighting cells is assigned to be lightened, the ith scan electrode, the ith auxiliary electrode, and the jth address electrode are operated to generate discharge effects in the jth lighting cell in the ith row of lighting cells.
摘要:
The invention discloses a plasma display panel (PDP). The PDP grounds an exposed transparent conductive layer to the inner component thereof, so as to shield off electromagnetic interference (EMI). Accordingly, there is no metal structure in the second protective layer formed on the transparent conductive layer, such that the second protective layer can be easily attached onto the transparent conductive layer. Therefore, the manufacturing of PDP is getting much easier, and the yield rate will then increase.
摘要:
The present invention is to provide a method for making a shadow mask for an opposed discharge plasma display panel by etching one lateral surface of a metal slab to produce a plurality of parallel and equidistant barrier ribs along the vertical and horizontal directions on the lateral surface and a discharging cell by enclosing every four adjacent barrier ribs. A shadow hole is formed at the middle of each discharging cell and etched through the metal slab, and at least one groove interconnected to the shadow holes is produced on another lateral surface of the metal slab by utilizing a rolling process or a stamping process. The adjacent grooves are interconnected with each other, and a plurality of air guide channels is formed on another lateral side, such that a shadow mask can be made in a simple and fast manner, chemical pollutions caused by a traditional double-sided etching can be minimized, and the product yield rate and the manufacturing cost can be effectively improved and lowered.
摘要:
The present invention is to provide a method for making a shadow mask for an opposed discharge plasma display panel by etching one lateral surface of a metal slab to produce a plurality of parallel and equidistant barrier ribs along the vertical and horizontal directions on the lateral surface and a discharging cell by enclosing every four adjacent barrier ribs. A shadow hole is formed at the middle of each discharging cell and etched through the metal slab, and at least one groove interconnected to the shadow holes is produced on another lateral surface of the metal slab by utilizing a rolling process or a stamping process. The adjacent grooves are interconnected with each other, and a plurality of air guide channels is formed on another lateral side, such that a shadow mask can be made in a simple and fast manner, chemical pollutions caused by a traditional double-sided etching can be minimized, and the product yield rate and the manufacturing cost can be effectively improved and lowered.
摘要:
A plasma display panel is provided. The plasma display panel includes a front plate, a back plate, a shadow mask, and a discharge destructive film. The shadow mask is located between the front plate and the back plate. The discharge destructive film is formed in a predetermined pattern between the shadow mask and the back plate. The discharge destructive film increases the firing voltages of some parts of the back plate. The discharge distance between the front plate and the back plate is accordingly increased. Thus, the luminous efficiency of the plasma display panel can be improved.
摘要:
A plasma display panel is provided. The plasma display panel includes a front plate, a back plate, a shadow mask, and a first adhesive layer. The shadow mask is located between the front plate and the back plate. The first adhesive layer is formed between the shadow mask and the front plate. The shadow mask is adhered to the front plate via the first adhesive layer. Thus, noises generated during plasma discharge processes in the plasma display panel can be reduced.
摘要:
The present invention provides a PDP structure comprising a first substrate, a second substrate and a Waffle barrier rib structure located between the first and second substrate. The Waffle barrier rib structure comprises three first barrier ribs having different width and a plurality of second barrier ribs perpendicular to the first barrier ribs. The second barrier ribs are located between the two first barrier ribs, and connect the wider structure of the two first barrier ribs. Therefore, discharge spaces are formed. Because of different width, the height difference of the barrier rib structure is formed after thermal process. Hence, gas can pass through the barrier ribs structure between the front and the back substrate sealed together.
摘要:
The present invention provides a PDP structure including a first substrate, a second substrate and a Waffle barrier rib structure located between the first and second substrate. The Waffle barrier rib structure includes three first barrier ribs having different width and a plurality of second barrier ribs perpendicular to the first barrier ribs. The second barrier ribs are located between the two first barrier ribs, and connect the wider structure of the two first barrier ribs. Therefore, discharge spaces are formed. Because of different width, the height difference of the barrier rib structure is formed after thermal process. Hence, gas can pass through the barrier ribs structure between the front and the back substrate sealed together.