Abstract:
A piezoelectric element layer is further formed as a package material of a secondary battery, so that the secondary battery can be self-charged using a voltage generated in the piezoelectric element layer according to vibration generated in an electronic device and vibration generated by movement of the electronic device itself. The secondary battery includes a battery case that accommodates an electrode assembly, the battery case having an outer coating layer and a piezoelectric element layer formed on an inner surface of the outer coating layer, and a protection circuit module mounted to an outside of the battery case and electrically connected to the electrode assembly. In the secondary battery, a voltage storage is provided to the protection circuit module, and the piezoelectric element layer converts absorbed vibration into voltage and then stores the voltage in the voltage storage so that the secondary battery is self-charged as occasion demands.
Abstract:
A display panel with an improved electrode structure including a cross region in which a plurality of first electrodes and a plurality of second electrodes are arranged to cross each other. A display cell is formed at each cross region. The display panel has an electrode structure in which a first electrode protrusion is formed in the direction of the arrangement of the second electrode and adjacent first electrode protrusions have different arrangements at adjacent cross regions.
Abstract:
A plasma display panel includes a first substrate and a second substrate. The first and the second substrates are flexible and face each other. A discharge electrode sheet is disposed between the first and second substrates to configure a plurality of discharge cells and includes a plurality of patterned discharge electrodes. A phosphor layer is formed in each of the discharge cells. An exhaust gas pathway is formed in the discharge electrode sheet and connects the discharge cells. The exhaust gas pathway that connects adjacent discharge cells is formed in the film shape discharge electrode sheet between the first and second substrates.
Abstract:
Provided is a plasma display panel. The plasma display panel includes a plurality of substrates comprising a first substrate realizing an image and a second substrate, dielectric walls disposed between the first substrate and the second substrate and defining a plurality of discharge cells, a plurality of a pair of discharge electrodes buried in the dielectric walls and generating a discharge using power that is applied, and phosphor layers formed on the dielectric walls between the discharge electrodes. Luminance and light emitting efficiency of the plasma display panel increase since the distance between the discharge electrodes and the phosphor layers is close by covering the pair of discharge electrodes inside the dielectric walls defining the discharge cells with the plurality of substrates and forming the phosphor layers on the dielectric walls between the discharge electrodes.
Abstract:
A plasma display panel (PDP) that is light in weight and low in manufacturing costs and a plasma display apparatus including the PDP. The PDP includes a substrate; a barrier rib structure disposed on the substrate to define a plurality of discharge cells; a sealing layer configured together with the substrate to seal the discharge cells and being formed of a substantially identical material as the barrier rib structure; a plurality of discharge electrode pairs extending along respective lines of the discharge cells to generate discharge in the discharge cells; and a plurality of phosphor layers disposed in the discharge cells.
Abstract:
Provided is a display device that performs addressing by discharging electrons and performs a sustain discharge according to gradation in an addressed discharge cell. The display device includes: first and second substrates facing each other; barrier ribs disposed between the first substrate and the second substrate and defining a plurality of discharge cells with the first and second substrates; first and second electrodes disposed in the barrier ribs; an electron emissive source formed on the second substrate and discharging a plurality of electrons into the discharge cells; a phosphor layer disposed in the discharge cells; and a gas stored in the discharge cells.
Abstract:
A plasma display module including a substrate; barrier ribs formed on the substrate and defining a plurality of discharge cells; pairs of discharge electrodes disposed in the barrier ribs to generate a discharge in the discharge cells; a sealing layer, along with the substrate, to seal the discharge cells; phosphor layers disposed in the discharge cells; a chassis disposed in a side portion of the sealing layer to support the substrate; and a thermal conductive adhesive member disposed between the sealing layer and the substrate to transfer heat from the sealing layer to the chassis, and a plasma display apparatus including the plasma display module.
Abstract:
A plasma display apparatus including a front substrate and a rear substrate spaced a predetermined distance apart from each other and facing each other, a plurality of discharge spaces between the front and the rear substrates, a front discharge electrode and a rear discharge electrode corresponding to each discharge space, a phosphor layer corresponding to each discharge space, and a scattering field corresponding to each discharge space, the scattering field on an inside surface of the front substrate and facing the discharge space, the scattering field is configured to scatter visible light.
Abstract:
The present invention provides a plasma display panel (PDP) that prevents a frit or a sealing material from entering into a display region during a sealing process of the PDP. The plasma display panel includes a pair of substrates spaced apart from each other by a predetermined gap and facing each other, and a sheet interposed between the pair of substrates. First discharge electrodes and second discharge electrodes are disposed inside the sheet. The second discharge electrodes are spaced apart from the first discharge electrodes. The sheet includes a barrier rib part and a dielectric part. The barrier rib part has a plurality of holes that defines discharge cells together with the pair of substrates. A frit or sealing material is interposed between the dielectric part and each of the pair of the substrates. The frit seals a space formed between the pair of the substrates. A groove is formed on the surface of one substrate of the pair of the substrates. The groove is formed around edge of the substrate outside display region, so that the groove effectively prevent frit from spreading into the display region during manufacturing process of the PDP
Abstract:
A Plasma Display Panel (PDP) that can be easily manufactured and reduces damages caused by thermal expansion includes: a first substrate and a second substrate arranged opposite to and spaced apart from each other; an electrode sheet arranged between the first substrate and the second substrate and having barrier ribs partitioning discharge cells and pairs of discharge electrodes adapted to cause a discharge in the discharge cells; and fixing members arranged on sides of the electrode sheet and adapted to fix the electrode sheet between the first substrate and the second substrate.