摘要:
An edge design of a flat-panel display (e.g. LCD / OLED / plasma) for reduced light-leakage and better protection is disclosed. After cutting out the panel, its edges are ground to produce vertical surfaces ( figs.3 , 5A ) having a reduced burr rather than the chamfered, burred edges (CF) of prior art devices ( fig.1 ). Thus total internal reflection at chamfers is reduced, which caused light-leakage (SRL) at the top surface of the panel through a gap between an optical film (16) (e.g. a polariser) and a protection-member (20). The optical film is arranged to extend over the panel edge and the protection-member is moulded to cover the substrate edges and to mate up with the optical film, eliminating the gap. Moreover, the edge is better protected from damage and environmental exposure. Due to its increased uniformity, the protection-member has a more aesthetic appearance.
摘要:
An edge design of a flat-panel display (e.g. LCD / OLED / plasma) for reduced light-leakage and better protection is disclosed. After cutting out the panel, its edges are ground to produce vertical surfaces ( figs.3 , 5A ) having a reduced burr rather than the chamfered, burred edges (CF) of prior art devices ( fig.1 ). Thus total internal reflection at chamfers is reduced, which caused light-leakage (SRL) at the top surface of the panel through a gap between an optical film (16) (e.g. a polariser) and a protection-member (20). The optical film is arranged to extend over the panel edge and the protection-member is moulded to cover the substrate edges and to mate up with the optical film, eliminating the gap. Moreover, the edge is better protected from damage and environmental exposure. Due to its increased uniformity, the protection-member has a more aesthetic appearance.
摘要:
A highly reliable plasma display panel is disclosed which can be driven at high speed and has few variations in the resistance of electrode even when a multilayer electrode wiring is formed on a front plate or a back plate. A data electrode (9) is covered with a dielectric layer (15), and a priming electrode (14) is formed on the dielectric layer (15). A wiring taking-out portion (19) for the data electrode (9) for connection to the outside is formed on a back substrate (200) and a wiring taking-out portion (18) for the priming electrode (14) for connection to the outside is formed on the dielectric layer (15), respectively with a step (20) equal to the thickness of the dielectric layer (15).
摘要:
A predetermined voltage is applied to drive a plasma display panel (21). The plasma display panel placed in an aging determination unit, is cooled during aging process.
摘要:
An optical filter comprises a transparent support and a filter layer. The filter layer has an absorption maximum in the wavelength region of 560 to 620 nm. The absorption maximum has a half-width in the range of 5 to 50 nm. The optical filter properly absorbs undesired light component emitted from an image display apparatus (especially, a plasma display panel).
摘要:
A plasma display panel includes a partition for isolating each of main discharge cells each formed by a pair of display electrodes and a data electrode arranged to oppose to each other and isolating each of priming discharge cells each configured by a space between two adjacent scan electrodes among the scan electrodes on a rear substrate. The top of the partition is in abutment with a front substrate. The drive method is as follows. In an odd-number line write period, scan pulse Va is successively applied to the odd-number scan electrodes SCp while voltage Vq is applied to the even-number scan electrodes SCp+1 for causing priming discharge between the even-number scan electrodes and the odd-number scan electrodes SCp. In an even-number line write period, the scan pulse Va is successively applied to the even-number scan electrodes SCp+1 while voltage Vq is applied to the odd-number scan electrode SCp for causing priming discharge between the odd-number electrodes and the even-number electrodes SCp+1.