摘要:
A method of manufacturing a metal electrode which can remove an edge curl substantially to an extent that an edge curl has no influence when a metal electrode such as a bus electrode or a data electrode constituting a Display panel such as a PDP, is patterned by photolithography. The manufacturing method includes a drying step in which flows (F1, F2 and F3) of solvent from a solvent high content region and a solvent high absorption capacity region to a solvent low content region are produced.
摘要:
A plasma display panel having substrates and, disposed thereon, electrodes comprising silver, wherein the electrode further comprises an element having a standard electrode potential lower than that of silver, such as Cr, Al, In, B or Ti, or a compound of the element. The additional element functions as a substance suppressing the ionization of silver, resulting in suppressing the yellowing of the panel relatively easily, which leads to the achievement of a PDP capable of displaying an image with high luminance and high picture quality.
摘要:
A phosphor ink coating device capable of applying, in line shape, a plurality of phosphor inks while preventing color mixing of the phosphor inks even in the rear panel of a PDP having a complicated shape of a coated surface, wherein a valve (753) is provided for each nozzle hole (752) of the phosphor ink coating device so that the opening and closing of each valve can be controlled according to the shape of a planned ink applying portion, on the coated surface, whereby color mixing can be prevented even in a rear panel having such a complicated shape that has an auxiliary partition wall.
摘要:
The present invention intends to provide a manufacturing method for a PDP that can continuously apply phosphor ink for a long time and can accurately and evenly produce phosphor layers even when the cell construction is very fine. To do so, phosphor ink is continuously expelled from a nozzle while the nozzle moves relative to channels between partition walls formed on a plate so as to scan and apply phosphor ink to the channels. While doing so the path taken by the nozzle within each channel between a pair of partition walls is adjusted based on position information for the channel. When phosphor particles is successively applied to a plurality of channels, phosphor ink is continuously expelled from the nozzle even when the nozzle is positioned away from the channels. The phosphor ink is composed of: phosphor particles that have an average particle diameter of 0.5 to 5 mu m; a mixed solvent in which materials selected from a group consisting of terpineol, butyl carbitol acetate, butyl carbitol, pentandiol, and limonene are mixed; and a binder that is an ethylene group polymer or ethyl cellulose containing at least 49% of ethoxy group (-OC2H