摘要:
A plasma display panel comprising first and second substrates positioned substantially parallel to each other, facing each other and separated from each other by a predetermined distance is disclosed. A plurality of address electrodes are formed on the first substrate. A first dielectric layer covers the address electrodes on the first substrate. A plurality of barrier ribs having predetermined heights are mounted on the first dielectric layer, creating discharge spaces between the first and second substrates. Phosphor layers are formed within the discharge spaces. A plurality of discharge sustain electrodes are formed on the second substrate and are positioned perpendicular to the address electrodes on the first substrate. A second dielectric layer is formed on the second substrate covering the discharge sustain electrodes. A MgO protection layer having a surface roughness (Rms) ranging from about 60 to about 250 {acute over (Å)} covers the second dielectric layer.
摘要:
The present invention relates to a process for manufacturing activated carbon fibers having greatly improved adsorption performance time and adsorption performance when in contact with surface oxides such as in the case where gas and liquid impurities are treated. The process of the present invention comprises the following steps: a) placing conventional activated carbon fibers between an anode and a cathode plate in an acidic or an alkaline electrolytic solution, and b) applying a certain voltage at a current density between said graphite anode and graphite cathode plate. The present invention also relates to the product resulting from this process and the use of this product.
摘要:
This invention relates to a glass composition for plasma display panel and more particularly, to a glass composition for plasma display panel having the following physical properties of glass without containing SrO in principle, i.e., strain point: 580.about.610.degree. C.; transition point: 610.degree. C. or more; thermal expansion coefficient: 80.about.87.times.10.sup.-7 /.degree.C.; working temperature equivalent to 10,000 poise: 1,200.degree. C. or less; liquidus temperature: 1,100.degree. C. or more; viscosity at liquidus temperature: 20,000 poise or more.