We present the discharge characteristics of a rare gas halide mixture in AC-Plasma Display Panels. Studies for excimer gas of plasma display panels are performed using XeF. This excimer gas is investigated as function of its pressure and different discharge condition. In this paper, the real panel using XeF excimer gas is researched for good discharge characteristics and a full-color panel is demonstrated.
A ceramic microstructure for PDP barrier rib was prepared by new formation method applying micro machining and electrophoresis. Multi-component ceramic powder (SiO 2 -B 2 O 3 -PbO-X etc.) was deposited on a Cu layer patterned with PR in ethanol by DC electric field. Sintering accompanying the removal of PR produced barrier rib structure showed 100 µm height and width respectively.
A MgF 2 /MgO multiple protecting layer coated on a MgO layer in ac plasma-display panels (AC-PDPs) was developed to obtain high brightness and low driving voltages. The material characteristics of this layer were examined by carefully changing the deposition conditions, and the display characteristics of AC-PDPs using this protecting layer were studied. It was demonstrated that this new method is effective in lowering the firing and sustaining voltages of PDPs and enhancing the brightness of the panel as well.
We present the discharge characteristics of new dielectric layers in AC-plasma display panels. Studies for dielectric layer of plasma display panels are performed using CaF 2 . In this paper, the real panel using CaF 2 dielectric layer is researched for material characteristics and discharge characteristics, and a color panel is demonstrated.
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