An uncoated address-electrode structure is adopted for the measurement of exo-electron emission in AC-PDPs. In this way the surface charging effects of the rear dielectric layer and phosphor layers are eliminated. By applying waveforms with different number of sustaining pulses, the exo-electron emission is measured during a full TV frame.
The conductive film with a new special structure for surfaceconduction electron-emitter device is proposed in this paper. With this new conductive film structure, the formation position of the nano-scale fissure can be controlled easily, and this will help to improve the uniformity of SED. The effectiveness was proved experimentally.
A novel dynamic resolution improvement method for surface‐conduction electron‐emitter display (SED) has been proposed in this paper. By alternating the polarity of control voltage, the landing positions of the emission electrons on the phosphor plate can be controlled. This helps to accomplish a double dynamic resolution on the conventional electron emission cell array.
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