摘要:
An apparatus of the field emission light source having a luminous area and a non-luminous area includes a first plate, a second plate, cathode structures, gate structures, emission sources, an anode layer, a fluorescent layer, a getter, a retaining device and a sealant. The cathode structures are disposed in the luminous area and on the first plate. The emission sources are disposed on the cathode structures. The anode layer is disposed on the second plate. The fluorescent layer is disposed on the anode layer. The getter is disposed in the non-luminous area and on one of the first and the second plates. The retaining device is disposed between the luminous area and the non-luminous area. The sealant is sandwiched between the first plate and the second plate. When activating the getter, the retaining device can prevent metal ions gushed from the getter from entering the luminous area.
摘要:
The present invention provides a field emission system and a method for improving its vacuum. The present invention employs aging surface-unsaturated carbon nanotubes in non-display areas of the field emission system as getter material to absorb residual gas within the system so as to improve its vacuum. The present method for improving vacuum of the field emission system can be integrated with the standard process of a field emission display device without additional fabricating steps, and thus facilitating the mass production of the field emission display device.
摘要:
A cathode plate including a substrate, a cathode structure, a gate structure and emission sources is provided. The cathode structure and the gate structure are disposed on the substrate. The emission sources are arranged regularly on the cathode structure. A field emission flat lamp including said cathode plate, an anode plate and a sealant is provided. The sealant is disposed between and seals the cathode plate and the anode plate. Since the volume of each emission source is small, the bubbles resided inside the emission sources can be reduced, such that the qualities of the field emission flat lamp and the cathode plate thereof can be improved.
摘要:
The present invention provides a field emission system and a method for improving its vacuum. The present invention employs aging surface-unsaturated carbon nanotubes in non-display areas of the field emission system as getter material to absorb residual gas within the system so as to improve its vacuum. The present method for improving vacuum of the field emission system can be integrated with the standard process of a field emission display device without additional fabricating steps, and thus facilitating the mass production of the field emission display device.
摘要:
A cathode plate including a substrate, a plurality of cathode structures, a plurality of gate structures, and an emission layer is provided. The cathode structures and the gate structures are strip-shaped and disposed on the substrate. The cathode structures and the gate structures are parallel interlaced with one another. Each of the cathode structures has at least one groove, and the emission layer is disposed in the grooves. A field emission flat lamp including the above cathode plate, an anode plate, and a sealant is provided. The sealant is disposed between and seals the cathode plate and the anode plate. With the grooves on the cathode structures, the emission layer is positioned precisely to improve the light uniformity of the field emission flat lamp.
摘要:
A reflection-type field emission luminescent device is provided. The field emission luminescent device includes a cathode plate having an electron-emitting source formed thereon for emitting an electron beam, an anode plate including a first side having thereon an anode electrode layer and a fluorescence layer and a second side having thereon a reflection layer, and a vacuum formation structure formed between the cathode plate and the anode plate, in which the electron-emitting source, the anode electrode layer and the fluorescence layer are arranged. With the structure of the reflection-type field emission luminescent device, the electron beam generated from the cathode electrode plate is drawn by the anode plate and rams into the fluorescence layer for generating an emitted light in response to a collision of the electron beam to the fluorescence layer, and brightness of the emitted light is further enhanced through the reflection of the reflection layer
摘要:
A cathode plate including a substrate, a cathode structure, a gate structure and emission sources is provided. The cathode structure and the gate structure are disposed on the substrate. The emission sources are arranged regularly on the cathode structure. A field emission flat lamp including said cathode plate, an anode plate and a sealant is provided. The sealant is disposed between and seals the cathode plate and the anode plate. Since the volume of each emission source is small, the bubbles resided inside the emission sources can be reduced, such that the qualities of the field emission flat lamp and the cathode plate thereof can be improved.
摘要:
A field emission backlight unit comprises a substrate, first electrodes and second electrodes, a fluorescent lighting panel and an anode plate. The first electrodes are disposed on the substrate. The second electrodes are interlaced with the first electrodes and disposed on the substrate. The second electrodes receive a clock signal sequentially according to a first period. The fluorescent lighting panel is disposed at the opposite side of the substrate. The anode plate is disposed at the opposite side of the substrate. When there is a specific voltage between the first electrodes and the second electrodes to generate electrons, the anode plate pulls electrons to hit the fluorescent lighting panel to emit light.