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    • 3. 发明授权
    • Flat display and method of mounting field emission type electron-emitting source
    • 平面显示器和安装场致发射型电子发射源的方法
    • US06806637B2
    • 2004-10-19
    • US09900078
    • 2001-07-06
    • Sashiro UemuraJunko YotaniTakeshi Nagasako
    • Sashiro UemuraJunko YotaniTakeshi Nagasako
    • H01J162
    • B82Y10/00H01J9/025H01J9/185H01J31/127H01J2201/30469Y10S977/952
    • A flat display includes a glass substrate, field emission type electron-emitting source, a front glass member, an electron extracting electrode, and a phosphor film. The electron-emitting source is mounted on the substrate. The front glass member opposes the substrate through a vacuum space and has light transmittance at least partially. The electron extracting electrode has an electron passing hole and is set away from the electron-emitting source to oppose the substrate. The phosphor film is formed on that surface of the front glass member which opposes the substrate. The electron-emitting source includes a plate-like metal member and a coating film. The plate-like metal member has a large number of through holes and serves as a growth nucleus for nanotube fibers. The coating film is formed of nanotubes that cover a surface of the metal member and inner walls of the through holes. A method of mounting a field emission type electron-emitting source is also disclosed.
    • 平面显示器包括玻璃基板,场致发射型电子发射源,前玻璃构件,电子提取电极和荧光膜。 电子发射源安装在基板上。 前玻璃构件通过真空空间与基板相对,并且至少部分具有透光率。 电子提取电极具有电子通过孔并远离电子发射源与基板相对。 荧光膜形成在与基板相对的前玻璃构件的表面上。 电子发射源包括板状金属构件和涂膜。 板状金属构件具有大量的通孔,并且用作纳米管纤维的生长核。 涂膜由覆盖金属构件的表面和通孔的内壁的纳米管形成。 还公开了一种安装场致发射型电子发射源的方法。
    • 4. 发明授权
    • Vacuum fluorescent display having slit like openings
    • 具有狭缝状开口的真空荧光显示器
    • US06965194B2
    • 2005-11-15
    • US09933984
    • 2001-08-20
    • Sashiro UemuraJunko YotaniTakeshi NagasakoKazuo KobayashiHiroyuki Kurachi
    • Sashiro UemuraJunko YotaniTakeshi NagasakoKazuo KobayashiHiroyuki Kurachi
    • H01J29/04H01J31/12H01J31/15H01J1/88H01J1/304H01J1/62
    • H01J31/125Y10S977/952
    • A vacuum fluorescent display includes a front glass member, substrate, phosphor film, an electron-emitting portion, electron extracting electrode, and insulating support member. The front glass member has light transmission properties at least partly. The substrate opposes the front glass member through a vacuum space. The phosphor film is formed on that surface of the front glass member which opposes the substrate and has a predetermined display pattern. The electron-emitting portion is mounted on the substrate to oppose the phosphor film, and has an electron-emitting surface corresponding to the display pattern. The electron extracting electrode is arranged in the vacuum space between the electron-emitting portion and the phosphor film to be spaced apart from the electron-emitting portion by a predetermined distance. The insulating support member is formed on the substrate and adapted to support the electron extracting electrode and divide the electron-emitting surface of the electron-emitting portion into a plurality of regions.
    • 真空荧光显示器包括前玻璃构件,基板,荧光膜,电子发射部分,电子提取电极和绝缘支撑构件。 前玻璃构件至少部分具有透光性。 基板通过真空空间与前玻璃构件相对。 荧光体膜形成在前玻璃构件的与基板相对的表面上并且具有预定的显示图案。 电子发射部分安装在基板上以与荧光膜相对,并且具有对应于显示图案的电子发射表面。 电子提取电极被布置在电子发射部分和荧光膜之间的真空空间中,以与电子发射部分隔开预定距离。 绝缘支撑构件形成在基板上并且适于支撑电子提取电极并且将电子发射部分的电子发射表面分成多个区域。
    • 9. 发明申请
    • Fluorescent display device
    • 荧光显示装置
    • US20080061675A1
    • 2008-03-13
    • US11805582
    • 2007-05-23
    • Junko YotaniSashiro Uemura
    • Junko YotaniSashiro Uemura
    • H01J3/02
    • H01J29/04H01J29/467H01J29/864H01J31/127H01J2329/04H01J2329/0494H01J2329/4604H01J2329/4613H01J2329/8625
    • A fluorescent display device includes a front glass at least part of which is translucent, a substrate, a cathode, an electron-emitting layer, an electron extracting electrode, a phosphor film and an anode, and a conductive layer. The substrate is formed of an insulating member arranged to oppose the front glass. The front glass and the substrate constitute part of a vacuum envelope. The cathode is disposed on the substrate. The electron-emitting layer includes a carbon nanotube and is formed on a surface of the cathode. The electron extracting electrode is arranged between the substrate and the front glass to be spaced apart from the cathode. The phosphor layer and the anode stack on a surface of the front glass which opposes the substrate. The conductive layer is formed between the cathode and the substrate.
    • 荧光显示装置包括其至少一部分是半透明的前玻璃,基板,阴极,电子发射层,电子提取电极,荧光膜和阳极以及导电层。 衬底由布置成与前玻璃相对的绝缘构件形成。 前玻璃和基板构成真空外壳的一部分。 阴极设置在基板上。 电子发射层包括碳纳米管,并形成在阴极的表面上。 电子提取电极布置在基板和前玻璃之间以与阴极间隔开。 在前玻璃的与基板相对的表面上的荧光体层和阳极堆叠。 导电层形成在阴极和衬底之间。
    • 10. 发明授权
    • Flat display
    • 平面显示
    • US07245070B2
    • 2007-07-17
    • US11083511
    • 2005-03-17
    • Junko YotaniSashiro Uemura
    • Junko YotaniSashiro Uemura
    • H01J1/62
    • H01J31/123B82Y10/00H01J29/028H01J2329/8625
    • A flat display includes a front glass plate, substrate, cathode, gate electrode, a phosphor screen and metal-backed film, and matrix-like spacer. The front glass plate is at least partly transparent. The substrate is arranged to oppose the front glass plate through a vacuum space. The cathode is formed on the substrate and has an electron-emitting source made of nano tube fibers. The gate electrode has an electron-passing hole in a direction perpendicular to the substrate and is arranged in the vacuum space away from the cathode to oppose the substrate. The phosphor screen and metal-backed film are sequentially stacked on a surface of the front glass plate which opposes the substrate. The matrix-like spacer is stacked between the gate electrode and front glass plate and has a plurality of openings each corresponding to the electron-passing hole.
    • 平板显示器包括前玻璃板,基板,阴极,栅电极,荧光屏和金属背衬膜,以及矩阵状间隔件。 前玻璃板至少是部分透明的。 基板被布置成通过真空空间与前玻璃板相对。 阴极形成在衬底上并具有由纳米管纤维制成的电子发射源。 栅电极在垂直于衬底的方向上具有电子通过孔,并且设置在真空空间中,远离阴极与衬底相对。 荧光屏和金属背衬膜依次堆叠在与基板相对的前玻璃板的表面上。 矩阵状间隔物堆叠在栅电极和前玻璃板之间,并且具有各自对应于电子通过孔的多个开口。