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    • 1. 发明专利
    • Field emission cathode element and manufacturing method thereof
    • 场发射阴极元件及其制造方法
    • JP2012138340A
    • 2012-07-19
    • JP2011225712
    • 2011-10-13
    • Hon Hai Precision Industry Co LtdQinghua Univツィンファ ユニバーシティ鴻海精密工業股▲ふん▼有限公司
    • RYU HOFAN FENG-YAN
    • H01J1/304B82Y30/00B82Y40/00C01B31/02H01J9/02
    • H01J9/025H01J31/127H01J2329/0431H01J2329/0455
    • PROBLEM TO BE SOLVED: To provide a field emission cathode element and a manufacturing method thereof.SOLUTION: A field emission cathode element includes a first carbon nanotube structure and a second carbon nanotube structure. In the first carbon nanotube structure, a plurality of first carbon nanotubes are arranged in a plane shape. The second carbon nanotube structure is composed of a plurality of second carbon nanotubes arranged on each of a plurality of lines and formed on a surface of the first carbon nanotube structure. The plurality of the second carbon nanotubes are perpendicularly provided on the surface of the first carbon nanotube structure. An end part which separates from the surface of the first carbon nanotube structure of the second carbon nanotube structure is used as a tip of electron emission. In the plurality of the second carbon nanotubes, an intermediate line has the highest height and the height decreases gradually in a direction away from the intermediate line.
    • 解决的问题:提供场发射阴极元件及其制造方法。 解决方案:场发射阴极元件包括第一碳纳米管结构和第二碳纳米管结构。 在第一碳纳米管结构中,多个第一碳纳米管被排列成平面形状。 第二碳纳米管结构由布置在多条线上并形成在第一碳纳米管结构的表面上的多个第二碳纳米管构成。 多个第二碳纳米管垂直地设置在第一碳纳米管结构的表面上。 与第二碳纳米管结构的第一碳纳米管结构的表面分离的端部用作电子发射的尖端。 在多个第二碳纳米管中,中间线具有最高的高度,并且高度在远离中间线的方向上逐渐降低。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Electric field emission display device
    • 电场发射显示装置
    • JP2012134119A
    • 2012-07-12
    • JP2011103634
    • 2011-05-06
    • Hon Hai Precision Industry Co LtdQinghua Univツィンファ ユニバーシティ鴻海精密工業股▲ふん▼有限公司
    • GI YORYU HOGUO HAIYANFAN FENG-YAN
    • H01J31/12H01J1/304H01J29/04
    • H01J1/304H01J29/04H01J31/127H01J2329/0431H01J2329/0455
    • PROBLEM TO BE SOLVED: To provide an electric field emission display device, in particular an electron emitter using a carbon nano-tube and an electric field emission display device using it.SOLUTION: The electric field emission display device includes an insulation substrate, a plurality of row electrodes, a plurality of cathode emitters, an isolation layer, a plurality of column electrodes, and an anode element. The plural cathode emitters include at least one electron emitter, and the electron emitter is a tube-shaped structure. One end of the electron emitter is electrically connected to the row electrodes, and the other end extends in a direction of the anode electrode. The electron emitter has a hollow and linear shaft center, and the electron emitter comprises a plurality of carbon nano-tubes surrounding the linear shaft center. A plurality of electron emitting tips are formed at one end of the electron emitter.
    • 要解决的问题:提供一种电场发射显示装置,特别是使用碳纳米管的电子发射体和使用它的电场发射显示装置。 解决方案:电场发射显示装置包括绝缘基板,多个行电极,多个阴极发射器,隔离层,多个列电极和阳极元件。 多个阴极发射体包括至少一个电子发射体,电子发射体是管状结构。 电子发射体的一端与行电极电连接,另一端沿阳极电极的方向延伸。 电子发射体具有中空且直线的轴心,电子发射体包括围绕直线轴心的多个碳纳米管。 在电子发射器的一端形成多个电子发射尖端。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Thermal-chromatic element and thermal-chromatic display device
    • 热色元件和热色显示装置
    • JP2011138125A
    • 2011-07-14
    • JP2010286049
    • 2010-12-22
    • Hon Hai Precision Industry Co LtdQinghua Univツィンファ ユニバーシティ鴻海精密工業股▲ふん▼有限公司
    • RYU HOZHOU DUAN-LIANGFAN FENG-YAN
    • G02F1/17B82B1/00B82B3/00G09F9/30
    • G02F1/17G02F1/009G02F1/0147
    • PROBLEM TO BE SOLVED: To provide a thermal-chromatic element and a thermal-chromatic display device. SOLUTION: The thermal-chromatic element includes a sealed housing, an isolation layer, a first heating structure, a second heating structure, a thermal-chromatic structure, and an absorption layer. A sealed space is formed in the sealed housing; the isolation layer separates the sealed space into a first space and a second space; and at least a part of the sealed housing that encloses the first space is transparent. The thermal-chromatic structure is disposed in the first space and changes colors by releasing and absorbing gas. The first heating structure is used to heat the thermal-chromatic structure. The absorption layer is disposed in the second space and is used for absorbing and releasing gas. The second heating structure is used to heat the absorption layer. The present invention also provides a thermal-chromatic display device using the thermal-chromatic element. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供热色元件和热色显示装置。 解决方案:热色元件包括密封壳体,隔离层,第一加热结构,第二加热结构,热色结构和吸收层。 在密封壳体中形成密封空间; 隔离层将密封空间分离成第一空间和第二空间; 并且封闭第一空间的密封壳体的至少一部分是透明的。 热色结构设置在第一空间中,通过释放和吸收气体来改变颜色。 第一加热结构用于加热热色结构。 吸收层设置在第二空间中,用于吸收和释放气体。 第二加热结构被用于加热吸收层。 本发明还提供一种使用该热色元件的热色显示装置。 版权所有(C)2011,JPO&INPIT
    • 4. 发明专利
    • Thermochromatic device and thermochromatic display apparatus
    • 热电装置和热显示装置
    • JP2011128615A
    • 2011-06-30
    • JP2010272379
    • 2010-12-07
    • Hon Hai Precision Industry Co LtdQinghua Univツィンファ ユニバーシティ鴻海精密工業股▲ふん▼有限公司
    • RYU HOFAN FENG-YAN
    • G09F9/30
    • C09K9/02C09K2211/1425C09K2211/1458
    • PROBLEM TO BE SOLVED: To provide a thermochromatic device and a thermochromatic display apparatus achieving a quick response speed and a low power consumption operation. SOLUTION: The thermochromatic device 220 includes: an insulating substrate 202; a back color layer 226; a thermochromatic structure 218; and at least one heating structure 208. The back color layer 226, the thermochromatic structure 218 and the heating structure 208 are located on the insulating substrate 202. The thermochromatic structure 220 is located on the surface away from the insulating substrate 202, of the back color layer 226. The heating structure 208 includes a carbon nanotube structure which includes a plurality of carbon nanotubes, used for heating the thermochromatic structure 218. The thermochromatic structure 218 includes a transparence-changeable material which performs a transformation between a transparent state and a nontransparent state. The thermochromatic display apparatus using the thermochromatic device 220 is also provided. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供实现快速响应速度和低功耗操作的热色设备和热色显示设备。 解决方案:热色设备220包括:绝缘基板202; 背色层226; 热色结构218; 和至少一个加热结构208.背色层226,热色结构218和加热结构208位于绝缘基板202上。热色结构220位于远离绝缘基板202的背面 加热结构208包括碳纳米管结构,其包括用于加热热色结构218的多个碳纳米管。热色结构218包括透明可变材料,其在透明状态和不透明之间进行变换 州。 还提供了使用热色装置220的热色显示装置。 版权所有(C)2011,JPO&INPIT
    • 5. 发明专利
    • Heater
    • 加热器
    • JP2010232178A
    • 2010-10-14
    • JP2010075420
    • 2010-03-29
    • Hon Hai Precision Industry Co LtdQinghua Univツィンファ ユニバーシティ鴻海精密工業股▲ふん▼有限公司
    • RYU HOLIU LIANGJIANG KAILIFAN FENG-YAN
    • H05B3/10C01B31/02H05B3/03H05B3/14
    • H05B3/145H05B2203/032H05B2214/04
    • PROBLEM TO BE SOLVED: To provide a heater that is light-weighted and has a wide range of applications.
      SOLUTION: The heater is equipped with an insulating substrate, a plurality of line electrodes, a plurality of column electrodes, and a plurality of carbon nanotube heating elements. The plurality of line electrodes are installed, mutually in parallel with equal spacing on one surface of the insulating substrate, the plurality of column electrodes are mutually installed, in parallel with an equal spacing on the surface of the insulating substrate, and the plurality of line electrodes and the plurality of column electrodes are intersected to form a plurality of grids. The plurality of grids and the plurality of carbon nanotube heating elements are in one-to-one correspondence, and each carbon nanotube heating element is electrically connected to the line electrode and the column electrode of respective corresponding grid. At least one carbon nanotube heating element is controlled as an independent heating point.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供轻量加热并具有广泛应用的加热器。 解决方案:加热器配备有绝缘基板,多个线电极,多个列电极和多个碳纳米管加热元件。 多个线电极在绝缘基板的一个表面上以相等间隔相互平行地安装,多个列电极在绝缘基板的表面上以相等间隔平行地相互安装,并且多条线 电极和多个列电极相交以形成多个栅极。 多个栅格和多个碳纳米管加热元件是一一对应的,并且每个碳纳米管加热元件电连接到各个相应格栅的线电极和列电极。 至少一个碳纳米管加热元件被控制为独立的加热点。 版权所有(C)2011,JPO&INPIT
    • 7. 发明专利
    • Field emission electron source
    • 场发射电子源
    • JP2009152202A
    • 2009-07-09
    • JP2008322712
    • 2008-12-18
    • Hon Hai Precision Industry Co LtdQinghua Univツィンファ ユニバーシティ鴻海精密工業股▲ふん▼有限公司
    • RYU HOLIU LIANGJIANG KAILIFAN FENG-YAN
    • H01J1/304
    • H01J29/04H01J31/127
    • PROBLEM TO BE SOLVED: To provide a field emission electron source low in power consumption, excelling in uniformity of electron emission, and having a large size. SOLUTION: This field emission electron source includes an insulating substrate, a plurality of row electrode lead wires and a plurality of column electrode lead wires installed on the insulating substrate, and a plurality of electron emitting units. A plurality of grids are formed by crossing the plurality of row electrode lead wires and the plurality of column electrode lead wires. One electron emitting unit is installed on each grid. The electron emitting unit includes a positive electrode, a negative electrode and a negative electrode emitter. The positive electrode and the negative electrode are installed separately from each other. The positive electrode is electrically connected to the row electrode lead wire. The negative electrode is electrically connected to the column electrode lead wire. The negative electrode emitter is electrically connected to the negative electrode, and installed separately from the positive electrode. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供功率消耗低的电场发射电子源,电子发射的均匀性优异并且具有大尺寸。 解决方案:该场发射电子源包括绝缘基板,多个行电极引线和安装在绝缘基板上的多个列电极引线,以及多个电子发射单元。 通过使多个行电极引线与多个列电极引线交叉而形成多个栅极。 每个电网上安装一个电子发射单元。 电子发射单元包括正极,负极和负极发射极。 正极和负极彼此分开地安装。 正极与行电极引线电连接。 负极与列电极引线电连接。 负极发射极与负极电连接,与正极分开安装。 版权所有(C)2009,JPO&INPIT
    • 8. 发明专利
    • Field emission device
    • 场发射装置
    • JP2012129182A
    • 2012-07-05
    • JP2011047483
    • 2011-03-04
    • Hon Hai Precision Industry Co LtdQinghua Univツィンファ ユニバーシティ鴻海精密工業股▲ふん▼有限公司
    • RYU HOZHOU DUANLIANGFAN FENG-YAN
    • H01J1/304
    • H01J1/316H01J31/127H01J2201/30469H01J2201/3165H01J2329/0455H01J2329/0489
    • PROBLEM TO BE SOLVED: To provide a field emission device, particularly to provide a field emission device of large size.SOLUTION: The field emission device of the invention comprises: an insulative substrate; an electron emission unit; and a plurality of row extraction electrodes; and a plurality of column extraction electrodes. The row and column extraction electrodes are electrically insulated from each other and mutually cross to form a grid structure. The electron emission unit is set in each cell of the grid structure. The electron emission unit includes: an anode electrode; a cathode electrode; a fluorescence layer; a cathode emitter; a first focus electrode; and a second focus electrode. The anode electrode is connected to the row extraction electrode, whereas the cathode electrode is connected to the column extraction electrode. The cathode emitter is placed between the anode and cathode electrodes; one end thereof is connected to the cathode electrode, and the other end is opposed to the anode electrode. The fluorescence layer is formed on a surface of the anode electrode opposite to its surface in contact with the insulative substrate of the anode electrode. The first and second focus electrodes are each connected to the column extraction electrode, and insulated from the row extraction electrode and the anode electrode, and placed on opposing sides of the cathode emitter.
    • 要解决的问题:提供一种场发射装置,特别是提供大尺寸的场发射装置。 解决方案:本发明的场致发射器件包括:绝缘衬底; 电子发射单元; 和多个行提取电极; 和多个列提取电极。 行和列提取电极彼此电绝缘并相互交叉以形成栅格结构。 电子发射单元设置在电网结构的每个电池中。 电子发射单元包括:阳极电极; 阴极电极; 荧光层; 阴极发射器 第一焦点电极; 和第二聚焦电极。 阳极电极与行提取电极连接,而阴极连接到列提取电极。 阴极发射极放置在阳极和阴极之间; 其一端连接到阴极电极,另一端与阳极电极相对。 荧光层形成在与阳极电极的绝缘基板接触的与其表面相反的表面上。 第一和第二聚焦电极各自连接到列提取电极,并且与行提取电极和阳极电极绝缘,并且放置在阴极发射体的相对侧上。 版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • Thermal-chromatic element and thermal-chromatic display device
    • 热色元件和热色显示装置
    • JP2011138126A
    • 2011-07-14
    • JP2010286050
    • 2010-12-22
    • Hon Hai Precision Industry Co LtdQinghua Univツィンファ ユニバーシティ鴻海精密工業股▲ふん▼有限公司
    • RYU HOZHOU DUAN-LIANGFAN FENG-YAN
    • G02F1/17B82B1/00B82B3/00G09F9/30
    • G02F1/0147G02B26/004G02F1/009
    • PROBLEM TO BE SOLVED: To provide a thermal-chromatic element and a thermal-chromatic display device.
      SOLUTION: The thermal-chromatic element includes a sealed housing, an isolation layer, a first heating structure, a second heating structure, and a chromatic color-developing layer. A sealed space is formed in the sealed housing; the isolation layer separates the sealed space into a first space and a second space; and at least a part of the sealed housing that encloses the first space is transparent. The first heating structure is used to heat the first space. The second heating structure is used to heat the second space. As the chromatic color-developing layer is disposed in the first space or in the second space and heated, the chromatic color-developing layer converted into a gaseous state passes through the isolation layer to change positions between the first space and the second space. The present invention also provides a thermal-chromatic display device using the thermal-chromatic element.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供热色元件和热色显示装置。 解决方案:热色元件包括密封壳体,隔离层,第一加热结构,第二加热结构和彩色显色层。 在密封壳体中形成密封空间; 隔离层将密封空间分离成第一空间和第二空间; 并且封闭第一空间的密封壳体的至少一部分是透明的。 第一加热结构用于加热第一空间。 第二加热结构用于加热第二空间。 由于色彩显色层被设置在第一空间或第二空间中并被加热,所以彩色显色层转变成气态通过隔离层以改变第一空间和第二空间之间的位置。 本发明还提供一种使用该热色元件的热色显示装置。 版权所有(C)2011,JPO&INPIT