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    • 3. 发明专利
    • Display device and its manufacturing method
    • 显示设备及其制造方法
    • JP2005032582A
    • 2005-02-03
    • JP2003271233
    • 2003-07-07
    • Sony Corpソニー株式会社
    • KATO HARUO
    • H01J9/24H01J29/87H01J31/12
    • PROBLEM TO BE SOLVED: To solve such problems that the combination of a glass substrate material usable as a display panel component and a spacer material has restrictions.
      SOLUTION: A display device has a display panel in which a spacer 21 is interposed between a cathode substrate 1 and an anode substrate 2, the spacer 21 is made of a rutile single crystal, and the cutting out direction of the spacer from the rutile single crystal is adjusted in accordance with the thermal expansion coefficient of the cathode substrate 1 and that of the anode substrate 2.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:为了解决可用作显示面板部件的玻璃基板材料和间隔材料的组合有限制的问题。 解决方案:显示装置具有显示面板,其中间隔物21插入在阴极基板1和阳极基板2之间,间隔物21由金红石单晶制成,并且间隔物的切出方向从 根据阴极基板1和阳极基板2的热膨胀系数调整金红石单晶。(C)2005,JPO&NCIPI
    • 4. 发明专利
    • Manufacturing method for green sheet
    • 绿板制造方法
    • JP2003033905A
    • 2003-02-04
    • JP2001222769
    • 2001-07-24
    • Sony Corpソニー株式会社
    • KATO HARUO
    • B28B1/30
    • PROBLEM TO BE SOLVED: To provide a manufacturing method for a green sheet, which makes 'cissing' hard to cause and allows the green sheet of unique thickness to be manufactured, even in the use of low-viscosity water-based slurry.
      SOLUTION: In the manufacturing method for the green sheet, after the water-based slurry, in which a ceramic powder is dispersed in water, is applied onto a supported film 10 in which side tapes 12 are placed on both ends, a layer 14 coated with the water-based slurry is dried so that the green sheet can be formed on the supported film 10. A contact angle of a surface of the supported film 10, coming into contact with the water-based slurry, with respect to the water is taken as θ
      1 , and a contact angle of a surface of the side tape 12, coming into contact with the water-based slurry, with respect to the water is taken as θ
      2 . In this case, the supported film 10 and the side tape 12 (i.e., a hydrophobic supported film and a hydrophilic side tape), which satisfy a relationship of θ
      1 >θ
      2 , are used.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:即使在使用低粘度水性浆料的情况下,也可以提供一种生坯片的制造方法,其使得“难以”难以产生并且允许制造独特厚度的生片。 解决方案:在生片的制造方法中,将陶瓷粉末分散在水中的水性浆料施加到其两侧放置有侧带12的支撑膜10上,涂覆有层14 干燥水性浆料,使得可以在被支撑膜10上形成生片。与水相接触的被支撑膜10的表面与水相接触的接触角是 取为θ1,与水相接触的侧带12的表面相对于水的接触角为θ2。 在这种情况下,使用满足θ1>θ2的关系的被支撑膜10和侧带12(即疏水性负载膜和亲水性侧带)。
    • 5. 发明专利
    • Cold-cathode field electron emission element and manufacturing method of the same
    • 冷阴极场发射元件及其制造方法
    • JP2005116469A
    • 2005-04-28
    • JP2003352353
    • 2003-10-10
    • Sony Corpソニー株式会社
    • KOBAYASHI TOMIOKATO HARUOMUROYAMA MASAKAZUITO HIROYUKIYAGI TAKAO
    • H01J9/02H01J1/304H01J29/04H01J31/12
    • PROBLEM TO BE SOLVED: To provide a manufacturing method of a field electron emission element enabling to use a glass substrate, capable of obtaining an electron emission part which can attain high electron emission efficiency. SOLUTION: The manufacturing method of the cold-cathode field electron emission element comprises a process of preparing a supporting body 10 on the surface of which a cathode electrode 11 is formed, a process of forming needle-shaped electron emission parts 41 on a catalyst layer 32 formed on a supporting member 30 by a CVD method, a process of removing the supporting member 30 after obtaining an electron emission layer 43 by filling the electron emission part 41 with a matrix material 42, a process of forming an insulation layer on a whole surface, a process of forming a gate electrode on the insulation layer, and a process of forming an opening on the gate electrode and the insulation layer, and a process of exposing the electron emission layer 43 at the bottom of the opening part. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供能够使用玻璃基板的场致电子发射元件的制造方法,能够获得能够获得高电子发射效率的电子发射部分。 解决方案:冷阴极场致发射元件的制造方法包括在其表面上形成阴极电极11的支撑体10的制备方法,将针状电子发射部分41形成于 通过CVD方法形成在支撑构件30上的催化剂层32,通过用基质材料42填充电子发射部分41获得电子发射层43之后去除支撑构件30的工艺,形成绝缘层 在整个表面上,在绝缘层上形成栅电极的工艺,以及在栅电极和绝缘层上形成开口的工艺,以及在开口部分的底部露出电子发射层43的工艺 。 版权所有(C)2005,JPO&NCIPI
    • 6. 发明专利
    • METHOD FOR FORMING PHOSPHOR SCREEN FOR CATHODE-RAY TUBE
    • JPH0794088A
    • 1995-04-07
    • JP23979593
    • 1993-09-27
    • SONY CORP
    • KATO HARUO
    • H01J9/227H01J9/20
    • PURPOSE:To prevent the carbon fall-out when a phosphor screen is formed on the panel inner surface of a cathode-ray tube by injecting carbon slurry in sector form when the carbon slurry is applied to the panel inner surface of the cathode-ray tube. CONSTITUTION:A photosensitive material (photosensitive solution) such as polyvinyl alcohol(PVA) is injected and applied to the inner surface 1a of a rotating cathode-ray tube panel 1 through a pipe type nozzle, and the applied polyvinyl alcohol photosensitive solution is dried, exposed and developed to form a polyvinyl alcohol stripe, which is then dried. Since a wide angle spray flat nozzle 10 having a sector form is used when a carbon slurry 5 is applied to the panel 1 inner surface, carbon is extensively applied in the sector form, and the carbon application can be performed to an area wider than in the past at once. Since the carbon applying (spraying) speed is raised, further, the foreign material adhered to the panel 1 inner surface can be more surely washed. Thus, the slurry 5 is fitted well to the panel 1, and carbon fall-out can be prevented.
    • 9. 发明专利
    • MANUFACTURE OF BLACK PATTERN
    • JPS6372030A
    • 1988-04-01
    • JP21755386
    • 1986-09-16
    • SONY CORP
    • KATO HARUOWATABE CHIYOJIMIYAZAKI HIDEKI
    • H01J9/227
    • PURPOSE:To enable formation of an excellent black pattern by changing high water pressure into low water pressure in a developing process and injecting an interface activator after the developing process and performing a hard film process. CONSTITUTION:A PVA sensitive film 12 is first developed for 15 seconds with high water pressure of 4 kg/cm to 5 kg/cm or so, and next it is developed for 30 or more seconds with low water pressure of 1.5 kg/cm to 2.5 kg/cm or so, so that a PVA resist layer 15 is formed with stripes on positions corresponding to respective colors. Just after the developing process, an interface activator is injected. Next the layer is coated with a hard film agent. Successively, on the whole surface involving the PVA resist layer 15, a carbon coated film 16 made of carbon slurry is formed, and after it is dried, a peeling agent such as periodate is injected and reversal is performed by water spray, and so the PVA layer 15 and the carbon coated film 16 on the layer 15 are removed to form a black stripe 17.
    • 10. 发明专利
    • FORMATION OF CATHODE-RAY TUBE PHOSPHOR SCREEN
    • JPS6369122A
    • 1988-03-29
    • JP21359086
    • 1986-09-10
    • SONY CORP
    • KATO HARUOKONDO KEIICHIRO
    • H01J9/22
    • PURPOSE:To form a uniform inter-layer film with ease and obtain a color phosphor screen without uneven luminance by forming phosphor layers of plural colors then washing the phosphor layers in warm water and forming an inter- layer film thereafter. CONSTITUTION:Carbon stripes 11 with a specified pattern are formed on the inner surface of a panel 1, followed by application thereto of green phosphor slurry. And, the carbon strips 11 are subjected to exposure and development process after being dried to form a green phosphor stripes 2G in the spaces between the specified carbon stripes 11. Then, in the same manner, blue phosphor stripes 2B and red phosphor stripes 2R are formed in succession. After drying the respective phosphor stripes 2G, 2B and 2R, warm water 12 is injected into the panel 1 to wash them in the warm water. After subsequent drying, primal liquid 3 is applied to form an inter-layer film 4, followed by the formation of a metal-backed layer 13. In this way, an uniform inter-layer film 4 can be formed easily. Accordingly, subsequent formation of the metal-backed layer 13 can be done uniformly across all sections, enabling to obtain a color phosphor screen without uneven luminance.