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    • 2. 发明专利
    • Method for manufacturing multilayer wiring substrate, electronic device, and electronic equipment
    • 制造多层布线基板,电子设备和电子设备的方法
    • JP2007116193A
    • 2007-05-10
    • JP2007000466
    • 2007-01-05
    • Seiko Epson Corpセイコーエプソン株式会社
    • FURUSAWA MASAHIROKUROSAWA HIROFUMIHASHIMOTO TAKASHIISHIDA MASAYA
    • H05K3/46H01L21/288H05K3/10
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing a multilayer wiring substrate, which makes it possible to form delicate multilayer wiring by relatively simple manufacturing steps, and to provide an electronic device and electronic equipment. SOLUTION: The method for manufacturing the multilayer wiring substrate, which comprises a wiring pattern 17 and a conductor post 18 which are formed by spraying a plurality of conductive inks 12 containing conductive particles on a substrate 10 from an ink jet head 11, comprises: a first step of spraying a plurality of the conductive inks 12 on the substrate 10; a second step of drying a plurality of the conductive inks 12 sprayed in the first step to form the wiring pattern 17 on the substrate 10; a third step of spraying a plurality of the conductive inks 12 on the wiring pattern 17; a fourth step of drying a plurality of the conductive inks 12 sprayed in the third step to form the conductor post 18 on the wiring pattern 17; and a fifth step of heating the wiring pattern 17 and the conductor post 18 to unite them. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种制造多层布线基板的方法,其可以通过相对简单的制造步骤形成精细的多层布线,并且提供电子设备和电子设备。 解决方案:制造多层布线基板的方法,其包括通过从喷墨头11在基板10上喷射含有导电颗粒的多个导电油墨12而形成的布线图案17和导体柱18, 包括:在基板10上喷射多个导电油墨12的第一步骤; 干燥在第一步骤中喷射的多个导电油墨12以在基板10上形成布线图案17的第二步骤; 将多个导电油墨12喷射到布线图案17上的第三步骤; 在第三步骤中干燥多个导电油墨12以在布线图案17上形成导体柱18的第四步骤; 以及加热布线图案17和导体柱18以使它们相结合的第五步骤。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Electrochemical cell and its manufacturing method
    • 电化学电池及其制造方法
    • JP2007149679A
    • 2007-06-14
    • JP2006316010
    • 2006-11-22
    • Seiko Epson Corpセイコーエプソン株式会社
    • LI SHUNPUISHIDA MASAYA
    • H01M14/00B29C59/02B82B3/00H01L21/027H01L31/04
    • H01G9/2068B82Y30/00B82Y40/00H01G9/2031H01G9/2063H01L51/0004H01L51/0019H01L2251/105Y02E10/542Y02E60/13Y10T29/49115
    • PROBLEM TO BE SOLVED: To provide an electrochemical cell and a manufacturing method of the electrochemical cell including a micro-embossing process and an ink-jet printing process. SOLUTION: A restriction in realizing mass production of DSSC is non-availability of a high resolution patterning technique providing a good alignment. A manufacturing method of a patterned structure on a polymer layer for manufacturing the electrochemical cell is provided. The method includes a process in which a polymer layer is laminated on a base plate, and a stamping process in which the polymer layer is stamped by using an embossing die and thus the embossed polymer layer is formed. The embossing die includes a first array of neighboring cells. The first array is separated each other and exists extending from a stamping face of the embossing die, and thus a second array of neighboring cells is formed. The second array is separated each other and extends as cavities inside the embossed polymer layer. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种电化学电池及其制造方法,其包括微压印工艺和喷墨印刷工艺。 解决方案:实现DSSC批量生产的一个限制是不可用的提供良好对准的高分辨率图案化技术。 提供了用于制造电化学电池的聚合物层上的图案化结构的制造方法。 该方法包括聚合物层层叠在基板上的方法和冲压工艺,其中通过使用压花模冲压聚合物层,从而形成压花聚合物层。 压花模具包括相邻单元的第一阵列。 第一阵列彼此分离并且存在从压花模的冲压面延伸,并且因此形成相邻单元的第二阵列。 第二阵列彼此分离并作为空腔在压花聚合物层内延伸。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Electrochemical cell structure and its manufacturing method
    • 电化学细胞结构及其制备方法
    • JP2007149675A
    • 2007-06-14
    • JP2006316006
    • 2006-11-22
    • Seiko Epson Corpセイコーエプソン株式会社
    • MCGREGOR BARRYISHIDA MASAYASHIMODA TATSUYA
    • H01M14/00H01L31/04
    • H01G9/2081H01G9/2031H01G9/2063H01L27/307H01L51/0005Y02E10/542
    • PROBLEM TO BE SOLVED: To provide an electrochemical cell which can improve manufacturing efficiency of the electrochemical cell of DSSC and ECD and moreover can reduce cost of the electrochemical cell. SOLUTION: The electrochemical cell is composed of a first conductive layer 402, a metal oxide layer 403 which is formed on the above first conductive layer and has a plurality of metal oxide cells neighboring but separated each other, a functional coloring matter layer 404 formed on the above metal oxide layer, a second conductive layer 406 and an electrolyte 405 between the above functional coloring matter layer and the above second conductive layer. At least one of the first conductive layer and the second conductive layer is transparent and the above functional coloring matter layer contains functional coloring matters of at least two different colors each having a color depth so that at least some of the neighboring metal oxide cells can have different colors. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供可以提高DSSC和ECD的电化学电池的制造效率的电化学电池,并且还可以降低电化学电池的成本。 解决方案:电化学电池由第一导电层402,金属氧化物层403组成,其形成在上述第一导电层上,并且具有相邻但彼此分离的多个金属氧化物单元,功能着色层 404形成在上述金属氧化物层上,第二导电层406和电解质405在上述功能着色层和上述第二导电层之间。 第一导电层和第二导电层中的至少一个是透明的,并且上述功能着色层包含至少两种不同颜色的功能性着色物质,每种颜色的颜色深度使得至少一些相邻的金属氧化物电池可具有 不同的颜色。 版权所有(C)2007,JPO&INPIT
    • 6. 发明专利
    • Processor, and processing method
    • 处理器和处理方法
    • JP2006328547A
    • 2006-12-07
    • JP2006222235
    • 2006-08-17
    • Seiko Epson Corpセイコーエプソン株式会社
    • IDE TSUGIONEHASHI SATOSHIISHIDA MASAYASHIMODA TATSUYAKATSUYAMA TAKANOBU
    • C25D19/00C25D17/06
    • PROBLEM TO BE SOLVED: To provide a microfabrication device where the utilizing efficiency of materials is high and the size of which can be reduced.
      SOLUTION: The processor is provided with: a stylet; a first carrying mechanism capable of carrying the stylet; a fluidized body coating mechanism capable of coating the face to be worked with a fluidized body; a second carrying mechanism capable of carrying the fluidized body coating mechanism; an energy feeding apparatus capable of applying fixed voltage to the space between the stylet and the fluidized body; and a controlling apparatus of controlling the first carrying mechanism, the fluidized body coating mechanism, the second carrying mechanism and the energy feeding apparatus. The controlling apparatus can carry the fluidized body coating mechanism by a control signal Sx2, a control signal Sy2 and a control signal Sz2.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种微细加工装置,其中材料的利用效率高并且其尺寸可以降低。

      解决方案:处理器配有:探针; 能携带探针的第一承载机构; 流化体涂覆机构,其能够用流化体涂覆待加工的表面; 能够承载流化体涂覆机构的第二承载机构; 能够向管心针与流化体之间的空间施加固定电压的能量馈送装置; 以及控制第一输送机构,流化体涂覆机构,第二输送机构和能量输送装置的控制装置。 控制装置可以通过控制信号Sx2,控制信号Sy2和控制信号Sz2携带流化体涂覆机构。 版权所有(C)2007,JPO&INPIT

    • 8. 发明专利
    • Electrochemical cell structure and its manufacturing method
    • 电化学细胞结构及其制备方法
    • JP2007149666A
    • 2007-06-14
    • JP2006312626
    • 2006-11-20
    • Seiko Epson Corpセイコーエプソン株式会社
    • MCGREGOR BARRYISHIDA MASAYASHIMODA TATSUYA
    • H01M14/00G02F1/153H01L31/04
    • H01G9/2031H01G9/2081H01L51/0004Y02E10/542
    • PROBLEM TO BE SOLVED: To provide an electrochemical cell and its manufacturing method. SOLUTION: The electrochemical cell includes a first dielectric layer and a metal oxide layer which is formed on the above dielectric layer and has a plurality of metal oxide cells neighboring with a distance to each other and contains, a functional coloring matter layer formed on the above metal oxide layer, a second dielectric layer and an electrolyte between the above functional coloring matter layer and the above second dielectric layer. At least either one of the above first and second dielectric layers is transparent. As one embodiment, the electrochemical cell is formed on the above first dielectric layer and, furthermore, has a separating means which encloses each of a plurality of the above neighboring metal oxide cells. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种电化学电池及其制造方法。 解决方案:电化学电池包括形成在上述电介质层上的第一电介质层和金属氧化物层,并且具有彼此间隔一定距离的多个金属氧化物单元,并且含有形成的功能色素层 在上述金属氧化物层上,在上述功能着色层和上述第二介电层之间具有第二电介质层和电解质。 上述第一和第二电介质层中的至少任一个是透明的。 作为一个实施例,电化学电池形成在上述第一电介质层上,并且还具有包围多个上述相邻金属氧化物单元中的每一个的分离装置。 版权所有(C)2007,JPO&INPIT
    • 9. 发明专利
    • Electroluminescent element and manufacturing method of electroluminescent element
    • 电致发光元件和电致发光元件的制造方法
    • JP2007134348A
    • 2007-05-31
    • JP2007011113
    • 2007-01-22
    • Seiko Epson Corpセイコーエプソン株式会社
    • FUJIMORI NATSUOISHIDA MASAYA
    • H05B33/10H01L51/50
    • PROBLEM TO BE SOLVED: To make liquid to be surely placed in a predetermined region (without being placed in an adjacent region) with a uniform thickness in the region when a light-emitting layer constituting an organic EL element is placed by an ink-jet method or the like.
      SOLUTION: Thin SiO
      2 film pattern 3 having an opening 3a is formed on an ITO electrode 2. Next, an organic ultrathin film pattern 41 having an opening 4b is formed on the thin SiO
      2 film pattern 3. The surface of the organic ultrathin film pattern 41 becomes repellent to liquid. After a hole transport layer 61 is formed in the opening 4b, liquid 7 containing a light emitting layer forming material is discharged thereon by an ink-jet method. The liquid 7 does not remain on the surface of the organic ultrathin film pattern 41 and instead, enters the opening 4b.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:当构成有机EL元件的发光层被放置在一个有机EL元件的区域中时,使液体被确定地放置在具有均匀厚度的预定区域(不放置在相邻区域中) 喷墨法等。 解决方案:在ITO电极2上形成具有开口3a的薄SiO 2 SBS 2 膜图案3.接着,在薄SiO 2上形成具有开口部4b的有机超薄膜图案41 > 2 膜图案3.有机超薄膜图案41的表面成为驱避液体。 在开口4b中形成空穴输送层61之后,通过喷墨法将含有发光层形成材料的液体7排出。 液体7不残留在有机超薄膜图案41的表面上,而是进入开口4b。 版权所有(C)2007,JPO&INPIT