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    • 1. 发明专利
    • Polymer optical waveguide and polymer optical waveguide manufacturing method
    • 聚合物光波导和聚合物光波导制造方法
    • JP2012037805A
    • 2012-02-23
    • JP2010179456
    • 2010-08-10
    • Alps Electric Co Ltdアルプス電気株式会社
    • MIMORI KENICHISHINOHARA EIJI
    • G02B6/13G02B6/122
    • PROBLEM TO BE SOLVED: To provide a polymer optical waveguide capable of reducing optical loss in a reflection mirror surface, while allowing less adhesion of foreign substances such as dust thereon in manufacturing or in use.SOLUTION: A polymer optical waveguide 1 comprises a first clad film 4 and a second clad film 2 having contact with an outer face of a core 20 made of a polymeric material. The first clad film has a concavity 17 on one surface thereof. The core comprises a light guide part and a reflection mirror surface 15. The first clad film has a bore 5 in a portion corresponding to a reflection mirror surface. The bore 5 is opened to approach the reflection mirror surface from another surface of the first clad film. The reflection mirror surface and a bottom of the bore are connectedly provided with a protective film and a bottom film made up of part of the first clad film, respectively, and the second clad film is formed to have close contact with the core and the one surface of the first clad film.
    • 要解决的问题:提供能够减少反射镜表面中的光学损失的聚合物光波导,同时在制造或使用中允许较少的诸如灰尘的异物的附着。 解决方案:聚合物光波导1包括与由聚合物材料制成的芯20的外表面接触的第一包层膜4和第二覆盖膜2。 第一包层膜在其一个表面上具有凹部17。 芯部包括导光部和反射镜面15.第一包层膜具有与反射镜面对应的部分的孔5。 打开孔5以从第一包层膜的另一表面接近反射镜表面。 反射镜表面和孔的底部分别连接有由第一包层膜的一部分构成的保护膜和底膜,并且第二包膜被形成为与芯紧密接触,并且一个 第一包层膜的表面。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Spray coating method and spray coating apparatus
    • 喷涂方法和喷涂涂装
    • JP2006007164A
    • 2006-01-12
    • JP2004191165
    • 2004-06-29
    • Alps Electric Co Ltdアルプス電気株式会社
    • TAKAHASHI JUNKOSHINOHARA EIJIABE MUNEMITSUOKUDERA MASAHARUITO TAKUOSASAKI MINORUHANE KAZUHIRO
    • B05D1/02B05B15/00B05D3/02H01L21/027
    • PROBLEM TO BE SOLVED: To provide a spray coating method and a spray coating apparatus, capable of forming a coat with a desired thickness on the surface of a work without generating liquid sagging even if the surface of the work is uneven.
      SOLUTION: The spray coating method has a step of spraying the coating liquid to form the coat while partially irradiating a light 39 with a wavelength, being absorbed in the work 2 and also not being absorbed in the coating liquid, on a part of the work 2 to heat. The spray coating apparatus has a work supporting table 3a loading the work 2, a coating nozzle 5 spraying the coating liquid on the work 2, a light source 41 partially irradiating the light with the wavelength, being absorbed in the work 2 and also not being absorbed in the coating liquid, on a part of the work 2 to heat, and the work supporting table and a light-source relative moving means, for changing an irradiating angle of the light 39 irradiating on the work 2. And this apparatus has a structure capable of irradiating the light so that the light source 41 crosses a spraying area of the coating liquid sprayed from the coating nozzle 5.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供喷涂方法和喷涂装置,即使工件的表面不均匀,也能够在工件的表面上形成具有所需厚度的涂层而不产生液体下垂。 解决方案:喷涂方法具有喷涂涂布液以形成涂层的步骤,同时部分地将具有波长的光39在工件2中吸收并且也不被吸收在涂布液中的部分上 的工作2加热。 喷涂装置具有装载工件2的工件支承台3a,将涂布液喷射到工件2上的涂布喷嘴5,部分地照射波长的光被吸收在工件2中的光源41,也不是 在工件2的一部分上被吸收在加热液中,以及工作支撑台和光源相对移动装置,用于改变照射在工件2上的光39的照射角度。该装置具有 能够照射光的结构,使得光源41与从喷嘴5喷射的涂布液的喷涂区域交叉。(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Spray coat apparatus and spray-coating method
    • 喷涂套装和喷涂方法
    • JP2005334810A
    • 2005-12-08
    • JP2004159419
    • 2004-05-28
    • Alps Electric Co Ltdアルプス電気株式会社
    • ABE MUNEMITSUTAKAHASHI JUNKOSHINOHARA EIJIOKUDERA MASAHARUSASAKI MINORUHANE KAZUHIRO
    • B05B17/06B05B7/04B05C11/08B05D1/02B05D3/00H01L21/027
    • PROBLEM TO BE SOLVED: To improve the uniformity and flatness of coating films, and at the same time, to realize to control a chamber for performing coating processing, and a loading room and an unloading room independently of each other.
      SOLUTION: The subject spray coat apparatus 1, which sprays a coating liquid 14 to works W arranged in a coating chamber 10 to form the film W1 on the surfaces of the works W, has the loading room 20 disposed continuously to the coating chamber 10 and made able to transport the works W to the coating chamber 10 in an air-tight state, and the loading room is provided with a solvent supply nozzle 21 for spraying a solvent 25 contained in the coating liquid 14, into the loading room 20, and a concentration control means for controlling the solvent concentration by detecting the solvent concentration in the loading room 20.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提高涂膜的均匀性和平坦度,并且同时实现控制用于进行涂布处理的室和彼此独立的装载室和卸载室。 解决方案:将涂布液14喷射到布置在涂布室10中的工件W以在工件W的表面上形成膜W1的被检体喷涂装置1具有连续设置在涂层上的装载室20 并且能够将工件W以气密状态运送到涂布室10,并且装载室设置有用于将包含在涂布液14中的溶剂25喷射到装载室中的溶剂供给喷嘴21 20,以及浓度控制装置,用于通过检测装载室20中的溶剂浓度来控制溶剂浓度。版权所有:(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Method for forming conductor pattern
    • 形成导体图案的方法
    • JP2005236188A
    • 2005-09-02
    • JP2004046179
    • 2004-02-23
    • Alps Electric Co Ltdアルプス電気株式会社
    • SHINOHARA EIJI
    • H05K3/20C25D5/02H01L21/027H01L21/768H05K3/00
    • PROBLEM TO BE SOLVED: To provide a method for forming a conductor pattern having no restriction of a resist material, and then capable of repeatedly using a photo mask once formed, and excellent in productivity.
      SOLUTION: The method for forming the conductor pattern comprises steps of forming a transparent conductive film 4 on a mask substrate 3 with a shielding film 2 formed on one surface 1a side of a transparent substrate 1, depositing a resist layer 5 on the film 4, making the resist layer 5 a patterned resist layer 6 having a resist removal part 6a by irradiating light from the other surface 1b side of the mask substrate 3 to expose and develop the resist layer 5, plating and forming the conductor pattern on the film 4 exposed from the resist removal part 6a, and moving the conductive pattern to the wiring board by mounting a wiring board on the conductive pattern.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种形成不受抗蚀剂材料的限制的导体图案的方法,然后能够一旦形成就可以重复使用光掩模,并且生产率优异。 解决方案:用于形成导体图案的方法包括以下步骤:在掩模基板3上形成透明导电膜4,在透明基板1的一个表面1a侧上形成屏蔽膜2,在其上沉积抗蚀剂层5 膜4,通过照射来自掩模基板3的另一个表面1b侧的光,使抗蚀剂层5成为具有抗蚀剂除去部分6a的图案化抗蚀剂层6,以曝光和显影抗蚀剂层5,在其上镀覆和形成导体图案 从抗蚀剂去除部6a暴露的薄膜4,并且通过将布线板安装在导电图案上而将导电图案移动到布线板。 版权所有(C)2005,JPO&NCIPI
    • 8. 发明专利
    • Method for manufacturing optical element
    • 制造光学元件的方法
    • JP2009028952A
    • 2009-02-12
    • JP2007193363
    • 2007-07-25
    • Alps Electric Co Ltdアルプス電気株式会社
    • OGISO SHIGEYUKIKAMIYAMA KOICHIKYOTANI SHOICHISHINOHARA EIJITAKAMURA SHOZO
    • B29C43/18B29C43/36B29L11/00G02B1/04G02B3/00G02B3/02
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing an optical element which has a high degree of freedom regarding molding a lens part for a substrate having a light-shielding film.
      SOLUTION: Provided is a method for manufacturing an optical element in which the lens part 12 is formed on the substrate 1 having the translucent opening 11 formed on its surface. The resin material 31 consisting of a UV-curing resin is put on the position of the opening 11 of the substrate 1, the resin material 31 is pressed by the mold 32 having the lens forming face 32a and consisting of a UV-transmissible material, and in the state of its being pressed UV is irradiated through the mold 32 against the resin material 31 to bring about the cure. By the above the lens part 12 is formed on the surface of the substrate 1.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供一种制造光学元件的方法,该光学元件在具有遮光膜的基板的透镜部件成型时具有高自由度。 解决方案:提供一种制造光学元件的方法,其中透镜部分12形成在其表面上形成有半透明开口11的基板1上。 将由UV固化树脂构成的树脂材料31放置在基板1的开口部11的位置,树脂材料31被具有透镜形成面32a的模具32按压,并由紫外线透射材料构成, 并且在其被按压的状态下,UV通过模具32被照射到树脂材料31上以实现固化。 通过上述,透镜部分12形成在基板1的表面上。版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • Glass substrate and manufacturing method therefor
    • 玻璃基板及其制造方法
    • JP2006184184A
    • 2006-07-13
    • JP2004379736
    • 2004-12-28
    • Alps Electric Co Ltdアルプス電気株式会社
    • ABE MUNEMITSUSHINOHARA EIJIHATAUCHI TAKASHITAMURA MANABUYOSOKAWA CHIAKIMIURA AKITOTAKAHASHI KOICHI
    • G01L9/00C03C27/02H01L29/84
    • PROBLEM TO BE SOLVED: To provide a glass substrate allowing electric conduction on both faces, and suitable for packaging by vacuum sealing, and a manufacturing method therefor.
      SOLUTION: A through hole 15 is formed in the glass substrate 11 by executing sand blasting, for example. A silicon substrate 16 is joined onto a main face 11b by anode junction to close a main face 11b side of the through hole 15. Metal is embedded to form a conductive island-like body 12 exposed on the main face 11b, for example, by plating-treating the through hole 15 of the glass substrate 11. The silicon substrate 16 other than a joined interface to the glass substrate 11 and a connection area to the island-like body 12 (junction area altogether) is removed by, for example, sand blasting or the like. That is, the silicon substrate 16 is patterned to remain the silicon layer 13 at least on the the area connected electrically to the island-like body 12 and the joined interface 14 to the glass substrate 11.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够在两面上进行导电并适合于真空密封包装的玻璃基板及其制造方法。 解决方案:例如,通过执行喷砂在玻璃基板11中形成通孔15。 硅基板16通过阳极结接合到主面11b上,以关闭通孔15的主面11b侧。金属被嵌入以形成暴露在主面11b上的导电岛状体12,例如通过 对玻璃基板11的通孔15进行电镀处理。除了与玻璃基板11的接合界面以外的硅基板16以及与岛状体12的连接区域(整个接合区域)的除去,例如, 喷砂等。 也就是说,硅衬底16被图案化以至少在与岛状体12电连接的区域和与玻璃衬底11的接合界面14相连接的区域上保留硅层13.版权所有(C)2006 ,JPO&NCIPI