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    • 3. 发明申请
    • METHOD OF MANUFACTURING OPTICAL WAVEGUIDE CORE, METHOD OF MANUFACTURING OPTICAL WAVEGUIDE, OPTICAL WAVEGUIDE, AND OPTOELECTRIC COMPOSITE WIRING BOARD
    • 制造光波导芯的方法,制造光波导,光波导和光电复合布线板的方法
    • WO2010114109A2
    • 2010-10-07
    • PCT/JP2010/056044
    • 2010-03-26
    • PANASONIC ELECTRIC WORKS CO., LTD.NAKASHIBA, TohruHASHIMOTO, ShinjiKONDOU, NaoyukiYASHIRO, Junko
    • NAKASHIBA, TohruHASHIMOTO, ShinjiKONDOU, NaoyukiYASHIRO, Junko
    • G02B6/122
    • G02B6/13G02B6/4281G02B6/4283G02B6/43G02B2006/1219
    • In order to provide a method of efficiently manufacturing an optical waveguide core having an endface inclined at a predetermined angle, the following method of manufacturing an optical waveguide core is employed. The method includes: a core material layer forming step of forming a core material layer formed of a photosensitive material on a surface of a cladding layer that has been formed on a substrate; a high refractive index substance covering step of covering a surface of the core material layer with a substance having a refractive index higher than 1 by bringing the high refractive index substance into close contact with the core material layer surface; an exposure step of pattern exposing the core material layer in a predetermined core-forming shape to from a core by irradiating the core material layer on a side covered with the high refractive index substance with exposure light inclined at a predetermined angle with respect to the cladding layer surface; a high refractive index substance removing step of removing the high refractive index substance from the surface of the core material layer exposed in the exposure step; and an development step of developing the core material layer from which the high refractive index substance has been removed in the high refractive index substance removing step so as to form the core having an inclined endface.
    • 为了提供一种有效地制造具有以预定角度倾斜的端面的光波导芯的方法,采用以下的制造光波导芯的方法。 该方法包括:在形成在基板上的包层的表面上形成由感光材料形成的芯材料层的芯材层形成步骤; 高折射率物质,通过使高折射率物质与芯材层表面紧密接触,覆盖通过折射率高于1的物质覆盖芯材层的表面的步骤; 通过以相对于包层以预定角度倾斜的曝光光照射被高折射率物质覆盖的一侧上的芯材料层,将芯材料层以预定的芯形成形式图案曝光于芯的曝光步骤 层表面 从曝光步骤中暴露的芯材层的表面除去高折射率物质的高折射率物质去除步骤; 以及显影步骤,在高折射率物质去除步骤中开发出已经除去高折射率物质的芯材料层,以形成具有倾斜端面的芯。
    • 7. 发明申请
    • TRANSPARENT FILM
    • 透明胶片
    • WO2010104191A1
    • 2010-09-16
    • PCT/JP2010/054277
    • 2010-03-09
    • PANASONIC ELECTRIC WORKS CO., LTD.KISHIMOTO, HirotsuguHASHIMOTO, Shinji
    • KISHIMOTO, HirotsuguHASHIMOTO, Shinji
    • G02B1/04C08G59/32C09D163/00
    • G02B1/04C08G59/3218C08L63/00G02F2001/133302Y10T428/24942Y10T428/249924
    • A transparent film is capable of suppressing discoloration caused by heat, while retaining high transparency and high glass transition temperature. The transparent film includes a glass fiber substrate made of glass fibers and impregnated with a resin composition in which a high refractive resin (a transparent resin) having refractive index higher than the glass fiber is mixed with a low refractive resin (a second transparent resin) having a refractive index lower than the glass fiber to have a resultant refractive index approximate to that of the glass fiber when cured. The high refractive resin has a 3 or more-functional epoxy resin expressed by the following formula (I): wherein R1 is a hydrogen atom or methyl group, R2 is a 2-valent organic group, and R3 to R10 are respectively ones selected from a group consisting of a hydrogen atom, a substituent group, and a molecular chain containing epoxy group.
    • 透明膜能够抑制由热量引起的变色,同时保持高透明度和高玻璃化转变温度。 透明膜包括由玻璃纤维制成的玻璃纤维基材并浸渍有树脂组合物,其中折射率高于玻璃纤维的高折射率树脂(透明树脂)与低折射树脂(第二透明树脂)混合, 具有比玻璃纤维低的折射率,以使其在固化时具有接近玻璃纤维的折射率。 高折射率树脂具有由下式(I)表示的3个以上的功能性环氧树脂:其中,R1是氢原子或甲基,R2是2价有机基团,R3〜R10分别是选自 由氢原子,取代基和含有环氧基的分子链组成的组。