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    • 1. 发明申请
    • METHOD FOR PRODUCING OPTICAL WAVEGUIDE, OPTICAL WAVEGUIDE, AND PHOTOELECTRIC COMPOSITE WIRING BOARD
    • 生产光波导,光波导和光电复合布线板的方法
    • US20120039563A1
    • 2012-02-16
    • US13146257
    • 2010-01-27
    • Tomoaki ShibataToshihiro KurodaMasatoshi YamaguchiShigeyuki YagiHiroshi Masuda
    • Tomoaki ShibataToshihiro KurodaMasatoshi YamaguchiShigeyuki YagiHiroshi Masuda
    • G02B6/12B44C3/02G02B6/02
    • G02B6/1221G02B6/138Y10T156/1039
    • (1) A method for producing a flexible optical waveguide, containing: a step of forming a first cladding layer; a step of forming a first core layer by laminating a resin film for forming a core layer on at least one end portion of the first cladding layer; a step of forming a second core layer by laminating a resin film for forming a core layer on an entire surface of the first core layer and the first cladding layer; a step of forming a core pattern by patterning the first and second core layers; and a step of embedding the core pattern by forming a second cladding layer on the core pattern and the first cladding layer, (2) a flexible optical waveguide containing a lower cladding layer, a core part and an upper cladding layer, the upper cladding layer having a width that is smaller than a width of the lower cladding layer at least in a bent portion, and is equal to or smaller than a width of the lower cladding layer in an end portion, and the lower cladding layer having a width in a bent portion that is equal to or smaller than a width thereof in an end portion, and a method for producing the same. A flexible optical waveguide that is excellent in bending durability and has small optical loss, and a method for producing the same.
    • (1)柔性光波导的制造方法,其特征在于,包括:形成第一包层的工序; 通过在第一包层的至少一个端部层叠用于形成芯层的树脂膜来形成第一芯层的步骤; 通过在第一芯层和第一包层的整个表面上层叠用于形成芯层的树脂膜来形成第二芯层的步骤; 通过图案化第一和第二芯层来形成芯图案的步骤; 以及通过在芯图案和第一包层上形成第二包层来嵌入芯图案的步骤,(2)包含下包层,芯部和上包层的柔性光波导,上包层 其至少在弯曲部分具有小于下包层的宽度的宽度,并且等于或小于端部中的下包层的宽度,并且下包层的宽度在 端部的宽度等于或小于其宽度的弯曲部分及其制造方法。 弯曲耐久性优异,光损耗小的挠性光波导及其制造方法。
    • 4. 发明申请
    • OPTICAL WAVEGUIDE SUBSTRATE AND METHOD FOR MANUFACTURING SAME
    • 光波导基板及其制造方法
    • US20120219251A1
    • 2012-08-30
    • US13501331
    • 2010-10-12
    • Toshihiro KurodaDaichi SakaiShigeyuki YagiTomoaki Shibata
    • Toshihiro KurodaDaichi SakaiShigeyuki YagiTomoaki Shibata
    • G02B6/12B23P19/00B23Q17/00
    • G02B6/42G02B6/122G02B6/4214H05K1/0274
    • According to a manufacturing method of an optical waveguide substrate including a core (12) and clads (11) (13) and provided with an optical axis conversion mirror (14) in the core and an alignment recess for the optical axis conversion mirror with respect to a light receiving and emitting element, the recess is obtained by obtaining an outline of the core by synthesizing at least an image captured by focusing a microscope (20) to a highest position (14a) of the core in an optical axis conversion mirror portion and an image captured by focusing the microscope to a lowest position (14d), and by determining a position of the alignment recess in reference to a center of gravity of the outline, and according to an optical waveguide substrate obtained by this manufacturing method, it becomes possible to provide an optical waveguide substrate in which the optical axis conversion mirror in the optical waveguide substrate and the light receiving and emitting element are aligned with respect to each other at an extremely high degree of accuracy and a manufacturing method thereof.
    • 根据包括芯部(12)和包层(11)(13)的光波导基板的制造方法,在芯体中设置有光轴转换反射镜(14)和光轴转换反射镜的对准凹部 通过将至少将通过将显微镜(20)聚焦到所述芯的最高位置(14a)的图像合成到光轴转换镜部分中来获得所述芯的轮廓来获得所述凹部 以及通过将显微镜聚焦到最低位置(14d)而捕获的图像,并且通过根据轮廓的重心确定对准凹部的位置,并且根据通过该制造方法获得的光波导基板 可以提供一种光波导基板,其中光波导基板中的光轴转换反射镜和光接收和发射元件相对于 彼此以极高的精度和其制造方法。
    • 7. 发明授权
    • Optical waveguide substrate and method for manufacturing same
    • 光波导基板及其制造方法
    • US08818147B2
    • 2014-08-26
    • US13501331
    • 2010-10-12
    • Toshihiro KurodaDaichi SakaiShigeyuki YagiTomoaki Shibata
    • Toshihiro KurodaDaichi SakaiShigeyuki YagiTomoaki Shibata
    • G02B6/12
    • G02B6/42G02B6/122G02B6/4214H05K1/0274
    • According to a manufacturing method of an optical waveguide substrate including a core (12) and clads (11) (13) and provided with an optical axis conversion mirror (14) in the core and an alignment recess for the optical axis conversion mirror with respect to a light receiving and emitting element, the recess is obtained by obtaining an outline of the core by synthesizing at least an image captured by focusing a microscope (20) to a highest position (14a) of the core in an optical axis conversion mirror portion and an image captured by focusing the microscope to a lowest position (14d), and by determining a position of the alignment recess in reference to a center of gravity of the outline, and according to an optical waveguide substrate obtained by this manufacturing method, it becomes possible to provide an optical waveguide substrate in which the optical axis conversion mirror in the optical waveguide substrate and the light receiving and emitting element are aligned with respect to each other at an extremely high degree of accuracy and a manufacturing method thereof.
    • 根据包括芯部(12)和包层(11)(13)的光波导基板的制造方法,在芯体中设置有光轴转换反射镜(14)和光轴转换反射镜的对准凹部 通过将至少将通过将显微镜(20)聚焦到所述芯的最高位置(14a)的图像合成到光轴转换镜部分中来获得所述芯的轮廓来获得所述凹部 以及通过将显微镜聚焦到最低位置(14d)而捕获的图像,并且通过根据轮廓的重心确定对准凹部的位置,并且根据通过该制造方法获得的光波导基板 可以提供一种光波导基板,其中光波导基板中的光轴转换反射镜和光接收和发射元件相对于 彼此以极高的精度和其制造方法。
    • 8. 发明申请
    • OPTICAL WAVEGUIDE, OPTO-ELECTRIC HYBRID BOARD, AND OPTICAL MODULE
    • 光电波,OPTO-ELECTRIC混合板和光模块
    • US20110235964A1
    • 2011-09-29
    • US13061314
    • 2009-08-28
    • Hiroshi MasudaToshihiro KurodaTomoaki Shibata
    • Hiroshi MasudaToshihiro KurodaTomoaki Shibata
    • G02B6/36G02B6/26
    • G02B6/4214G02B6/138H01L2224/48091H01L2224/48137H05K1/0274H05K1/183H05K3/365H01L2924/00014
    • The present invention relates to an optical waveguide comprising a lower cladding layer, a patternized core layer and an upper cladding layer, wherein a striking part for positioning is provided in one end part thereof, and an optical path turning mirror face is formed in a position different from a striking part-forming end part in the above core layer.Capable of being provided are an optical waveguide and an optoelectronic circuit board each having a simple configuration in which an optical device is not mounted on an optical wiring part or an optoelectronic composite wiring part and capable of connecting an optical device with a core of an optical waveguide in an optical wiring part (optical waveguide) or an optoelectronic composite wiring part (optoelectronic circuit board) at a high position accuracy and an optical module comprising an optical waveguide or an optoelectronic circuit board and a connector.
    • 本发明涉及一种包括下包层,图案化核心层和上包层的光波导,其中在其一个端部设置有用于定位的击打部分,并且光路转向镜面形成在一个位置 与上述芯层中的打击部分形成端部不同。 能够提供的是光波导和光电子电路板,其具有简单的配置,其中光学装置不安装在光布线部分或光电复合布线部分上,并且能够将光学装置与光学芯部连接 光学配线部(光波导路)或光电子复合配线部(光电子电路基板)的高精度的波导管以及包括光波导或光电子电路基板以及连接器的光学模块。
    • 10. 发明授权
    • Optical waveguide and method for manufacturing the same
    • 光波导及其制造方法
    • US08620127B2
    • 2013-12-31
    • US12808537
    • 2008-12-11
    • Masatoshi YamaguchiTomoaki ShibataTakeshi OohashiAtsushi Takahashi
    • Masatoshi YamaguchiTomoaki ShibataTakeshi OohashiAtsushi Takahashi
    • G02B6/10
    • G02B6/138G02B6/1221
    • The invention provides an optical waveguide including a resin substrate containing an inorganic filler, and at least a UV-absorbing layer, a lower cladding layer, a patterned core layer, and an upper cladding layer laminated above the resin substrate in this order, wherein the core layer has been patterned through light exposure and development, and the UV-absorbing layer has a thickness of 10 to 50 μm, and a method for producing an optical waveguide, including a step of forming a UV-absorbing layer on a resin substrate containing an inorganic filler; a step of forming a lower cladding layer on the UV-absorbing layer; a step of forming a core layer on the lower cladding layer; a step of subjecting the core layer to light exposure to thereby transfer a pattern having a given shape to the core layer; a step of developing the core layer to thereby form a core pattern; and a step of forming an upper cladding layer on the patterned core layer. According to the present invention, an optical waveguide having a high-resolution core pattern can be produced.
    • 本发明提供了一种光波导,其包括含有无机填料的树脂基材,以及至少层叠在树脂基板上方的UV吸收层,下包层,图案化芯层和上包层,其中, 核心层通过曝光和显影进行图案化,并且UV吸收层的厚度为10至50μm,以及制造光波导的方法,包括在树脂基板上形成UV吸收层的步骤,所述树脂基板含有 无机填料; 在UV吸收层上形成下包层的步骤; 在下包层上形成芯层的步骤; 对芯层进行曝光的步骤,从而将具有给定形状的图案转印到芯层; 显影核心层从而形成芯图案的步骤; 以及在图案化芯层上形成上包层的步骤。 根据本发明,可以制造具有高分辨率芯图案的光波导。