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    • 24. 发明申请
    • OPTICAL DEVICE, OPTICAL SYSTEM, AND METHOD OF MANUFACTURING OPTICAL DEVICE
    • 光学装置,光学系统和制造光学装置的方法
    • US20100172608A1
    • 2010-07-08
    • US12440332
    • 2007-09-07
    • Rei YamamotoToshihiro Kuroda
    • Rei YamamotoToshihiro Kuroda
    • G02B6/12B44C1/22
    • G02B6/29361G02B6/264G02B6/29362G02B6/3636G02B6/3652G02B6/3692
    • An optical device to be connected to an optical fiber and an optical system in which the optical fiber is fixed to the optical device are provided, which optical device and optical system can restrict variations in a distance between inclined surfaces for supporting the optical fiber, and can enhance a productivity of the optical device and system. The optical system according to the present invention is, for example an optical multiplexer/demultiplexer having an optical device according to the present invention, which device has a substrate (2) with a crystal axis, and a groove (10a) for supporting an optical fiber (6a). The groove (10a) has a pair of opposing inclined surfaces (24) for supporting the optical fiber (6a), and a recess (26) formed between the pair of opposing inclined surfaces (24).
    • 设置连接到光纤的光学装置和其中光纤固定到光学装置的光学系统,该光学装置和光学系统可以限制用于支撑光纤的倾斜表面之间的距离的变化,以及 可以提高光学设备和系统的生产率。 根据本发明的光学系统是例如具有根据本发明的光学装置的光复用器/解复用器,该器件具有具有晶体轴的衬底(2)和用于支撑光学器件的凹槽(10a) 纤维(6a)。 槽(10a)具有用于支撑光纤(6a)的一对相对的倾斜表面(24)和形成在该对相对的倾斜表面(24)之间的凹部(26)。
    • 27. 发明授权
    • Optical connecting structure
    • 光连接结构
    • US08721192B2
    • 2014-05-13
    • US12742728
    • 2008-11-14
    • Nobuo MiyaderaToshihiro KurodaShigeru KoibuchiKyouichi Sasaki
    • Nobuo MiyaderaToshihiro KurodaShigeru KoibuchiKyouichi Sasaki
    • G02B6/36
    • G02B6/30G02B6/3636G02B6/3652G02B6/3692
    • An optical connecting structure has an optical fiber, a pressing member having a circular outer cross section, and an optical member, wherein the optical member has an optical element, an optical fiber stopper structure, and an optical fiber holding groove, wherein the optical fiber stopper structure is positioned between the optical element and the optical fiber holding groove, wherein the optical fiber is inserted along the optical fiber holding groove so as to contact with the optical fiber stopper structure, and wherein the pressing member is arranged on the optical fiber holding groove mutually perpendicular, the pressing member presses the upper surface of the optical fiber to a direction of a bottom of the optical fiber holding groove, and the optical fiber and the optical element are thereby optically connected.
    • 光连接结构具有光纤,具有圆形外截面的按压部件和光学部件,其中光学部件具有光学元件,光纤阻挡结构和光纤保持槽,其中光纤 阻挡结构位于光学元件和光纤保持槽之间,其中光纤沿着光纤保持槽插入以与光纤阻挡结构接触,并且其中按压构件布置在光纤保持槽 所述按压构件将所述光纤的上表面按照所述光纤保持槽的底面的方向按压,从而光纤和所述光学元件被光学连接。
    • 28. 发明授权
    • Optical device, optical system, and method of manufacturing optical device
    • 光学装置,光学系统和制造光学装置的方法
    • US08260095B2
    • 2012-09-04
    • US12440332
    • 2007-09-07
    • Rei YamamotoToshihiro Kuroda
    • Rei YamamotoToshihiro Kuroda
    • G02B6/12
    • G02B6/29361G02B6/264G02B6/29362G02B6/3636G02B6/3652G02B6/3692
    • An optical device to be connected to an optical fiber and an optical system in which the optical fiber is fixed to the optical device are provided, which optical device and optical system can restrict variations in a distance between inclined surfaces for supporting the optical fiber, and can enhance a productivity of the optical device and system. The optical system according to the present invention is, for example an optical multiplexer/demultiplexer having an optical device according to the present invention, which device has a substrate (2) with a crystal axis, and a groove (10a) for supporting an optical fiber (6a). The groove (10a) has a pair of opposing inclined surfaces (24) for supporting the optical fiber (6a), and a recess (26) formed between the pair of opposing inclined surfaces (24).
    • 设置连接到光纤的光学装置和其中光纤固定到光学装置的光学系统,该光学装置和光学系统可以限制用于支撑光纤的倾斜表面之间的距离的变化,以及 可以提高光学设备和系统的生产率。 根据本发明的光学系统是例如具有根据本发明的光学装置的光复用器/解复用器,该器件具有具有晶体轴的衬底(2)和用于支撑光学器件的凹槽(10a) 纤维(6a)。 槽(10a)具有用于支撑光纤(6a)的一对相对的倾斜表面(24)和形成在该对相对的倾斜表面(24)之间的凹部(26)。
    • 29. 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。