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    • 109. 发明申请
    • Fiber optic apparatus
    • 光纤设备
    • US20040161212A1
    • 2004-08-19
    • US10371327
    • 2003-02-18
    • Maurice X. SunIgor Grois
    • G02B006/44
    • G02B6/4472G02B6/3608
    • A fiber optic apparatus is provided for cross-connecting the individual fibers of a plurality of fiber optic ribbons. The apparatus includes a flat substrate having plurality of individual optical fibers routed thereon. The fibers are routed to form at least one first fiber optic ribbon leading onto the substrate at a first edge location thereof and at least one second fiber optic ribbon leading away from the substrate at a second edge location thereof. The fibers and ribbons follow a uniform path between the edge locations. An inner portion of at least one of the fiber optic ribbons on the substrate is routed with a loop offset form the uniform path to provide an amount of slack to allow an outer portion of the ribbon off of the substrate to be varied in length.
    • 提供了一种用于交叉连接多个光纤带的各个光纤的光纤设备。 该设备包括具有多条路由于其上的单独光纤的平坦基板。 纤维被路由以形成在其第一边缘位置处通向基板的至少一个第一光纤带,以及在其第二边缘位置处离开基板的至少一个第二光纤带。 纤维和带沿着边缘位置之间的均匀路径。 衬底上的至少一个光纤带的内部部分以由均匀路径形成的环路偏移布线,以提供一定量的松弛,从而使带离开衬底的外部部分的长度变化。
    • 110. 发明申请
    • Method of fabricating multi-layered printed circuit board for optical waveguides
    • 制造光波导多层印刷电路板的方法
    • US20040117984A1
    • 2004-06-24
    • US10610820
    • 2003-07-02
    • Samsung Electro-Mechanics Co., Ltd.
    • Young-Woo KimYoung-Sang ChoDek-Gin YangKyn-Hyok Yim
    • H05K003/36H01L023/495H05K003/20
    • G02B6/43G02B6/3608G02B6/4201G02B6/4214G02B6/428H05K1/0274H05K3/4611H05K2203/063Y10T29/49117Y10T29/49126Y10T29/49128Y10T29/4913Y10T29/49155Y10T156/1064
    • Disclosed is a method of fabricating a multi-layered PCB, in which the optical waveguide component is inserted into the PCB in such a way that a prepreg adhesive does not block an optical signal entrance of the optical waveguide. The method comprises pre-routing a portion of an adhesive meeting the optical waveguide to remove said portion, processing an adhesive weeping prevention layer so as to prevent the adhesive from blocking the optical signal entrance of the optical waveguide, arranging the optical waveguide, the adhesive, and the adhesive weeping prevention layer on a copper clad laminate, and combining the optical waveguide, a prepreg, and the adhesive weeping prevention layer with each other into a single structure. The adhesive weeping prevention layer is selected from the group consisting of a prepreg, a single-sided copper clad laminate, a thermally curable resin, a heat spreader, and an unclad. Therefore, the method is advantageous in that the prepreg and the adhesive weeping prevention layer are pre-routed to prevent epoxy resin from blocking the optical signal entrance of the optical waveguide, thereby facilitating precise interfacing of optical signals.
    • 公开了一种制造多层PCB的方法,其中将光波导部件插入到PCB中,使得预浸胶粘合剂不阻挡光波导的光信号入口。 该方法包括预先路由满足光波导的粘合剂部分以去除所述部分,处理粘合剂防止漏水层,以防止粘合剂阻挡光波导的光信号入口,布置光波导,粘合剂 和覆铜层压板上的粘合剂防止层,并将光波导,预浸料和粘合剂防止层彼此组合成单一结构。 粘合防止层选自预浸料,单面覆铜层压板,热固化树脂,散热器和未包覆层。 因此,该方法的优点在于预浸布和粘合剂防止漏水层被预先布线以防止环氧树脂阻挡光波导的光信号入口,从而有助于光信号的精确接口。