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    • 3. 发明授权
    • Optical fiber module
    • 光纤模块
    • US06769817B2
    • 2004-08-03
    • US10260493
    • 2002-10-01
    • Tsunetoshi SaitoJunichi HasegawaKanji TanakaKazuhisa Kashihara
    • Tsunetoshi SaitoJunichi HasegawaKanji TanakaKazuhisa Kashihara
    • G02B636
    • G02B6/30G02B6/36
    • An optical fiber module is formed by storing an optical component and a connection portion of this optical component and an optical fiber into a package. The optical fiber module has the package, the optical component unfixedly stored into the package, and the optical fiber in which one end side of the optical fiber is connected to the optical component and the other end side is pulled out of the package to the package exterior. An optical fiber anchor member is arranged in the package in an extraction preventing state in an optical fiber pulling-out area of the package. The optical fiber is fixed to the optical fiber anchor member. The optical fiber anchor member and the package are set to be relatively moved in the optical fiber longitudinal direction.
    • 通过将光学部件和该光学部件的连接部分和光纤存储到封装中来形成光纤模块。 光纤模块具有封装,光学部件未固定地存储在封装中,光纤的一端与光学元件连接的另一端侧被拉出封装 外观。 在封装的光纤拉出区域中,光纤锚固构件以防脱落状态设置在封装中。 光纤固定在光纤固定部件上。 光纤锚固构件和封装被设置为在光纤纵向方向上相对移动。
    • 7. 发明授权
    • Multicore optical connector and method of producing the connector
    • 多核心光纤连接器及连接器的制造方法
    • US6045269A
    • 2000-04-04
    • US43987
    • 1998-03-30
    • Tomohiro WatanabeKazunori WatanabeTsunetoshi SaitoEtsuzo SatoToshihiko OtaNobuo Tomita
    • Tomohiro WatanabeKazunori WatanabeTsunetoshi SaitoEtsuzo SatoToshihiko OtaNobuo Tomita
    • G02B6/30G02B6/34G02B6/38G02B6/40
    • G02B6/29368G02B6/3839G02B6/3885G02B6/29389G02B6/30G02B6/3822G02B6/3845G02B6/3861
    • The invention relates to a small-sized multiple-core optical connector having high reliability, which can be easily assembled and manufactured. A plurality of array guide grooves (22) are arrayed and formed on a flat substrate (21). The array pitch interval of the array guide grooves is roughly coincident with the outer diameter of bare optical fibers (4a), (4b). The first optical fiber tape (6a) and the second optical fiber tape (6b) are disposed at the rear end side of the flat substrate (21) so as to overlap each other, wherein the first bare optical fibers (4a) of the first optical fiber tape (6a) and the second bare optical fibers (4b) of the second optical fiber tape (6b) are alternately array-converted and accommodated in the array guide grooves (22). The bare optical fibers (4a), (4b) are pressed from the upside of the bare optical fibers (4a),(4b) at the tip end side of the array, and they are placed and fixed in the array guide grooves. A filter insertion groove (17) is formed in the direction crossing the corresponding array guide grooves (22) at an area where the array guide grooves (22) are formed, a filter (16) is inserted into the filter insertion groove (17), and the filter (16) is attached to each of the second bare optical fibers (4b) at the second optical fiber tape (6b) side.
    • PCT No.PCT / JP97 / 02670 Sec。 371日期1998年3月30日 102(e)1998年3月30日PCT PCT 1997年7月31日PCT公布。 出版物WO98 / 05989 日期1998年02月12日本发明涉及一种具有高可靠性的小尺寸多芯光连接器,可以容易地组装和制造。 多个阵列引导槽(22)排列并形成在平坦基板(21)上。 阵列引导槽的阵列间距与裸光纤(4a),(4b)的外径大致一致。 第一光纤带(6a)和第二光纤带(6b)设置在平面基板(21)的后端侧,以便彼此重叠,其中第一光纤带(6a)和第二光纤带 第二光纤带(6b)的光纤带(6a)和第二裸光纤(4b)交替地阵列转换并容纳在阵列引导槽(22)中。 裸线光纤(4a),(4b)从阵列的前端侧的裸光纤(4a),(4b)的上侧被按压,并将它们放置并固定在阵列引导槽中。 在形成阵列引导槽(22)的区域,与过滤器插入槽(17)插入过滤器(16)的过程中,形成有与排列引导槽(22)相交的方向的过滤器插入槽(17) ,并且在第二光纤带(6b)侧将滤光片(16)安装到每个第二裸光纤(4b)。
    • 8. 发明授权
    • Optical waveguide module
    • 光波导模块
    • US06757453B2
    • 2004-06-29
    • US10098532
    • 2002-03-18
    • Yoshinobu NekadoTsunetoshi SaitoKazuhisa Kashihara
    • Yoshinobu NekadoTsunetoshi SaitoKazuhisa Kashihara
    • G02B612
    • G02B6/12014G02B6/1203G02B6/36
    • The present invention is an optical waveguide module having e.g., a high impact resisting property and a high vibration resisting property. An optical waveguide circuit chip is supported by at least a peripheral portion of an edge portion and is stored into a storing portion of a package. The optical waveguide chip is formed by arranging an optical waveguide forming area on a substrate. An elastic member for impact relaxation of the optical waveguide circuit chip is arranged in at least one portion of the vicinity of the edge portion of the optical waveguide circuit chip. For example, the elastic member is arranged in the vicinity of each of four corners of the optical waveguide circuit chip.
    • 本发明是具有高抗冲击性和高抗震性的光波导模块。 光波导电路芯片由边缘部分的至少周边部分支撑并被存储到封装的存储部分中。 光波导芯片通过在基板上布置光波导形成区域而形成。 在光波导路电路芯片的边缘部分的附近的至少一部分配置有用于光波导电路芯片的冲击弛豫的弹性部件。 例如,弹性构件布置在光波导路电路芯片的四个角中的每一个附近。