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    • 2. 发明公开
    • Optical cable closure
    • 凯尔斯(Gehäusefüroptische Kabel)
    • EP0908996A1
    • 1999-04-14
    • EP98308202.5
    • 1998-10-08
    • THE FURUKAWA ELECTRIC CO., LTD.
    • Yatsu, Hiroyuki, c/o The Furukawa Electric Co.,Ltd
    • H02G15/076H02G15/06G02B6/44
    • G02B6/4445G02B6/4442G02B6/4447G02B6/4451H02G15/06H02G15/076
    • The invention provides an optical cable closure of which outer casing is made by joining two half cases on a partition plane and can be made smaller, with no redundant space produced in either of the half cases. A plurality of cable leading holes 4 are provided on only one end of a two-partition type outer casing 1 comprising half cases 1A and 1B of an identical configuration, with the cable leading holes 4 being arranged side by side and divided into halves by a partition plane 5 of the outer casing 1. Plugged into each cable leading hole 4 and supported therein is an end plate 6 which fits around the circumference of the optical cable 3 and seals the cable leading hole 4. The end plate 6 has a cable passing hole 6a disposed offset from the center line and is aligned in the cable leading hole 4 so that the offset cable passing hole 6a is disposed closer to the bottom side than the partition plane inside one half case 1A. The chamber 2A in the half case 1A wherein the offset cable passing hole 6a exists is made to serve as a cable leading chamber and a linkage frame housing chamber. The chamber 2B in the other half case 1B is made to serve as a redundancy housing case chamber.
    • 本发明提供了一种光缆封闭件,其外壳是通过将两个半壳体连接在分隔平面上而制成的,并且可以制造得更小,在半个情况中的任一个情况下都不产生冗余的空间。 多个电缆引导孔4仅设置在具有相同构造的半壳体1A和1B的双分隔型外壳1的一端上,电缆引导孔4并排布置,并分成两半 插入到每个电缆引导孔4中并被支撑在其中的端板6围绕光缆3的圆周配合并密封电缆引导孔4.端板6具有电缆通过 孔6a设置成偏离中心线并且对齐在电缆引导孔4中,使得偏移电缆通孔6a比在半个箱体1A内的分隔平面更靠近底侧设置。 在其中存在偏移电缆通孔6a的半壳体1A中的室2A被用作电缆引导室和连接框架容纳室。 另一半壳体1B中的腔室2B用作冗余外壳壳体室。
    • 3. 发明公开
    • Spannverschluss zum Verschliessen einer Kabelmuffe für das Verbinden und Abzweigen von Kabeln, insbesondere Fernmeldekabeln
    • 夹紧用于封闭电缆套筒,用于连接和分支电缆,特别是通讯电缆。
    • EP0546267A2
    • 1993-06-16
    • EP92116600.5
    • 1992-09-29
    • STEWING KUNSTSTOFFBETRIEB GmbH
    • Dehling, Helmut, Dipl.-Ing.
    • H02G15/113H02G15/10
    • H02G15/113G02B6/4445H02G15/18
    • Es handelt sich um einen Spannverschluß für das Muffenrohr einer Kabelmuffe. Dieser Spannverschluß weist eine Spannschale und einen Spannbügel auf, welche beide die Verschlußprofile des Muffenrohres hinterfassen. Bei über einen Totpunkt hinaus eingeschwenktem Spannbügel sind die Längsränder des Muffenrohres zusammengedrückt. - Die Spannschale und der Spannbügel bestehen aus Kunststoff. Die Spannschale weist Lagerzapfen und der Spannbügel im Abstand der Lagerzapfen Lageraugen zur Aufnahme der Lagerzapfen auf, wobei eine Rastsitzverbindung gebildet wird. Der Spannverschluß aus Kunststoff läßt sich einfach fertigen, unschwer zusammensetzen, schnell montieren und gewährleistet einen einwandfreien Verschluß von Kabelmuffen. Außerdem ist der Spannverschluß in gewichtsmäßiger Hinsicht verhältnismäßig leicht.
    • 本发明涉及一种用于电缆套筒的套筒管的肘型紧固件。 此切换型紧固件具有张紧壳和张紧托架,这两者接合之后的套筒管的封闭轮廓。 套筒管的纵向边缘固定在一起。当张紧托架被枢转在超过死点位置。 张紧壳和张紧托架由塑料构成。 张紧壳已支承销和张紧支架具有支承孔眼,其在从所述轴承销的距离,用于保持所述轴承销,具有闩锁座的联合而形成。 肘杆式紧固件由塑料制成可以容易地制造,能够毫无困难地组装,能够装配迅速,并确保线缆套管的完美闭合。 另外,肘节型紧固件的重量相对轻。
    • 6. 发明公开
    • VORRICHTUNG ZUR STRUKTURIERTEN ABLAGE BZW. HANDHABUNG VON LICHTWELLENLEITERN
    • 设备结构化存储设备或 搬运纤维的
    • EP1567902A1
    • 2005-08-31
    • EP03776905.6
    • 2003-11-14
    • CCS Technology, Inc.
    • LAPP, Oliver
    • G02B6/44
    • H02G15/076G02B6/4445G02B6/4471
    • The invention relates to a device for the structured storage or handling of optical waveguides, especially to a cable sleeve. Said cable sleeve (30) comprises a frame (37) and a plurality of splice cases (49), a plurality of splice cases (49) each being disposed one on top of the other and mounted on the frame (37) in a pivotable manner on a front (40) and on a back (41) of the frame (37). On at least one vertically extending narrow face (43) of the frame (37) fiber guide elements (50) for waveguide fibers are mounted in such a manner that the waveguide fibers are guided in the area of the one or more narrow faces (43) laterally next to the splice cases (49). A drawer (82) is guided in the frame (37) and can be horizontally drawn out from a vertically extending narrow face (42) of the frame (37). In the pushed-inward position, the drawer (82) is disposed between the splice cases (39) that are associated with the front (40) and those that are associated with the back (41) of the frame (37), respectively, and the drawer (82) is used to store uncut bundles of cores of waveguide fibers. Guide channels and/or guide ribs are disposed inside the spice cases (49) in such a manner as to guide the waveguide fibers inside the splice cases (49) in a circle.
    • 7. 发明公开
    • Optical fibre splice storage enclosure
    • Spleissgehäusefüroptische Faser
    • EP1304590A2
    • 2003-04-23
    • EP02256989.1
    • 2002-10-04
    • SPIRENT PLC
    • Foss, Raymond CharlesMarshall, Christopher
    • G02B6/44
    • G02B6/4445G02B6/4454
    • An optical fibre splice storage enclosure comprises a base 10 having at least one cable entry port 11 formed therein, a tubular cover 12 for fitting to the base 10 and a plurality of trays 13 mounted in a stack which extends perpendicular to the through axis of the port(s) 11 and the longitudinal axis of the cover 12. Each tray 13 is connected to the base 10 by an elongate stem 17 which is arranged to bend about a plurality of transverse points disposed along its longitudinal axis.
      In a large stack of trays, access can be afforded to a middle tray 13 by pivoting the trays 13 on one side of the stack outwardly and towards the base 10. The configuration of the stems 17 enables the first tray 13 in the stack to pivot the most nearer the base 10, with successive trays 13 pivoting the most successively further away from the base. In this manner adequate access can be provided to all trays without the need to stagger the trays along the longitudinal axis of the cover 12.
    • 光纤接头存储壳体包括:基座10,其具有形成在其中的至少一个电缆入口端口11,用于装配到基座10的管状盖12和安装在堆叠中的多个托盘13,托盘13垂直于 端口11和盖12的纵向轴线。每个托盘13通过细长杆17连接到基座10,细长杆17布置成围绕围绕其纵向轴线设置的多个横向点弯曲。 在大堆托盘中,可以通过将托盘的一侧的托盘13向外并向着底座10转动而将托盘13提供给中间托盘13.杆17的构型使托架中的第一托盘13能够枢转 最靠近底座10,连续的托盘13最接近地从基座向后枢转。 以这种方式,可以对所有托盘提供足够的通道,而不需要沿着盖12的纵向轴线错开托盘。
    • 8. 发明公开
    • Cable closure which includes a cable sheath gripping assembly
    • Kabelverschluss mit einer Vorrichtung zum Festklemmen des Kabelmantels。
    • EP0589618A1
    • 1994-03-30
    • EP93307293.6
    • 1993-09-16
    • AT&T Corp.
    • Jones, Wesley Willing
    • H02G15/013H02G15/007H02G15/076
    • G02B6/4471G02B6/4444G02B6/4445G02B6/4446G02B6/4447
    • A closure includes an end plate assembly (20) which includes an inner (24) and an outer (22) endplate and between which is disposed a cable sheath gripping assembly (60). The cable sheath gripping assembly includes a housing and a clamping portion (100) which cooperate to form two cable-receiving passageways. Each passageway is formed between two channels, one being formed in the base and one being formed in the clamping portion. Each channel is provided with a plurality of inwardly extending circumferential and axial ribs with the ribs cooperating to clamp a cable end portion extending therewith. The engagement of the ribs with the cable end portion under compressive engagement caused by the turning of a bolt into threaded insert of the housing provides enhanced resistance to pullout and rotation of the cable end portion.
    • 闭合件包括端板组件(20),其包括内部(24)和外部(22)端板,并在其之间设置有电缆护套夹持组件(60)。 电缆护套夹持组件包括壳体和配合以形成两个电缆接收通道的夹持部分(100)。 每个通道形成在两个通道之间,一个形成在基部中,一个形成在夹持部分中。 每个通道设置有多个向内延伸的周向和轴向肋,所述肋与所述肋配合以夹紧与其延伸的电缆端部。 通过将螺栓转动到壳体的螺纹插入件中,肋与电缆端部在压缩接合下的接合提供了增强的电缆端部的拉出和旋转的阻力。