会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Sealable communication cable connection assemblies
    • 密封通信电缆连接组件
    • US09494745B2
    • 2016-11-15
    • US14599140
    • 2015-01-16
    • SENKO ADVANCED COMPONENTS, INC.
    • Kenji IizumiAlbert Wong
    • G02B6/38G02B6/44H01R13/52
    • G02B6/3816G02B6/3887G02B6/4444G02B6/4471G02B6/4494G02B6/506H01R13/5205H01R13/58H01R13/5825
    • Communication device connection assemblies are described. The sealable connection assemblies are configured to provide water-tight connections for various data transmission elements, including cables, network devices, and computing devices. The connection assemblies may be used for various data transmission protocols, such as fiber optic connections. A compression element of the connection assembly may be configured to engage and compress a sealing element against a communication cable extending through the sealable connection assembly when a tension element is coupled to the inner body, thereby forming a seal between the sealable element and the communication cable. The connection assemblies may include a retainer body configured to form a grip or retention force with a communication cable sufficient to reduce and/or eliminate any forces on the communication cable (i.e., bending and/or straight pull forces) from being transferred to and/or otherwise effecting other components of the connection assembly, such as sealing elements thereof.
    • 描述了通信设备连接组件。 可密封连接组件被配置为为各种数据传输元件(包括电缆,网络设备和计算设备)提供防水连接。 连接组件可用于各种数据传输协议,例如光纤连接。 连接组件的压缩元件可被构造成当张力元件联接到内部主体时,将密封元件接合并压靠延伸穿过可密封连接组件的通信电缆,从而在可密封元件和通信电缆之间形成密封 。 连接组件可以包括保持器主体,其被构造成通过通信电缆形成握持或保持力,该通信电缆足以减少和/或消除通信电缆上的任何力(即,弯曲和/或直拉力)被转移到和/ 或以其他方式影响连接组件的其它部件,例如其密封元件。
    • 6. 发明授权
    • Harsh environment connector with seal closure assisting device
    • 恶劣环境连接器,带密封闭合辅助装置
    • US09057864B2
    • 2015-06-16
    • US13958242
    • 2013-08-02
    • Teledyne Instruments, Inc.
    • Justin M. KretschmarRichard T. JonesKenneth M. Nagengast
    • G02B6/50G02B6/38
    • G02B6/506G02B6/3816
    • An underwater rolling seal connector assembly has releasably mateable plug and receptacle units with one or more rolling seals mounted in front faces of receptacle and plug units. The rolling seals are rotatable back and forth between a closed position sealing one or more chambers within the respective units which contain one or more contacts and an open position in which bores through the seals are open to allow contacts in one unit to pass through the seal openings and engage contact in the other unit. Actuators automatically rotate the rolling seals into the open position during mating and back into the closed position on de-mating. At least one actuator assisting device is located in at least one of the units and associated with the rolling seal in that unit to bias the seal back to the closed position during de-mating.
    • 水下滚动密封连接器组件具有可拆卸的可配对的插头和插座单元,其具有安装在插座和插头单元的前面中的一个或多个滚动密封件。 滚动密封件可以在密封位于相应单元内的一个或多个腔室中的一个或多个腔室之间来回旋转,这些腔室包含一个或多个触头,而打开位置,孔穿过密封件打开,以允许一个单元中的触点通过密封件 开口和接触在另一个单位。 致动器在配合期间自动将滚动密封旋转到打开位置,并在去配合时回到关闭位置。 至少一个致动器辅助装置位于至少一个单元中并且与该单元中的滚动密封件相关联,以在去配合期间将密封件偏置回关闭位置。
    • 8. 发明申请
    • Method of repairing optical submarine cable and repair cable used in the method
    • 该方法中使用的光学海缆和修复电缆的修复方法
    • US20030223711A1
    • 2003-12-04
    • US10446855
    • 2003-05-29
    • NEC CORPORATION
    • Satoshi Ishii
    • G02B006/255G02B006/44
    • G02B6/4467G02B6/506
    • A method of repairing an optical transmission cable which is broken at a breakage point, including the steps of fabricating a second cable by using the even number of first cables each of which includes a first area comprised of a bridge fiber and a second area comprised of at least one kind of fiber such that the first and second areas are arranged in a length-wise direction of each of the first cables, the second cable having opposite end surfaces having the same fiber arrangement as that of exposed surfaces of the optical transmission cable which are caused by a breakage of the optical transmission cable, first areas being spliced to each other and the second areas being spliced to each other in the second cable, and inserting the second cable into the optical transmission cable at the breakage point.
    • 一种修复在断裂点断裂的光传输电缆的方法,包括通过使用偶数个第一电缆制造第二电缆的步骤,每个电缆包括由桥接光纤组成的第一区域和由 至少一种光纤,使得第一和第二区域沿着每个第一电缆的长度方向布置,第二电缆具有相对的端面,其具有与光传输电缆的暴露表面相同的光纤布置 这是由于光传输电缆的断裂引起的,第一区域彼此拼接并且第二区域在第二电缆中彼此拼接,并且在断裂点将第二电缆插入光传输电缆。
    • 9. 发明申请
    • Cable installation
    • 电缆安装
    • US20030026662A1
    • 2003-02-06
    • US09988821
    • 2001-11-20
    • Level 3 Communications, Inc.
    • Ronald J. VidalPaul AlexanderRobert M. KellyDavid BrutonRobert Todd
    • E03B007/10
    • H02G15/14F16L1/123G02B6/506H02G1/10
    • The invention facilitates provision of a point-to-point cable connection between first and second points separated by an extended span of water including a first region of shallow water and a second region of relatively deep water. A plurality of ducts are provided from the first point through the first region of the extended span to an offshore termination point between the first and second points. Preferably, the ducts are buried in the seabed to prevent damage. At least one first cable is placed in one of the plurality of ducts to provide a connection between the first point and the offshore termination point. A second cable from the second point is received at the offshore termination point. The first cable is connected to the second cable at the offshore termination point to create the point-to-point cable connection. In one embodiment, the offshore termination point is located on the continental shelf near the transition to deep water. Cable can be installed between the first point and the offshore termination point with relative ease by passing the cable through an available conduit. This eliminates the need for the time consuming and expensive permitting process typically associated with near-shore cable installation.
    • 本发明有助于提供由包括浅水的第一区域和相对较深的水的第二区域的水的延伸跨度分开的第一和第二点之间的点对点电缆连接。 多个管道从第一点延伸穿过延伸跨距的第一区域到第一和第二点之间的离岸终点。 优选地,将管道埋在海床中以防止损坏。 至少一个第一电缆被放置在多个管道中的一个中以提供第一点和离岸终止点之间的连接。 在离岸终点处接收第二点的第二根电缆。 第一根电缆连接到海上终端点处的第二根电缆,以创建点对点电缆连接。 在一个实施例中,离岸终点位于靠近深水过渡附近的大陆架上。 通过将电缆穿过可用导管,电缆可以相对容易地安装在第一点和海上终端点之间。 这消除了对通常与近岸电缆安装相关联的耗时和昂贵的许可过程的需要。