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    • 1. 发明授权
    • Sealing device of the gland type for a cable
    • 电缆密封封装装置
    • US06608254B1
    • 2003-08-19
    • US09562031
    • 2000-05-01
    • Rolland BernollinJean StobelMathieu Vicot
    • Rolland BernollinJean StobelMathieu Vicot
    • H01R400
    • G02B6/4448G02B6/4428G02B6/4471H02G15/013H02G15/14
    • A sealing device allows the passage of a submarine cable. The cable including a cable jacket, from a high-pressure volume corresponding to surrounding water into a low-pressure volume, particularly for a cable subjected to dynamic stresses. The sealing device includes a gland box system with at least two individual packing elements, each of the at least two individual packing elements in the form of an annular body made of an elastomer, having an inside diameter, and compressed axially within a gland box for the purpose of it being clamped radially inward against the cable jacket and outward against the gland box. In addition, the sealing device includes washers being inserted within the gland box between the at least two individual packing elements. The individual packing element of the at least two individual packing elements closest to the high-pressure volume includes an integral sleeve portion.
    • 密封装置允许海底电缆通过。 电缆包括电缆护套,从对应于周围水的高压容积进入低压容积,特别是对于受到动态应力的电缆。 密封装置包括具有至少两个单独的填充元件的压盖盒系统,至少两个单独的填充元件中的每一个都是由弹性体制成的环形体形式,其具有内径,并且在压盖箱内轴向压缩, 其目的是径向向内抵靠电缆护套并向外抵靠压盖盒。 此外,密封装置包括垫圈,其被插入在至少两个单独的填充元件之间的压盖盒内。 最靠近高压容积的至少两个单个包装元件的单个包装元件包括一体的套筒部分。
    • 2. 发明授权
    • Compression connector
    • 压缩连接器
    • US06452103B1
    • 2002-09-17
    • US08914365
    • 1997-08-19
    • Jose M. PirizSidney A. David
    • Jose M. PirizSidney A. David
    • H01R400
    • H01R4/186
    • An electrical connector for crimpable connection about an electrical conductor upon application of a crimping force imparted by the opposing arcuate dies of a crimping tool. The connector includes an elongate connector body formed of a compressible material. The connector body has an elongate first planar face and an elongate second planar face. The first planar face is opposed to the second planar face. One end of the connector body is defined by an arcuate wall extending between the first planar face and the second planar face. The other end of the connector body defines a first open ended conductor receiving nest. The connector body further defines a second open ended conductor receiving nest and a third open ended conductor receiving nest whereby the second and third conductor receiving nests are located adjacent to the arcuate wall and open in substantially opposite directions. The connector body provides no more than three points of contact with the opposing dies of the crimping tool prior to crimping.
    • 一种电连接器,用于在施加由压接工具的相对弧形模具施加的压接力时围绕电导体卷曲连接。 连接器包括由可压缩材料形成的细长连接器主体。 连接器主体具有细长的第一平面和细长的第二平面。 第一平面与第二平面相对。 连接器主体的一端由在第一平面和第二平面之间延伸的弧形壁限定。 连接器主体的另一端限定了第一开放式导体接收嵌套。 连接器主体还限定第二开放式导体接收座和第三开口导体接收座,由此第二和第三导体接收座邻近弓形壁定位并且在基本相反的方向上开放。 连接器主体在压接之前提供与压接工具的相对的模具不超过三个点的接触点。
    • 6. 发明授权
    • Ultrasonic welding structure
    • 超声波焊接结构
    • US06313407B1
    • 2001-11-06
    • US09408176
    • 1999-09-29
    • Akira ShinchiNorihiro Ohashi
    • Akira ShinchiNorihiro Ohashi
    • H01R400
    • H01R13/504B29C65/08B29C66/1142B29C66/54B29C66/542B29C66/8322
    • An ultrasonic welding structure is provided for a chip body 11 and a lid body 12 to be welded to each other by using ultrasonic waves. The chip body 11 is provided with a welding recess 15 defined by tapered sidewalls 15A, 15A. While, the lid body 12 is provided with a welding projection 17 also defined by tapered sidewalls 17C, 17C, for engagement with the welding recess 15. The chip body 11 and the lid body 12 in their assembled condition are subjected to ultrasonic oscillation characterized by its amplitude direction A. Then, since the welding surfaces of the sidewalls 15A, 17C each has a projected area with respect to the amplitude direction A, the welding surfaces are welded to each other owing to frictional heat resulting from the ultrasonic oscillation. With this welding structure, the chip body 11 is perfectly welded to the lid body 12 by one time of ultrasonic oscillation.
    • 通过使用超声波为芯片体11和盖体12提供超声波焊接结构,以将其彼此焊接。 芯片体11设置有由锥形侧壁15A,15A限定的焊接凹部15。 同时,盖体12设置有也由锥形侧壁17C,17C限定的焊接突起17,用于与焊接凹部15接合。芯片体11和盖体12在组装状态下经受超声波振荡,其特征在于 其振幅方向A.然后,由于侧壁15A,17C的焊接面各自具有相对于振幅方向A的投影面积,所以焊接面由于超声波振动产生的摩擦热而相互焊接。 利用该焊接结构,芯片体11通过一次超声波振荡而完全焊接到盖体12。
    • 7. 再颁专利
    • Wire junction encapsulating wire connector and method of making same
    • 线结封装线连接器及其制造方法
    • USRE37340E1
    • 2001-08-28
    • US08893956
    • 1997-07-16
    • Lloyd Herbert King, Jr.
    • Lloyd Herbert King, Jr.
    • H01R400
    • H01R4/22H01R13/5216H02G15/043Y10T29/49176
    • A solderless twist on wire connector and a method of making a solderless twist on wire junction encapsulating twist on wire connector by securing a prior art twist on wire connector in a shell to produce a wire junction encapsulating twist on wire connector that can in one operation permit the user to twist the connector to simultaneously compress the junction ends of electrical wires into low resistance electrical contact while encapsulating the junction ends of the electrical wires in a solderless substance. The process includes the method making a twist on wire connector by encapsulating a prior art twist on wire connector in a shell to produce a wire junction encapsulating twist on wire connector having a chamber for an encapsulating material. In one embodiment the twist on wire junction encapsulating twist on wire connector includes a puncturable seal and in another embodiment a second compartment for holding a mixable encapsulating materials.
    • 电线连接器上的无焊接扭曲以及通过将现有技术上的扭转固定在外壳中的导线连接器上以在线连接器上封装扭绞在线结上的无接头扭曲的方法,以产生可在一个操作允许中的线连接器上的线结 使用者扭曲连接器以同时将电线的连接端压缩成低电阻的电接触,同时将电线的连接端封装在无焊材料中。 该方法包括通过将现有技术的捻线封装在外壳中的线连接器上来制造线连接器的方法,以产生具有用于封装材料的腔室的导线连接器上的线结封装扭曲。 在一个实施例中,线接合处的缠绕在线连接器上的扭转扭转包括可刺破的密封,并且在另一个实施例中用于保持可混合的封装材料的第二隔室。
    • 8. 发明授权
    • Exterior mounting block for electrical fixtures
    • 电器用外部安装块
    • US06723921B2
    • 2004-04-20
    • US10253351
    • 2002-09-24
    • Michael Vagedes
    • Michael Vagedes
    • H01R400
    • H02G3/123Y10S248/906
    • A multi-piece structure for mounting an electrical fixture to the side of a building. The structure includes an electrical box having four side walls and locating supports extending radially from said side wall. This fits within the inside of a mounting block with an intermediate plate between the front wall of the mounting block and the opening surface of the electrical box. The electrical box and plate can be formed from fire resistant material permitting the mounting block to be formed from a non-fire rated material. A metal plate can be positioned over the mounting block to provide the appearance of a brass structure. The structure includes two pairs of mounting holes permitting one to attach light fixtures or electrical outlets.
    • 用于将电器固定装置安装在建筑物侧面的多件式结构。 该结构包括具有四个侧壁的电气箱和从所述侧壁径向延伸的定位支撑件。 这安装在安装块的内部,在安装块的前壁和电气箱的开口表面之间具有中间板。 电气箱和板可以由耐火材料形成,允许安装块由非防火材料形成。 金属板可以位于安装块上方以提供黄铜结构的外观。 该结构包括两对安装孔,可以安装灯具或电源插座。
    • 9. 发明授权
    • Noise filter with an improved insulating case
    • 具有改进绝缘外壳的噪音滤波器
    • US06633000B2
    • 2003-10-14
    • US09800544
    • 2001-03-06
    • Peter Kuo
    • Peter Kuo
    • H01R400
    • H05K9/0066
    • A noise filter (100) includes a hollow ferrite core (10) for receiving a cable (200) therein and an insulating case (20) covering the ferrite core. The insulating case is made up of a pair of case members (21, 22) each of which defines a number of resilient ribs (231) and a number of support ribs (232) in an inner face (230) thereof. The resilient ribs have sharp-angled tops which provide a radial force for the ferrite core. A pair of latches (233) are formed on a side of each case member for engaging with corresponding recesses (235) defined in the other case member to couple the two case members. A front wall (251) and a rear wall (252) of each case member define a dented top side (253) thereof respectively, wherein a plurality of serrated protrusions (254) are formed on the dented top sides for securing the cable.
    • 噪声滤波器( 100 )包括用于接收电缆的中空铁氧体磁心( 10 )( 200 )和覆盖铁氧体磁芯的绝缘外壳( 20 )。 绝缘壳体由一对壳体构件( 21,22 )组成,每个壳体构件限定多个弹性肋( 231 )和多个支撑肋( 232 ))的内表面( 230 )。 弹性肋具有尖锐的顶部,其提供用于铁氧体磁芯的径向力。 一对闩锁( 233 )形成在每个壳体的一侧,用于与相应的凹槽( 235 )啮合) 在另一个案件成员中定义来连接两个案件成员。 每个壳体构件的前壁( 251 )和后壁( 252 )定义凹陷顶面 HIL> 253 ),其中在凹陷的顶侧上形成多个锯齿形突起( 254 )以固定电缆 。