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    • 1. 发明申请
    • SEALING ELEMENT
    • 密封元件
    • WO2011138182A1
    • 2011-11-10
    • PCT/EP2011/056440
    • 2011-04-21
    • TYCO ELECTRONICS AMP GMBHHEIN, StefanSZELAG, MartinHERRMANN, Andreas
    • HEIN, StefanSZELAG, MartinHERRMANN, Andreas
    • H01R13/52H02G3/08
    • H05K5/02H01R13/5205H02G3/0658H02G15/013
    • The invention relates to a sealing element (1) for sealing between an electric line (2) and a housing (100). In order to provide a sealing element (1) for a plurality of different line diameters, provision is made according to the invention for the sealing element (1) to have an elastically expandable inner sleeve (5) which has, in an axial direction (X) of the sealing element (1), a passage opening (4) for the line (2) which has at least one inner sealing surface (6a, 6b) extending along its inner periphery (6), an outer sleeve (10) surrounding the inner sleeve (5), which outer sleeve has at least one outer sealing surface (11a, 11b) extending along its outer periphery (11), and comprises at least one compensation section (7a-d) which is designed to be compressible in a radial direction (Y, Z) of the sealing element (1) and has a yieldingness which is greater than the yieldingness of the outer sleeve (10).
    • 本发明涉及一种用于密封电线(2)和壳体(100)之间的密封元件(1)。 为了提供用于多个不同线径的密封元件(1),根据本发明为密封元件(1)提供具有可弹性膨胀的内套筒(5),其沿轴向( (1)的通道开口(4),其具有至少一个沿着其内周(6)延伸的内密封表面(6a,6b),外套筒(10) 围绕所述内套筒(5),所述外套筒具有沿着其外周缘(11)延伸的至少一个外密封表面(11a,11b),并且包括至少一个被设计为可压缩的补偿部分(7a-d) 在密封元件(1)的径向(Y,Z)处,并且具有大于外套筒(10)的屈服度的屈服强度。
    • 3. 发明申请
    • TOOLLESSLY ACTUABLE SPRING CLAMP WITH A PLURALITY OF CLAMPING ARMS FOR A PLURALITY OF ELECTRICAL CONDUCTORS
    • 适用于多种电动导体的多功能钳夹式手动弹簧夹
    • WO2010063728A1
    • 2010-06-10
    • PCT/EP2009/066164
    • 2009-12-01
    • TYCO ELECTRONICS AMP GMBHERGEL, TurhanHEIN, StefanSCHAARSCHMIDT, Manfred
    • ERGEL, TurhanHEIN, StefanSCHAARSCHMIDT, Manfred
    • H01R4/48
    • H01R4/4845
    • The present invention relates to a terminal clamping device for electrically connecting a plurality of conductors (26-1, 26-2) to a mating contact (22). The terminal clamping device according to the invention comprises a clamping spring (21) and a lever (24) which is responsible for actuating the clamping spring and can be operated without tools. The lever is in this case designed in such a way that it does not protrude laterally from the terminal clamping device, and thus decreases the space necessary for the device. The lever is also mounted on an indentation of the clamping spring, thus lengthening the useful life of the terminal clamping device. The three-legged clamping spring has a plurality of clamping arms (21-1, 21-2), with corresponding conductor insertion openings through which conductors can be inserted and electrically connected to a contact. The conductors may in this case be of the same or different conductor cross sections, as the clamping arms exert independently of one another a maximum clamping force on the inserted conductor. A plurality of conductors can be electrically connected to a contact by the clamping spring.
    • 本发明涉及一种用于将多个导体(26-1,26-2)电连接到配合触头(22)的端子夹紧装置。 根据本发明的端子夹紧装置包括夹紧弹簧(21)和杠杆(24),该杆(24)负责致动夹紧弹簧并且可在没有工具的情况下操作。 在这种情况下,杠杆以这样的方式设计成不会从端子夹紧装置横向伸出,因此减小了装置所需的空间。 杠杆还安装在夹紧弹簧的压痕上,从而延长了端子夹紧装置的使用寿命。 三脚夹持弹簧具有多个夹持臂(21-1,21-2),其具有相应的导体插入开口,导体可以通过该插入孔插入并电连接到触点。 在这种情况下,导体可以具有相同或不同的导体横截面,因为夹持臂彼此独立地施加在插入的导体上的最大夹紧力。 多个导体可以通过夹持弹簧与接触件电连接。
    • 6. 发明申请
    • GUIDING DEVICES AND WEB COATING PROCESS
    • 指导设备和网涂工艺
    • WO2017207053A1
    • 2017-12-07
    • PCT/EP2016/062539
    • 2016-06-02
    • APPLIED MATERIALS, INC.METT, ValeriusDEPPISCH, ThomasWHITE, John M.HEIN, StefanBUSCHBECK, Wolfgang
    • METT, ValeriusDEPPISCH, ThomasWHITE, John M.HEIN, StefanBUSCHBECK, Wolfgang
    • C23C14/56B65H23/00
    • C23C14/562B65H20/14B65H2406/361B65H2801/87
    • A roller device (100) for guiding a web (200) and for controlling the temperature of the web (200) in contact with the roller device in a web coating process under vacuum conditions is described. The roller device includes a curved surface (101) of the roller device (100) for contacting the web (200), wherein the curved surface (101) includes a web guiding region (103). The roller device further includes a group of gas outlets (104) in the curved surface (101) and a gas distribution system (105) for selectively providing the gas flow to a first subgroup of gas outlets (104) and for selectively preventing the gas from flowing to a second subgroup of the gas outlets (104). The roller device further includes a driving unit (110) for rotating the curved surface (101), wherein the curved surface (101) is adapted for inducing a movement of the web (200) upon rotation of the curved surface.
    • 描述了用于在真空条件下在幅材涂布工艺中引导幅材(200)并且用于控制幅材(200)与辊子设备接触的温度的辊子装置(100)。 滚轮装置包括用于接触腹板(200)的滚轮装置(100)的弯曲表面(101),其中弯曲表面(101)包括腹板引导区域(103)。 该滚轮装置还包括在弯曲表面(101)中的一组气体出口(104)和用于选择性地将气流提供给第一组气体出口(104)并用于选择性地防止气体 从流动到气体出口(104)的第二子组。 所述滚轮装置还包括用于旋转所述弯曲表面(101)的驱动单元(110),其中所述弯曲表面(101)适于在所述弯曲表面旋转时引起所述腹板(200)的移动。
    • 7. 发明申请
    • EVAPORATOR FOR ORGANIC MATERIALS
    • 有机材料蒸发器
    • WO2010035130A2
    • 2010-04-01
    • PCT/IB2009/006990
    • 2009-09-29
    • APPLIED MATERIALS, INC.HEIN, StefanHOFFMANN, Gerd
    • HEIN, StefanHOFFMANN, Gerd
    • C23C14/24
    • B01B1/005B05D1/60B05D2252/02C23C14/12C23C14/243
    • An evaporator for vaporizing organic material is described. The evaporator includes a first chamber having a nozzle adapted to be directed to a substrate to be coated; at least one second chamber for vaporizing the organic material; at least one vapour channel for guiding vaporized organic material from the at least one second chamber to the first chamber; wherein the first chamber is adapted to provide vaporized organic material to the nozzle corresponding to a first virtual sublimation surface, and the at least one second chamber being adapted to provide during operation a second sublimation surface area, wherein the second sublimation surface area corresponds to at least 70 percent of the first virtual sublimation surface.
    • 描述了蒸发有机材料的蒸发器。 蒸发器包括具有适于被引导到待涂覆的基底的喷嘴的第一腔室; 至少一个用于汽化有机材料的第二室; 用于将蒸发的有机材料从所述至少一个第二室引导到所述第一室的至少一个蒸气通道; 其中所述第一室适合于向所述喷嘴提供对应于第一虚拟升华表面的蒸发的有机材料,并且所述至少一个第二室适于在操作期间提供第二升华表面积,其中所述第二升华表面积对应于 至少70%的第一个虚拟升华表面。