METHOD FOR PRODUCING ASSEMBLY, ASSEMBLY, AND ELECTROCONDUCTIVE-PARTICLE-CONTAINING HOT MELT ADHESIVE SHEET

    公开(公告)号:EP4163346A1

    公开(公告)日:2023-04-12

    申请号:EP21818072.7

    申请日:2021-06-03

    摘要: Provided are a method for producing an assembly capable of obtaining exceptional adhesive strength and connection reliability, an assembly, and an electroconductive particle-containing hot melt adhesive sheet. A method for producing an assembly comprising thermocompression bonding a first electronic component (10) and a second electronic component (20) interposed by an electroconductive-particle-containing hot melt adhesive sheet containing solder particles in a binder that contains a crystalline polyamide resin having a carboxy 1 group, and connecting an part (11) that energizes the first electronic component (10) and a part (21) that energizes the second electronic component (20), wherein the melting point of the solder particles is from - 30 to O ° C of the temperature of thermocompression bonding, and, when the melt viscosity of the electroconductive-particle-containing hot melt adhesive sheet is measured at a temperature elevation rate of 5°C/min, the ratio of the melt viscosity at - 40 ° C of the temperature of thermocompression bonding to the melt viscosity at -20°C of the temperature of thermocompression bonding is 10 or higher.

    METHOD FOR MANUFACTURING CONDUCTIVE MEMBER
    4.
    发明公开

    公开(公告)号:EP3879567A1

    公开(公告)日:2021-09-15

    申请号:EP19881136.6

    申请日:2019-10-18

    申请人: NOK Corporation

    发明人: SUGIYAMA, Yasushi

    摘要: Provided is a manufacturing method of a conductive member for electrical test that can accommodate downsizing of an electronic component.
    On a glass substrate (1) formed with a plurality of through holes (2), an electrode-portion forming step of forming an electrode portion (3) in each of the through holes (2), a resin-material layer forming step of forming a resin-material layer on a topside (11) of the glass substrate (1), a via-hole forming step of forming a via hole in a resin-material layer formed on the glass substrate (1) at a location atop the electrode portion (3), a filling step of filling the via hole with a conductive elastic material, a semi-hardening step of semi-hardening the conductive elastic material, a separation step of separating the resin-material layer (6), an insulation-portion forming step of forming an insulation portion (5) on the topside (11) of the glass substrate (1) by using an insulating elastic material, and a hardening step of hardening the insulation portion (5) along with the conductive elastic material are performed.

    MECHANICAL CONNECTING ELEMENT, ELECTRICAL CONTACT DEVICE AND ELECTRICAL CONNECTOR

    公开(公告)号:EP3506433A3

    公开(公告)日:2019-10-09

    申请号:EP18215546.5

    申请日:2018-12-21

    IPC分类号: H01R11/16 H01R4/02 H01R11/01

    摘要: The invention relates to a mechanical connecting element (1) for electromechanical connecting sections (22, 44), in particular a retaining element (1) for an adhesively bonded connection, preferably a welded connection, in particular for the motor vehicle sector, having two mechanical connecting regions (12, 14) for at least one connecting section (22, 44) distinct from the connecting element (1) or for two connecting sections (22, 44) distinct from the connecting element (1), wherein the two connecting regions (12, 14) are arranged above one another in the connecting element (1) in such a way that the two connecting sections (22, 44) can be brought into direct electromechanical contact above one another in the connecting element (1).
    The invention further relates to an electrical connector, in particular a high-current connector, preferably a charging plug for the motor vehicle sector, wherein the connector has a mechanical connecting element (1), which connects an electrical contact device (2) of the connector and an electrical cable (4) of the connector to each other, wherein the connecting element (1) is formed according to the invention.

    ELASTIC CONDUCTOR
    9.
    发明公开
    ELASTIC CONDUCTOR 审中-公开
    弹性导体

    公开(公告)号:EP3306621A1

    公开(公告)日:2018-04-11

    申请号:EP16836943.7

    申请日:2016-07-27

    IPC分类号: H01B7/06 H01R11/01

    摘要: An elastic conductor (1) is configured to be changeable between a first state and a second state in which the elastic conductor (1) is expanded in the first direction from the first state. The elastic conductor (1) includes: a stretchable base member (10); and a plurality of conductive members (20a to 20m) each having a longitudinal shape and arranged on a surface of the stretchable base member (10), each of the plurality of conductive members (20a to 20m) being lower in specific resistance and higher in modulus of elasticity than the stretchable base member (10). In the first state, the plurality of conductive members (20a to 20m) are arranged to be spaced apart from each other in the second direction perpendicular to the first direction, and to be continuous in a section extending in the first direction as seen in the second direction from one end of the section to the other end of the section, in which a distance between the conductive members (20a to 20m) adjacent to each other in the second direction in the second state is shorter than a distance between the conductive members (20a to 20m) adjacent to each other in the second direction in the first state.

    摘要翻译: 弹性导体(1)构成为能够在弹性导体(1)从第一状态向第一方向伸长的第一状态和第二状态之间变更。 弹性导体(1)具有:伸缩性基材(10); 以及多个导电构件(20a至20m),每个导电构件(20a至20m)均具有纵向形状并布置在所述可伸展基础构件(10)的表面上,所述多个导电构件(20a至20m)中的每一个具有较低的电阻率, 弹性模量大于可伸展的基座构件(10)的弹性模量。 在第一状态下,多个导电性构件(20a〜20m)在与第一方向正交的第二方向上隔开间隔地配置,在第一方向上延伸的区间内连续 从所述部分的一端到所述部分的另一端的第二方向,其中在所述第二状态下在所述第二方向上彼此相邻的所述导电部件(20a至20m)之间的距离比所述导电部件 (20a至20m)在第一状态下沿第二方向彼此相邻。

    Wire organizer
    10.
    发明授权
    Wire organizer 有权
    导线组织者

    公开(公告)号:EP2863484B1

    公开(公告)日:2017-12-06

    申请号:EP14188813.1

    申请日:2014-10-14

    摘要: The present invention relates to a wire organizer (1, 1') for holding at least one electrical line (4, 4'), with an organizer body (2') comprising at least one lead-through opening (20, 20') extending from a back side (23) to a front side (24) of the organizer body (2, 2') in an insertion direction (I, I') for leading the electrical line (4) from the back side (23) to the front side (24). Further, the present invention relates to a clamping element (3) for clamping at least one electrical line (4) within the organizer body (2, 2') as well as to a construction kit for a wire organizer (1, 1') and a method for fastening at least one electrical line (4) within the wire organizer (1, 1'). In order to fasten the electrical line (4) in a simple, reliable and cost-efficient way, the present invention provides that the at least one lead-through opening (20, 20') is at least partly laterally intersecting with the shaft (21) receiving the clamping element (3) fastening the at least one electrical line (4).