Elektrischer Steckverbinder für Koaxialkabel
    11.
    发明公开
    Elektrischer Steckverbinder für Koaxialkabel 有权
    用于同轴电缆的电连接器

    公开(公告)号:EP1067633A3

    公开(公告)日:2004-01-07

    申请号:EP00114288.4

    申请日:2000-07-04

    IPC分类号: H01R13/646

    CPC分类号: H01R13/6277

    摘要: Die Erfindung betrifft einen elektrischer Steckverbinder für Koaxialkabel bestehend aus zumindest einem Kontakt (2) mit einem Kontaktbereich zur Verbindung mit einem komplementären Kontakt und einem Verbindungsbereich zur Verbindung mit einem Koaxialkabel (30), wobei der Kontakt (2) eine umlaufende Nut (31) aufweist, weiter bestehend aus eine Kontaktsicherungshülse (111), die auf dem Kontakt (2) von der Stirnseite her aufschiebbar ist, zumindest einen Rastarm (113) aufweist, der in der Nut (31) verrastet und zumindest ein weiteres Rastelement (116) aufweist, und weiter bestehend aus einem Gehäuse (20), das zumindest eine Aufnahmekammer zur Aufnahme des Kontaktes (2) mit der Kontaktsicherungshülse (111) aufweist, wobei das Rastelement (116) der Kontaktsicherungshülse (111) mit einem komplementären Rastelement (25) des Gehäuses (20) verrastet und die Aufnahmekammer den Rastarm (113) in der verrasteten Stellung hält.

    Armature spring for a relay
    12.
    发明公开
    Armature spring for a relay 有权
    继电器衔铁弹簧

    公开(公告)号:EP1154453A3

    公开(公告)日:2004-01-02

    申请号:EP01110814.9

    申请日:2001-05-04

    IPC分类号: H01H50/24

    CPC分类号: H01H50/24

    摘要: The present invention relates to an armature spring (4) for a relay comprising a fastening section (3), a connected oblong spring section and a lever (7). The lever is located on the side of the longitudinal axis of the spring section opposite to that of the fastening section (3) so that the spring section is subject to torsional stress. Due to the torsional stress of the spring section, an even progression of the spring characteristic curve can be achieved. The stress is very even, so that the spring is very small and simple. In advantageous embodiments, the spring section extends parallel to the armature pivot axis and is formed by a torsion web (6). The lever section can be flexibly deformable. As a result the spring characteristic can be particularly easily and flexibly adjusted. As a result the spring armature can be combined with a magnet system exhibiting opening angles of 10° to 15°.

    Relay
    14.
    发明公开
    Relay 审中-公开
    继电器

    公开(公告)号:EP1160817A3

    公开(公告)日:2003-12-17

    申请号:EP01112436.9

    申请日:2001-05-22

    IPC分类号: H01H50/32 H01H50/64

    摘要: For the purpose of testing a relay, a safety relay comprises a key (12) arranged in a housing cover and which acts upon a lever (38) pivotally mounted on the inside of the housing. Due to the pivoting of the lever a movable switching contact carrier of the relay is moved. To avoid excessive deviation of the switching contact carrier through excessive lever force and therefore a possible plastic deformation of the contact carrier springs, the force which is possibly applied to the switching contact carrier is restricted by a U-shaped spring (40) held by the lever (38). A pressure leg (48) is biased by a latching lug (52a, 52b) supported by a peg formed as one piece with the lever (38). Consequently the switching contact carrier is moved via the spring with only a predetermined maximum force, so that a deformation of the springs supporting the contact pieces is avoided and the contact pieces maintain the required specified contact distance.

    摘要翻译: 为了测试继电器,安全继电器包括布置在壳体盖中的键(12),其作用在枢转地安装在壳体内部的杠杆(38)上。 由于杆的枢转,继电器的可动开关触点支架被移动。 为了避免切换触点支架通过过大的杠杆力的过度偏离,因此可能导致接触支架弹簧的塑性变形,可能施加到开关触点支架的力受到U形弹簧(40)的限制, 杠杆(38)。 压力腿(48)被由与杆(38)一体形成的钉支撑的闩锁凸耳(52a,52b)偏压。 因此,切换触点载体仅通过弹簧移动,仅具有预定的最大力,从而避免了支撑接触片的弹簧的变形,并且接触片保持所需的规定接触距离。

    Magnetic switch
    18.
    发明公开
    Magnetic switch 审中-公开
    磁性开关

    公开(公告)号:EP1137032A3

    公开(公告)日:2003-07-16

    申请号:EP01106190.0

    申请日:2001-03-14

    发明人: Hendel, Horst

    IPC分类号: H01H51/22

    摘要: The invention relates to a magnetic switch having a yoke (1) which has the shape of a rotationally symmetrical cup (3) on the base (4) of which is arranged a permanent magnet (5). The flux of the permanent magnet (5) is conducted via a core (6), which has a radial core flange (8), to the plate-shaped armature (11). For the operational air gap effective between the armature (11) and the core (6) and the yoke (1) and the magnetic resistance W A thereof, the following relation applies in relation to the marginal air gap (10) formed between the core flange (8) and the yoke (1): W A R . As a result of the rotational symmetry with a yoke (1) having the shape of a cup (3), it is possible to generate a high holding force for the armature (11) with a small structural volume.