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    • 1. 发明授权
    • Polarized electromagnetic relay
    • 极化电磁继电器
    • US5617066A
    • 1997-04-01
    • US525674
    • 1995-09-25
    • Michael DittmannHeinz StadlerHerbert Mitschik
    • Michael DittmannHeinz StadlerHerbert Mitschik
    • H01H49/00H01H50/18H01H51/22
    • H01H51/2281H01H2011/0087H01H49/00
    • The relay has a base (1) with stationary mating contact elements (11, 12, 13, 14), a coil (5), a permanent magnet (4) and also a rocker armature (3) which is arranged between the coil and the base, is connected to movable contact elements (21, 22, 23, 24) and is mounted on the base by means of bearing strips, the bearing strips simultaneously serving as electrical connections for the movable contact elements. The bearing strips (25, 26) are secured to the bearing supports (15, 16), which are designed as connection elements, of the base in planes extending at right angles to the basic plane of the base. As a result, the contact separation can be set with low tolerance even during production, and it is not dependent on tolerances of the individual parts. This structure consequently permits non-problematic, cost-effective production of the individual parts and accurate assembly without the requirement of subsequent adjustment.
    • PCT No.PCT / DE94 / 00288 Sec。 371 1995年9月25日第 102(e)日期1995年9月25日PCT 1994年3月16日PCT公布。 公开号WO94 / 22156 日期1994年9月29日继电器具有带有固定配合接触元件(11,12,13,14),线圈(5),永磁体(4)和摇臂电枢(3)的基座(1) 布置在线圈和基座之间,连接到可动接触元件(21,22,23,24),并通过轴承条安装在基座上,轴承带同时用作可动接触元件的电连接。 轴承条(25,26)在垂直于基座的基本平面延伸的平面中固定在基座的设计为连接元件的轴承座(15,16)上。 因此,即使在生产过程中也可以将接触分离设定为低容许,并且不依赖于各部件的公差。 因此,这种结构允许单个部件的无问题,成本有效的生产和精确的组装,而不需要随后的调整。
    • 2. 发明授权
    • Leaf spring for an electromagnetic relay
    • 用于电磁继电器的叶子弹簧
    • US5065127A
    • 1991-11-12
    • US649266
    • 1991-01-30
    • Herbert MitschikFritz Hinrichs
    • Herbert MitschikFritz Hinrichs
    • H01H50/26H01H50/28H01H50/34
    • H01H50/28
    • A relay includes a leaf spring for bearing an armature at a free end of a yoke, the leaf spring forming, first, a bearing plate lying against the yoke and, second, a pull-back spring applied thereto in one piece. The pull-back spring has a first section cut free from the middle of the bearing plate so that the bearing plate is subdivided into two plate sections on which the armature rests only at its lateral regions on its bearing edges. Further, the pulled-back spring as its free end cut arcuately roughly symmetrical to the center axis of the bearing plate to exert an approximately symmetrical pull-back force on the armature.
    • 继电器包括用于在轭的自由端处承载电枢的板簧,板簧形成,首先,抵靠轭架的支承板,以及第二,一体地施加到其上的拉回弹簧。 拉回弹簧具有从轴承板的中部切除的第一部分,使得轴承板被细分成两个板部分,衔铁仅在其支撑边缘上的侧向区域处搁置。 此外,作为其自由端的拉回弹簧弧形地大致对称于支承板的中心轴线,以在衔铁上施加大致对称的拉回力。
    • 5. 发明授权
    • Electromagnetic relay
    • 电磁继电器
    • US4740769A
    • 1988-04-26
    • US55499
    • 1987-05-28
    • Herbert Mitschik
    • Herbert Mitschik
    • H01H1/26H01H50/56H01H50/60H01H51/22
    • H01H50/60H01H1/5822
    • A relay includes a spool, or coil (3 and 4), and a yoke (5) next to the spool. In front of the spool, an armature (8) that activates a contact spring (16) is accomodated in a contact space positioned upstream in one of the free sides of the armature. The contact spring has an initial leg (16a) extending straight across the overall width of the relay and a U-shaped second leg (16b) mounted on the first. The free end of the U-shaped spring leg (16b) operates in conjunction with two reciprocal-contact elements (13 and 14). The generally Y shape results in a contact spring (16) with a maximum possible free length and hence a low spring constant, meaning a low relay-response output, while retaining the prescribed compact design.
    • 继电器包括线轴或线圈(3和4)以及靠近线轴的轭(5)。 在线轴的前面,启动接触弹簧(16)的电枢(8)容纳在位于电枢的一个自由侧上游的接触空间中。 接触弹簧具有直线延伸穿过继电器的整个宽度的初始支脚(16a)和安装在第一支架上的U形第二支脚(16b)。 U形弹簧腿(16b)的自由端与两个往复接触元件(13和14)一起工作。 通常Y形状导致接触弹簧(16)具有最大可能的自由长度,因此具有低弹簧常数,意味着低的继电器响应输出,同时保持规定的紧凑设计。