Circuit board with self-locking terminals
    31.
    发明授权
    Circuit board with self-locking terminals 失效
    具有自锁端子的电路板

    公开(公告)号:US4295184A

    公开(公告)日:1981-10-13

    申请号:US137449

    申请日:1980-04-04

    Abstract: The present invention provides an apertured circuit board having self-locking terminals which partially cover at least some of the apertures. The terminals, which are integral extensions of the circuit pathways, each include a pair of inwardly disposed generally L-shaped fingers. The terminals are adhesively anchored to the circuit board at the terminal peripheries and are covered in part by a dielectric overlay. The latter also provides environmental protection and electrical insulation to the circuit conductive pathways. The circuit board and integral sockets may be formed by photoimaging and chemical milling techniques.

    Abstract translation: 本发明提供了一种具有自锁端子的有孔电路板,其部分地覆盖至少一些孔。 作为电路通路的整体延伸部的端子各自包括一对向内设置的大致L形的手指。 端子在端子周围粘合地锚定到电路板,并且被绝缘覆盖部分覆盖。 后者还为电路导电通路提供环保和电绝缘。 电路板和集成插座可以通过光学成像和化学研磨技术形成。

    Jumper cable
    32.
    发明授权
    Jumper cable 失效
    跳线电缆

    公开(公告)号:US4085502A

    公开(公告)日:1978-04-25

    申请号:US786886

    申请日:1977-04-12

    Abstract: An electrical jumper cable comprising a plurality of spaced metallic conductors, each conductor having a flexible area and integrally formed rigid terminal ends, is provided. Starting with a metallic sheet having a thickness approximating that required for the conductor flexible areas, one or more mesas of thickness approximating that required for the terminal ends are formed on the edge regions of the sheet. The mesas may be formed by plating or casting so that the thickened edge regions are integral with the sheet central region. The resulting substrate is then chemically or mechanically milled so as to define the conductor patterns and terminal ends, and the metallic conductors laminated to flexible films so as to support and maintain the metallic conductors in spaced relation to one another.

    Abstract translation: 提供了一种电跳线,其包括多个间隔开的金属导体,每个导体具有柔性区域和一体形成的刚性终端。 从具有接近导体柔性区域所需的厚度的金属片开始,在片材的边缘区域上形成一个或多个接近末端所需厚度的台面。 台面可以通过电镀或铸造形成,使得增厚的边缘区域与片材中心区域成一体。 然后将所得到的衬底进行化学或机械研磨,以便限定导体图案和终端,并将金属导体层压到柔性膜上,以便将金属导体彼此间隔开地支撑并保持。

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