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Gas discharge panel containing flexible electrical connections

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专利汇可以提供Gas discharge panel containing flexible electrical connections专利检索,专利查询,专利分析的服务。并且There is disclosed a multiple gaseous discharge display/memory panel having flexible electrical cable connectors integrated therewith. There is further disclosed various methods of simultaneously making individual electrical connection between pairs of closely spaced electrode conductors carried on individual panel substrates and electrical conductors carried on flexible cable substrates in which energy is applied to solder on the connecting terminal ends of the conductors so as to melt the solder and form a bond between the conductors respectively. In one particular embodiment, one of the pairs of conductors is on a flat support plate as in a gas discharge display panel and the energy is directed through the glass substrate where it is absorbed by the conductors (on the panel substrate) to generate heat sufficient to melt the solder and form the bond. Typical solder energy sources include not by way of limitation thermal, infrared, ultrasonic, electrical, magnetic, etc. Consult the specification for further features and details.,下面是Gas discharge panel containing flexible electrical connections专利的具体信息内容。

1. In a gas discharge panel having a pair of elongated flat glass plates spacedly joined to form a thin gas discharge chamber with linear conductor arrays laminated to a flat surface thereof extending parallel to the long directions of said plates respectively, and with said plates having their long axes transverse to each other, said conductors extending beyond where said plates are spacedly joined and toward at least one edge of said plates, respeCtively, the improvement in the means for connecting and conductor arrays to a source of operating potential comprising, a flexible nonconductive substrate having multiple conductors thereon spaced apart a distance corresponding to the spacing between the terminal ends of said extended conductors, solder means between the extended conductor ends and the conductors on said flexible planar nonconductive substrate and forming an electrically conductive solder bond therebetween, said electrically conductive solder bond for each conductor having been simultaneously formed in situ and integrating said flexible substrate and conductors thereon to said panel whereby said solder bond for all conductors carried by each said flexible nonconductive substrate are of highly uniform character.
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