The invention relates to a device for making an electrical contact between a first contact partner with at least one further contact partner according to the features of the preamble of patent claim 1.
From the DE 196 05 999 A1, the making an electrical contact with a flat antenna conductor structure is know. In this case, beneath a part of the body of the motor vehicle, a signal processing unit, especially an antenna amplifier is mounted by appropriate fastening means. The housing of this unit has a carrier (outrigger arm) on whose end contact means are provided. These contact means are connected by connecting conductors, which are arranged in or on a rigid carrier, with the signal processing unit. Through the contacting means an electrical contact is made to contact surfaces of an antenna conductor structure which is located on the vehicle window. With the carrier it is thus possible on the one hand to connect the antenna conductor structure with the signal processing unit over a certain distance. Because of the location at which this unit must be mounted on the contact surfaces of the antenna structure, however, large tolerance ranges are required to ensure that the contact means of the unit will meet the contact surfaces of the antenna structure. A further drawback of this construction resides in that the entire signal processing unit with the carrier and the contact means arranged on the carrier must be completely replaced when this unit is for example damaged in a crash of the motor vehicle. This connected with high cost since the signal processing unit as a rule is integrated between the body (vehicle roof) and the ceiling of the vehicle and thus is only accessible with difficulty. Furthermore there is the drawback that with rigid carriers, the geometry of the component must always be matched with he respective vehicle type since each type of vehicle has a different characteristic configuration. This matching is associated with high cost since for each carrier for each vehicle type a different tool for producing the carrier must be made available.
Furthermore, contact elements are known which are comprised of an elastically deformable plastic into which electrical particles have been mixed. These can be inserted between a contact surface of a device and a further contact surface. Such contact elements have however the considerable disadvantage that they are very expensive in that the cost-driving factor with these known contact elements is the preparation of handling of the electrically conductive particles and the production of an extrudable mass which contains these conductive particles. This drawback is especially severe when contact elements are required in large numbers for devices which are produced by mass production.
The invention thus has as its object to provide a device for making electrical contact between a first contact partner and at least one further contact partner whereby the drawbacks described at the outset are avoided and whereby the device can be made especially cost effectively, especially as concerns manufacture by mass production.
This object is attained through the device of patent claim 1.
According to the invention an elastically deformable carrier is provided and is comprised of an electrically nonconductive material which has at least partly and in an especially advantageous manner over its entire surface, that electrically conductive layer whereby the contact partners electrically contact each other through this layer.
As a result, elastic contact elements are provided for making electrical contact between two or more contact partners which can be simply and cost-effectively fabricated and in addition, because of their deformability can compensate for tolerances between the at least two contact partners. For the fabrication such elastic contact elements it is significantly simpler and more cost effective to use an electrically nonconductive elastic carrier, for example of an elastomer containing material or formed completely from an elastomer and which is provided in a simple manner and way with an electrically conductive layer. For this purpose, the electrically conductive layer can be applied for example by dispersion, metal spraying, painting, printing (stamping or embossing), by a chemogalvanic [electrodeposition], electrostatic or like techniques by the electrically nonconductive carrier. The elastic contact element made in this manner have the advantage that they can be disposed between the at least two contact partners and on the one hand enable the convenient electrical contacting to be made between them in the electrically conductive layer which is applied and simultaneously ensure, based upon the elastic deformability, a compensation for tolerances in the gap between the two contact partners. Since it is required to make the electrical contact that the contact element be compressed between the at least two contact partners and that this compression force be maintained during the maintenance of the electrical contact, a durable electrical contact is ensured since the electrically conductive layer is pressed continuously by the elastically deformed carrier against the contact partners.
The compression force can also be generated by other elements, for example by a spring or the like. Furthermore, two or more such contact elements can be arranged in the contact direction [between two contact partners]. The arrangement and fastening of such contact elements in the contact direction can be carried out in various ways.
In an alternative application of the invention, the electrically conductive layer can also be formed by a foil which can be applied to the carrier by means of an adhesive, pressing [hot pressing] or the like. Over all there are therefore various possibilities to satisfactorily provide an elastically deformable and electrically nonconductive carrier with an electrically conductive layer on its surface. Furthermore, the contact elements can be matched prior to and especially after application of the conductive layer to the use or application to which they will be put (for example by cutting, by applying fastening elements or the like).
Four embodiments of the device according to the invention for making electrical contact between a first contact partner and at least one further contact partner, without however limiting the invention to them, are described in the following and in connection with the Figures.
The Figures show:
An especially advantageous use of the device according to the invention is for contacting at least one contact surface on an antenna amplifier with at least one contact surface of an antenna structure on a planar or at least partially convex or concave surface of an automotive vehicle, whereby the elastic contact elements according to the invention combine the advantages of low fabrication costs for the contact element, the reliable, convenient and durable formation of the electrical connection, the ability to compensate for tolerances because of the elastic deformability and a simple replacement of the contacting device in the case of a defect in a simple manner and way since the elastic contact element according to the invention is releasably brought into contact with the associated contact element because of the elastic deformability. Furthermore such contact elements can be a part of the contacting elements corresponding to FIGS. 1-4 of the German patent application 103 16 384.0.
Number | Date | Country | Kind |
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10336843.4 | Aug 2003 | DE | national |
102004002511.8 | Jan 2004 | DE | national |