This invention relates to electrical connectors and more particularly to female connectors formed to mate with a male contact affixed to a glass base.
Female electrical connectors for attachment to a male contact affixed to a glass base are known and are used in the automobile industry, where the glass base can be a windshield or rear window, for example. In the past the female contact has comprised the ubiquitous female terminal employed with 9-volt dry cell batteries.
The terminal was attached, as by riveting, to a flat brass disc, which included a lead extension for crimping attachment to a wire. This assembly was then overmolded to form an ergonomic cover over the terminal or terminals.
These female electrical connectors often rattled or came loose because of the over-stressing of the contact beams. They were quite flimsy and subject to inefficient electrical connection and, since the connection often takes place under the headliner of the vehicle, caused severe replacement conditions.
It is, therefore, an object of the invention to obviate the disadvantages of the prior art.
It is another object of the invention to enhance electrical connectors.
These objects are accomplished, in one aspect of the invention, by the provision of a process for making an electrical connector that includes an electrical contact, an electrically insulating insert and an electrically insulating overmolded body, by the steps comprising forming an electrical contact, forming an electrically insulating insert, attaching a wire to the electrical contact, mating the electrical contact and the electrically insulating insert to form a subassembly, and overmolding the subassembly with an electrically insulating material to form an overmolded body thereabout and form the electrical connector.
In another aspect of the invention there is provided an electrical connector that comprises a substantially annular electrical contact with an inside dimension and an outside dimension. The inside dimension is provided with a plurality of contact beams depending therefrom and the outside dimension is provided with a plurality of retention beams depending therefrom. The plurality of contact beams and the plurality of retention beams are spaced alternately from one another. A substantially cup-shaped electrically insulating insert is mated with the annular electrical contact to form a subassembly. The substantially cup-shaped insulator has an interior wall and an exterior wall, and the interior wall includes a plurality of pockets for receiving the contact beams. The exterior wall includes a plurality of pockets for receiving the retention beams, and the contact beams and the retention beams engage their respective pockets. An electrically insulating overmold forms a body about the subassembly, with the body completely covering the exterior wall of the cup-shaped electrically insulating insert.
The use of the electrically insulating insert, with the particular pockets formed for the reception of the contact beams, leaves a plurality of ribs between the pockets and these ribs limit the amount of deflection of the contact beams, thus providing an over-stress feature absent in the prior connectors and greatly improving the connector.
For a better understanding of the present invention, together with other and further objects, advantages and capabilities thereof, reference is made to the following disclosure and appended claims in conjunction with the above-described drawings.
Referring now to the drawings with greater particularity, there is shown in
A substantially cup-shaped electrically insulating insert 22 (see
The space between the pockets 30 includes nibs 31, which limit the deflection of the contact beams 18, as will be explained further hereinafter.
In a preferred embodiment of the invention two of the annular electrical contacts 12 are attached to a suitable wire 50 as is shown in
Referring now to
The subassemblies 24, if two are present, are then placed in a mold and overmolded with a suitable electrically insulating material, such as a thermoplastic elastomer, to produce a body 34 completely covering the external wall 28 of the insert 22 and forming the electrical connector 10. To aid in retention of the subassembly 24 within the body 34 the insert 22 is provided with a flange 33, which is encompassed within the overmold.
The obverse of the electrical connector 10 is shown in
The mating male electrical contact 51 is shown in
The body 34 is shown with a glass-contact rib 60 that is provided by the overmold and that is sized to rest on the glass when the connector 10 is mated to the button 50. This prevents foreign material from entering the contact area and also prevents the contact from rattling.
Referring now particularly to
There is thus provided an electrical connector with superior advantages over the prior art. It is rugged and serves to provide good electrical connection where needed in a reliable manner.
While there have been shown and described what are at present considered to be the preferred embodiments of the invention, it will be apparent to those skilled in the art that various changes and modification can be made herein without departing from the scope of the invention as defined by the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
2487521 | Buckley | Nov 1949 | A |
6361383 | Ko | Mar 2002 | B1 |