The present application relates to the field of electrical connectors. It concerns a connector as claimed in the preamble of claim 1.
In the automotive industry, RF systems (GPS, external aerials for mobile radio, car radio etc.) are being increasingly integrated in the vehicles, and coaxial cables have to be laid and connected in the vehicle for these RF systems. Standards have been introduced in the USA and in Europe for such coaxial automotive connectors in order to make systems from different manufacturers compatible with one another. The existing standard in the USA is SAE/USCAR-18, and this corresponds to DIN standard 72594-1 (FAKRA) in Europe. The international standard is ISO-20860-1.
In this connection, the applicant already provides automobile connectors which are covered under the term ARC (Automotive Radiofrequency Connectors) and which have been developed as RF connector families specifically for telematics, multimedia, safety and security applications in automobiles and heavy goods vehicles.
This family includes angular connectors in which the coaxial cable to be connected is generally inserted into the connector such that it is bent back through 90° with respect to the plugging direction or plug axis. Angular connectors of this type for the automotive sector are disclosed, for example in DE-A1-10 2004 041 809 or DE-B3-103 39 965.
In order to secure an inserted plug connection, said connectors have a locking mechanism which latches in during insertion and can be unlatched again only by operating an operating element provided for this purpose. A locking mechanism of this type is described, for example, in the abovementioned document DE-A1-10 2004 041 809.
One disadvantage of the known locking mechanisms is that they lead to a relatively large overall length of the housing and are composed of a plurality of separate parts which have to be produced individually and then have to be assembled with a considerable amount of outlay. Furthermore, the known solutions are sensitive to external influences.
It is therefore an object of the invention to provide a connector comprising a locking mechanism which avoids the disadvantages of known solutions and is distinguished in particular by simplified construction and mounting, a high degree of robustness and a very short overall length of the housing and can be used within the plug connections which are standard for the automotive sector.
The object is achieved by all the features of claim 1. In the connector according to the invention, the locking device comprises a latching clip which is accommodated in an accommodation space in the housing, extends in the insertion direction and can be elastically deflected transverse to the insertion direction, it being possible for said latching clip to be elastically deflected transverse to the insertion direction for unlatching purposes by means of an operating element which is mounted on the housing. It is essential that the operating element is arranged next to the latching clip transverse to the insertion direction, and that the length of the operating element is smaller than or approximately equal to the length of the latching clip in the insertion direction. This allows a very compact and short housing which can be produced and mounted in a simple manner.
One refinement of the invention is characterized in that the latching clip is fixed to the housing by means of arms which extend in the insertion direction and can be elastically deflected transverse to the insertion direction, and in that the operating element engages with the latching clip by means of a rocker in such a way that, when the rocker is pressed down by the operating element on one side of the rocker, the latching clip is elastically deflected transverse to the insertion direction on the other side of the rocker.
The rocker is preferably formed by two parallel rocker arms which extend in the insertion direction and are supported on a floor of the accommodation space which runs parallel to the insertion direction by means of bearing lugs which are integrally formed in the central region.
Another refinement is distinguished in that the accommodation space is bounded on that side which is opposite the floor by a ceiling which runs parallel to the floor and at the same time forms an outer wall of the housing, and in that a tongue which can be elastically deflected transverse to the insertion direction is formed in the ceiling as the operating element, wherein two edge slots are provided in the ceiling in order to form the operating element, said slots running in the insertion direction and extending from the rear end of the ceiling far into the ceiling.
A preferred development of the invention is characterized in that the arms of the latching clip are arranged between the rocker arms, and in that the latching clip, by way of its arms, the rocker arms and the operating element are integrally formed on the housing and are part of an integral plastic housing, preferably formed by means of injection molding.
The housing and the accommodation space have, in particular, a substantially rectangular cross section.
The connector is preferably a coaxial connector which is provided, in particular, for use in the automotive sector. In this case, said connector may be an angular plug.
The invention will be explained in greater detail below with reference to exemplary embodiments in conjunction with the drawing, in which
The connector 10 comprises a plastic housing 11 with a substantially rectangular cross-sectional profile. The housing 11, which itself is illustrated in
A manually operated (releasable) locking device 13 is integrated in an accommodation space 21 in the housing 11, which is open on both sides, above the electrical connection part 12, said locking device interacting with a hook-like element on the mating piece (not illustrated in the figures) of the connector 10. The accommodation space 21 has a substantially rectangular cross section and is bounded at the bottom (in the direction of the electrical connection part 12) by a floor 23 which runs in the insertion direction. At the top, the accommodation space 21 is bounded by a ceiling 22 which is parallel to the floor and at the same time forms an outer wall of the housing 11.
The locking device 13 comprises a latching clip 14 which lies in the accommodation space 21 parallel to the insertion direction (longitudinal axis 32 in
In order to release the latching of the plug connection again, the latching clip 14 has to be pivoted upward again, so that it can slide back over the hook-like element during disconnection. This is performed by means of an operating element 15 which is integrated in the ceiling 22 and can be pressed elastically downward into the accommodation space 21 in the manner of a spring tongue. In order to form the operating element 15, two edge slots 16, 17 which run in the insertion direction 32 are provided in the ceiling 22, said slots extending from the rear end of the ceiling 22 far into the ceiling 22.
The operating element 15 engages with the latching clip 14 by means of a rocker 18, 18′ in such a way that (as indicated by the two directional arrows in
As can be seen in
The configuration of the locking device 13 illustrated in the figures allows, in particular, the latching clip 14, by way of its arms 20, 20′, the rocker arms 18, 18′ and the operating element 15 to be directly integrally formed on the housing 11. Said elements are then part of an integral, plastic housing 11, preferably formed by means of injection molding.
In order to produce a plug connection to a coaxial cable 26, the housing 11 according to
Number | Date | Country | Kind |
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132/07 | Jan 2007 | CH | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CH2007/000562 | 11/12/2007 | WO | 00 | 7/17/2009 |