1. Field of the Invention
An electrical connector assembly includes a quick-fastening locking arrangement for locking together a plug member and a socket member, including a locking peg connected with one of the plug and socket members, and a locking cam connected with the other member, which locking cam is pivotable through a relatively small angle between locked and unlocked positions relative to the locking peg. The locking cam is mounted at one end of the plug member adjacent the socket member for rotation about a transverse axis relative to the collinear axis of the plug and socket members.
2. Description of Related Art
Typical plug connector systems for mounting upon an opening or a breach in a mounting wall are known as such. Usually, one plug connector part—for instance, a socket part or a printed circuit board plug connector—is pre-mounted in the opening, for example, it is locked there. Then the plug connector parts are coupled together.
It is also known that one of the plug connector parts comprises a 1-piece or multipart mounting and/or electrically-shielding sheet metal piece, which secures the plug connector part upon the housing wall and possibly, for shielding purposes, contacts the then possibly metallic housing wall. For this purpose, it is normally connected with the housing wall by rotatably-operable screw thread locking means, something that is unavoidably time consuming.
Securing the plug connector parts among each other is also known. For this purpose, the plug connector parts for instance are screwed together with each other, something that is time-consuming.
The present invention was developed to provide a plug connector system of the typical kind that will ensure fast and simple mounting on a mounting wall and/or of the plug connector parts among each other.
Accordingly, a primary object of the present invention is to provide a connector assembly including quick-fastening locking means for locking together a pair of plug and socket components when in the engaged connected condition, characterized in that the locking means includes a locking peg connected with the socket member, and a cylindrical locking cam connected with the adjacent end of the plug member for pivotal movement about an axis of rotation transverse to the collinear axis of the plug and socket members.
According to a first embodiment of the invention, the socket member is mounted in an opening contained in a mounting wall, and the peg member is fastened at one end with the mounting wall adjacent the wall opening. In a second embodiment, the locking peg is fastened directly to the socket member. In both cases, the locking peg extends towards the plug member and terminates in enlarged head portion contained within locking slot means defined within the locking cam.
A more specific object of the invention is to provide a plug and socket connector arrangement in which the plug member is supported within a plug housing formed of sheet material having bottom, side, and rear end walls that define a chamber receiving the plug member. The chamber walls are lined with a liner body formed from an electrically-insulating synthetic plastic material. At one end adjacent the socket member, the liner body contains an open-topped channel that rotatably supports the cylindrical locking cam for pivotal movement between locked and unlocked positions relative to the locking peg that extends form the mounting wall to which the socket member is fastened. A first overhang portion on the plug body extends partially over the cylindrical locking cam, and a second overhang portion extends over the locking cam from either the rear wall of the liner body or from the mounting wall, thereby to retain the locking cam in the support channel.
The plug connector system of the present invention facilitates fast, simple, and low-cost attachment upon a housing wall. All that is necessary is to fashion or attach a receiving peg upon the mounting wall (for example, by riveting or screwing or in some other way). Then the locking cam is preferably is put on with the mounting sheet metal piece and the latter (or some other structural part of the plug connector part) is braced upon the housing wall in a rotary manner. There is no longer any need for expensive multiple screwing action. Besides, the locking cam can be so aligned that tool actuation will be possible not normal to the mounting wall, but essentially parallel to the latter.
If the plug connector part is made in several parts, then the locking cam is preferably inserted into the plug connector part during the assembly of the plug parts. The structural parts of the plug connector part, that is made as a multi-part assembly, can preferably be locked into each other by means of catch-dogs and corresponding catch grooves, something that facilitates fast and easily handled assembly as well as disassembly of the plug connector part.
In this manner, the mounting function can be accomplished in a simple and fast fashion. The mounting and/or screening sheet metal piece can be used only for mounting and securing the pertinent plug connector part or it can also be used for screening. These functions can be assumed alternatively also by two sheet metal pieces.
Besides, the locking cam facilitates fast, simple, and cheap securing of two plug connector parts of the plug connector system. All that is necessary is to fashion or attach at least one locking peg upon one of the plug connector parts (for example, by riveting or screwing together or in some other way). Then the mounting cam is installed and the two plug connector parts are locked together with a slight pivotal fashion. There is therefore no longer any need for any expensive multiple-turn screwing action.
Other objects and advantages of the invention will become apparent from a study of the following specification, when viewed in the light of the accompanying drawing, in which:
a is a sectional view illustrating the apparatus of
a is a front perspective view of the cylindrical locking cam,
Referring first more particularly to
The plug means 6 includes a sheet-material housing 8 having a horizontal bottom wall 9, a pair of vertical side walls 10 and 11, and a rear wall 12 adjacent the front face of the mounting wall 2. The bottom, side and rear walls of the plug housing 8 define a chamber 16 that is lined with an insulating body 13, which chamber is adapted to receive the plug body 17 that is formed from an electrically insulating synthetic plastic material. The housing 8 may be formed of metal to electrically shield the plug means 6, or it may be formed from a synthetic plastic sheet material. The insulating liner body 13 is formed from an electrically-insulating synthetic plastic material. This liner body 13 is provided at its end adjacent the mounting wall 2 with an enlarged platform portion 20 that projects upwardly and contains at its upper surface a semi-circular channel 21 for rotatably supporting the cylindrical locking cam 22. When the plug body 17 is inserted within the chamber 16 defined within the plug housing means 8 and the liner body 13, plug contacts 7a (
The locking plug 26 has a shank portion that is rigidly fastened to the wall 2 by screw thread means, by rivet mean, or by welding, for example, which shank portion extends from the wall 2 in the direction of the plug body 17 and terminates in an enlarged head portion 25.
As best shown in
To assemble the apparatus of
Referring to
Referring to
Referring to the second embodiment illustrated in
While in accordance with the provisions of the Patent Statutes the preferred forms and embodiments of the invention have been illustrated and described, it will be apparent to those skilled in the art that changes may be made without deviating from the invention described above.
Number | Date | Country | Kind |
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20 2006 019 402 U | Dec 2006 | DE | national |
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Number | Date | Country |
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694 16 889 | Mar 1999 | DE |
Number | Date | Country | |
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20080166922 A1 | Jul 2008 | US |