The invention relates to a seal, particularly for a plug or a socket of a plug connector for use in automotive technology, according to the characteristics of the preamble of claim 1.
Plugs or sockets of plug connectors for use in the automotive industry are known, where at least one electrically conductive conductor in a wire has an end provided with a contact, can be inserted and fixed in place in a contact chamber of a housing of the plug or socket. In the case of these known plugs or sockets, the end region of the wire and a part of the housing are then insert-molded using a sealing material to ensure that in the plugged-in and unplugged states of the plug or socket, ambient media (particularly moisture or pollution) is prevented from penetrating between the conductor and the wire, the conductor and the housing, and the wire and the housing. If plugs and sockets produced accordingly are assembled into a complete plug connector, the longitudinal water tightness required in automotive technology is achieved. As a result, a reliable and proven, but above all a tight connector system is provided. The disadvantage, however, is the high manufacturing cost, because accordingly designed manufacturing equipment is required for molding the sealing material around the components, the tools and operation of which system are cost-intensive. In addition, once the equipment has been set up, flexibility is limited, resulting in high expenses on the production line of the plug or the socket when changes are to be made (for example, when the number of electrical conductors decreases or increases).
It is therefore the object of the invention to provide a seal of a plug connector, which meets the longitudinal water tightness requirements in the plugged-in and unplugged states and the expenses of which are reduced during production, while its manufacturing flexibility is increased.
This object is achieved with the characteristics of claim 1.
According to the invention, a seal with openings for receiving the conductors is provided, the seal being mounted to the wire at the electrical conductors before or after attaching the contacts and being inserted into the housing and fixed in place. Hence, a single seal is provided that assumes the sealing function between the housing and the electrical conductors and/or the electrical wire. As a result, both the longitudinal water tightness and the sealing effect with respect to the housing are maintained. Since the seal is a separate part, it can be produced independently from the remaining components of the plug or socket and it can be installed manually or automatically on an assembly line when the components are assembled. The geometry of the seal is selected such that secure sealing between the housing on the one hand and the electrical conductors and/or the electrical wire on the other hand is guaranteed.
In a further development of the invention, the seal can be made of elastic and deformable material. This has the advantage that when installing the seal on the electrical conductors and/or the electrical wire on the one hand and when inserting the seal into the housing of the plug or socket on the other hand, the seal can be deformed, in particularly permanently deformed, thus maintaining permanent pressure between the seal and the housing and/or the electrical conductor or the wire, resulting in the desired housing tightness and longitudinal water tightness. Furthermore, tolerances are compensated for. To achieve the elastic deformation and the resulting permanent pressure effect, it is provided that the outer cross-section of the seal is slightly larger than the inner cross-section of the housing. As a result, the seal is compressed when inserted into the housing and comes in contact all around on the housing of the plug or socket. Additionally or alternatively, it is provided that the cross-section of the openings in the seal corresponds to the cross-section of the wire or the cross-section of the conductors and is selected slightly smaller than that cross-section. Hence, it is guaranteed that the seal bears against at least one electrical conductor and/or the wire, at the same time achieving the housing and longitudinal water tightness between these two components.
Overall, the seal according to the invention offers the advantages that both manual and automatic assembly of the seal are possible. In the case of automatic assembly of the seal, this step can be easily integrated into an assembly line, eliminating complex tools for producing a seal. Typically, a wire with a plurality of conductors is used, for example flat cables (FFC: flexible flat cable, FPC: flexible printed circuit), ribbon cables or individual cables with bunched conductors. These typically have a defined spacing (grid spacing) between the individual conductors. The seal according to the invention has the advantage that the grid spacing is not limited by the seal. Depending on the design (particularly the diameter) of the electrical conductors and/or the electrical wire, the grid spacing and the number of electrical conductors, the seal can be prefabricated accordingly. It is conceivable to prefabricate a plurality of seals with different numbers of openings, wherein during assembly of the plug or socket always that seal is used that has same number of openings as the number electrical conductors that are provided. It is also conceivable to use different colors, for example, for differentiating the different seals.
Further embodiments of the invention are provided in the dependent claims, described hereinafter and explained with reference to the figures, where the invention is not limited to these illustrated embodiments. Shown are:
FIGS. 1 to 3: the basic configuration of a plug or socket,
FIGS. 4 to 6: the manufacturing method of a socket with flat cable,
FIGS. 7 to 9: one embodiment of a seal.
FIGS. 1 to 3 illustrate, to the extent details are provided, the basic design of a seal according to the invention. It is shown that different wires can be used together. In general, this only serves the illustration of the invention, where in the embodiments typically only one type of wire is used. The hybrid assembly shown according to FIGS. 1 to 3, however, is not excluded in practical applications.
A flat cable 1 (FFC or FPC), denoted with reference numeral 1, is shown that comprises parallel electrical conductors 2 (flat conductors) extending at a spacing from each other. Additionally or alternatively, the use of a ribbon cable 3 is conceivable that also comprises parallel electrical conductors 4 extending at a spacing from each other. These electrical conductors 4 are configured as stranded conductors, for example. Furthermore, additionally or alternatively, the use of a single wire 5 is conceivable that also comprises an electrical conductor 6 that is configured likewise, for example, as a stranded conductor. The wires 1, 3, and 5 shown and described therefore comprise a plurality of electrical conductors 2, 4, and 6 that are enclosed on the outside by insulation.
According to the invention, a seal 7 with openings 8, 9, and 10 is provided, which openings 8, 9, and 10 correspond substantially to the cross-section of the electrical conductors 2, 4, and 6. It is apparent, for example, that the openings 8 have a substantially rectangular cross-section that corresponds to the cross-section of the electrical conductor 2 of the flat cable 1. This prefabricated seal 7 that is made particularly of elastic and deformable material, is pushed over the end region of the wires 1, 3, and 5 and fixed in place there in a defined position. Before or after installing the seal 7 on at least one wire end, the electrical conductors 2, 4, and 6 are uncovered (stripped).
FIGS. 4 to 6 show and describe the entire sealing system again, as well as the assembly thereof, based on a socket for a flat cable. In
FIGS. 7 to 9 show and describe a particularly advantageous embodiment of a seal 7.
While in the description above electrical conductors are mentioned, the sealing system according to the invention can also be used for other types of wires (for example fiber-optic cables), in branching devices, in housings of electrical or electronic devices and the like. No limitations of the application of the special seal according to the invention on plugs or sockets are provided.
The invention relates in particular to a seal for the following applications:
1. Flat-cables (FFC, FPC, etc.), and the seal should also be usable for single-pin wires.
2. It is also possible to combine a plurality of is conductors.
3. Different types of conductors (flat cable, ribbon cable, wire, stranded conductor etc.) combined into one seal are likewise possible.
4. it is ideal when equivalent wires, such as stranded wires, can be combined. LIST OF REFERENCE NUMERALS 10. Passage 1. Flat cable 11. Contact 2. electrical conductor 12. Housing 3. ribbon wire 13. Contact chamber 4. electrical conductor 14. Crimp connection 5. individual wire 15. Lip (on housing side) 6. electrical conductor 16. Lip (on electrical 7. Seal conductor) 8. Passage 17. Lip (on flat cable) 9. Passage 18. Abutment
Number | Date | Country | Kind |
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10 2004 050 473.3 | Oct 2004 | DE | national |
10 2005 040 941.5 | Aug 2005 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP05/11110 | 10/14/2005 | WO | 9/25/2007 |