(1) Field of the Invention
The present invention relates to a connector assembly. In particular, the present invention relates to a connector assembly having enhanced sealing performance between a plug assembly and a header assembly.
(2) Description of the Related Art
Various electronic components are mounted on an automobile, which is provided with a wiring harness for transmitting electric power or control signals to the electronic devices. The afore-mentioned wiring harness includes one or more electrical wires and connector assemblies. Conventionally, the electrical wire comprises an electrically conductive core wire and an electrically insulating outer layer.
As the connector as described above, for example, a connector assembly disclosed in Japanese Published Patent Application No. 2000-294336 can be used. Such a connector assembly includes a connector housing and a sealing member. The connector housing in turn includes a tubular outer case and a plurality of plate-like housings, which are provided with a terminal receiving groove for receiving a terminal fitting attached to an electrical wire.
The sealing member includes a plurality of sheet-like sealing pieces, each made of resilient materials such as rubber. The sheet-like sealing piece is attached to the plate-like housing so as to provide a seal for moisture around the electrical wire which is attached to the terminal fitting received in the terminal receiving groove of the plate-like housing.
The connector as described above can be assembled as follows. First, the terminal fitting attached to the electrical wire is received in the terminal receiving groove of the plate-like housing, and the sheet-like sealing pieces are attached to the plate-like housing. Thereafter, the plate-like housings are engaged with each other and then the same plate-like housings are received in an outer case. Finally, the resulting connector as mentioned above is coupled to a mating connector. During the connector as mentioned above, the sheet-like sealing pieces protect the electrical wire against moisture so as to prevent moisture and the like from entering the terminal receiving groove via the electrical wire.
During the above referenced connector, while the sheet-like sealing pieces, each made of rubber and the like having restitution property, are used in order to ensure that moisture does not pass into both the outer case and the housing, a drawback of the connector is that more force is needed to insert the housing into the outer case. In other word, difficulty of insertion operation as mentioned above is problematic. One proposed method of overcoming the high insertion force was to control restitution property of the sealing piece. Unfortunately, in such a case, it was found to be impossible to provide a connector assembly with enough waterproof performance.
Thus, a need exists for an improved electrical connector assembly, which has enough waterproof performance, as well as, does not need high insertion force when the housing is mated into the outer case.
In accordance with an embodiment of the present invention, a connector assembly comprises a plug assembly; a header assembly configured to be mated with the plug assembly while forming an opening between the plug assembly and the inside of the header assembly; a holder configured to be pressed in the direction of insertion of the plug assembly into the header assembly; and a sealing member configured to be pushed out in a direction to fill the opening in response to the pressure applied by the holder after insertion of the plug assembly into the header assembly, in order to plug and seal the opening.
During the afore-mentioned connector assembly, the plug assembly is mated with the header assembly, while forming the opening between the plug assembly and the inside of the header assembly. Thereafter, the sealing member is pushed out in a direction to fill the opening in response to the pressure applied by the holder in the direction of insertion of the plug assembly into the header assembly. Such a configuration enables the sealing member to plug and seal the opening.
In accordance with another embodiment of the present invention, the afore-mentioned connector assembly can further comprise a positioning device configured to ensure proper positioning of the holder in order to enable the sealing member to plug and seal the opening.
Due to afore-mentioned configuration of the positioning device, the holder can be positioned in a desired position. Accordingly, the sealing member is securely pushed out in response to the pressure applied by the holder, leaving no opening at all between the plug assembly and the header assembly.
In accordance with yet another embodiment of the present invention, during the afore-mentioned connector assembly, the plug assembly can comprise the plug assembly comprises a holder base positioned at an end of the holder, and one or more holders layered upon the holder base.
The connector assembly comprising a plug assembly which has the holder base and the one or more holders layered thereupon, enables the sealing member to plug and seal the opening which exists between the multi-layered holders and the header assembly, more efficiently.
The foregoing summary, as well as the following detailed description of certain embodiments of the present invention, will be better understood when read in conjunction with the appended
Referring to
The header assembly 5 is formed of electrically insulating materials such as synthetic resin, and formed into a tubular shape, comprising an oppositely facing wall 9 having a plurality of holes 8 through which the male tab of the male terminal of a mating connector to be mated with the connector assembly 1 are passed, and a plurality of side walls 10, each of which extends from each edge of the oppositely facing wall 9 in a direction perpendicular to the wall 9. Space inside the header assembly 5 is divided into several compartments, for example, three compartments in accordance with an embodiment of the present invention.
The outer case 6 is formed of electrically insulating materials such as synthetic resin and formed into a tubular shape. The outer case 6 is secured to the header assembly 5 while receiving the header assembly 5 and the plug assembly 7 therein.
In accordance with an embodiment of the present invention, there are provided three plug assemblies 7. As viewed in
The cover 12 is formed of electrically insulating materials such as synthetic resin, and formed into a C-shape, including a flat top wall 15, and side walls 16 extending from each edges of the top wall 15 in a direction perpendicular to the top wall 15. The cover 12 is layered on top of the multi-layered plate-like housings 11 such that the top wall 15 plugs the terminal receiving groove 14 of the plate-like housing 11, is also positioned in order to accommodate a plurality of plate-like housings 11 between a pair of side walls 16, and is secured to the plate-like housings 11. During the plug assembly 7, the plate-like housings 11 configured to receive the terminal fitting 13 attached to the electrical wire 17 into the terminal receiving groove 14, are layered upon one another, are covered with the cover 12, and are secured to the cover 12.
The rear holder 3 is formed of electrically insulating materials such as hard-type synthetic resin which does not resiliently deform. Each plug assembly 7 in accordance with an embodiment of the present invention includes a pair of holder assemblies 3. As shown in
In accordance with an embodiment of the present invention, a plurality of holders are layered upon one another, and are positioned at one end of the holder assembly 3. As shown in
The other four holders (top holder 18b and intermediate holders 18c) are formed into a bar-shape extending in their horizontal direction respectively. These four holders are arranged between a pair of rails 21, being parallel to the connecting section 22. The four holders 18b and 18c are arranged in parallel to one another, are spaced from one another, and are layered upon the holder base.
Referring to
The guiding section 20 comprises a guiding protuberance 25 located at both ends of the intermediate holders 18c other than base holder 18a and top holder 18b in its longitudinal direction, and a guiding groove 26 located at a pair of rails 21. In other words, the guiding section 20 is formed extending from the intermediate holders 18c to the rail 21.
The guiding protuberance 25 is formed projecting from both ends of the intermediate holders 18c in its longitudinal direction. The guiding groove 26 is recessed from the oppositely facing surfaces of a pair of rails 21. The guiding groove 26 is disposed along the longitudinal direction of the rail 21, and limited by the whole length of the rail 21. By the presence of the guiding groove 26, the cross section of the rail 21 represents a C-shape. Because the guiding protuberance 26 is received in the guiding groove 26, the guiding section 20 supports the intermediate holders 18c such that the holders 18c may move freely along the guiding groove 26 (i.e., the longitudinal direction of the rail 21).
After the connecting section 22 of the base holder 18a and the intermediate holders 18c are arranged in parallel to one another, the intermediate holders 18c are press-fitted between a pair of rails 21. At this point, the guiding protuberance 25 of the intermediate holders 18c is in turn inserted into the guiding groove 26 of the base holder 18a. Next, the intermediate holders 18c are press-fitted between a pair of rails 21. When the guiding protuberance 25 of the intermediate holders 18c is received in the corresponding guiding groove 26, the intermediate holders 18c can move freely along the longitudinal direction of the rail 21.
Further, by press-fitting the top holder 18b between a pair of rails 21, the engaging protuberance 23 can be received in the engaging recess 24. After the connecting section 22 and the top holder 18b and intermediate holders 18c are arranged in parallel to one another while maintaining spaced-apart relationship, the rear holder 3 can be assembled thereto. Accordingly, such an assembled rear holder 3 not only can be attached to the plug assembly 7 together with the sealing member 4, but also can be press-fitted into the outer case 6 together with the plug assembly 7, and is finally coupled to the connector housing 2. When the rear holder 3 is coupled to the connector housing 2, the electrical wire 17 is positioned among the base, top and intermediate holders 18a, 18b and 18c.
The sealing member 4 is formed of resilient materials such as rubber. The sealing member 4 is, for example, provided within the plug assembly 7. As shown in
Each of sealing pieces 27 is formed into a bar-shape. The sealing pieces 27 are arranged in parallel to one another, having spaced-apart relationship. The base sealing piece 27a situated at the bottom among a plurality of sealing pieces (refer
A top sealing piece 27b situated at the highest point among a plurality of sealing pieces (refer
By means of an adhesive and the like, two base holders 18a are attached to the base sealing piece 27a, two holders 18b are attached to the top sealing piece 27b, and two holders 18c are attached to each of remaining intermediate sealing pieces 27c, respectively. At this point, the base sealing piece 27a is positioned between two holders 18a along the longitudinal direction of the grooves 28. Similar to the base sealing piece 27a, the sealing pieces 27b and 27c are also positioned between two holders 18b and between two holders 18c, respectively. In this way, the sealing pieces 27a, 27b and 27c are attached to the respective holders 18a, 18b and 18c, respectively.
In addition, when the intermediate holders 18c are layered upon the connecting section 22 of the base holder 18a, the intermediate sealing pieces 27c are in turn layered upon the base sealing piece 27a. Finally, when the top holder 18b is layered upon the intermediate holders 18c, the top sealing piece 27b is layered upon the intermediate sealing piece 27c. As the holder assembly 3 is assembled, simultaneously the sealing pieces 27a, 27b and 27c are in turn layered, to provide the sealing member 4.
At this point, as shown in
The sealing pieces 27a, 27b and 27c are clipped on the base holder 18a. The side 27d of the sealing piece 27a, 27b or 27c represents, as shown in
When the sealing pieces 27a, 27b and 27c are inserted into the header assembly 5, the holder 18d is pressed in a direction of X (i.e., insertion direction) and then the sealing pieces are sandwiched between the holders 18d and 18e of the plug assembly 7. As a result, the sealing pieces 27a, 27b and 27c are compressed, and, as viewed in
The afore-mentioned positioning device 60 includes an engaging section 61 and an engaging recess 62. The engaging section 61 is formed in a pair on both upper surface and under surface of the holder 18d. As shown in
Moreover, for example, the sealing member 4 can be embedded between the holder 18f and 18e, or between the holder 18d and the plug assembly 7 in the absence of holder 18e. The engaging recess 62 of the positioning device 60 may be formed in the outer case 6, as the case may be.
The plug assembly 7 is assembled, and then the rear holder 3 and the sealing member 4 are attached to the plug assembly 7, to provide the above mentioned connector assembly 1. The terminal fitting 13 attached to the electrical wire 17 is press-fitted into the terminal receiving groove 14 of the plate-like housing 11. Subsequently, the terminal fitting 13 attached to the electrical wire 17 is assembled to the plate-like housing 11.
As shown in
Thereafter, a plurality of plate-like housings 11 are pressed such that the plate-like housings 11 may approach one another to form the assembly of the plate-like housings 11. In addition, the base holders 18a and top holders 18b are fixed to each other by way of the engaging section 19 in order to assemble the base, top and intermediate holders 18a, 18b and 18c as well as to assemble the sealing pieces 27a, 27b and 27c. As shown in
After the plug assembly 7 is inserted into the header assembly 5, the plug assembly 7, the rear holder 3 and the sealing member 4 are press-fitted to the outer case 6 in the direction of āXā (i.e., insertion direction). As this occurs, the engaging section 61 of the positioning device 60 will be inserted into the engaging recess 62. The sealing member 4 will be compressed and then pushed out from the surface of the holder 18a in a direction toward the inside of the header assembly 5, forming the protuberance portion 27d. Such a protuberance portion 27d can plug and seal the opening 50 which has been formed between the header assembly 5 and the plug assembly 7, thereby ensuring that moisture cannot pass into the opening therebetween within the connector assembly 1.
The connector assembly 1 assembled as described above can be coupled to a mating connector. Such an assembly may be used with an automobile wiring harness system.
In accordance with the embodiment of the present invention, since the connector assembly 1 is designed to plug and seal the opening 50 which exists between the header assembly 5 and the plug assembly 7 by means of the sealing member 4, which is pushed out in a direction toward the opening 50 as mentioned above, in cases where the plug assembly 7 is inserted into the header assembly 5, the restitution phenomenon of the sealing member 4 will not occur, and said opening can be securely plugged. As a result, it is possible to provide a connector having enhanced sealing performance, as well as considerably decreased insertion force during the assembly process.
Moreover, because the holder assembly 18d is positioned such that the sealing member 4, regardless of its restitution force, may plug and seal the opening 50 which exists between the plug assembly 7 and the header assembly 5, improved sealing performance can be achieved between the plug assembly 7 and the header assembly 5.
Further, even if the plug assembly 7 includes a plurality of plate-like housings 11 (i.e., the multi-layered holders), the opening between the plug assembly 7 and the header assembly 5 can be plugged securely. Therefore, it is possible to provide a connector having enhanced sealing performance, as well as considerably decreased insertion force during the assembly process.
In accordance with the embodiment of the present invention, the sealing pieces (27a, 27b and 27c) which constitute the sealing member 4 are attached to the base holder, top holder and intermediate holders (18a, 18b and 18c) which constitute the rear holder 3, by means of an adhesive and the like. However, the sealing pieces 27a, 27b and 27c may also be molded integrally with the base holder, top holder and intermediate holders 18a, 18b and 18c, for example, by insert molding.
While a preferred embodiment of the invention has been shown and described with particularity, it will be appreciated that various changes and modifications may suggest themselves to one having ordinary skill in the art upon being apprised of the present invention. It is intended to encompass all such changes and modifications as fall within the scope and spirit of the appended claims.
Number | Date | Country | Kind |
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2006-125760 | Apr 2006 | JP | national |
Number | Name | Date | Kind |
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4998896 | Lundergan | Mar 1991 | A |
5222909 | Nomura et al. | Jun 1993 | A |
6174201 | Murakami et al. | Jan 2001 | B1 |
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Number | Date | Country |
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2000-294336 | Oct 2000 | JP |
Number | Date | Country | |
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20070254513 A1 | Nov 2007 | US |