This application is a U.S. National Phase Application under 35 USC 371 of International Application PCT/JP2007/051059 filed Jan. 24, 2007.
The present invention relates to an electrical connector for use in wire harnesses of automobiles and may be manufactured in a small size.
In accordance with progress in performance of electric devices, the number of electric wires provided in various kinds of electric devices such as automobile harnesses has been increased. Therefore, diameters of electric wires have been reduced accordingly, and then connecting terminals for connecting the electric wires have been also miniaturized. Then it is required to arrange a large number of electrical connectors within a connector housing with a higher density.
However, in order to accommodate a large number of miniaturized connecting terminals within the connector housing, there is a sever problem in holding the connecting terminals at given position within the connector housing.
In a conventional connecting terminal of female type, as shown in
In order to fix such a connecting terminal 1 in the connector housing, a resilient case lance is projected from an inner wall of connector housing such that a free end of the case lance is engaged with a rear end of the connecting portion 2 to retain the connecting terminal 1 within the connecting housing. However, in order to hold the connecting terminal 1 in a positive manner, this portion could not be miniaturized sufficiently.
The present invention has for its object to provide an electrical connector which can remove the above mentioned drawback and a combination of the connecting terminals and connector housing can be miniaturized to a large extent.
According to the invention, in order to achieve the above mentioned object, an electrical connector comprising a connector housing having case lances formed therein for holding connecting terminals within the connector housing, each of said case lances being projected inwardly into respective one of terminal accommodating holes formed within the connector housing and being engaged with a rear edge of a connecting portion having a substantially quadrilateral cross sectional shape to retain the connector terminal within the connector housing, characterized in that each of said connecting portions of connecting terminals is formed to have a substantially rectangular cross sectional shape, each of water proof portions of water proof sealing members provided on respective one of electric wires which are clamped on rear portions of the connecting terminals is formed to have a substantially elliptical cross sectional shape whose longitudinal axial direction is aligned with a longitudinal axial direction of a connecting portion of a relevant connecting terminal, each of terminal insertion openings of the terminal accommodating holes is formed to have a substantially elliptical cross sectional shape, and each of said connecting terminals is inserted into respective one of said terminal accommodating holes such that a longitudinal axial direction of the connecting portion of the connecting terminal is aligned with a longitudinal direction of a corresponding terminal insertion opening of the terminal accommodating hole.
In the electrical connector according to the invention, the connecting portion having a substantially rectangular cross sectional shape and water proof sealing member having a substantially elliptical cross sectional shape are inserted in a terminal accommodating hole such that the longitudinal axial direction of the connecting portion and water proof sealing member are aligned with the longitudinal axial direction of the terminal insertion opening having a substantially elliptical cross sectional shape, and therefore a distance between adjacent connecting terminals installed within the connector housing can be reduced and the connecting terminals can be arranged with a higher density to attain a desired miniaturization.
Now the present invention will be explained in detail with reference to an embodiment shown in
Each of the terminal insertion openings 15 formed in the rear wall of the connector housing has a substantially elliptical cross sectional shape and longitudinal axial directions of these terminal insertion openings 15 are aligned in a given direction. In one section of the rear wall of the connector housing, there are formed forty terminal insertion openings 15 each having a size corresponding to extremely miniaturized connecting terminals and in another section of the rear wall there are formed six terminal insertion openings each having a size corresponding to a relatively large connecting terminal carrying a large electric current. In this case, according to the invention, the longitudinal axial direction of the terminal insertion openings 15 in one section may be different from the longitudinal axial direction of the terminal insertion openings 15 in another section.
Since the number of the connecting terminals installed within the connector housing 11 is large, there might be produced a relatively large contact resistance. In the present embodiment, a lever 16 is provided on a side wall of the connector housing 11 and a pin provided on a cooperating connector housing is fit into a cam hole of the lever. By operating the lever 16, the cooperating connector housing can be fit into the connector housing easily and positively against the large contact resistance.
Upon comparing the connecting terminal 21 with the conventional connecting terminal shown in
A tubular water proof sealing member 25 made of a synthetic rubber is fit on the electric wire 24 and a front end portion of the water proof sealing member 25 is fixed by the clamp portion 23b of the connecting terminal 21. As best shown in
The water proof sealing member 25 is fixed on the connecting terminal 21 such that a longitudinal axial direction of the bellows 25a is aligned with a longitudinal axial direction of the substantially rectangular connecting portion 22. It should be noted that the substantially elliptical cross sectional configuration of the bellows 25a is kept unchanged even after the water proof sealing member 25 is fit on the connecting terminal 21.
When a connecting terminal 21 is inserted into the connector housing 11, a longitudinal axial direction of a connecting portion 22 of the connecting terminal 21 is aligned with a longitudinal axial direction of a terminal insertion opening 15 of a terminal accommodating hole 14. During the insertion, a resilient case lance 17 is pushed up by the connecting portion 22 of the connecting terminal 21 as shown in
Then, a free end of the case lance 17 is engaged with a rear wall of the connecting portion 22 as illustrated in the lowermost row of
In the above explained embodiment of the electrical connector according to the invention, the connecting terminals 21 of female type are installed within the connector housing 11, but according to the invention, female type connecting terminals may be equally inserted into the connector housing. In this case, a retaining portion provided at a rear side of a flat blade-like inserting portion of a connecting terminal is formed to have a substantially elliptical cross sectional shape. Then, the connecting terminals can be arranged with a higher density in combination with terminal insertion openings 15 having a corresponding cross sectional shape.
Number | Date | Country | Kind |
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2006-016026 | Jan 2006 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2007/051059 | 1/24/2007 | WO | 00 | 9/5/2008 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2007/086407 | 8/2/2007 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
4895533 | Yagi et al. | Jan 1990 | A |
5720487 | Kato | Feb 1998 | A |
Number | Date | Country |
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1-121276 | Aug 1989 | JP |
9-45426 | Feb 1997 | JP |
Number | Date | Country | |
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20100227501 A1 | Sep 2010 | US |