The present invention claims priority under 35 U.S.C. 119(a-d) to CN 201320780433.4, filed Dec. 2, 2013.
1. Field of Invention
The present invention relates to a receptacle connector, and more particularly to a receptacle connector having interface reinforcement structure matched with a plug connector of flexible flat cable (FFC).
2. Description of Related Arts
A conventional receptacle connector matched with a plug connector of flexible flat cable (FFC) comprises a shielding shell, an insulating body, and a plurality of conductive terminals that are received inside the insulating body; wherein, the insulating body comprises a top wall and a bottom wall, which are arranged parallelly to one the other; and conductive terminals are respectively installed on the top wall and the bottom wall to form an interface, for matching with the FFC plug connector. The shielding shell covers an outer surface of the insulating body, for grounding to shield. In the receptacle connector with conventional structure, the top wall of the insulating body is relatively long and thin, and thus a middle position of the top wall is easy to sag or collapse to deform the interface, which causes that the FFC plug connector cannot be properly matched with the receptacle connector.
An object of the present invention is to provide a receptacle connector having interface reinforcement structure, for overcoming a problem of a deformation of an interface in conventional structure, that a top wall of an insulating body is easy to sag or collapse to deform the interface.
The object of the present invention is realized by technical schemes that are described as follows.
A receptacle connector having interface reinforcement structure comprises:
an insulating body,
a conductive terminals group installed inside the insulating body to form an interface, and
a shielding shell covers the insulating body;
wherein the shielding shell comprises an upper base plate and a lower base plate,
wherein a front edge portion of the upper base plate of the shielding shell is bended downward and extended to form at least one locking portion having an inverted T shape, which comprises a vertical portion and a horizontal portion; wherein, the vertical portion is formed by the front edge portion extended downward along a longitudinal direction of the interface; and the horizontal portion is formed by a bottom end of the vertical portion extended along a transverse direction of the interface.
A groove coupled with the vertical portion is installed on an edge portion of a top wall of the insulating body. When the shielding shell covers the insulating body, the vertical portion of the locking portion is installed in the groove to push upward the top wall by the horizontal portion located under the top wall of the insulating body.
The horizontal portion comprises a first horizontal portion and a second horizontal portion, which are located respectively on a left side and a right side of the bottom end of the vertical portion.
A stepping portion is installed on one side or two sides of the groove. When the shielding shell covers the insulating body, the horizontal portion of the locking portion resists on the stepping portion to push upward the top wall of the insulating body by the stepping portion.
The stepping portion is in an inverted L shape. Each stepping portion and a lower space of one or two the stepping portions adjacent form an L shaped slot or an inverted T shaped slot, for coupling with the locking portion.
Along the transverse direction of the interface, a width of the vertical portion is wider than a width of the horizontal portion.
The locking portion comprises a bending portion located on an upper end of the vertical portion, which is formed by the front edge portion bended downward for 90 degrees.
An amount of the locking portion is 1, and the locking portion is located on an exactly middle position of the front edge portion of the upper base plate.
Preferably, the amount of the locking portions is M, which is larger than 1. In this condition, the locking portions are distributed on the entire front edge portion of the upper base plate with an uniform or a non-uniform spacing; alternatively, the locking portions are distributed on a middle location of the front edge portion of the upper base plate with the uniform or the non-uniform spacing; alternatively, by centering about a central line of the longitudinal direction of the interface, all of the locking portions are distributed evenly and symmetrically.
Comparing the present invention to the conventional technology, beneficial effects are described as follows.
In an embodiment of the present invention, by additionally installing a locking structure on a shielding shell, a top wall of an insulating body is supported, for preventing the top wall of the insulating body to sag or even collapse; and even if the top wall of the insulating body sags and even collapses, the top wall of the insulating body is supported by the shielding shell, for preventing a deformation of an interface and guaranteeing that the FFC plug connector can be properly matched with the receptacle connector and a stable electrical connection.
These and other objectives, features, and advantages of the present invention will become apparent from the following detailed description, the accompanying drawings, and the appended claims.
In order to make an object, technical schemes, and advantages of the present invention to be relatively clear and understandable, referring to drawings and an embodiment, the present invention is further described in details. Understandably, the embodiment described is only applied to explain the present invention, but is not applied to limit the present invention.
A receptacle connector of the present invention is provided for coupling with an LVDS plug connector, which is connected by a Flexible Flat Cable (FFC). Referring to
The insulating body 2 comprises a top wall 21, a bottom wall 22, and two side walls 23. The conductive terminals group 3 is installed between the top wall 21 and the bottom wall 22 to form an interface 24.
The shielding shell 1 comprises an upper base plate 11, an lower base plate 12, and two side plates 13. The shielding shell 1 covers the insulating body 2 so that the upper base plate 11 and the lower base plate 12 are respectively contacted to an upper surface and a lower surface of the insulating body 2, for covering the insulating body 2 as well as protecting and shielding signals.
In an preferred embodiment, as shown in
As shown in
In the preferred embodiment, referring to
One skilled in the art will understand that the embodiment of the present invention as shown in the drawings and described above is exemplary only and not intended to be limiting.
It will thus be seen that the objects of the present invention have been fully and effectively accomplished. Its embodiments have been shown and described for the purposes of illustrating the functional and structural principles of the present invention and is subject to change without departure from such principles. Therefore, this invention includes all modifications encompassed within the spirit and scope of the following claims.
Number | Date | Country | Kind |
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201320780433.4 | Dec 2013 | CN | national |