1. Field of the Invention
This invention relates to a terminal for an electrical connector, more particularly to a terminal that has a strong structural strength.
2. Description of the Related Art
The aforementioned conventional terminal 1 is disadvantageous in that it has a weak structural strength. That is, when an external force is applied to the second contact portion 14 during installation of the electrical connector 2, the meandering portion 15 tends to be easily and permanently deformed.
Therefore, the object of the present invention is to provide a terminal for an electrical connector that can overcome the aforesaid drawback of the prior art.
According to the present invention, a terminal for an electrical connector comprises first and second base portions, first and second contact portions, first and second protruding portions, first and second connecting portions, first and second spring arm portions, and an abutting portion. The second base portion is opposite to the first base portion in a first direction. The first contact portion extends from the first base portion away from the second base portion. The second contact portion extends from the second base portion in the first direction away from the first base portion. The first protruding portion extends from the first base portion in the first direction toward the second base portion. The second protruding portion extends from the second base portion in the first direction toward the first base portion and is aligned with the first protruding portion in the first direction. The first connecting portion is opposite to the first protruding portion in a second direction transverse to the first direction and extends from the first base portion. The second connecting portion is opposite to the second protruding portion in the second direction and extends from the second base portion. The first spring arm portion extends from the first connecting portion. The second spring arm portion extends from the second connecting portion. The abutting portion extends between the first and second spring arm portions, and has a first end that is aligned with and that is spaced apart from the first protruding portion in the first direction, and a second end that is opposite to the first end of the abutting portion in the first direction and that is aligned with and that is spaced apart from the second protruding portion in the first direction. Accordingly, when an external force is applied to the second contact portion, the second base portion moves toward the first base portion to result in deformation of the first and second spring arm portions and respective abutment of the first and second protruding portions against the first and second ends of the abutting portion.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiment with reference to the accompanying drawings, of which:
Referring to
The electrical connector 4 includes a dielectric body 41.
The first base portion 5 is disposed in the dielectric body 41, is generally rectangular in shape, and has first and second sides 54, 55 that are opposite to each other in a first direction.
The second base portion 6 is disposed in the dielectric body 41, and is opposite to the first base portion 5 in the first direction.
The first contact portion 7 extends from the first side 54 of the first base portion 5 in the first direction away from the second base portion 6, and is disposed externally of the dielectric body 41.
The second contact portion 8 extends from the second base portion 6 away from the first base portion 5 in the first direction, and is disposed externally of the dielectric body 41.
The first protruding portion 52 extends from the second side 55 of the first base portion 5 in the first direction toward the second base portion 6.
The second protruding portion 62 extends from the second base portion 6 in the first direction toward the first base portion 5 and is aligned with the first protruding portion 52 in the first direction.
The first connecting portion 51 is disposed opposite to the first protruding portion 52 in a second direction transverse to the first direction, and extends from the second side 55 of the first base portion 5.
The second connecting portion 61 is disposed opposite to the second protruding portion 62 in the second direction, and extends from the second base portion 6.
The first spring arm portion 94 is disposed in the dielectric body 41, and extends from the first connecting portion 51.
The second spring arm portion 92 is disposed in the dielectric body 41, is generally S-shaped, extends from the second connecting portion 61, and has a pair of first and second U-shaped segments 922, 923 that are respectively disposed proximate to the first and second base portions 5, 6.
The abutting portion 91 is generally straight, extends between the first and second spring arm portions 94, 92, and has a first end 911 that is aligned with and that is spaced apart from the first protruding portion 52 in the first direction, and a second end 912 that is opposite to the first end 911 of the abutting portion 91 and that is aligned with and that is spaced apart from the second protruding portion 62 in the first direction.
As best shown in
The terminal 3 further includes a pair of engaging protrusions 53, each of which engages a respective one of engaging grooves (not shown) in the dielectric body 41 for retaining the terminal 3 of this invention in the dielectric body 41.
From the above description, with further reference to
While the present invention has been described in connection with what is considered the most practical and preferred embodiment, it is understood that this invention is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Name | Date | Kind |
---|---|---|---|
4906194 | Grabbe | Mar 1990 | A |
6290524 | Simmel | Sep 2001 | B1 |