1. Field of the Invention
The present invention relates to an electrical connector, and more particularly to an electrical connector adapted for connecting with a mating connector.
2. The Related Art
Nowadays, with the development of electronic technology, electronic products and peripheral devices thereof are connected with each other more and more frequently. And it is a kind of common connection way to realize an electrical connection between the electronic product and its peripheral device by virtue of a connector assembly. The connector assembly includes an electrical connector and a mating connector located in the electronic product and its peripheral device respectively. Generally, the electrical connector includes an insulating housing, a plurality of terminals assembled in the insulating housing, and a shielding shell enclosing the insulating housing. An inserting space is formed between a front of the insulating housing and periphery inner sides of a front of the shielding shell. In use, the mating connector is inserted into the inserting space of the electrical connector to realize an electrical connection with the terminals. In order to ensure a proper insertion between the electrical connector and the mating connector, a fool-proofing member is provided for the electrical connector or the mating connector. However, the traditional electrical connector having the fool-proofing member is often hard to meet miniaturization requirements of increasingly improved electronic products.
Accordingly, an object of the present invention is to provide an electrical connector adapted for connecting with a mating connector. The electrical connector includes an insulating housing, a plurality of terminals assembled in the insulating housing, and a shielding shell curved from a metal plate to show a hollow barrel shape and enclose the insulating housing. An inserting space is formed between a front of the insulating housing and periphery inner sides of a front of the shielding shell, and has a free open front end for inserting the mating connector rearward therefrom into the inserting space. The terminals project into the inserting space to electrically connect with the mating connector. A pair of elastic fool-proofing elements is formed at two opposite bottom corners of the open front end of the shielding shell and each shows an arc shape from a front view. Two cambered faces of the pair of elastic fool-proofing elements face each other for guiding the insertion of the mating connector and further elastically resisting against the mating connector.
As described above, the elastic fool-proofing elements are formed at the two opposite bottom corners of the open front end of the shielding shell, and have the cambered faces face each other for guiding the insertion of the mating connector and further elastically resisting against the mating connector. So, the elastic fool-proofing elements can ensure a proper insertion between the electrical connector and the mating connector under the condition of making the electrical connector meet miniaturization requirements.
The present invention will be apparent to those skilled in the art by reading the following description thereof, with reference to the attached drawings, in which:
Referring to
With reference to
In detail, two opposite bottom corners of a front periphery edge of the shielding shell 10 are cut off to define two gaps 14. Each of the elastic fool-proofing elements 20 includes a connecting portion 21 protruding in the gap 14 from any edge of the gap 14, and an arc-shaped fool-proofing portion 22 bending sideward into the open front end 70a of the inserting space 70 from a free end of the connecting portion 21. The cambered faces 23 are formed on the fool-proofing portions 22 respectively and face each other.
Referring to
In this embodiment, the top plate 18 of the shielding shell 10 further defines a plurality of openings 13. Front or rear edges of the openings 13 slantwise extend into the inserting space 70 to define a plurality of elastic arms 12 each having a free end thereof arched downward to resist against the mating connector 200. The front periphery edge of the shielding shell 10 is slantwise broadened outward to form a guiding eave 11 for guiding the mating connector 200 to be inserted into the inserting space 70.
As described above, the elastic fool-proofing elements 20 are formed at the two opposite bottom corners of the open front end 70a of the shielding shell 10, and have the cambered faces 23 face each other for guiding the insertion of the mating connector 200 and further elastically resisting against the mating connector 200. So, the elastic fool-proofing elements 20 can ensure a proper insertion between the electrical connector 100 and the mating connector 200 under the condition of making the electrical connector 100 meet miniaturization requirements.