1. Field of the Invention
The present invention generally relates to a battery connector, and more particularly to a battery connector capable of electrically connecting with a battery.
2. The Related Art
In general, a battery connector includes an insulating housing, a plurality of contact terminals, a plurality of conductive terminals and a plurality of elastic elements. The insulating housing defines a plurality of terminal cavities of which each penetrates through a rear surface thereof, and a plurality of receiving grooves of which each penetrates through a front surface thereof and communicates with the terminal cavity. Each contact terminal has a base arm, a touching arm connecting with a front of the base arm, and two resisting arms connecting with two sides of a rear of the base arm. Each conductive terminal has a restricting slice, two connecting slices bending forward from two opposite sides of the restricting slice, and a soldering slice connecting with a bottom of the restricting slice. When the battery connector is assembled, each conductive terminal is received in the terminal cavity with the soldering slice thereof projecting out of the insulating housing, and each contact terminal is disposed to the receiving groove with the resisting arms thereof resisting against the connecting slices for realizing an electric contact and conduction between the contact terminal and the conductive terminal of the battery connector. The touching arms of the contact terminals project out of the receiving grooves to electrically connect with a battery.
However, the contact terminal is apt to disconnect from the conductive terminal to cause a sudden interruption of electric power when the battery connector is shaken. As a result, it makes the electric contact between the contact terminal and the conductive terminal of the battery connector unsteady.
An object of the present invention is to provide a battery connector which includes an insulating housing, a plurality of contact terminals, a plurality of conductive terminals and a plurality of elastic elements. The insulating housing has a front surface and a rear surface opposite to the front surface. The insulating housing defines a plurality of terminal cavities penetrating through the rear surface and receiving grooves penetrating through the front surface and connecting with the terminal cavities respectively. Two opposite inner sidewalls of each terminal cavity are recessed oppositely to form two inserting slots passing through the rear surface. The contact terminals are movably disposed to the insulating housing. Each contact terminal has a base frame movably located in the receiving groove. A front end of the base frame is defined as a touching portion projecting out of the insulating housing through the receiving groove. Rear ends of two opposite sides of the base frame extend rearward and are further arched oppositely to form two resisting arms slidably located in the inserting slots. A free end of each resisting arm protrudes downward to form an abutting arm located in the terminal cavity. The conductive terminals are disposed to the insulating housing. Each conductive terminal has a restricting slice against the rear surface. Two opposite sides of the restricting slice bend forward to form two connecting slices inserted in the inserting slots. A bottom of the restricting slice bends forward to form a holding slice stretching in the terminal cavity. A rear end of the conductive terminal defines a soldering slice projecting out of the insulating housing. An electrical connection is realized between the contact terminal and the corresponding conductive terminal by means of the resisting arms electrically abutting against the corresponding connecting slices and the abutting arms electrically clamping the holding slice therebetween under the bias of the connecting slices acting on the resisting arms. Each elastic element is located in the terminal cavity and restricted between the contact terminal and the conductive terminal.
As described above, the battery connector maintains a steady electric contact between the contact terminal and the conductive terminal by virtue of a battery pressing against the touching portion of the contact terminal for pushing the contact terminal to move rearward so as to compress the elastic element and keep the resisting arms electrically abutting against the corresponding connecting slices and the abutting arms electrically clamping the holding slice therebetween under the bias of the connecting slices acting on the resisting arms. Thus, it effectively prevents the contact terminal from disconnecting from the conductive terminal to cause a sudden interruption of electric power when the battery connector is shaken. Moreover, the battery connector may generate a larger normal force by virtue of the resisting arms interfering with the connecting slices, the abutting arms interfering with the holding slice, and the elastic element being compressed between the contact terminal and the conductive terminal.
The present invention will be apparent to those skilled in the art by reading the following description, with reference to the attached drawings, in which:
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At last, the conductive terminal 30 is inserted forward into the insulating housing 10 until the restricting slice 31 is against the rear surface 103. In the meanwhile, the connecting slices 32 are inserted in the inserting slots 141. The wedging portions 321 are fastened to the fastening fillisters 142 and the interfering portions 322 interfere with top inner sidewalls of the fastening fillister 142 for firmly restricting the conductive terminal 30 to the insulating housing 10. The holding slice 33 stretches in the terminal cavity 12 and is located under the elastic element 40. The soldering slice 35 projects out of the insulating housing 10 from the gap 15. An electrical connection is realized between the contact terminal 20 and the corresponding conductive terminal 30 by means of the resisting arms 27 electrically abutting against the corresponding connecting slices 32 and the abutting arms 28 electrically clamping the holding slice 33 therebetween under the bias of the connecting slices 32 acting on the resisting arms 27. The elastic element 40 is restricted between the locating piece 25 and the restricting slice 31 of the conductive terminal 30.
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As described above, the battery connector 100 maintains the steady electric contact between the contact terminal 20 and the conductive terminal 30 by virtue of the battery pressing against the touching portion 23 of the contact terminal 20 for pushing the contact terminal 20 to move rearward so as to compress the elastic element 40 and keep the resisting arms 27 electrically abutting against the corresponding connecting slices 32 and the abutting arms 28 electrically clamping the holding slice 33 therebetween under the bias of the connecting slices 32 acting on the resisting arms 27. Thus, it effectively prevents the contact terminal 20 from disconnecting from the conductive terminal 30 to cause a sudden interruption of electric power when the battery connector 100 is shaken. Moreover, the battery connector 100 may generate the larger normal force by virtue of the resisting arms 27 interfering with the connecting slices 32, the abutting arms 28 interfering with the holding slice 33, and the elastic element 40 being compressed between the locating piece 25 of the contact terminal 20 and the restricting slice 31 of the conductive terminal 30.
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