This application claims priority to Chinese Patent Application No. 202210247888.3, filed Mar. 14, 2022, which is incorporated herein by reference in its entirety.
The present disclosure relates to the technical field of connectors, and particularly relates to an electrical connector which may promote stability of a terminal.
Chinese invention patent application issuance publication No. CN111262066B discloses a power connector, which includes an insulative housing and a terminal. The insulative housing defines a terminal receiving groove therein and includes a stopping wall. The terminal is positioned in the terminal receiving groove, and includes a mating portion, a stopping portion and a wire connecting portion. The stopping portion abuts against the stopping wall and includes a first horizontal portion and a second horizontal portion. The first horizontal portion includes a first front edge. The second horizontal portion includes a second front edge. A part of a front end of the first horizontal portion and a part of a front end of the second horizontal portion are cut off, so when the terminal crimps a wire, the first front edge and the second front edge do not splay forwardly to protrude, but are parallel to each other or respectively extend rearwardly, which thus can avoid a situation that the stopping portion early abuts against the stopping wall due to such the protruding.
In an embodiment of the power connector, the insulative housing is provided with a rib portion, the terminal is provided with a first crimping arm and a second crimping arm, a first middle portion of the first crimping arm and a second middle portion of the second crimping arm together crimp the rib portion of the insulative housing so as to fix the terminal in the insulative housing. The insulative housing includes two side walls, the two side walls each have a stopping block to bear the terminal, which further fixes a position of the terminal in the insulative housing in an up-down direction.
In this solution, the two stopping blocks at the two sides of the insulative housing respectively bear two sides of a bottom of the terminal, but the two sides of the bottom of the terminal generally are round corner structures, in addition, such a terminal is not provided with a fixing structure which prevents the terminal from shaking up and down, so when such a power connector mates with a mating connector, a problem that the terminal shakes up and down due to an external force from the mating connector easily occurs, and needs to be further improved.
A technical problem to be solved by the present disclosure is to provide an electrical connector which may promote stability of a terminal so as to overcome a deficiency existing in the prior art.
A technical solution employed by the present disclosure is as follows: an electrical connector comprises: an insulative housing, an interior of the insulative housing is provided with a plurality of terminal receiving cavities which penetrate along a front-rear direction, two sides of each terminal receiving cavity are provided with a fixing slot respectively; a plurality of conductive terminals respectively mounted in the terminal receiving cavities; each conductive terminal comprises a fixing portion, a mating portion which extends forwardly from the fixing portion and a crimping connection portion and a crimping wire portion which extend rearwardly from the fixing portion; two sides of the fixing portion each are provided with a vertical extending piece which extends upwardly, a fixing wing horizontally bends outwardly from an upper end of each vertical extending piece, the fixing wing correspondingly is fixed in the fixing slot.
In comparison with the prior art, the present disclosure at least has the following advantages: in the electrical connector, a fixing wing horizontally extends outwardly from each of two sides of the fixing portion of the conductive terminal, and the two sides of the terminal receiving cavity of the insulative housing each are correspondingly provided with a fixing slot, the fixing wing is fixed in the fixing slot, which fixes the position of the conductive terminal in the insulative housing, particularly limits that the conductive terminal cannot move in the up-down direction, so that the conductive terminal is prevented from shaking (particularly along the up-down direction) when the conductive terminal mates with the mating connector, stability of the conductive terminal is promoted, reliability of the electrical connector is promoted when the electrical connector mates with the mating connector.
While the present disclosure may be susceptible to embodiments in different forms, there are shown in the figures, and will be described herein in detail, are only specific embodiments, with the understanding that the present disclosure is to be considered as an exemplification of the principles of the present disclosure, and is not intended to limit the present disclosure to that as illustrated.
As such, references to a feature are intended to describe a feature of an embodiment of the present disclosure do not to imply that every embodiment thereof must have the described feature. Furthermore, it should be noted that the description illustrates a number of features. While certain features may be combined together to illustrate potential system designs, those features may also be used in other combinations not expressly described. Thus, the described combinations are not intended to be limiting, unless otherwise noted.
In the embodiments illustrated in the figures, representations of directions such as up, down, left, right, front and rear, used for explaining the structure and movement of the various components of the present disclosure, are not absolute, but relative. These representations are appropriate when the components are in the position shown in the figures. If the description of the position of the components changes, however, these representations are to be changed accordingly.
Hereinafter, preferred embodiments of the present disclosure are further described in detail in combination with the figures of the present disclosure.
Referring to
The insulative housing 1 is integrally formed by injection molding with an insulative material. A main body structure of the insulative housing 1 substantially is rectangular, and a locking protrusion 11 protrudes from an upper surface of the main body structure. When the electrical connector 100 mates with an external mating connector, the locking protrusion 11 may lock with the mating connector.
An interior of the insulative housing 1 are provided with a plurality of terminal receiving cavities 12 which penetrate the insulative housing 1 along a front-rear direction. In the present embodiment, the plurality of terminal receiving cavities 12 are distributed as an upper row and a lower row, the terminal receiving cavities 12 of each row are arranged along a left-right direction. Here, the number and arrangement manner of the plurality of terminal receiving cavities 12 may be set as practical requirement, so specific limitation is not given here.
Referring to
The insulative housing 1 is further provided with an elastic fixing arm 16 which correspondingly protrudes upwardly from a bottom of the terminal receiving cavity 12. The elastic fixing arm 16 obliquely extends upwardly from the rear to the front, a rear end of the elastic fixing arm 16 and a lower wall of the terminal receiving cavity 12 are jointed together, a front end of the elastic fixing arm 16 is cantilevered in the terminal receiving cavity 12, so that the front end of the elastic fixing arm 16 may elastically move up and down. Here, the front end of the elastic fixing arm 16 is provided with a fixing notch 161.
Referring to
Furthermore, the insulative housing 1 is further provided with two receiving grooves 15 which are at an upper side of the terminal receiving cavity 12, the two receiving grooves 15 extend along the up-down direction parallelly, and a rear side and a lower side of the receiving groove 15 are opened.
Referring to
The fixing portion 22 is U-shaped, and mainly includes a bottom connecting piece 221 which extends horizontally and two vertical extending pieces 222 which perpendicularly bend from two sides of the bottom connecting piece 221 respectively and extend upwardly.
A middle portion of the bottom connecting piece 221 is provided with a fixing opening 2211, the fixing opening 2211 is connected with the two vertical extending pieces 222. The bottom connecting piece 221 is further provided with a strengthening protrusion 2212 which is positioned in front of the fixing opening 2211 and protrudes downwardly, the strengthening protrusion 2212 is adjacent to the fixing opening 2211.
The two vertical extending pieces 222 face each other and are spaced apart from each other along the left-right direction. Each vertical extending piece 222 is provided along a vertical direction and extends along the front-rear direction. A fixing wing 223 horizontally bends outwardly from a front portion of an upper end of each vertical extending piece 222, the two fixing wings 223 oppositely bend outwardly and away from each other from the two vertical extending pieces 222. The two fixing wings 223 are substantially positioned in the same horizontal plane, an oblique surface 2231 is provided between a front edge and an outer side edge of each fixing wing 223 and is inclined rearwardly, the oblique surface 2231 may be formed by cutting off a front corner of the fixing wing 223. A rear portion 2221 of each vertical extending piece 222 continuously extends vertically and upwardly, here an upper edge of the rear portion 2221 of the vertical extending piece 222 is higher than an upper surface of the fixing wing 223.
The mating portion 21 is used to mate with the mating connector. In the present embodiment, the mating portion 21 is a hollow needle-shaped structure formed by stamping a plate material and surrounding a hollow. The mating portion 21 includes two mating arms 211 which respectively extend forwardly from the two vertical extending pieces 222, each mating arm 211 bends obliquely from the vertical extending piece 222 toward the other mating arm 211 firstly and then extends forwardly in parallel with the other mating arm 211, a tip of each mating arm 211 is further provided with a guiding distal end 2111 which extends obliquely toward the other mating arm 211, so that each mating arm 211 may smoothly insert into the mating connector. The two mating arms 211 are connected together at bottom sides of the two mating arms 211 and are provided with an opened groove 212 therebetween at top sides of the two mating arms 211.
Referring to
In combination with
The fixing portion 22 of each conductive terminal 2 is used to snap with the insulative housing 1 so as to fix a position of the conductive terminal 2 in the insulative housing 1, the mating portion 21 of each conductive terminal 2 forwardly enters into the mating cavity 121 of the terminal receiving cavity 12 so as to be used to mate with the external mating connector, the crimping connection portion 23 and the crimping wire portion 24 are positioned in the wire connecting cavity 122 of the terminal receiving cavity 12 so as to bring the front end of the conductive wire 3 into the insulative housing 1.
Specifically, as shown in
Preferably, a thickness of the fixing wing 223 is substantially equal to or slightly smaller than a height of the fixing slot 14, so that the fixing wing 223 may smoothly insert into the fixing slot 14 and be fixed in the fixing slot 14.
Mainly referring to
Mainly referring to
Mainly referring to
Based the above description on the structure, when the electrical connector 100 is assembled, firstly the plurality of conductive wires 3 are connected with the plurality of conductive terminals 2 together by one-to one correspondence, in which the internal conductor 31 of the conductive wire 3 enters into the crimping connection portion 23 of the conductive terminal 2, the internal conductor 31 is crimped in the crimping connection portion 23 so as to form an electrical connection by forming the crimping connection portion 23 through stamping, the insulative jacket 32 of the conductive wire 3 is crimped in the crimping wire portion 24 by forming the crimping wire portion 24 through stamping; subsequently the conductive terminal 2 is mounted into the terminal receiving cavity 12 from the rear to the front from behind the insulative housing 1, so that the two fixing wings 223 of the conductive terminal 2 enter into and are fixed in the two fixing slots 14 respectively. In the process that the conductive terminal 2 moves forwardly, the bottom of the fixing portion 22 slidably abuts against the elastic fixing arm 16, the fixing portion 22 applies a downward acting force to the elastic fixing arm 16 so as to press down the front end of the elastic fixing arm 16. When the fixing opening 2211 of the fixing portion 22 reaches above the fixing notch 161, the elastic fixing arm 16 rebounds upwardly, the fixing notch 161 snaps with the fixing opening 2211, at this time, the conductive terminal 2 is mounted in the terminal receiving cavity 12 in place.
According to the above description, in the electrical connector 100, a fixing wing 223 horizontally extends outwardly from each of two sides of the fixing portion 22 of the conductive terminal 2, and the two sides of the terminal receiving cavity 12 of the insulative housing 1 each are correspondingly provided with a fixing slot 14, the fixing wing 223 is fixed in the fixing slot 14, which fixes the position of the conductive terminal 2 in the insulative housing 1, particularly limits that the conductive terminal 2 cannot move in the up-down direction, so that the conductive terminal 2 is prevented from shaking (particularly along the up-down direction) when the conductive terminal 2 mates with the mating connector, stability of the conductive terminal 2 is promoted, reliability of the electrical connector 100 is promoted when the electrical connector 100 mates with the mating connector.
Referring to
In the present embodiment, the terminal position assurance member 4 are two in number, the two terminal position assurance members 4 are provided to respectively correspond to the upper row and the lower row of the plurality of conductive terminals 2. Each terminal position assurance member 4 abuts against rear edges of the vertical extending pieces 222 of the conductive terminals 2 which are positioned in the same row, so as to assure that the conductive terminals 2 cannot be rearwardly detached from the insulative housing 1.
As shown in
Corresponding to each terminal position assurance member 4, the two sides of the insulative housing 1 each are provided with a latching portion 17 which protrudes outwardly, in the present embodiment, the latching portion 17 is a latching protrusion, in other embodiments not shown, the latching portion 17 also may be a latching groove.
Again referring to
In other embodiments not shown, the two terminal position assurance members 4 also may be incorporated as one terminal position assurance member 4.
The above described contents are only the preferred embodiments of the present disclosure, which cannot limit the implementing solutions of the present disclosure, those skilled in the art may conveniently make corresponding variation or modification based on the main concept and spirit of the present disclosure, therefore the extent of protection of the present disclosure shall be determined by terms of the claims.
Number | Date | Country | Kind |
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202210247888.3 | Mar 2022 | CN | national |