Wire end connector and connector assembly
11695235 · 2023-07-04
Assignee
Inventors
Cpc classification
H01R13/639
ELECTRICITY
H01R12/79
ELECTRICITY
H01R13/629
ELECTRICITY
H01R12/78
ELECTRICITY
International classification
H01R13/629
ELECTRICITY
H01R12/78
ELECTRICITY
Abstract
A wire end connector and a connector assembly with the wire end connector are provided. The wire end connector comprises a wire end connector body, a wire end housing, and an unlocking member. The wire end housing comprises a wire end accommodating part and two buckling bumps. An end surface of the wire end accommodating part in a first direction comprises a wire end opening. An outer surface of the two buckling bumps in a second direction orthogonal to the first direction and away from the wire end accommodating part respectively comprises a buckling recess. The unlocking member comprises two opposite unlocking arms. An outer side edge of the two unlocking arms comprises a wire end buckling part and an unlocking part. The unlocking member is configured to cause the unlocking parts to releases the wire end buckling part to a release position.
Claims
1. A wire end connector, comprising: a wire end connector body; a wire end housing comprising a wire end accommodating part and two buckling bumps, the two buckling bumps being oppositely disposed at two sides of the wire end accommodating part, the wire end accommodating part accommodating the wire end connector body, an end surface of the wire end accommodating part in a first direction comprising a wire end opening, an outer surface of the two buckling bumps in a second direction orthogonal to the first direction and away from the wire end accommodating part respectively comprising a buckling recess; and an unlocking member disposed at one side of the wire end housing, the unlocking member comprising two opposite unlocking arms, the two unlocking arms being movably disposed in the two buckling bumps respectively, an outer side edge of the two unlocking arms in the second direction and away from the wire end accommodating part respectively comprising a wire end buckling part and an unlocking part, the wire end buckling part corresponding to the buckling recess, the unlocking part being farther than the wire end buckling part from the wire end accommodating part.
2. The wire end connector according to claim 1, wherein the two buckling bumps respectively comprise an accommodating through groove extending along the first direction; the accommodating through groove communicates with the buckling recess; the two unlocking arms are movably disposed in the corresponding accommodating through grooves, respectively.
3. The wire end connector according to claim 2, wherein the two buckling bumps respectively comprise a first end and a second end; the two unlocking arms respectively comprise a connecting end and a buckling end; the connecting end is disposed in the first end; the buckling end is disposed in the second end; the wire end connector comprises an elastic member disposed in the accommodating through groove; one ends of the elastic members respectively abut against the connecting end of the unlocking arm; the other ends of the elastic members respectively abut against the first end of the buckling bump.
4. The wire end connector according to claim 3, wherein the connecting ends of the unlocking arms respectively comprise a positioning column; the positioning column extends along the first direction away from the buckling end; one end of the positioning column penetrates into the elastic member.
5. The wire end connector according to claim 3, wherein the two buckling bumps respectively comprise a limiting column; the limiting column is disposed in the corresponding accommodating through groove and is disposed at the first end of the corresponding buckling bump; the other end of the elastic member abuts against the corresponding limiting column.
6. The wire end connector according to claim 5, wherein the first ends of the two buckling bumps respectively comprise an elastic member insertion hole in which the limiting column is disposed.
7. The wire end connector according to claim 3, wherein the unlocking member further comprises a buckling connecting piece; two ends of the buckling connecting piece are respectively connected with the connecting ends of the two unlocking arms.
8. The wire end connector according to claim 7, wherein one side of the wire end housing away from the wire end opening is provided with a retaining notch; the first ends of the two buckling bumps are disposed on two sides of the retaining notch; the buckling connecting piece is located in the retaining notch.
9. The wire end connector according to claim 7, wherein the unlocking member further comprises an activation piece; one end of the activation piece is connected with the buckling connecting piece.
10. The wire end connector according to claim 1, wherein the buckling recess comprises a first limiting sidewall and a second limiting sidewall in the first direction; the second limiting sidewall is farther than the first limiting sidewall from the wire end accommodating part; the first limiting sidewall is inclined to the first direction; the second limiting sidewall is orthogonal to the first direction.
11. The wire end connector according to claim 10, wherein the distance between one end of the first limiting sidewall close to the wire end accommodating part and an outer surface of one of the buckling bumps in the second direction and away from the wire end accommodating part is greater than the distance between one end of the first limiting sidewall away from the wire end accommodating part and the outer surface of one of the buckling bumps in the second direction and away from the wire end accommodating part.
12. The wire end connector according to claim 10, wherein the wire end buckling part comprises a first limiting side edge and a second limiting side edge in the first direction; the first limiting side edge corresponds to the first limiting sidewall; the second limiting side edge corresponds to the second limiting sidewall.
13. The wire end connector according to claim 12, wherein the second limiting side edge is inclined to the second direction; the inclining direction of the second limiting side edge is opposite to the inclining direction of the first limiting sidewall.
14. The wire end connector according to claim 10, wherein the unlocking part protrudes from the buckling recess when the unlocking part passes through the buckling recess.
15. The wire end connector according to claim 13, wherein the unlocking part is a flat surface orthogonal to the second direction.
16. The wire end connector according to claim 1, wherein one ends of the two buckling bumps away from the wire end accommodating part comprise a guiding inclined surface.
17. The wire end connector according to claim 16, wherein one ends of the two unlocking arms away from the wire end accommodating part comprise a chamfer.
18. A connector assembly, comprising: a wire end connector according to claim 1; and a board end connector comprising a board end connector body and a board end housing accommodating the board end connector body, the board end housing comprising two buckling slots, an outer surface of the two buckling slots in the second direction and away from the board end connector body respectively comprising a board end buckling part; wherein when the wire end connector is connected to the board end connector, the two buckling bumps would be respectively disposed in the two buckling slots, and the board end buckling part would be disposed in the buckling recess and would correspond to the wire end buckling part; when the unlocking member moves in a direction away from the board end connector, the unlocking part would pass through the buckling recess and pushes the board end buckling part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The features of the exemplary embodiments believed to be novel and the elements and/or the steps characteristic of the exemplary embodiments are set forth with particularity in the appended claims. The Figures are for illustration purposes only and are not drawn to scale. The exemplary embodiments, both as to organization and method of operation, may best be understood by reference to the detailed description which follows taken in conjunction with the accompanying drawings in which:
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(13) The present disclosure will now be described more fully hereinafter with reference to the accompanying drawings, in which exemplary embodiments of the disclosure are shown. This present disclosure may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this present disclosure will be thorough and complete, and will fully convey the scope of the present disclosure to those skilled in the art.
(14) Certain terms are used throughout the description and following claims to refer to particular components. As one skilled in the art will appreciate, manufacturers may refer to a component by different names. This document does not intend to distinguish between components that differ in name but function. In the following description and in the claims, the terms “include/including” and “comprise/comprising” are used in an open-ended fashion, and thus should be interpreted as “including but not limited to”. “Substantial/substantially” means, within an acceptable error range, the person skilled in the art may solve the technical problem in a certain error range to achieve the basic technical effect.
(15) The following description is of the best-contemplated mode of carrying out the disclosure. This description is made for the purpose of illustration of the general principles of the disclosure and should not be taken in a limiting sense. The scope of the disclosure is best determined by reference to the appended claims.
(16) Moreover, the terms “include”, “contain”, and any variation thereof are intended to cover a non-exclusive inclusion. Therefore, a process, method, object, or device that includes a series of elements not only includes these elements, but also includes other elements not specified expressly, or may include inherent elements of the process, method, object, or device. If no more limitations are made, an element limited by “include a/an . . . ” does not exclude other same elements existing in the process, the method, the article, or the device which includes the element.
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(18) An outer surface 1121 of the two buckling bumps 112 in the second direction Y respectively comprise a buckling recess 1122. The buckling recesses 1122 of the two buckling bumps 112 are respectively disposed between the wire end accommodating part 111 and the second ends 112b of the two buckling bumps 112. The wire end connector body 10 is disposed in the wire end accommodating part 111 of the wire end housing 11. The unlocking member 12 comprises two opposite unlocking arms 1211 and is disposed at one side of the wire end housing 11 away from the wire end opening 1111. The two unlocking arms 121 are movably disposed in the two buckling bumps 112 respectively. The two unlocking arms 121 respectively comprise a connecting end 121a and a buckling end 121b. The connecting ends 121a of the two unlocking arms 121 are respectively disposed in the first ends 112a of the two buckling bumps 112. The buckling ends 121b of the two unlocking arms 121 are respectively disposed in the second ends 112b of the two buckling bumps 112. The two unlocking arms 121 respectively protrude from one end of the wire end accommodating part 111 comprising the wire end opening 1111 in the first direction X.
(19) The outer side edges of the two unlocking arms 121 in the second direction Y and away from the wire end accommodating part 111 comprise a wire end buckling part 1211 and an unlocking part 1212 respectively. The wire end buckling parts 1211 of the two unlocking arms 121 respectively correspond to the buckling recesses 1122 of the two buckling bumps 112. The unlocking parts 1212 of the two unlocking arms 121 are respectively disposed at one side of the buckling recesses 1122 of the two buckling bumps 112. The unlocking parts 1212 of the two unlocking arms 121 are respectively farther than the wire end buckling parts 1211 of the two unlocking arms 121 away from the wire end accommodating part 111. Wherein the second direction Y is orthogonal to the first direction X.
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(22) Referring to
(23) The configuration of the wire end connector 1 and the board end connector 2 would be described in detail below. As shown in
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(25) The shape of the wire end buckling part 1211 of the two unlocking arms 121 matches the shape of the buckling recess 1122. The wire end buckling part 1211 is a notch and comprises a first limiting side edge 12111 and a second limiting side edge 12112 in the first direction X. The first limiting side edge 12111 corresponds to the first limiting sidewall 11221, and the second limiting side edge 12112 corresponds to the second limiting sidewall 11222.
(26) As shown in
(27) When the wire end connector 1 is connected with the board end connector 2, the two buckling bumps 112 of the wire end connector 1 would respectively enter the two buckling slots 212, the buckling elastic pieces 21212 of the board end connector 2 would be respectively disposed in the buckling recesses 1122 of the two buckling bumps 112 and disposed at one side of the first limiting sidewall 11221, and the buckling elastic pieces 21212 of the two board end buckling parts 2121 would respectively correspond to the first limiting side edge 12111 of the two wire end buckling parts 1211. In this way, the buckling elastic pieces 21212 of the two board end buckling parts 2121 could respectively restrict the two buckling bumps 112 and the two unlocking arms 121 to only move in the second direction Y, and to restrict the wire end connector 1 to only move in the second direction Y relative to the board end connector 2.
(28) An end surface of the other ends of the buckling elastic piece 21212 of the two board end buckling parts 2121 respectively correspond to the second limiting sidewall 11222 of the two buckling recesses 1122 and the second limiting side edge 12112 of the two wire end buckling parts 1211. At this time, the buckling elastic piece 21212 is inclined to the sidewall 212a of the buckling slot 212 in the second direction Y and away from a sidewall 212a, and is bent into the buckling slot 212, which indicates that the buckling elastic piece 21212 is disposed in the buckling recess 1122. In this way, the end surfaces of the other ends of the buckling elastic pieces 21212 of the two board end buckling parts 2121 could respectively restrict the two buckling bumps 112 and the two unlocking arms 121 to only move in the first direction X, which also restricts the terminal connector 1 to only move in the first direction X relative to the board end connector 2, preventing the wire end connector 1 from detaching from the board end connector 2.
(29) As shown in
(30) In this embodiment, as shown in
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(32) In this embodiment, four surfaces of the second end 112b of the two buckling bumps 112 away from the wire end accommodating part 111 in the first direction X and the second direction Y respectively comprise a guiding inclined surface 1124, through which the size of the second end 112b of the two buckling bumps 112 can be reduced, allowing the two buckling bumps 112 to be respectively inserted into the two buckling slots 212 without obstruction. The inclining direction of the guiding inclined surface 1124 of the second end 112b of the two buckling bumps 112 in the second direction Y and away from the board end accommodating part 211 is the same as the inclining direction of the buckling elastic pieces 21212 of the two board end buckling parts 2121.
(33) When the second ends 112b of the two buckling bumps 112 pass through the two board end buckling parts 2121, the guiding inclined surface 1124 of the second end 112b of the two buckling bumps 112 in the second direction Y and away from the board end accommodating part 211 would be moving relative to the buckling elastic pieces 21212 of the two board end buckling parts 2121 and would push the buckling elastic pieces 21212 of the two board end buckling parts 2121 to bend toward the outside of the buckling slot 212, allowing the two buckling bumps 112 to pass through the buckling elastic pieces 21212 of the two plate end buckling parts 2121 without obstruction and to be are disposed in the two buckling slots 212. In this embodiment, two opposite sides of the two unlocking arms 121 in the second direction Y away from the buckling end 121b of the wire end accommodating part 111 comprises a chamfer 1213 preventing the buckling ends 121b of the two unlocking arms 121 from protruding from the two buckling bumps 112.
(34) In one embodiment, as shown in
(35) In this embodiment, as shown in
(36) In this embodiment, the two limiting columns 1125 are movably disposed on the two buckling bumps 112 respectively, which indicates that the two limiting columns 1125 can be assembled on the two buckling bumps 112, and can also be disassembled from the two buckling bumps 112.
(37) In this embodiment, two opposite sidewalls of the two accommodating through grooves 1123 in the third direction Z respectively comprise a through hole 11231. Two ends of the two limiting columns 1125 are respectively disposed in the two through holes 11231 of the two accommodating through grooves 1123. The first ends 112a of the two buckling bumps 112 respectively comprise an elastic member insertion hole 1126. The two elastic members 14 can be respectively inserted into the two accommodating through grooves 1123 through the elastic member insertion holes 1126 of the two buckling bumps 112 for assembling. In practice, two elastic members 14 are respectively disposed in the two accommodating through grooves 1123 through the elastic member insertion holes 1126, then the two limiting columns 1125 are respectively disposed in the two accommodating through grooves 1123 through the two through holes 11231. The two limiting columns 1125 are disposed in the elastic member insertion holes 1126 to prevent the elastic member 14 from protruding from the elastic member insertion hole 1126.
(38) As shown in
(39) As shown in
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(41) When the wire end connector body 10 of this embodiment is disposed in the wire end accommodating part 111 of the wire end housing 11, the wire end insulating body 103 would be disposed in the wire end accommodating part 111, One side of the circuit board 101 comprising a plurality of contacting pads 1011 would protrude from the wire end opening 1111 of the wire end housing 11, and the plurality of cables 102 would protrude from one side of the wire end housing 11 away from the wire end opening 1111. In this embodiment, two opposite sides of the wire end insulating body 103 in the second direction Y further comprises a positioning recess 1031. Two opposite sidewalls of the wire end accommodating part 111 of the wire end housing 11 in the second direction Y further comprises a positioning bump 1112. The positioning bump 1112 is disposed in the positioning recess 1031 to secure the wire end insulating body 103 in the wire end accommodating part 111 of the wire end housing 11, allowing the wire end housing 11 to be firmly connected with the terminal insulating body 103. As shown in
(42) As shown in
(43) In this embodiment, the two buckling slots 212 of the board end housing 21 further comprise a top surface 212b in the third direction Z. One side of the top surface 212b is connected with one side of the sidewall 212a. The sidewall 212a is orthogonal to the top surface 212b. The two buckling slots 212 of the board end housing 21 respectively comprise an extending support piece 212c extending in the second direction Y. One side of the extending support piece 212c is connected with the other side of the sidewall 212a and corresponds to the top surface 212b. That is, the extending support piece 212c and the top surface 212b are disposed in the third direction Z at intervals, and the other side of the extending support piece 212c is suspended. When the two buckling bumps 112 of the wire end connector 1 are respectively disposed in the two buckling slots 212, the extending support piece 212c would support the corresponding buckling bump 112. A first angle A1 is formed between the extending support piece 212c and the sidewall 212a. In this embodiment, the first angle A1 is 90 degrees, that is, the extending support piece 212c is orthogonal to the sidewall 212a. The first angle A1 can be smaller than 90 degrees to reduce the distance between the extending support piece 212c and the top surface 212b. When the two buckling bumps 112 of the wire end connector 1 are respectively disposed in the two buckling slots 212, the extending support piece 212c and the top surface 212b would restrict the buckling bump 112 to only move in the third direction Z.
(44) The top surface of the board end accommodating part 211 of the board end housing 21 further comprises two positioning pieces 214 extending into the board end accommodating part 211 along the third direction Z. The top surface of the board end insulating body 201 of the board end connector body 20 further comprises two positioning grooves 2012 in the third direction Z. The two positioning grooves 2012 extend along the third direction Z. When the board end connector body 20 is disposed in the board end accommodating part 211, the two positioning pieces 214 would be respectively disposed in the two positioning grooves 2012 to position the board end connector body 20 in the board end accommodating part 211. In this embodiment, a second angle A2 is respectively formed between the two positioning pieces 214 and the top surface of the board end accommodating part 211 of the board end housing 21. In this embodiment, the second angle A2 is 90 degrees, that is, the two positioning pieces 214 are respectively orthogonal to the top surface of the board end accommodating part 211 of the board end housing 21. In other embodiments, the second angle A2 could be smaller than 90 degrees, so that the two positioning pieces 214 could respectively abut against the sidewalls of the two positioning slots 2012 close to the buckling slot 212. Thus, the board end connector body 20 can be effectively secured in the board end accommodating part 211.
(45) In summary, embodiments of the present disclosure provide a wire end connector and a connector assembly. Since the two buckling bumps of the wire end connector are disposed on two sides of the wire end connector body and the two unlocking arms of the unlocking member are disposed in the two buckling bumps, the two unlocking arms could be moving in a horizontal direction. Thus, the thickness of the wire end connector in the vertical direction would not be increased, allowing the thickness of the wire end connector to be thinned. Besides, The unlocking member is easy to manufacture due to its simple structural configuration. The wire end connector is provided with an elastic member, through which the unlocking member can be self-restored.
(46) It is to be understood that the term “comprises”, “comprising”, or any other variants thereof, is intended to encompass a non-exclusive inclusion, such that a process, method, article, or device of a series of elements not only comprise those elements but further comprises other elements that are not explicitly listed, or elements that are inherent to such a process, method, article, or device. An element defined by the phrase “comprising a . . . ” does not exclude the presence of the same element in the process, method, article, or device that comprises the element.
(47) Although the present disclosure has been explained in relation to its preferred embodiment, it does not intend to limit the present disclosure. It will be apparent to those skilled in the art having regard to this present disclosure that other modifications of the exemplary embodiments beyond those embodiments specifically described here may be made without departing from the spirit of the disclosure. Accordingly, such modifications are considered within the scope of the disclosure as limited solely by the appended claims.