Wire connector
10498050 ยท 2019-12-03
Assignee
Inventors
Cpc classification
H01R4/48455
ELECTRICITY
H01R4/48275
ELECTRICITY
H01R11/11
ELECTRICITY
International classification
H01R11/11
ELECTRICITY
H01R4/22
ELECTRICITY
Abstract
The present invention relates to a wire connector for wire being inserted along an inserting direction, comprising: a cover, a conductor and a plurality of shift levers. The cover has a plurality of inserting holes along the inserting direction and a receiving space. The conductor is assembled in the receiving space, and comprising a conductive portion contacts the wire and a plurality of elastic portions that are located in an extended position of inserting holes respectively. The shift levers are pivoted on the cover and swing between a first position which non-contact the elastic portion and a second position which presses the elastic portion. Wherein a first fixed device is formed in the first position for fixing the shift levers, and a second fixed device is formed in the second position for fixing the shift levers. So that the fixed function of the shift levers will be strengthened in the first and second position.
Claims
1. A wire connector for a plurality of wires being inserted along an inserting direction, comprising: a cover, having a plurality of inserting holes along the inserting direction and a receiving space in communication with the plurality of inserting holes; a conductor in the receiving space of the cover and comprising a conductive portion that contacts the wires and a plurality of elastic portions that are located in an extended position of each inserting hole, respectively, so that the wire is clamped by the conductive portion and the elastic portion after being inserted into an interior of the cover; and a plurality of shift levers, being pivoted on the cover, and swinging between a first position in which the shift levers do not contact the elastic portion and a second position in which the plurality of shift levers press the elastic portion, causing a deformation of the elastic portion; wherein the wire connector further comprises: a first fastening device for fastening the shift levers in the first position; and a second fastening device for fastening the shift levers in the second position.
2. The wire connector as claimed in claim 1, wherein the first fastening device comprises a first block being formed with one of the shift levers and the cover, and a first groove being formed with another of the shift levers and the cover for corresponding the position of the first block.
3. The wire connector claimed as claim 1, wherein the second fastening device is formed with the group consisting of both of the shift levers and the cover, both of the shift levers and the elastic portions, and triple of the shifts, the cover and the elastic portions.
4. The wire connector claimed as claim 3, wherein the second fastening device comprises a plurality of shift bars extending from the opposite sides of the shift levers and a plurality of slots are dividedly formed on the cover for corresponding the position of the shift bars.
5. The wire connector claimed as claim 3, wherein the second fastening device comprises a second block being formed with one of the shift levers and the cover and a second groove being formed with another of the shift levers and the cover for corresponding with the position of the second block.
6. The wire connector claimed as claim 5, wherein the second fastening device comprises a third block being formed with the elastic portion and a pressure portion being formed the shift lever for corresponding with the position of the third block.
7. The wire connector claimed as claim 5, wherein the second fastening device comprises a plurality of shift bars are extending from the opposite sides of the shift levers and a plurality of slots are dividedly formed on the cover for corresponding the position of the shift bars.
8. The wire connector claimed as claim 7, wherein the second fastening device comprises a third block being formed with the elastic portion and a pressure portion being formed with the shift lever for corresponding the position of the third block.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings, wherein:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(10) The present invention will now be described with a preferred embodiment thereof and by referring to the accompanying drawings.
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(13) The cover 3 is composed of a first cover member 32 and a second cover member 33. Both of the first cover member 32 and the second cover member 33 are assembled with each other along the inserting direction 20. A surface of the first cover member 32 has a plurality of second blocks Q1 for corresponding the extension position and quantity of the inserting holes 30. A plurality of slots 320 are formed around the second blocks Q1 along the inserting direction 20. Furthermore, a surface of the second cover member 33 has a first block P1, and the interior of the second cover member 33 forms a plurality of pivoted holes 330 perpendicular to the inserting direction 20. The shift lever 5 is pivoted on the pivoted holes 330.
(14) The conductor 4 is assembled in the receiving space 31 which is inside of the cover 3, and composed of a conductive portion 40, a connect portion 41 and a plurality of the elastic portions 42 which are connected with the connect portion 41. In a preferred embodiment, the conductive portion 40 is designed in a form as a conductive plate. The connect portion 41 comprises a penetrative portion 410, an upper connect portion 411 and a lower connect portion 412. The penetrative portion 410 is formed on an extension path of the inserting direction 20, and substantially vertical to the inserting direction 20. The penetrative portion 410 has a plurality of penetrative holes 4100 which are corresponding to the position and quantity of the inserting holes 30.
(15) Moreover, the upper connect portion 411 and the lower connect portion 412 are formed at two opposite sides of the penetrative portion 410 respectively. Both of the upper connect portion 411 and the lower connect portion 412 are substantially parallel to the inserting direction 20. In a preferred embodiment, the upper connect portion 411 can be assembled to the conductive portion 40 by a fasten way. The elastic portions 42 are bended (U type or V type) by a metal material, and the lower connect portion 412 further comprises a third block 42 on a surface adjacent to the wire 1.
(16) Before the end of the wire 1 inserts the receiving space 31, the lower connect portion 412 is pressed by the shift lever 5 for changing the angel between the lower connect portion 412 and the lower connect portion 412. The opposite surfaces of the wire 1 are clamped and fixed by the upper connect portion 411 and the lower connect portion 412, so that the wire 1 can penetrate into the penetrative hole 4100.
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(19) In a preferred embodiment, the width of the shift bar Q3 gradually expands to form a trapezoid shape from the end of the operation portion. The width of the pressure portion P3 is formed a smallest width of the shift bar Q3. A part of the shift bar Q3 is formed an arc shape with a biggest width near the pressure portion P3.
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(21) While the shift bar Q3 of the shift lever 5 being pushed into the slot 320 of the first cover member 32 by user hand, the shift bar Q3 keep swinging into the slot 320 until the second groove Q2 of the shift lever 5 is fixed with the second block Q1 of the first cover member 32 (refer to
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