COIL SPRING TYPE WIRE-LOCKING TERMINAL BLOCK
20230026090 ยท 2023-01-26
Assignee
Inventors
Cpc classification
H01R13/428
ELECTRICITY
International classification
Abstract
This application discloses a coil spring type wire-locking terminal block, including a plurality of insulating seats arranged in sequence. A mounting groove is formed in each insulating seat. A wire inlet hole is formed in one side wall of the mounting groove. A connecting terminal is mounted at the bottom of the mounting groove, one end of the connecting terminal penetrates through the bottom of the mounting groove, and a first through hole is formed at one side of the connecting terminal. A wire locking frame is slidably connected in the mounting groove. A compression elastic member is arranged in the wire locking frame, and a second through hole is formed in the side wall of the wire locking frame. The wire inlet hole, the first through hole and the second through hole are arranged corresponding to each other.
Claims
1. A wire-locking terminal block, comprising a plurality of insulating seats arranged in sequence, wherein a mounting groove is formed in each of the plurality of insulating seats, a wire inlet hole configured for a wire to pass therethrough is formed in one side wall of the mounting groove, a connecting terminal is mounted at a bottom of the mounting groove, one end of the connecting terminal penetrates through the bottom of the mounting groove, and a first through hole for the wire to pass therethrough is formed at one side of the connecting terminal; a wire locking frame is slidably connected in the mounting groove, a compression elastic member is arranged in the wire locking frame, one end of the compression elastic member is mounted on an inner side at a top of the wire locking frame, and the other end of the compression elastic member is mounted at a top of the connecting terminal; a second through hole configured for the wire to pass therethrough is formed in a side wall of the wire locking frame, and the wire inlet hole, the first through hole and the second through hole are arranged corresponding to each other; and a top plate of the connecting terminal penetrates through the second through hole, and a driving assembly configured for driving the wire locking frame to move toward the connecting terminal is mounted at a top of each of the insulating seats.
2. The wire-locking terminal block according to claim 1, wherein a third through hole is formed at a top of the mounting groove, the driving assembly comprises a rotating shaft rotatably connected to a side wall of the third through hole, the rotating shaft is located at a side of the wire locking frame away from the connecting terminal, a pressing plate is fixedly connected to the rotating shaft, and one end of the pressing plate abuts against the top of the wire locking frame.
3. The wire-locking terminal block according to claim 2, wherein the pressing plate comprises a pressing portion and a pushing portion, one side of the pressing portion adjacent to the wire locking frame is of an arc shape, and the pressing portion is eccentrically connected to the rotating shaft.
4. The wire-locking terminal block according to claim 1, wherein a perforation configured for the end of the connecting terminal away from wire locking frame to pass through is formed at the bottom of the mounting groove, and one end of the perforation runs through one side of the insulating seat.
5. The wire-locking terminal block according to claim 1, wherein a number of the second through holes is two, and the two second through holes are formed in two sides of the wire locking frame respectively, two notches are formed at each side of the top of the connecting terminals, and four side walls of the two second through holes are slidably connected to the four notches in one-to-one correspondence.
6. The wire-locking terminal block according to claim 1, wherein a first connecting assembly is arranged between adjacent two of the insulating seats, the first connecting assembly comprises a plurality of mushroom-shaped heads mounted on one side of one of the insulating seats, a plurality of mushroom-shaped holes are formed in one side of the other one of the insulating seats, and the mushroom-shaped heads are snap connected in the mushroom-shaped holes in one-to-one correspondence.
7. The wire-locking terminal block according to claim 6, wherein each mushroom-shaped head comprises a root portion and a head portion, a diameter of the head portion is larger than a diameter of the root portion, and the head portion is elastic; and a shape of each mushroom-shaped hole conforms to a shape of each mushroom-shaped head.
8. The wire-locking terminal block according to claim 7, wherein a side cover is mounted on one side of an outermost one of the insulating seats, the side cover is detachably connected to one side of the insulating seat via a second connecting assembly, and the second connecting assembly and the first connecting assembly have a same structure.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
DESCRIPTION OF THE EMBODIMENTS
[0031] In existing technologies, reference may be made to a Chinese utility model patent with publication number CN208209144U, which discloses a wiring terminal block integrated with a header connector, the wiring terminal block includes a PCB (Printed Circuit Board) fixed on a base housing and side covers fixed on two sides of the PCB. The PCB is provided with a plurality of terminal strip plug-in holes in which the wiring terminal strips can be inserted, and the wiring terminal strips are electrically connected with the PCB through the terminal strip plug-in holes. The PCB is provided with a header connector, and each external power supply connecting end on the wiring terminal strip forms a one-to-one connection with each control signal input/output end on the header connector via an etching circuit on the PCB circuit board. The header connector and the wiring terminal strip are integrated, so that the header connector is adopted at the input end, and a PLC input end or an output end is quickly connected through a cable.
[0032] In existing technologies, reference may be made to a Chinese invention patent application document with the publication number of CN112003095A, which discloses a terminal strip including an insulating seat, a screw, a resistance strain gauge, a first detection circuit and a main control chip, a plurality of ports wrapped with a metal frame are formed in one surface of the insulating seat, a first electrode and a second electrode are arranged at intervals on the inner surface of a sidewall of a port, one end of each wire is inserted into each port and is in contact with the first electrode and the second electrode, a plurality of resistance strain gauges are embedded in the insulating seat, each resistance strain gauge faces one side wall of each port, and a distance is formed between each resistance strain gauge and one side wall of the port; one end of each screw penetrates through the insulating seat and is inserted into each port from the other side wall of each port, the screws can rotate, so that the screws move towards the wire and are tightly pressed against the wire. Each resistance strain gauge is electrically connected with the first detection circuit, and the first detection circuit is electrically connected with the main control chip. The terminal strip can detect the fastening state of the screw, and the state of the wire, so as to eliminate the faults.
[0033] However, the described insulating seat fixes the wire via a screw, and it is well known that the screw is easy to be slipped, and after the screw is slipped, it may be inconvenient to mount and remove the wire.
[0034] This application discloses a coil spring type wire-locking terminal block, as shown in
[0035] As shown in
[0036] As shown in
[0037] As shown in
[0038] As shown in
[0039] As shown in
[0040] Working principle is described as follows. At the initial position, the wire locking frame 3 is pushed to the highest position under the tension action of the upward spring 4, and at this time, the wire inlet hole 12 is shielded and is in a closed state. When a wire 8 needs to be mounted, the driving assembly 5 pushes the wire locking frame 3 to move downward, and after the wire inlet hole 12, the first through hole 23 and the second through hole 31 are aligned by pushing the wire locking frame 3 to move downward, one end of the wire 8 passes through the wire inlet hole 12, the first through hole 23 and the second through hole 31 in turn by moving the wire 8, and then the support for the wire locking frame 3 is removed by the driving assembly 5. In this case, the wire locking frame 3 is returned upward under the action of the spring 4, and the wire 8 is clamped between the terminal and the wire locking frame 3 under the action of the second through hole 31 of the wire locking frame 3. Thus, the wire 8 can be mounted. When the wire 8 needs to be removed, the wire locking frame 3 is driven by the driving assembly 5 to move downward until the wire inlet hole 12, the first through hole 23 and the second through hole 31 are aligned and then the wire 8 is removed. In summary, by arranging the above structure, it is convenient to mount and remove the wire 8.
[0041] The above description is only preferred embodiments of the present application and is not intended to limit the protection scope of the present application. Therefore, all equivalent changes of the structure, shape or principle according to the spirit of the present application should be all included in the protection scope of the present application.