Terminal block with mistaken touch prevention structure and connection terminal module with mistaken touch prevention structure
By introducing a blocking protrusion design into the terminal block, the problem of the upper spring contact detaching from the latch during wire insertion is solved, achieving a more stable connection and preventing accidental contact.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional terminal block structures are prone to the upper spring clip disengaging from the latch due to vibration during wire insertion, resulting in reduced wire connection stability and easy for the wire to fall out of the terminal block.
The design employs a stop protrusion to ensure that the wire or cable cannot touch the locking part. The stop protrusion blocks the locking part on the side away from the stop plate, preventing the end of the wire or cable from being clamped before it passes the lever, thus enhancing connection stability.
It improves the protection against accidental contact and the stability of wiring of the terminal block and connecting terminal module, ensuring that the ends of the wires or cables are still clamped during the pulling process, thus improving the stability of the connection.
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Figure CN121748834A_ABST
Abstract
Description
Technical Field
[0001] This application relates to a terminal block structure, and more particularly to a terminal block with an anti-accidental contact structure and a connection terminal module with an anti-accidental contact structure. Background Technology
[0002] Terminal blocks are a common type of connection component, and are currently widely used in fields such as industrial communications with large amounts of information, industrial equipment with tight integration between devices, the power industry to improve the reliability and security of power systems, and highly automated industrial control.
[0003] A traditional terminal block structure includes a plastic frame and a connection terminal module and a handle mounted on the plastic frame. The plastic frame has an inlet for inserting wires. The connection terminal module includes an upper spring and a lower spring. One end of the upper spring has a free end and the other end has a latch. The free end can stop inside the inlet or abut against the lower spring. The handle is used to push the free end to latch against the latch, allowing the wire to be smoothly inserted between the upper and lower springs. When the handle is pushed to the other end of the upper spring, the free end can disengage from the latch and be clamped together with the lower spring to achieve electrical connection between the wire and the upper and lower springs.
[0004] However, if the wire is accidentally bumped into the upper spring before reaching the other end of the spring during the insertion process, the upper spring will vibrate and the free end will disengage from the latch. This will cause the end of the wire to be clamped between the free end and the lower spring before it passes the free end, making it easy for the wire to fall out of the terminal block structure when pulled, thereby reducing the connection stability between the terminal module and the wire.
[0005] In view of this, the applicant has devoted himself to studying the aforementioned prior art and applying theoretical principles to try his best to solve the above-mentioned problems, which has become the target of the applicant's improvement. Summary of the Invention
[0006] This application provides a terminal block and its connecting terminal module with an anti-accidental contact structure. It uses a blocking protrusion to stop the latching part on the side away from the stop piece, ensuring that wires or cables cannot touch the latching part, so as to achieve the advantages of anti-accidental contact and stable wiring of the terminal block and connecting terminal module.
[0007] In this application embodiment, a terminal block with an anti-accidental contact structure is provided, including: an insulating base with an internal cavity, two fixing blocks extending from the cavity, and two wire passages communicating with the cavity on the outside; and a connecting terminal module housed in the cavity, the connecting terminal module including: a fixing terminal having a horizontal piece and two vertical pieces extending upward from both ends of the horizontal piece, each fixing block and the horizontal piece being respectively disposed on the upper and lower sides of each wire passage; two movable terminals abutting against the two fixing blocks, each movable terminal having a movable piece extending from one end disposed outside each vertical piece and blocking between each wire passage and the cavity, and a stop piece extending from the other end corresponding to each movable piece, each stop piece extending having a locking portion capable of engaging each movable piece; and an anti-accidental contact structure including a blocking protrusion extending from each movable piece, when the movable piece is engaged with the locking portion, the blocking protrusion stops the locking portion on the side away from the stop piece.
[0008] In one embodiment, the abutment protrusion is a protrusion stamped onto the movable piece.
[0009] In one embodiment, the abutment protrusion is a protrusion that is first cut and then stamped from the movable piece.
[0010] In one embodiment, the abutment protrusion is a protrusion formed by bending a self-adjustable piece.
[0011] In one embodiment, each fixed block has a through hole on its top surface and an arc-shaped end at one end. Each upright piece passes through the through hole, and each movable terminal has a U-shaped bent piece. The middle of each U-shaped bent piece abuts against each arc-shaped end, and each stop piece and each movable piece extend from both ends of each U-shaped bent piece.
[0012] In one embodiment, each movable terminal has a through hole located between the U-shaped bend and the stop piece, and each locking part is a tenon extending from the bottom edge of the inner periphery of each through hole, and the end of the movable piece can engage with the tenon.
[0013] In one embodiment, when the end of each movable piece is engaged with each latch, the end of each movable piece has a first surface that contacts each latch, and each latch has a second plane that contacts the end of each movable piece, and the first surface and the second plane are on the same plane.
[0014] In one embodiment, each upright piece is provided with a groove, and each U-shaped bent piece has an engaging tab extending from its inner side. Each engaging tab engages with the groove and extends from the top edge of the inner periphery of each opening.
[0015] In one embodiment, the inner wall of each through hole is provided with a recess, and the end of each engaging tab extends into each through hole and engages with each recess.
[0016] In one embodiment, each upright piece is provided with a cutout that is opposite to each threading groove, each movable piece can be inserted into each cutout, each locking groove is recessed from the top of the inner periphery of each cutout, and each stop piece has an inverted L-shaped stop bent at its end.
[0017] In one embodiment, it further includes two inner push handles, and the outside of the insulating base is provided with two communicating grooves that communicate with the cavity. Each inner push handle is accommodated in each communicating groove. One end of each inner push handle is pivotally connected to the insulating base and the other end abuts against each movable piece. Each inner push handle is a U-shaped handle. One end of each U-shaped handle is pivotally connected to the insulating base and disposed above each U-shaped bent piece, and the other end has a movable end that abuts against each movable piece and a pushing notch exposed in each communicating groove in the middle.
[0018] In this application embodiment, this application provides a connection terminal module with an anti-accidental contact structure, including: a movable terminal, one end of which extends a movable piece and the other end of which extends a stop piece corresponding to each movable piece, each stop piece extending with a locking portion capable of engaging each movable piece; and an anti-accidental contact structure, including a blocking protrusion extending from each movable piece, wherein when the movable piece is engaged with the locking portion, the blocking protrusion blocks the locking portion on the side away from the stop piece.
[0019] Based on the above, the present application has a stop on the side of the locking part away from the stop piece, ensuring that the wire or cable cannot touch the locking part, allowing the end of the wire or cable to penetrate through the movable piece, and the rear section of the wire or cable is clamped between the transverse piece and the movable piece. When the subsequent wire or cable is pulled and moves slightly, the rear section to the end of the wire or cable is still clamped between the transverse piece and the movable piece, so as to achieve the advantages of preventing accidental contact and stable wiring of the terminal block and connecting terminal module.
[0020] In one embodiment, the abutment protrusion is a protrusion stamped onto the movable piece.
[0021] In one embodiment, the abutment protrusion is a protrusion that is first cut and then stamped from the movable piece.
[0022] In one embodiment, the abutment protrusion is a protrusion formed by bending a self-adjustable piece.
[0023] In one embodiment, each movable terminal has a U-shaped bend, each stop piece and each movable piece extend from both ends of each U-shaped bend, each movable terminal has a through hole located between the U-shaped bend and the stop piece, each locking part is a tenon extending from the bottom edge of the inner periphery of each through hole, and the end of the movable piece can engage with the tenon.
[0024] In one embodiment, when the end of each movable piece is engaged with each latch, the end of each movable piece has a first surface that contacts each latch, and each latch has a second plane that contacts the end of each movable piece, and the first surface and the second plane are on the same plane. Attached Figure Description
[0025] Figure 1 This is an exploded perspective view of the terminal block of this application.
[0026] Figure 2 This is a three-dimensional schematic diagram of the movable terminal of this application.
[0027] Figure 3 This is a three-dimensional assembly diagram of the terminal block of this application.
[0028] Figure 4 This is a cross-sectional view of the terminal block assembly of this application.
[0029] Figure 5 This is a schematic diagram showing the usage status of the terminal block in this application.
[0030] Figure 6 This is a schematic diagram of another usage state of the terminal block of this application.
[0031] Figure 7 This is another schematic diagram of the terminal block in use according to this application.
[0032] Figure 8 This is a schematic diagram illustrating another usage state of the terminal block in this application.
[0033] Figure 9 This is a perspective view of another embodiment of the leverable terminal of this application.
[0034] Figure 10 This is a perspective view of yet another embodiment of the leverable terminal of this application.
[0035] Explanation of reference numerals in the attached figures:
[0036] 10: Terminal block;
[0037] 1: Insulating base;
[0038] 11: Cavity;
[0039] 12: Fixed block;
[0040] 121: Through hole;
[0041] 1211: Concave hole;
[0042] 123: Arc-shaped end;
[0043] 13: Connecting slot;
[0044] 14: Wire channel;
[0045] 15: Lower protruding column;
[0046] 16: Bumps;
[0047] 2: Connecting terminal module;
[0048] 21: Fixed terminal;
[0049] 211: Horizontal piece;
[0050] 2111: Gap;
[0051] 212: Vertical piece;
[0052] 2121: Hollowed-out opening;
[0053] 22: A lever-operated terminal;
[0054] 221: U-shaped bent piece;
[0055] 222: Stop plate;
[0056] 2221: Inverted L-shaped stop;
[0057] 223: A lever-operated piece;
[0058] 224: Locking mechanism;
[0059] 2241: Tenon;
[0060] 225: Opening;
[0061] 23: The ditch is blocked;
[0062] 24: The clavicle plate;
[0063] 3: Inward push handle;
[0064] 31: U-shaped handle;
[0065] 32: Activity End;
[0066] 33: Push notch;
[0067] 4: Anti-accidental touch structure;
[0068] 41: Blocking the protrusion;
[0069] 42, 42', 42”: convex dots;
[0070] 5: Track locking mechanism;
[0071] S1: First surface;
[0072] S2: Second plane;
[0073] 100: Wire. Detailed Implementation
[0074] The detailed description and technical content of this application will be explained below with reference to the accompanying drawings. However, the accompanying drawings are for illustrative purposes only and are not intended to limit the scope of this application.
[0075] Please refer to Figures 1 to 8 As shown, this application provides a terminal block with an anti-accidental contact structure and its connecting terminal module. The terminal block 10 mainly includes an insulating base 1 and a connecting terminal module 2. The connecting terminal module 2 mainly includes a movable terminal 22 and an anti-accidental contact structure 4.
[0076] like Figure 1 , Figures 3 to 8 As shown, the insulating base 1 is made of plastic. The insulating base 1 has a cavity 11 inside, two fixing blocks 12 extending inside the cavity 11, and two connecting grooves 13 and two wire-passing grooves 14 outside the cavity 11. The two connecting grooves 13 are located above the cavity 11, and the bottom of the insulating base 1 has a track locking part 5 that can be engaged with a track (not shown in the figure).
[0077] Two wire-passing grooves 14 are respectively opened from the left and right sides of the insulating base 1, so that the two wire-passing grooves 14 are arranged on the left and right sides of the cavity 11. Two fixing blocks 12 are located in the upper section of the cavity 11, and the two wire-passing grooves 14 are connected to the lower section of the cavity 11. In this embodiment, the axial direction D of the two wire-passing grooves 14 intersects on the same horizontal line, but this is not a limitation, and the axial direction D of the two wire-passing grooves 14 can also be arranged crosswise.
[0078] The details are as follows: the two fixing blocks 12 are symmetrical to each other on the left and right. Each fixing block 12 has a through hole 121 on its top surface and an arc-shaped end 123 on one end. The inner wall of each through hole 121 has a concave hole 1211. The insulating base 1 further extends into the cavity 11 with a lower protrusion 15 and a plurality of protrusions 16.
[0079] like Figures 1 to 8 As shown, the connection terminal module 2 is housed in the cavity 11. The connection terminal module 2 includes a fixed terminal 21, two movable terminals 22, and an anti-accidental contact structure 4. The fixed terminal 21 and the movable terminals 22 are made of conductive metal, and the thickness of the fixed terminal 21 is greater than the thickness of each movable terminal 22.
[0080] Further explanation is as follows: The fixed terminal 21 has a transverse piece 211 corresponding to the bottom edge of each wire groove 14 and two vertical pieces 212 extending upward from both ends of the transverse piece 211. Each fixed block 12 and the transverse piece 211 are respectively arranged on the upper and lower sides of each wire groove 14, and the axial direction D of each wire groove 14 is parallel to the transverse piece 211. However, this is not a limitation, and the axial direction D of each wire groove 14 may also be inclined to the transverse piece 211.
[0081] The middle section of the transverse piece 211 is stopped by the lower protruding post 15. The transverse piece 211 has multiple notches 2111, and each protrusion 16 engages with each notch 2111, so that the transverse piece 211 is stably positioned in the cavity 11. Each vertical piece 212 passes through each through hole 121, so that the two vertical pieces 212 are inserted into the two fixing blocks 12.
[0082] In addition, each movable terminal 22 has a U-shaped bending piece 221, and the middle of each U-shaped bending piece 221 abuts against each arc-shaped end 123 so that the two movable terminals 22 are stably abutted against the two fixed blocks 12. One end of each movable terminal 22 extends with a movable piece 223 disposed outside each vertical piece 212 and blocking between each wire groove 14 and cavity 11, and the other end extends with a stop piece 222 corresponding to each movable piece 223. Each stop piece 222 and each movable piece 223 extend from both ends of each U-shaped bending piece 221, and each stop piece 222 extends with a locking part 224 that can engage each movable piece 223.
[0083] Furthermore, each movable terminal 22 is provided with a through opening 225 located between the U-shaped bending piece 221 and the stop piece 222, and each locking part 224 is a tenon 2241 extending from the bottom edge of the inner periphery of each through opening 225, and the end of the movable piece 223 can be engaged with the tenon 2241.
[0084] Furthermore, each upright piece 212 is provided with a groove 23, and each U-shaped bent piece 221 has an engaging protrusion 24 extending from its inner side. Each engaging protrusion 24 engages with each groove 23, and the end of each engaging protrusion 24 extends into each through hole 121 and engages with each recess 1211. Each engaging protrusion 24 extends from the top of the inner periphery of each opening 225.
[0085] Furthermore, each vertical piece 212 is provided with a hollow opening 2121 that is arranged opposite to each wire groove 14. Each movable piece 223 can be inserted into each hollow opening 2121. Each locking groove 23 is recessed from the inner periphery of each hollow opening 2121. Each stop piece 222 has an inverted L-shaped stop 2221 bent at its end. Each inverted L-shaped stop 2221 is used to stop the end of the wire or cable 100.
[0086] In addition, the integrally extended horizontal piece 211 and each vertical piece 212 are U-shaped, and each movable terminal 22 is inverted V-shaped, so that the fixed terminal 21 that abuts against each other and the two movable terminals 22 together form a butterfly-shaped frame.
[0087] like Figures 1 to 8 As shown, the anti-accidental touch structure 4 includes a stop protrusion 41 extending from the movable piece 223. When the movable piece 223 is engaged with the locking part 224, the stop protrusion 41 stops the locking part 224 on the side away from the stop piece 222. In this embodiment, the stop protrusion 41 is a protrusion 42 stamped on the movable piece 223, but this is not a limitation.
[0088] like Figure 1 , Figures 3 to 8 As shown, the terminal block 10 of this application also includes two push handles 3, each push handle 3 is accommodated in each communicating groove 13, one end of each push handle 3 is pivotally connected to the insulating base 1 and the other end abuts against each movable piece 223.
[0089] The details are as follows: Each push handle 3 is a U-shaped handle 31. One end of each U-shaped handle 31 is pivotally connected to the insulating base 1 and is positioned above each U-shaped bent piece 221. The other end has a movable end 32 that abuts against each movable piece 223 and a push-pressing notch 33 exposed in each communicating groove 13. By inserting a flat plate-shaped object (not shown in the figure) such as a screwdriver into the push-pressing notch 33, the U-shaped handle 31 can be rotated, thereby causing the movable end 32 to push against the movable piece 223 and move into the wire groove 14.
[0090] like Figures 4 to 7As shown, the terminal block 10 of this application is used in the following manner: by inserting a flat plate-shaped object such as a screwdriver into the push recess 33, the inner push handle 3 can be rotated, thereby causing the movable end 32 to push against the movable piece 223 and move it into the wire passage 14 until the movable piece 223 is engaged with the locking part 224. After that, the wire or cable 100 can be smoothly and unobstructedly inserted into the wire passage 14 until it is stopped by the stop piece 222. The blocking protrusion 41 stops on the side of the locking part 224 away from the stop piece 222, that is, the blocking protrusion 41 stops on the side of the locking part 224 adjacent to the wire passage 14, so that the wire or cable 100 is stopped by the blocking protrusion 41 before hitting the locking part 224, and thus... Ensure that the wires or cables 100 cannot touch the locking part 224 to avoid the situation where the movable piece 223 is released from the locking part 224 due to the impact of the wires or cables 100 on the locking part 224. Finally, the wires or cables 100 impact the stop piece 222 and push the stop piece 222 inward, causing the movable piece 223 to release from the locking part 224. The movable piece 223 then returns to its original position blocking the position between each wire groove 14 and the cavity 11 until the wires or cables 100 are clamped between the transverse piece 211 and the movable piece 223, that is, the wires or cables 100 are clamped between the fixed terminal 21 and the movable terminal 22, thus completing the wiring operation of the terminal block 10.
[0091] Therefore, when a conventional wire or cable 100 impacts the locking part 224, the locking of the movable piece 223 and the locking part 224 will loosen, causing the end of the wire or cable 100 to be clamped between the transverse piece 211 and the movable piece 223 before it penetrates the movable piece 223. Subsequently, when the wire or cable 100 is pulled slightly, the end of the wire or cable 100 will disengage from the clamping of the transverse piece 211 and the movable piece 223. In contrast, the abutting protrusion 41 of this application stops the locking part 224 on the side away from the stop piece 222, ensuring that the wire or cable... The material 100 cannot touch the locking part 224, allowing the end of the wire or cable 100 to penetrate through the movable piece 223. The rear section of the wire or cable 100 is clamped between the transverse piece 211 and the movable piece 223. When the subsequent wire or cable 100 is pulled and moved slightly, the rear section to the end of the wire or cable 100 is still clamped between the transverse piece 211 and the movable piece 223, thereby improving the connection stability between the connection terminal module 2 and the wire or cable 100, so that the terminal block 10 and the connection terminal module 2 have the advantages of preventing accidental contact and stable wiring.
[0092] In addition, such as Figure 6As shown, when the ends of each movable piece 223 are engaged with each latch 2241, the ends of each movable piece 223 have a first surface S1 that contacts each latch 2241, and each latch 2241 has a second surface S2 that contacts the ends of each movable piece 223. The first surface S1 and the second surface S2 are on the same plane, making it easier for the ends of the movable piece 223 and the latch 2241 to lock and allowing for larger tolerances, so that the locking and unlocking of the ends of the movable piece 223 and the latch 2241 is easier to control.
[0093] Furthermore, the bottom of the insulating base 1 of this application can be engaged with the track via the track latch 5, thereby allowing the horizontal piece 211 to be arranged parallel to the horizontal plane. In this embodiment, the axial direction D of each wire groove 14 is arranged parallel to the horizontal piece 211, so the axial direction D of each wire groove 14 is also parallel to the horizontal plane. When the wire or cable 100 is inserted into the wire groove 14, the wire or cable 100 exposed outside the terminal block 10 naturally lies flat on the horizontal plane, eliminating the conventional step of manually bending the wire or cable, so as to achieve the advantages of the terminal block 10 having the advantage of naturally flattening the wire 100 and improving the ease of use. However, this is not a limitation, and the axial direction D of each wire groove 14 can also be inclined relative to the horizontal plane.
[0094] Furthermore, in conventional cases, the inlet port is inclined relative to the horizontal plane. In this embodiment, because the axial direction D of the wire groove 14 is parallel to the horizontal plane, and the inner push handle 3 is adjusted to be rotary and located above the movable terminal 22 and close to the movable piece 223, the inner push handle 3 can push open the movable piece 223 smoothly with less pushing force compared to the conventional method, so that the terminal block 10 has the characteristic of easy insertion.
[0095] Please refer to Figures 9 to 10 As shown, in another embodiment of this application, the operable terminal 22 is... Figures 9 to 10 Implementation examples and Figures 1 to 8 The embodiments are largely the same. Figures 8 to 9 Implementation examples and Figure 3 The difference between the embodiments lies in the molding method of the abutment protrusion 41, such as... Figure 9 As shown, the abutting protrusion 41 is a protrusion 42' that is first cut and then stamped from the movable piece 223; as Figure 10 As shown, the abutting protrusion 41 is a protrusion 42 formed by bending the movable piece 223. Therefore, Figure 9 The 42' protrusion and Figure 10 All 42" bumps can achieve the same result as Figures 1 to 8 The function and effect of the 42 protrusions.
Claims
1. A terminal block with an anti-accidental contact structure, characterized in that, include: An insulating base has an internal cavity, two fixing blocks extending from the cavity, and two external slots communicating with the cavity; and A connection terminal module is housed within the cavity, the connection terminal module comprising: A fixed terminal has a horizontal piece and two vertical pieces extending upward from both ends of the horizontal piece, and each fixed block and the horizontal piece are respectively disposed on the upper and lower sides of each wire-passing groove; Two movable terminals abut against the two fixed blocks. One end of each movable terminal extends with a movable piece disposed outside each of the vertical pieces and blocking the wire groove and the cavity, and the other end extends with a stop piece corresponding to each movable piece. Each stop piece extends with a locking portion capable of engaging each movable piece. The anti-accidental-touch structure includes a stop protrusion extending from each of the lever pieces, wherein when the lever pieces are engaged with the latching portion, the stop protrusion stops the latching portion on the side away from the stop piece.
2. The terminal block with an anti-accidental contact structure as described in claim 1, characterized in that, The abutting protrusion is a protrusion stamped from the movable piece.
3. The terminal block with an anti-accidental contact structure as described in claim 1, characterized in that, The blocking protrusion is a protrusion that is first cut and then stamped from the movable piece.
4. The terminal block with an anti-accidental contact structure as described in claim 1, characterized in that, The abutting protrusion is a protrusion formed by bending the movable piece.
5. The terminal block with an anti-accidental contact structure as described in claim 1, characterized in that, Each of the fixed blocks has a through hole on its top surface and an arc-shaped end at one end. Each of the vertical pieces passes through the through hole. Each of the movable terminals has a U-shaped bend. The middle of each of the U-shaped bends abuts against the arc-shaped end. Each of the stop pieces and each of the movable pieces extends from both ends of each of the U-shaped bends.
6. The terminal block with an anti-accidental contact structure as described in claim 5, characterized in that, Each of the movable terminals has a through opening located between the U-shaped bending piece and the stop piece, and each of the locking parts is a tenon extending from the bottom edge of the inner periphery of each of the through openings, and the end of the movable piece can be engaged with the tenon.
7. The terminal block with an anti-accidental contact structure as described in claim 6, characterized in that, When the ends of each movable piece are engaged with each of the latches, the ends of each movable piece have a first surface that contacts each of the latches, and each latch has a second plane that contacts the ends of each movable piece. The first surface and the second plane are on the same plane.
8. The terminal block with an anti-accidental contact structure as described in claim 6, characterized in that, Each of the vertical pieces is provided with a groove, and each of the U-shaped bent pieces has an engaging protrusion extending from its inner side. Each engaging protrusion engages with the groove and extends from the top edge of the inner periphery of the opening.
9. The terminal block with an anti-accidental contact structure as described in claim 8, characterized in that, The inner wall of each of the through holes is provided with a recess, and the end of each of the engaging tabs extends into each of the through holes and engages with each of the recesses.
10. The terminal block with an anti-accidental contact structure as described in claim 8, characterized in that, Each of the vertical pieces has a cutout that is opposite to each of the threading slots. Each of the movable pieces can be inserted into each of the cutouts. Each of the locking grooves is recessed from the top of the inner periphery of each of the cutouts. Each of the stop pieces has an inverted L-shaped stop at its end.
11. The terminal block with an anti-accidental contact structure as described in claim 5, characterized in that, It also includes two push handles, and the outside of the insulating base is provided with two communicating grooves that communicate with the cavity. Each push handle is housed in each of the communicating grooves. One end of each push handle is pivotally connected to the insulating base and the other end abuts against each of the movable pieces. Each push handle is a U-shaped handle. One end of each U-shaped handle is pivotally connected to the insulating base and disposed above each of the U-shaped bent pieces. The other end has a movable end that abuts against each of the movable pieces and a pushing notch exposed in each of the communicating grooves in the middle.
12. A connection terminal module with an anti-accidental contact structure, characterized in that, include: A movable terminal, with a movable piece extending from one end and a stop piece extending from the other end corresponding to each of the movable pieces, each of the stop pieces extending has a locking portion capable of engaging each of the movable pieces; and The anti-accidental-touch structure includes a stop protrusion extending from each of the lever pieces, wherein when the lever pieces are engaged with the latching portion, the stop protrusion stops the latching portion on the side away from the stop piece.
13. The connection terminal module with an anti-accidental contact structure as described in claim 12, characterized in that, The abutting protrusion is a protrusion stamped from the movable piece.
14. The connection terminal module with an anti-accidental contact structure as described in claim 12, characterized in that, The blocking protrusion is a protrusion that is first cut and then stamped from the movable piece.
15. The connection terminal module with an anti-accidental contact structure as described in claim 12, characterized in that, The abutting protrusion is a protrusion formed by bending the movable piece.
16. The connection terminal module with an anti-accidental contact structure as described in claim 12, characterized in that, Each of the movable terminals has a U-shaped bend, and each of the stop pieces and each of the movable pieces extends from both ends of each of the U-shaped bends. Each of the movable terminals has a through hole located between the U-shaped bend and the stop piece. Each of the locking portions is a tenon extending from the bottom edge of the inner periphery of each of the through holes, and the end of the movable piece can engage with the tenon.
17. The connection terminal module with an anti-accidental contact structure as described in claim 16, characterized in that, When the ends of each movable piece are engaged with each of the latches, the ends of each movable piece have a first surface that contacts each of the latches, and each latch has a second plane that contacts the ends of each movable piece. The first surface and the second plane are on the same plane.