Low-voltage electrical cabinet terminal wiring tool

By designing the terminal wiring tooling of low-voltage electrical cabinets and using switch buttons to control the line opening and breaking, the problem of wiring errors during the wiring of low-voltage electrical cabinets is solved, and safety and efficiency are improved.

CN223123055UActive Publication Date: 2025-07-18CHINA GENERAL NUCLEAR POWER OPERATION
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Patent Information

Application Number
CN202421312585.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-07
Publication Date
2025-07-18
Estimated Expiration
2034-06-07

AI Technical Summary

Technical Problem

During the wiring process of low-voltage electrical cabinets, it is difficult to verify whether the wiring is correct, and point selection errors or wiring errors are prone to occur, which poses operating risks.

Method used

Design a low-voltage electrical cabinet terminal wiring tool, which includes control structure, connection structure and adapter wire. The switch button controls the on and off of the line, providing a review opportunity to ensure that the wiring is correct and then conducts.

Benefits of technology

It improves the safety during the inspection process of target terminals, avoids point selection errors or wiring errors, prevents short circuit accidents, and improves operating efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a low-voltage electrical cabinet terminal wiring tool. The low-voltage electrical cabinet terminal wiring tool comprises a control structure, two connecting structures and at least two patch cords, wherein the two connecting structures are respectively used for being electrically connected with two target terminals of a low-voltage electrical cabinet; the control structure comprises at least one switch button; the at least two patch cords form two connecting lines, two ends of one connecting line are electrically connected with one connecting structure and one end of the switch button respectively, and two ends of the other connecting line are electrically connected with the other connecting structure and the other end of the switch button respectively. According to the utility model, a re-checking opportunity can be provided before the target terminal is connected, and the operation safety in the inspection process of the target terminal is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of electrical cabinet detection, in particular to a terminal wiring tooling for low-voltage electrical cabinets. Background Art

[0002] Electrical cabinets include various types such as control cabinets, frequency conversion cabinets, power distribution cabinets, switch cabinets, etc. according to types, and include high-voltage, medium-voltage, low-voltage, etc. according to voltage levels. For low-voltage electrical cabinets, when conducting certain function verifications, such as during tests to test certain functions, it is necessary to lead out wiring or jumpers from the original terminal blocks and achieve the purpose of simulating input signals through short-circuiting. Usually, the operator uses a wire to short-circuit two target terminals. After the operation, the signal takes effect immediately, thereby realizing the test verification of a certain function of the low-voltage electrical cabinet. However, it is difficult to review whether the wiring is correct during this process. The two ends of the wire are simply connected to the terminals to complete the operation, lacking a review step, and problems such as incorrect point selection or wiring errors are likely to occur, resulting in unexpected consequences caused by human errors and posing operational risks. Content of the Utility Model

[0003] The technical problem to be solved by the utility model is to provide a terminal wiring tooling for low-voltage electrical cabinets.

[0004] The utility model adopts the following technical solutions:

[0005] Construct a terminal wiring tooling for low-voltage electrical cabinets, including:

[0006] A control structure, including at least one switch button;

[0007] Two connection structures respectively used for electrically connecting to two target terminals of the low-voltage electrical cabinet; and

[0008] At least two patch cords, the at least two patch cords form two connection lines, one of the connection lines is electrically connected to one of the connection structures and one end of the switch button at both ends, and the other connection line is electrically connected to the other connection structure and the other end of the switch button at both ends.

[0009] In some embodiments, the switch button is a non-self-locking switch button or a self-locking switch button.

[0010] In some embodiments, the number of switch buttons is two, namely a first switch button and a second switch button. The first end of the first switch button is electrically connected to the first end of the second switch button. The second end of the first switch button is electrically connected to one end of one of the connection lines, and the second end of the second switch button is electrically connected to one end of the other connection line.

[0011] In some embodiments, the first switch button is a non-self-locking button, and the second switch button is a self-locking button.

[0012] In some embodiments, the control structure further includes at least one quick connector. Both ends of the switch button are electrically connected to the at least one quick connector, and the at least one quick connector is detachably connected to one end of the at least one patch cord.

[0013] In some embodiments, the switch button is electrically connected to the at least one quick connector through a connecting wire, and at least part of the connecting wire is a fusing fuse.

[0014] In some embodiments, the number of the quick connectors is one. The quick connector includes four ports. The number of the patch cords is two, namely a first patch cord and a second patch cord. The first end of the first patch cord is detachably connected to the quick connector; the first patch cord includes a first conduction line and a second conduction line. The first ends of the first conduction line and the second conduction line are electrically connected to two of the ports respectively; the remaining two ports are electrically connected to both ends of the control structure respectively;

[0015] The first conduction line is one of the connecting lines, and its second end is electrically connected to one of the connecting structures; the second conduction line and the second patch cord together form the other connecting line. The second end of the second conduction line is electrically connected to the first end of the second patch cord, and the second end of the second patch cord is electrically connected to the other connecting structure.

[0016] In some embodiments, the control structure further includes a housing, and the switch button is arranged on the housing.

[0017] In some embodiments, the control structure further includes a magnetic member, and the magnetic member is arranged on the housing.

[0018] In some embodiments, the housing is in a longitudinal column shape. The switch button is arranged at one end of the housing, and the at least two patch cords are electrically connected to both ends of the switch button through the other end of the housing.

[0019] The utility model has the following advantages:

[0020] The utility model can realize the control of the on-off of the circuit through the setting of the switch button in the control structure. After two target terminals are connected by the terminal wiring tooling of the low-voltage electrical cabinet, they can be in a non-conductive state first, and then the correctness of the selection of the target terminal points can be rechecked and judged. After the recheck, the conduction of the circuit can be controlled by the switch button, thereby improving the safety of the operation in the inspection process of the target terminal, avoiding problems such as incorrect selection of points or incorrect wiring, preventing non-expected consequences caused by the operator's mistakes, and avoiding operation risks caused by accidents such as short circuits. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the present utility model, the present utility model will be further described below in conjunction with the drawings and embodiments. It should be understood that the following drawings only show some embodiments of the present utility model, and therefore should not be regarded as a limitation of the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts. In the drawings:

[0022] Figure 1 is a schematic structural diagram of the terminal wiring tooling of the low-voltage electrical cabinet in the first embodiment of the present utility model;

[0023] Figure 2 is a schematic structural diagram of the control structure in the terminal wiring tooling of the low-voltage electrical cabinet in the second embodiment of the present utility model.

[0024] Reference numerals:

[0025] 1 - Terminal wiring tooling of the low-voltage electrical cabinet; 10, 10a - Control structure; 20 - Connection structure; 30 - Jumper wire;

[0026] 11, 11a - Housing; 12 - First switch button; 13 - Second switch button; 14, 14a - Connecting wire; 15, 15a - Quick connector; 16a - Third switch button; 151, 151a - First port; 152, 152a - Second port; 153 - Third port; 154 - Fourth port;

[0027] 21 - First connection structure; 22 - Second connection structure;

[0028] 31 - First jumper wire; 32 - Second jumper wire; 301 - First connection line; 302 - Second connection line; 311 - First conduction line; 312 - Second conduction line. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0029] In order to have a clearer understanding of the technical features, objectives, and effects of the present utility model, the specific embodiments of the present utility model will now be described in detail with reference to the accompanying drawings. In the following description, it should be understood that the orientation or positional relationships indicated by "front", "rear", "upper", "lower", "left", "right", "vertical", "horizontal", "bottom", "inner", "inside", "outer", etc. are based on the orientation or positional relationships shown in some of the drawings, with a specific orientation structure and operation, and are only for the convenience of describing the present technical solution, rather than indicating that the device or element referred to must have a specific orientation. Therefore, it should not be construed as a limitation to the present utility model.

[0030] It should also be noted that, unless otherwise clearly specified and limited, terms such as "installation", "connection", "coupling", "fixing", "setting", etc. should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements or the interaction relationship between two elements. When an element is referred to as being "on" or "under" another element, the element can be "directly" or "indirectly" located above the other element, or there may also be one or more intermediate elements. Terms such as "first", "second", etc. are only for the convenience of describing the present technical solution, and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first", "second", etc. may explicitly or implicitly include one or more of such features. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0031] In the following description, specific details such as specific system structures and technologies are presented for the purpose of illustration rather than limitation, so as to thoroughly understand the embodiments of the present utility model. However, those skilled in the art should clearly understand that the present utility model can also be implemented in other embodiments without these specific details. In other cases, the detailed descriptions of well-known systems, devices, circuits, and methods are omitted to avoid unnecessary details from interfering with the description of the present utility model.

[0032] Figure 1The low-voltage electrical cabinet terminal wiring tooling 1 in the first embodiment of the present utility model is shown, which can perform a short-circuit operation on the low-voltage electrical cabinet, thereby realizing the inspection of the target terminals of the low-voltage electrical cabinet. The low-voltage electrical cabinet terminal wiring tooling 1 includes a control structure 10, a connection structure 20, and a patch cord 30. Among them, the control structure 10 and the connection structure 20 are electrically connected through the patch cord 30. The control structure 10 is used to realize the on-off control of the low-voltage electrical cabinet terminal wiring tooling 1 and includes at least one switch button. The number of the connection structures 20 is two, which are now respectively defined as a first connection structure 21 and a second connection structure 22, and are respectively used for electrically connecting with two target terminals of the low-voltage electrical cabinet that need to be electrically connected. The number of the patch cords 30 is at least two and forms two connection lines. One of the connection lines (now defined as the first connection line 301) is electrically connected to one of the connection structures 20 (such as the first connection structure 21) and one end of the switch button at both ends, and the other connection line (now defined as the second connection line 302) is electrically connected to the other connection structure 20 (such as the second connection structure 22) and the other end of the switch button at both ends.

[0033] Through the control of the switch button, the low-voltage electrical cabinet terminal wiring tooling 1 can realize the on-off control of the circuit, so that after the connection structure 20 is connected to the target terminal, it can first be in a non-connected state. At this time, the two target terminals are not conducting, and the correctness of the connection of the target terminals can be rechecked. After the recheck, the circuit is controlled to conduct through the switch button, so that the two target terminals are electrically connected, and the inspection operation between the target terminals is carried out, thereby improving the safety of the operation during the inspection of the target terminals, avoiding problems such as incorrect point selection or wiring errors, preventing unexpected consequences caused by the operator's mistakes, and avoiding operation risks caused by accidents such as short circuits.

[0034] The low-voltage electrical cabinet terminal wiring tooling 1 can improve the production efficiency by avoiding risks. At the same time, when it is necessary to repeatedly simulate signals multiple times, using the low-voltage electrical cabinet terminal wiring tooling 1 for one wiring can replace frequent jumper operations, effectively improving the operation efficiency.

[0035] In some embodiments, the switch button can be a self-locking switch button and / or a non-self-locking switch button and / or a foot-operated switch button. Among them, the self-locking switch button means that the circuit is connected after pressing the button once, and remains connected after releasing the button, and the circuit will only be disconnected after pressing the button again. The non-self-locking switch button means that the circuit is connected after pressing the button, and the circuit is disconnected after releasing the button. The foot-operated switch means that the switch form is set as a foot-operated type, the structure is designed to fit the foot, and it is placed on the ground for foot-touch operation.

[0036] It should be understood that the self-locking switch button, non-self-locking switch button, and foot-operated switch button can all be implemented using existing technologies.

[0037] In this embodiment, the number of the switch buttons is two, which are now respectively defined as the first switch button 12 and the second switch button 13. The first end of the first switch button 12 is electrically connected to the first end of the second switch button 13. The second end of the first switch button 12 is electrically connected to one end of the first connection line 301. The second end of the second switch button 13 is electrically connected to one end of the second connection line 302. Among them, the first switch button 12 is a non-self-locking button, and the second switch button 13 is a self-locking button.

[0038] By providing two switch buttons in the control structure 10, it is possible to further avoid unexpected consequences caused by the operator's accidental touch, accidental press, or incorrect judgment, providing double insurance. During use, only when both the first switch button 12 and the second switch button 13 are in the connected state can it be ensured that the entire low-voltage electrical cabinet terminal wiring tooling 1 is connected. For example, in this embodiment, if the second switch button 13 is accidentally touched and pressed and is in the self-locking conduction state, at this time, since the first switch button 12 is a non-self-locking switch button, the overall state remains non-conductive. If there is an incorrect selection of the target terminal in this state, the setting of these two switch buttons can prevent the connection from being directly conductive, still providing the operator with an opportunity for recheck and avoiding the occurrence of unexpected consequences.

[0039] In some other optional embodiments, the first switch button 12 and the second switch button 13 can also select the same type of button, such as both selecting self-locking switch buttons, non-self-locking switch buttons, or foot-operated switch buttons. The first switch button 12 and the second switch button 13 can also each select other types of buttons respectively, such as the first switch button 12 being a self-locking switch button and the second switch button 13 being a foot-operated switch button, etc. There are many matching forms and will not be listed one by one here.

[0040] In some embodiments, the control structure 10 further includes at least one quick connector 15 for quickly connecting to the end of the patch cord 30, and this connection is detachable, and the control structure 10 can be disassembled and assembled with the connection structure 20 and the patch cord 30 at any time, and it can be disassembled and stored during the period when it is not in use to reduce space occupation.

[0041] Specifically, both ends of the switch button are electrically connected to at least one quick connector 15, and the quick connector 15 is detachably connected to at least one patch cord 30.

[0042] In this embodiment, the number of the quick connectors 15 is one, which includes four ports, and they are respectively defined as a first port 151, a second port 152, a third port 153 and a fourth port 154. The first port 151 and the second port 152 are respectively used for connecting with the switch buttons, and the third port 153 and the fourth port 154 are respectively used for connecting with the patch cords 30. The control structure 10 further includes three connecting wires 14. An electrical connection is realized between the first ends of the first switch button 12 and the second switch button 13 through a connecting wire 14. An electrical connection is realized between the second end of the first switch button 12 and the first port 151 through a connecting wire 14. An electrical connection is realized between the second end of the second switch button 13 and the second port 152 through a connecting wire 14.

[0043] The number of the patch cords 30 is two, and they are respectively defined as a first patch cord 31 and a second patch cord 32. There are two conduction paths in the first patch cord 31, and they are respectively defined as a first conduction path 311 and a second conduction path 312. The first end of the first patch cord 31 is detachably connected to the quick connector 15, so that the first end of the first conduction path 311 is electrically connected to the third port 153 of the quick connector 15, and the first end of the second conduction path 312 is electrically connected to the fourth port 154 of the quick connector 15.

[0044] The first conduction path 311 alone forms the first connection path 301, and its second end is electrically connected to the first connection structure 21. Thus, an electrical connection is realized between the first connection structure 21 and the second end of the first switch button 12 through the first conduction path 311, the quick connector 15 and a connecting wire 14.

[0045] The second end of the second conduction path 312 is electrically connected to the first end of the second patch cord 32. The second conduction path 312 and the second patch cord 32 together form the second connection path 302. The second end of the second patch cord 32 is electrically connected to the second connection structure 22. Thus, an electrical connection is realized between the second connection structure 22 and the second end of the second switch button 13 through the second conduction path 312, the second patch cord 32, the quick connector 15 and a connecting wire 14. When the first connection structure 21 and the second connection structure 22 are respectively electrically connected to two target terminals, and after the first switch button 12 and the second switch button 13 are pressed to achieve conduction, the two target terminals are electrically connected in sequence through the second connection structure 22, the second patch cord 32, the second conduction path 312, the quick connector 15, the first connecting wire 14, the second switch button 13, the second connecting wire 14, the first switch button 12, the third connecting wire 14, the quick connector 15, the first conduction path 311 and the first connection structure 21.

[0046] In some other alternative embodiments, the conduction line of the first patch cord 31 may also be set to only one. In this case, the first end of the first patch cord 31 and the first end of the second patch cord 32 need to be electrically connected to the third port 153 and the fourth port 154 of the quick connector 15 respectively, the second end of the first patch cord 31 is electrically connected to the first connection structure 21, and the second end of the second patch cord 32 is electrically connected to the second connection structure 22. At this time, after the first connection structure 21 and the second connection structure 22 are electrically connected to two target terminals respectively, the control structure 10 is approximately at the midpoint between the two target terminals.

[0047] In some other alternative embodiments, the number of the quick connectors 15 may also be set to two. Each quick connector 15 may only include two ports. One port of one quick connector 15 is electrically connected to the second end of the first switch button 12, and the other port is electrically connected to the first connection line 301. One port of the other quick connector 15 is electrically connected to the second end of the second switch button 13, and the other port is electrically connected to the second connection line 302.

[0048] In some other alternative embodiments, the number of the patch cords 30 may also be set to three, four or more to increase the length of the connection line, which is applicable to the case where the distance between two target terminals is relatively far. Taking the number of the patch cords 30 being three as an example, one of the patch cords 30 may include two conduction lines. One of the conduction lines independently forms the first connection line 301 and is electrically connected to the quick connector 15 and the first connection structure 21 at both ends. The remaining one conduction line and the remaining two patch cords 30 together form the second connection line 302. The conduction line and the two patch cords 30 are connected end to end and are electrically connected to the quick connector 15 and the second connection structure 22 at both ends. Or, all three patch cords 30 are patch cords 30 with single conduction lines. One of the patch cords 30 serves as the first connection line 301 and is electrically connected to the quick connector 15 and the first connection structure 21 at both ends. The remaining two patch cords 30 are connected end to end together to form the second connection line 302 and are electrically connected to the quick connector 15 and the second connection structure 22 at both ends.

[0049] In some embodiments, at least part of the connection line 14 between the switch button and the quick connector 15 is a fuse. It can play an additional protective role. When there are double human operation errors of incorrect selection (incorrect connection) of the target terminals and accidental conduction of the switch button, the two target terminals are conductively connected to form a short circuit. The fuse can automatically cut off the circuit by fusing, thereby avoiding the occurrence of safety problems.

[0050] In this embodiment, a partial line segment of the connection line 14 between the first switch button 12 and the quick connector 15 is a fusing fuse. In some other alternative embodiments, a fusing fuse may also be provided on the connection line 14 between the first switch button 12 and the quick connector 15 and / or between the first switch button 12 and the second switch button 13 and / or between the second switch button 13 and the quick connector 15.

[0051] In some embodiments, the control structure 10 further includes a housing 11, and the switch button and the quick connector 15 are both provided on the housing 11.

[0052] It should be understood that the phrase "provided on the housing 11" described herein can be understood as being received within the housing 11, with the end portion that needs to perform the connection operation being exposed through an opening on the housing 11. It can also be understood as passing through the wall of the housing 11.

[0053] In this embodiment, the housing 11 is in a cube shape. The first switch button 12, the second switch button 13, and the quick connector 15 all pass through the housing 11, and the three connection lines 14 are arranged within the housing 11. The entire control structure 10 is received and connected by the housing 11 into an integral structure, facilitating taking and operating.

[0054] Specifically, the first switch button 12 and the second switch button 13 are provided at one end of the housing 11, and the quick connector 15 is provided at the other end of the housing 11, which is disposed opposite to the end where the first switch button 12 and the second switch button 13 are located.

[0055] It should be understood that the walls on which the first switch button 12 and the second switch button 13 are located on the housing 11 can pass through the same wall or different walls (such as adjacent walls or opposite walls), as long as they are located at one end on the housing 11 and are disposed opposite to the quick connector 15.

[0056] By oppositely disposing the switch button and the quick connector 15 on the housing 11 and arranging them at opposite two ends, it is convenient for the layout of the circuit and for taking and operating during the switch operation.

[0057] In some other alternative embodiments, the housing 11 may also be in a cylindrical shape, a handle shape, a round cake shape, or other shapes. The arrangement positions of the quick connector 15, the first switch button 12, and the second switch button 13 on the housing 11 may also be adjacent, or the three may be respectively arranged on three mutually perpendicular wall surfaces, etc.

[0058] In some other alternative embodiments, when the quick connector 15 is not provided, a patch cord 30 may also be passed through the housing 11 such that one end thereof is electrically connected to the switch button within the housing 11.

[0059] In some embodiments, the control structure 10 further includes a magnetic member (not shown in the figure). The magnetic member is disposed on the housing 11, which enables the control structure 10 to be placed on the cabinet wall of the electrical cabinet, freeing the operator's hands.

[0060] It should be understood that "the magnetic member is disposed on the housing 11" can be understood as being disposed on the outer wall surface of the housing 11, or being disposed on the inner wall surface of the housing 11, or passing through the housing 11, or being disposed inside the housing 11. As long as the control structure 10 can be disposed on the cabinet wall of the electrical cabinet through the magnetic member.

[0061] In some embodiments, the connection structure 20 is a terminal block, including a hook-type terminal block, an alligator clip terminal block, and a crimping terminal block, which can be selected according to the specific situation of the target terminal. Among them, the hook-type terminal block and the alligator clip terminal block can overlap points without disassembling the original wiring. The crimping terminal block can be connected to a terminal post (column-type target terminal).

[0062] It should be understood that the hook-type terminal block, the alligator clip terminal block, and the crimping terminal block can all be obtained by existing technologies.

[0063] In some embodiments, the two ends of the patch cord 30 can respectively adopt widely used and reliable aviation plugs and rubber plugs, so as to realize quick connection with the quick connector 15 and the connection structure 20.

[0064] In the specific use process, first, the low-voltage electrical cabinet terminal wiring tooling 1 needs to be assembled. Connect the first end of the first patch cord 31 to the quick connector 15, connect the second end of the second conduction line 312 in the first patch cord 31 to the first end of the second patch cord 32, and connect the second end of the first conduction line 311 of the first patch cord 31 and the second end of the second patch cord 32 to the first connection structure 21 and the second connection structure 22 respectively.

[0065] Further, determine the points of the target terminals, and connect the first connection structure 21 and the second connection structure 22 to the two target terminals respectively.

[0066] It should be understood that since the first switch button 12 and the second switch button 13 are both in the unclosed state at this time, the two target terminals are defaulted to be open and not conducting, and signal transmission cannot be carried out between the two target terminals.

[0067] Further, confirm the points of the target terminals, review the accuracy of the wiring, correct possible errors, and avoid human errors.

[0068] Further, after confirming that the wiring is correct, press the second switch button 13 to close it, and long-press the first switch button 12 to keep it closed all the time. The circuit is turned on, and signal transmission is carried out between the two target terminals.

[0069] Figure 2 Fig. 10a shows the control structure of the terminal wiring tooling for the low-voltage electrical cabinet in the second embodiment of the present invention. The main difference between this control structure 10a and the first embodiment is that:

[0070] In this embodiment, the number of the switch buttons is one, which is now defined as the third switch button 16a, and it is a self-locking switch button. The housing 11a is in a longitudinally elongated column shape. The third switch button 16a is arranged at one end of the housing 11a, and the quick connector 15a is arranged at the other end of the housing 11a. The patch cord is electrically connected to both ends of the third switch button 16a through the quick connector 15a at the other end of the housing 11a. The number of the connecting wires 14a is two, which are respectively used to connect both ends of the third switch button 16a to the two ports of the quick connector 15a.

[0071] Specifically, the first end of the third switch button 16a is electrically connected to the first port 151a of the quick connector 15a through one of the connecting wires 14a. The second end of the third switch button 16a is electrically connected to the second port 152a of the quick connector 15a through the other connecting wire 14a.

[0072] By setting the housing 11a to be in a longitudinally elongated column shape, a handle-like structure convenient for holding by hand can be formed, which is convenient for taking and operating during the operation process.

[0073] It should be understood that the longitudinally elongated column shape can be a cylindrical shape or a polygonal column shape.

[0074] In some other alternative embodiments, the third switch button 16a can be set as a non-self-locking switch button.

[0075] In some other alternative embodiments, when the third switch button 16a is set as a foot-operated switch button, the structure of its housing 11a is adjusted accordingly. At this time, the third switch button 16a and the quick connector 15a may not be arranged at the opposite ends of the housing 11a, so as to facilitate wiring while realizing the operation of the foot switch.

[0076] Understandably, the above embodiments only represent the preferred embodiments of the present utility model, and the description thereof is relatively specific and detailed, but it should not be construed as a limitation to the scope of the patent of the present utility model; it should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, the above technical features can be freely combined, and several deformations and improvements can also be made, and these all belong to the protection scope of the present utility model; therefore, all equivalent transformations and modifications made to the scope of the claims of the present utility model shall fall within the scope covered by the claims of the present utility model.

Claims

1. A low-voltage electrical cabinet terminal wiring tooling, characterized in that, Comprising: A control structure including at least one switch button; Two connection structures respectively for electrically connecting to two target terminals of a low-voltage electrical cabinet; And At least two patch cords, the at least two patch cords form two connection lines, one end of one of the connection lines is electrically connected to one of the connection structures and one end of the switch button respectively, and the other end of the other connection line is electrically connected to the other connection structure and the other end of the switch button respectively.

2. The low-voltage electrical cabinet terminal wiring tooling according to claim 1, wherein The switch button is a non-locking switch button or a self-locking switch button.

3. The low-voltage electrical cabinet terminal wiring tooling according to claim 1, characterized in that The number of the switch buttons is two, namely a first switch button and a second switch button. The first end of the first switch button is electrically connected to the first end of the second switch button. The second end of the first switch button is electrically connected to one end of one of the connection lines. The second end of the second switch button is electrically connected to one end of the other connection line.

4. The low-voltage electrical cabinet terminal wiring tooling according to claim 3, characterized in that The first switch button is a non-locking button, and the second switch button is a self-locking button.

5. The low-voltage electrical cabinet terminal wiring tooling according to claim 1, characterized in that, The control structure further includes at least one quick connector. Both ends of the switch button are electrically connected to the at least one quick connector, and the at least one quick connector is detachably connected to one end of the at least one patch cord.

6. The low-voltage electrical cabinet terminal wiring tooling according to claim 5, wherein The switch button and the at least one quick connector are electrically connected through a connecting wire, and at least part of the connecting wire is a fusing fuse.

7. The low-voltage electrical cabinet terminal wiring tooling according to claim 5, characterized in that, The number of the quick connectors is one. The quick connector includes four ports. The number of the patch cords is two, namely a first patch cord and a second patch cord. The first end of the first patch cord is detachably connected to the quick connector. The first patch cord includes a first conduction line and a second conduction line. The first ends of the first conduction line and the second conduction line are electrically connected to two of the ports respectively. The remaining two ports are electrically connected to both ends of the control structure respectively. The first conduction line is one of the connection lines, and its second end is electrically connected to one of the connection structures. The second conduction line and the second patch cord together form the other connection line. The second end of the second conduction line is electrically connected to the first end of the second patch cord, and the second end of the second patch cord is electrically connected to the other connection structure.

8. The low-voltage electrical cabinet terminal wiring tooling according to claim 1, characterized in that, The control structure further includes a housing, and the switch button is arranged on the housing.

9. The low-voltage electrical cabinet terminal wiring tooling according to claim 8, wherein The control structure further includes a magnetic part, and the magnetic part is arranged on the housing.

10. The low-voltage electrical cabinet terminal wiring tooling according to claim 8, characterized in that, The housing is in a longitudinally long column shape. The switch button is arranged at one end of the housing. The at least two patch cords are electrically connected to both ends of the switch button through the other end of the housing.