Motor multi-model test switching electric cabinet
By designing a multi-model test switching control box for motors, flexible application and efficient speed regulation testing of different motor models were achieved, solving the problems of a large number of speed controllers and high risk of misconnection in existing technologies, and improving motor production efficiency.
Patent Information
- Application Number
- CN202520178941.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-05
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-02-05
AI Technical Summary
In the current motor production process, the applicable motor power of the speed controller must be consistent with that of the speed-regulating motor. This results in a large number of speed controllers with complex models during the testing process, making selection cumbersome and increasing the risk of incorrect connection, thus reducing work efficiency.
Design a multi-model motor test switching control box, including a box body, speed controller and motor connector. The switch allows selection of any set of speed controllers and motor connectors for operation. It is applicable to different motor models, has high integration, strong versatility and simplifies the selection process.
It improves the efficiency of motor testing, reduces the risk of incorrect connection, enhances the flexibility and convenience of use, and simplifies the speed regulation test procedure.
Smart Images

Figure CN223842079U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of motor production equipment technology, specifically to a motor multi-model test switching electrical control box. Background Technology
[0002] A speed-regulating motor is a type of motor whose speed can be adjusted as needed. Its working principle involves changing the motor's input voltage, current, or frequency to change its speed. A speed controller is an electronic device primarily used to control the motor's speed. It can achieve precise speed regulation by changing the frequency and voltage of the power supply. Currently, in the motor production process, workers need to use speed controllers to conduct speed adjustment tests on different models of speed-regulating motors. Because the applicable motor power of the speed controller must match the power of the speed-regulating motor, the testing process involves a large number of speed controllers of various models. The process of selecting and using the appropriate speed controller is cumbersome, with a high possibility of incorrect connection, which significantly reduces work efficiency. Utility Model Content
[0003] The technical problem to be solved by this utility model is to overcome the shortcomings of the existing technology and provide a motor multi-model test switching control box that is highly versatile, flexible in use, can greatly reduce the risk of misconnection, and effectively improve work efficiency.
[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:
[0005] A multi-model motor test switching control box includes a box body. Several sets of speed controllers and switching switches are installed inside the box body. The debugging panel of the speed controller and the selection panel of the switching switch are located on the top of the box body. Several sets of motor connectors are installed on the side of the box body. Each motor connector is electrically connected to a speed controller. The switching switch allows selection of any set of speed controllers and motor connectors to be in working state.
[0006] As a further improvement to the above technical solution:
[0007] The number of groups of the speed controller and the motor connector is set to six. The speed controller includes a first speed controller, a second speed controller, a third speed controller, a fourth speed controller, a fifth speed controller, and a sixth speed controller. The motor connector includes a first motor connector, a second motor connector, a third motor connector, a fourth motor connector, a fifth motor connector, and a sixth motor connector.
[0008] The applicable motor power of the first speed controller and the first motor connector is 60K² / 15W, the applicable motor power of the second speed controller and the second motor connector is 80K² / 40W, the applicable motor power of the third speed controller and the third motor connector is 90K² / 120W, the applicable motor power of the fourth speed controller and the fourth motor connector is 90K² / 200W, the applicable motor power of the fifth speed controller and the fifth motor connector is 104K² / 200W, and the applicable motor power of the sixth speed controller and the sixth motor connector is 104K² / 400W.
[0009] The enclosure includes an upper enclosure and a lower enclosure, with the upper enclosure detachably connected to the lower enclosure.
[0010] Compared with the prior art, the advantages of this utility model are:
[0011] This utility model's multi-model test switching electrical control box includes a housing. By assembling multiple sets of speed controllers and motor connectors with different applicable motor power into the housing, the electrical control box can be used for multiple sets of different motor models. It has high integration, strong versatility, and high flexibility of use. Moreover, the housing 1 is also equipped with a switching switch, which allows the operator to select any set of speed controllers and motor connectors to be in working state by rotating the switching switch, thereby completing the speed adjustment test procedure of the speed-adjustable motor that is compatible with the speed controller model. The selection and use process is simple and convenient, greatly reducing the risk of incorrect connection and effectively improving work efficiency. Attached Figure Description
[0012] Figure 1 This is a top-view diagram of the electrical control box for switching between different motor models during testing.
[0013] Figure 2 This is a structural diagram showing the frontal view of the control box for switching between different motor models during testing.
[0014] Legend:
[0015] 1. Housing; 101. Upper housing; 102. Lower housing; 2. Speed controller; 201. First speed controller; 202. Second speed controller; 203. Third speed controller; 204. Fourth speed controller; 205. Fifth speed controller; 206. Sixth speed controller; 3. Switch; 4. Motor connector; 401. First motor connector; 402. Second motor connector; 403. Third motor connector; 404. Fourth motor connector; 405. Fifth motor connector; 406. Sixth motor connector. Detailed Implementation
[0016] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0017] like Figure 1 and Figure 2 As shown, the multi-model test switching electrical control box of this embodiment includes a box body 1. The box body 1 is equipped with several sets of speed controllers 2 and switching switches 3. The debugging panel of the speed controller 2 and the selection panel of the switching switch 3 are located on the top of the box body 1. Several sets of motor connectors 4 are provided on the side of the box body 1. The motor connectors 4 are electrically connected to the speed controllers 2 one by one. The switching switch 3 can be used to select any set of speed controllers 2 and motor connectors 4 to be in working state. This multi-model motor test switching control box includes a housing 1. By assembling multiple sets of speed controllers 2 and motor connectors 4 with different applicable motor power into the housing 1, the control box can be used for multiple different models of motors. It has high integration, strong versatility, and high flexibility of use. In addition, the housing 1 is also equipped with a switching switch 3. The operator can select any set of speed controllers 2 and motor connectors 4 to be in working state by rotating the switching switch 3, thereby completing the speed adjustment test procedure of the speed-adjusting motor that is compatible with the speed controller 2 model. The selection and use process is simple and convenient, greatly reducing the risk of incorrect connection and effectively improving work efficiency.
[0018] Preferably, the number of groups of speed controller 2 and motor connector 4 is set to six. The speed controller 2 includes a first speed controller 201, a second speed controller 202, a third speed controller 203, a fourth speed controller 204, a fifth speed controller 205, and a sixth speed controller 206. The motor connector 4 includes a first motor connector 401, a second motor connector 402, a third motor connector 403, a fourth motor connector 404, a fifth motor connector 405, and a sixth motor connector 406. In this embodiment, the speed controller 2 is a US series panel-type speed controller produced by Ningbo Zhongda Lide Intelligent Transmission Co., Ltd. When using it, the power of the speed-regulating motor must be consistent with the applicable motor power of the speed controller 2. In other embodiments, the number of groups of speed controller 2 and motor connector 4 can be adaptively increased or decreased according to actual production needs, and is not limited to this embodiment.
[0019] Preferably, the applicable motor power of the first speed controller 201 and the first motor connector 401 is 60K² / 15W, the applicable motor power of the second speed controller 202 and the second motor connector 402 is 80K² / 40W, the applicable motor power of the third speed controller 203 and the third motor connector 403 is 90K² / 120W, the applicable motor power of the fourth speed controller 204 and the fourth motor connector 404 is 90K² / 200W, the applicable motor power of the fifth speed controller 205 and the fifth motor connector 405 is 104K² / 200W, and the applicable motor power of the sixth speed controller 206 and the sixth motor connector 406 is 104K² / 400W. In this embodiment, a "60K2 / 15W" label is affixed to the top of the housing 1 at the position corresponding to the debugging panel of the first speed controller 201. Similarly, a "60K2 / 15W" label is affixed to the side of the housing 1 at the position corresponding to the first motor connector 401. A "80K2 / 40W" label is affixed to the debugging panel of the second speed controller 202, and another "80K2 / 40W" label is affixed to the position corresponding to the second motor connector 402, and so on. The purpose is to clearly and accurately indicate the applicable motor power for each set of speed controllers 2 and each set of motor connectors 4 to the operator, avoiding incorrect connections and effectively improving ease of use and safety.
[0020] Preferably, the housing 1 includes an upper housing 101 and a lower housing 102, with the upper housing 101 detachably connected to the lower housing 102. In this embodiment, the lower housing 102 has internally threaded connecting holes at its four corners, and the upper housing 101 has internally threaded countersunk holes at its four corners. Four sets of screws pass through the internally threaded countersunk holes and the internally threaded connecting holes. This design has the advantages of simple structure and convenient and quick installation and disassembly. When the speed controller 2 or the switch 3 inside the housing 1 malfunctions, the housing 1 can be quickly opened for inspection and replacement, effectively improving maintenance efficiency.
[0021] The above description is merely a preferred embodiment of this utility model, and the protection scope of this utility model is not limited to the above embodiments. For those skilled in the art, improvements and modifications obtained without departing from the technical concept of this utility model should also be considered within the protection scope of this utility model.
Claims
1. A multi-model test switching control box for motors, comprising a box body (1), characterized in that, The housing (1) is equipped with several sets of speed controllers (2) and switching switches (3). The debugging panel of the speed controller (2) and the selection panel of the switching switch (3) are located on the top of the housing (1). Several sets of motor connectors (4) are provided on the side of the housing (1). The motor connectors (4) are electrically connected to the speed controllers (2) one by one. The switching switch (3) can be used to select any set of speed controllers (2) and motor connectors (4) to be in working state.
2. The motor multi-model test switching control box according to claim 1, characterized in that, The speed regulator (2) and the motor connector (4) are both set to six groups. The speed regulator (2) includes a first speed regulator (201), a second speed regulator (202), a third speed regulator (203), a fourth speed regulator (204), a fifth speed regulator (205), and a sixth speed regulator (206). The motor connector (4) includes a first motor connector (401), a second motor connector (402), a third motor connector (403), a fourth motor connector (404), a fifth motor connector (405), and a sixth motor connector (406).
3. The motor multi-model test switching control box according to claim 2, characterized in that, The applicable motor power of the first speed controller (201) and the first motor connector (401) is 60K2 / 15W, the applicable motor power of the second speed controller (202) and the second motor connector (402) is 80K2 / 40W, the applicable motor power of the third speed controller (203) and the third motor connector (403) is 90K2 / 120W, the applicable motor power of the fourth speed controller (204) and the fourth motor connector (404) is 90K2 / 200W, the applicable motor power of the fifth speed controller (205) and the fifth motor connector (405) is 104K2 / 200W, and the applicable motor power of the sixth speed controller (206) and the sixth motor connector (406) is 104K2 / 400W.
4. The motor multi-model test switching control box according to claim 3, characterized in that, The housing (1) includes an upper housing (101) and a lower housing (102), wherein the upper housing (101) is detachably connected to the lower housing (102).