Soft start cabinet with Internet of Things
By using magnetic installation and a metal shielding structure, the problems of long installation time and signal interference in traditional IoT switches are solved, achieving rapid installation and stable data transmission.
Patent Information
- Application Number
- CN202520339562.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Traditional IoT switches are time-consuming to install in soft starter cabinets, have fixed and unadjustable positions, poor versatility, and lack effective shielding measures, which can lead to signal interference that affects the accuracy and stability of data transmission.
The switch main seat is mounted by a magnetic attachment block, allowing the switch seat to slide freely on the crossbeam support. Combined with the side and bottom metal plates, it forms a closed metal shielding structure, simplifying the installation process and preventing external electromagnetic interference.
It enables rapid installation and flexible position adjustment of IoT switches, improves the versatility of the device and the stability of data transmission, and reduces the impact of external interference.
Smart Images

Figure CN223828918U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a soft start cabinet with internet of things. BACKGROUND
[0002] The soft start cabinet with internet of things is a power control device integrated with internet of things technology, mainly used for controlling the start and stop of electric motors, and realizing remote monitoring and management through internet of things. The traditional installation mode of internet of things switch is usually to fix C45 guide plate on the crossbeam of soft start cabinet, and then to clamp internet of things switch on C45 guide plate. This multi-step installation mode takes a long time, and the position of internet of things switch is single and fixed, which cannot be flexibly adjusted according to actual demand. The fixed installation mode reduces the versatility and flexibility of the equipment, and the wiring is not friendly. Especially in different models or specifications of soft start cabinet, the position of internet of things switch is difficult to adapt to diversified demand. In addition, the traditional design lacks effective shielding measures, which causes the internal signals of internet of things switch to be easily disturbed, affecting the accuracy and stability of data transmission. This needs to be improved and optimized. SUMMARY
[0003] To solve the above problems, the technical problem to be solved by the utility model is to provide a soft start cabinet with internet of things.
[0004] The technical scheme adopted by the soft start cabinet with internet of things of the utility model is characterized by comprising a soft start cabinet body, a crossbeam support vertically and spaced apart arranged in the soft start cabinet body, a circuit breaker mounted on the crossbeam support, a soft start cabinet and an internet of things switch seat device, and an internet of things switch arranged in the internet of things switch seat device. The left and right ends of the internet of things switch are provided with switch external connection ends, and the bottom of the internet of things switch is provided with a switch clamping groove. The internet of things switch seat device comprises a switch main seat, a switch seat sealing plate, a side metal plate, a bottom metal plate and a magnet. The switch main seat is provided with a switch positioning groove for placing the internet of things switch. The front and rear ends of the switch positioning groove are provided with wire accommodation openings for connecting the switch external connection ends. The bottom of the switch positioning groove is provided with a magnet limiting groove for mounting the magnet. The side end of the switch main seat is provided with a side metal plate mounting opening for mounting the side metal plate. The switch seat sealing plate comprises a sealing plate body attached to the side of the switch main seat. The sealing plate body is provided with a sealing plate pressing block attached to the bottom of the switch positioning groove. The sealing plate pressing block is provided with a bottom metal plate mounting opening for mounting the bottom metal plate. The sealing plate pressing block is provided with a switch limiting clamping block clamped with the switch clamping groove. The bottom of the switch main seat is provided with a switch main seat hanging block. The crossbeam support comprises a crossbeam main body. The upper end of the crossbeam main body is vertically bent to form a crossbeam upper reinforcing part. The crossbeam upper reinforcing part is spaced apart and provided with a crossbeam positioning opening. The switch main seat hanging block is hung in the crossbeam positioning opening. The magnet is adsorbed on the crossbeam main body.
[0005] The side metal plate, the main switch base, the bottom metal plate, and the switch base sealing plate are all integrally injection molded.
[0006] The magnet includes a magnet positioning part and a magnet contact part placed in the magnet limiting groove, and the magnet limiting groove is provided with a magnet docking hole for the magnet contact part to pass through.
[0007] The main switch seat has a metal plate connection port on its side that corresponds to and communicates with the mounting port of the bottom metal plate.
[0008] The main switch seat and the switch seat cover are detachably installed together.
[0009] The advantages of this IoT-enabled soft starter cabinet are as follows: it adopts a switch main seat mounting block with magnetic attraction for quick mounting, which significantly simplifies the installation process. It allows the IoT switch seat device to slide freely and be positioned on the crossbeam support, making installation more flexible and position adjustment more convenient. The side metal plate and bottom metal plate form a closed metal shielding structure, which effectively prevents external electromagnetic interference. Attached Figure Description
[0010] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0011] Figure 1 This is a front view of the soft starter cabinet with Internet of Things of this utility model;
[0012] Figure 2 This is a front view of the IoT switch of this utility model;
[0013] Figure 3 This is a schematic diagram of the structure of the IoT switch socket device of this utility model;
[0014] Figure 4 This is an exploded view of the IoT switch socket device of this utility model;
[0015] Figure 5 This is a front structural diagram of the switch base of this utility model;
[0016] Figure 6 This is a schematic diagram of the structure of the switch base sealing plate of this utility model;
[0017] Figure 7 This is a schematic diagram of the back structure of the switch main body of this utility model;
[0018] Figure 8 This is a structural schematic diagram of the crossbeam support of this utility model;
[0019] Figure 9 This is a schematic diagram of the structure of the magnet of this utility model. Detailed Implementation
[0020] like Figures 1-9 As shown, the present invention relates to a soft starter cabinet with Internet of Things (IoT), comprising a soft starter cabinet body 1, horizontally spaced beam supports 2 within the soft starter cabinet body 1, a circuit breaker 3 mounted on the beam supports 2, a soft starter cabinet 4, an IoT switch base device 5, and an IoT switch 6 disposed within the IoT switch base device 5. The IoT switch 6 has external connection terminals 8 at its left and right ends, and a switch latching groove 9 at its bottom. The IoT switch base device 5 includes a main switch base 11 and a switch base sealing plate 12. The switch base 11 comprises a side metal plate 13, a bottom metal plate 14, and a magnet 15. A switch positioning groove 17 for inserting the IoT switch 6 is provided on the main switch base 11. Wiring clearance openings 18 for wiring the external terminal 8 of the switch are provided at the front and rear ends of the switch positioning groove 17. A magnet limiting groove 19 for mounting the magnet 15 is provided at the bottom of the switch positioning groove 17. A side metal plate mounting opening 20 for mounting the side metal plate 13 is provided on the side end of the main switch base 11. The switch base sealing plate 12 includes components that fit against the side of the main switch base 11. The sealing plate body 21 has a sealing plate pressure block 22 that fits against the bottom of the switch positioning groove 17. The sealing plate pressure block 22 has a bottom metal plate mounting opening 23 for mounting the bottom metal plate 14. The sealing plate pressure block 22 has a switch limiting block 24 that engages with the switch locking groove 9. The bottom upper end of the switch main seat 11 has a switch main seat hanging block 25. The crossbeam bracket 2 includes a crossbeam body 26. The upper end of the crossbeam body 26 is vertically bent to form an upper reinforcing part 27 of the crossbeam. The upper reinforcing part 27 is provided with crossbeam positioning holes 28 at intervals. The switch main seat hanging block 25 is hung in the crossbeam positioning hole 28, and the magnet 15 is attracted to the crossbeam body 26. The switch main seat hanging block 25 is used in conjunction with the magnet 15 for magnetic installation, which realizes quick hanging and significantly simplifies the installation process. It allows the IoT switch holder device 5 to slide and be positioned freely on the crossbeam bracket 2, making the installation more flexible and the position adjustment more convenient. The side metal plate 13 and the bottom metal plate 14 provide metal shielding to effectively prevent external electromagnetic interference.
[0021] The side metal plate 13, the main switch base 11, the bottom metal plate 14, and the switch base sealing plate 12 are all integrally injection molded, resulting in a more robust structure and improved shielding integrity.
[0022] The magnet 15 includes a magnet positioning part 30 and a magnet contact part 31 placed in the magnet limiting groove 19. The magnet limiting groove 19 is provided with a magnet docking hole 32 for the magnet contact part 31 to pass through. The magnet is installed stably and reliably and has strong adsorption capacity.
[0023] The switch main seat 11 has a metal plate connection port 33 on its side end that corresponds to the mounting port 23 of the bottom metal plate and communicates with the mounting port 20 of the side metal plate, forming a closed metal shielding structure, which further improves the shielding effect.
[0024] The main switch base 11 and the switch base cover plate 12 are detachably installed together, which facilitates the installation and removal of the IoT switch.
[0025] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model are included within the protection scope of the present utility model.
Claims
1. A soft starter cabinet with Internet of Things (IoT) integration, characterized in that: The device includes a soft starter cabinet (1), a horizontal beam support (2) spaced horizontally within the soft starter cabinet (1), a circuit breaker (3) mounted on the horizontal beam support (2), a soft starter cabinet (4), and an IoT switch holder device (5), and an IoT switch (6) located within the IoT switch holder device (5). The IoT switch (6) has external terminals (8) on its left and right ends, and a switch slot (9) at its bottom. The IoT switch holder device (5) includes a main switch base (11), a switch base sealing plate (12), a side metal plate (13), a bottom metal plate (14), and a magnet (15). The main switch base (11) has a switch positioning groove (17) for inserting the IoT switch (6). The front and rear ends of the switch positioning groove (17) have wiring clearance openings (18) for wiring the external terminals (8) of the switch. The bottom of the switch positioning groove (17) has a magnet limiting groove (19) for installing the magnet (15). The side ends of the main switch base (11) The switch base sealing plate (12) is provided with a side metal plate mounting opening (20) for mounting the side metal plate (13). The switch base sealing plate (12) includes a sealing plate body (21) that fits against the side of the switch base (11). The sealing plate body (21) is provided with a sealing plate pressing block (22) that fits against the bottom of the switch positioning groove (17). The sealing plate pressing block (22) is provided with a bottom metal plate mounting opening (23) for mounting the bottom metal plate (14). The sealing plate pressing block (22) is provided with a slot (9) for engaging with the switch. The switch limit block (24) is connected to the switch main seat (11). The bottom upper end of the switch main seat (11) is provided with a switch main seat hanging block (25). The crossbeam bracket (2) includes a crossbeam body (26). The upper end of the crossbeam body (26) is vertically bent to form a crossbeam upper reinforcement part (27). The crossbeam upper reinforcement part (27) is provided with crossbeam positioning holes (28) at intervals. The switch main seat hanging block (25) is hung in the crossbeam positioning hole (28). The magnet (15) is attracted to the crossbeam body (26).
2. The soft starter cabinet with IoT as described in claim 1, characterized in that: The side metal plate (13), the main switch seat (11), the bottom metal plate (14), and the switch seat cover plate (12) are all integrally injection molded.
3. The soft starter cabinet with IoT as described in claim 1, characterized in that: The magnet (15) includes a magnet positioning part (30) and a magnet contact part (31) placed in the magnet limiting groove (19). The magnet limiting groove (19) is provided with a magnet docking hole (32) for the magnet contact part (31) to pass through.
4. The soft starter cabinet with IoT as described in claim 1, characterized in that: The switch main seat (11) has a metal plate communication port (33) on its side end that corresponds to the bottom metal plate mounting port (23) and communicates with the side metal plate mounting port (20).
5. The soft starter cabinet with IoT as described in claim 1, characterized in that: The switch main seat (11) and the switch seat cover (12) are detachably installed together.