Temperature and humidity monitoring device for intelligent microcomputer five-prevention lockset of switch cabinet
The design of the transmission components simplifies the installation process of the temperature and humidity monitoring device in the switch cabinet, solves the installation problem in the limited space inside the switch cabinet, and achieves efficient and stable temperature and humidity monitoring.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NANJING HAOBO LANNENG POWER TECH CO LTD
- Filing Date
- 2025-04-16
- Publication Date
- 2026-04-24
AI Technical Summary
The installation of existing temperature and humidity monitoring devices is complex and difficult due to the limited installation space inside the switch cabinet, and it is hard to find suitable installation points near critical electrical components or areas with good air circulation.
A temperature and humidity monitoring device including a transmission assembly was designed. By combining components such as a transmission box, a rotating block, a transmission rod, a rotating frame, a fixed frame, and a rotating column, the extension length of the fixed block is adjustable, simplifying the installation process.
This greatly reduces the complexity and difficulty of installation, saves installation time and effort, ensures the stability and reliability of the device, and improves installation efficiency.
Smart Images

Figure CN224164522U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of temperature and humidity monitoring equipment, specifically a temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for switch cabinets. Background Technology
[0002] With the continuous growth of electricity demand and the accelerated pace of power grid intelligence, the refined management of the operating environment of switchgear is becoming increasingly important. Ambient temperature has a significant impact on the performance of electrical components. Different electrical components, such as relays, contactors, and circuit boards, have their own suitable operating temperature ranges. In high-temperature environments, the heat dissipation burden on electronic components increases, which may lead to accelerated component aging, shortened lifespan, or even thermal breakdown, directly threatening the reliability of the power system. In low-temperature environments, some grease-based lubricants may solidify, hindering the flexibility of mechanical parts and causing operational malfunctions. Therefore, temperature and humidity detectors are needed to monitor the component status in real time.
[0003] From the perspective of installation location selection, due to the complex internal structure of switchgear and the compact layout of various electrical components and wiring, the ideal installation points for temperature and humidity monitoring devices are extremely limited. Typically, to accurately measure the temperature and humidity environment inside the switchgear, the device needs to be installed near critical electrical components or in an area with relatively good air circulation. However, these locations often conflict with the space of other equipment, forcing installers to carefully adjust the angle and avoid obstacles, expending considerable time and effort to find a suitable installation method. This undoubtedly increases the complexity and difficulty of the installation process. Utility Model Content
[0004] The purpose of this utility model is to provide a temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for switch cabinets, so as to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for switch cabinets, comprising:
[0006] Temperature and humidity detector body;
[0007] A transmission assembly is housed within the temperature and humidity detector body. The transmission assembly includes a transmission box fixedly connected to the temperature and humidity detector body, a rotating block slidably connected to the transmission box, a transmission rod slidably connected to the rotating block, a rotating frame fixedly connected to the transmission rod, a fixed frame slidably connected to the rotating frame, a rotating column fixedly connected to the rotating block, the rotating column being threadedly connected to the fixed frame, and a pressing block fixedly connected to the rotating column, the pressing block being slidably connected to the fixed block.
[0008] Furthermore, the transmission box has an opening, and the fixing block is slidably connected to the opening on the transmission box.
[0009] The above technical solution is adopted: by opening a hole in the transmission box, it is easy for the fixed block to slide in it during use.
[0010] Furthermore, the transmission box is fixedly connected to the body of the temperature and humidity detector.
[0011] By adopting the above technical solution, the transmission box can be fixedly connected to the temperature and humidity detector body, thus preventing displacement of the transmission box during use.
[0012] Furthermore, a limiting hole is provided on the rotating block, and a limiting block is slidably connected in the limiting hole on the rotating block, and the limiting block is fixedly connected to the transmission rod.
[0013] The above technical solution is adopted: by setting a limit block and fixing it to the transmission rod, the transmission rod is prevented from falling off during use.
[0014] Furthermore, the transmission box has an opening, and the rotating block is slidably connected to the opening on the transmission box.
[0015] The above technical solution is adopted: by opening a hole in the transmission box, the transmission block can slide in it during use.
[0016] Furthermore, a sliding groove is provided on the fixed frame, and the rotating frame is slidably connected to the sliding groove on the fixed frame.
[0017] The above technical solution involves setting a sliding groove on the fixed frame to facilitate the sliding of the rotating frame within it.
[0018] Furthermore, the temperature and humidity detector body is threaded with bolts.
[0019] The above technical solution is adopted: by threading bolts on the temperature and humidity detector body, foam is inserted into the threaded hole on the temperature and humidity sensor during use to avoid damage to the temperature and humidity sensor body during transportation.
[0020] Compared with the prior art, the advantages and positive effects of this utility model are as follows:
[0021] In this invention, during installation, simply turn the rotating frame. The rotating frame rotates on the fixed frame, and its movement is transmitted to the rotating block via the transmission rod, causing the rotating block to slide on the transmission box. The rotating block drives the rotating column to rotate on the fixed frame. Since the rotating column is threadedly engaged with the fixed frame, the rotating column will slide on the fixed frame towards the side closer to the temperature and humidity detector body, thereby driving the pressing block to press the fixed block, causing the fixed block to slide outward. After that, the bolts can be screwed in to fix the device. The extension length of the fixed block is adjustable. This transmission method eliminates the need to carefully adjust the angle and avoid obstacles inside the complex switch cabinet to find a suitable installation method, as was done in the past. It greatly reduces the time and effort spent by installers in determining the installation position and lowers the complexity and difficulty of installation. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the overall structure of a temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for a switch cabinet.
[0023] Figure 2 This is a schematic diagram showing the location of the transmission box of a smart microcomputer-based five-proof lock for a switch cabinet.
[0024] Figure 3 This is a schematic diagram of the rotating column position of a smart microcomputer-based five-proof lock for a switch cabinet.
[0025] Figure 4 This is a schematic diagram showing the position of the fixing block of a smart microcomputer-based five-proof lock for a switch cabinet.
[0026] Numbering on the map:
[0027] 1. Temperature and humidity detector body;
[0028] 2. Transmission assembly; 21. Transmission box; 22. Rotating block; 23. Transmission rod; 24. Rotating column; 25. Fixed frame; 26. Rotating frame; 27. Fixed block; 28. Pressing block;
[0029] 3. Limit block. Detailed Implementation
[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example
[0031] like Figures 1-4 As shown, this utility model provides a technical solution: a temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for switch cabinets, comprising:
[0032] Temperature and humidity detector body 1;
[0033] The transmission assembly 2 is placed inside the temperature and humidity detector body 1. The transmission assembly 2 includes a transmission box 21 fixedly connected to the temperature and humidity detector body 1. A rotating block 22 is slidably connected to the transmission box 21. A transmission rod 23 is slidably connected to the rotating block 22. A rotating frame 26 is fixedly connected to the transmission rod 23. A fixed frame 25 is slidably connected to the rotating frame 26. A rotating column 24 is fixedly connected to the rotating block 22. The rotating column 24 is threadedly connected to the fixed frame 25. A pressing block 28 is fixedly connected to the rotating column 24. The pressing block 28 is slidably connected to the fixed block 27.
[0034] In this invention, during installation, simply turn the rotating frame 26. The rotating frame 26 rotates on the fixed frame 25, and its movement is transmitted to the rotating block 22 through the transmission rod 23, causing the rotating block 22 to slide on the transmission box 21. The rotating block 22 drives the rotating column 24 to rotate on the fixed frame 25. Since the rotating column 24 is threadedly engaged with the fixed frame 25, the rotating column 24 will slide on the fixed frame 25 towards the side closer to the temperature and humidity detector body 1, thereby driving the pressing block 28 to press the fixed block 27, causing the fixed block 27 to slide outward. After that, the bolt can be screwed in to fix the device. The extension length of the fixed block 27 is adjustable. This transmission method eliminates the need to carefully adjust the angle and avoid obstacles inside the complex switch cabinet to find a suitable installation method, as was done in the past. It greatly reduces the time and effort spent by installers in determining the installation position and reduces the complexity and difficulty of installation.
[0035] The transmission box 21 has an opening, and the fixing block 27 is slidably connected in the opening on the transmission box 21. The opening on the transmission box 21 provides a sliding space path for the fixing block 27, which makes it easy for the fixing block 27 to slide flexibly in the opening during use. This allows the fixing block 27 to extend or retract smoothly under the action of the transmission component 2, thereby realizing the fixing or disassembly of the device and the switch cabinet and ensuring the feasibility of installation and disassembly operations.
[0036] The transmission box 21 is fixedly connected to the temperature and humidity detector body 1. Fixing the transmission box 21 to the temperature and humidity detector body 1 provides a stable installation foundation for the transmission box 21. During use, it can prevent the transmission box 21 from shifting during the operation of the device, and ensure that each transmission component (such as the rotating block 22) in the transmission box 21 can be transmitted according to the predetermined trajectory and method. This ensures the stability and reliability of the entire transmission assembly 2, and thus ensures that the temperature and humidity monitoring device can function normally.
[0037] A limiting hole is provided on the rotating block 22, and a limiting block 3 is slidably connected in the limiting hole on the rotating block 22. The limiting block 3 is fixedly connected to the transmission rod 23. The limiting hole on the rotating block 22 and the limiting block 3, which is slidably connected to it and fixed to the transmission rod 23, constitute a limiting structure for the transmission rod 23. In use, the limiting block 3 slides in the limiting hole, which can guide the movement direction of the transmission rod 23 and prevent the transmission rod 23 from falling off the rotating block 22 during movement. This ensures the stability of the transmission relationship between the transmission rod 23 and the rotating block 22, so that the rotation of the rotating block 22 can be effectively transmitted to the transmission rod 23, thereby realizing the normal operation of the entire transmission assembly 2.
[0038] The transmission box 21 has an opening, and the rotating block 22 is slidably connected to the opening in the transmission box 21. The opening in the transmission box 21 provides a sliding track for the rotating block 22, allowing it to slide smoothly within it during use. When the rotating frame 26 drives the rotating block 22 to move via the transmission rod 23, the rotating block 22 can stably change position within the opening, thereby driving the rotating column 24 and other components to move, realizing the function of the entire transmission assembly 2. It is a key motion guiding structure in the transmission process.
[0039] The fixed frame 25 has a sliding groove, and the rotating frame 26 is slidably connected to the sliding groove on the fixed frame 25. The sliding groove on the fixed frame 25 provides sliding space for the rotating frame 26, which can slide flexibly in it. During installation, by turning the rotating frame 26, the rotating frame 26 rotates and slides in the sliding groove, thereby driving the transmission rod 23 and other components to move. It is an important structure to realize the function of the transmission component 2 and ensures the stability and controllability of the movement of the rotating frame 26.
[0040] The temperature and humidity detector body 1 is threaded with bolts. These bolts serve two purposes: firstly, they secure the temperature and humidity detector body 1 to the installation location, such as a switch cabinet; secondly, by inserting foam into the threaded holes on the temperature and humidity sensor during use, foam cushions and protects the sensor body from damage caused by vibration or other factors, ensuring the safety of the device during transportation.
[0041] Working principle: such as Figures 1-4As shown, when installing the temperature and humidity sensor body 1, first place the temperature and humidity sensor body 1 in the designated position of the switch cabinet, turn the rotating frame 26 to make the rotating frame 26 rotate on the fixed frame 25, the transmission rod 23 drives the rotating block 22 to rotate, so that the rotating block 22 slides on the transmission box 21, the rotating block 22 drives the rotating column 24 to rotate on the fixed frame 25. Since the rotating column 24 is threadedly engaged with the fixed frame 25, the rotating column 24 will be driven to slide on the fixed frame 25 towards the side closer to the temperature and humidity sensor body 1, so that the pressing block 28 presses the fixed block 27, so that the fixed block 27 is driven to slide outward. At this time, the device can be fixed by screwing in the bolt on the fixed block 27.
Claims
1. A temperature and humidity monitoring device for a smart microcomputer-controlled five-proof lock for a switch cabinet, characterized in that, include: Temperature and humidity detector body (1); The transmission assembly (2) is placed inside the temperature and humidity detector body (1). The transmission assembly (2) includes a transmission box (21) fixedly connected to the temperature and humidity detector body (1). A rotating block (22) is slidably connected to the transmission box (21). A transmission rod (23) is slidably connected to the rotating block (22). A rotating frame (26) is fixedly connected to the transmission rod (23). A fixed frame (25) is slidably connected to the rotating frame (26). A rotating column (24) is fixedly connected to the rotating block (22). The rotating column (24) is threadedly connected to the fixed frame (25). A pressing block (28) is fixedly connected to the rotating column (24). The pressing block (28) is slidably connected to the fixed block (27).
2. The temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for a switch cabinet according to claim 1, characterized in that: The transmission box (21) has an opening, and the fixing block (27) is slidably connected in the opening on the transmission box (21).
3. The temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for a switch cabinet according to claim 1, characterized in that: The transmission box (21) is fixedly connected to the body (1) of the temperature and humidity detector.
4. The temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for a switch cabinet according to claim 1, characterized in that: The rotating block (22) has a limiting hole, and a limiting block (3) is slidably connected in the limiting hole of the rotating block (22). The limiting block (3) is fixedly connected to the transmission rod (23).
5. The temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for a switch cabinet according to claim 4, characterized in that: The transmission box (21) has an opening, and the rotating block (22) is slidably connected in the opening on the transmission box (21).
6. The temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for a switch cabinet according to claim 1, characterized in that: The fixed frame (25) is provided with a sliding groove, and the rotating frame (26) is slidably connected in the sliding groove on the fixed frame (25).
7. The temperature and humidity monitoring device for a smart microcomputer-based five-proof lock for a switch cabinet according to claim 1, characterized in that: The temperature and humidity detector body (1) is threaded with bolts.