Modularized Internet of Things weak current system connector
The modular design and sensor-integrated connectors solve the problems of difficult wire replacement and easy damage to the display screen, enabling convenient replacement and protection functions.
Patent Information
- Application Number
- CN202422767761.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-13
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-11-13
AI Technical Summary
Modular IoT low-voltage system connectors are difficult to replace wires and difficult to protect the display screen. Existing connectors require frequent wire replacements during use and the display screen is easily damaged.
A modular connector for IoT low-voltage systems was designed, which adopts a snap-fit structure of fixing blocks and mounting blocks, combined with temperature sensors, current sensors and protective plates, to achieve convenient replacement of wires and protection of the display screen.
It achieves a stable connection between the wires and the plug, facilitates replacement, provides effective protection for the display screen, and improves the reliability and safety of the connector.
Smart Images

Figure CN223540010U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of Internet of Things (IoT) technology, and in particular to a modular IoT low-voltage system connector. Background Technology
[0002] Originating in the media field, the Internet of Things (IoT) represents the third revolution in the information technology industry. IoT refers to connecting any object to a network through information sensing devices and according to agreed-upon protocols. Objects exchange and communicate information through information transmission media to achieve functions such as intelligent identification, positioning, tracking, and monitoring. When using IoT, a modular IoT low-voltage system connector may be required. This connector is a device that connects different IoT devices together using wires. Low-voltage generally refers to DC circuits or audio, video, network, and telephone lines, with AC voltage typically below 36V.
[0003] While current modular connectors for IoT low-voltage systems can generally meet user needs, some issues still exist, as detailed below:
[0004] 1. The modular IoT low-voltage system connectors have the problem of difficult wire replacement. During use, both the wires and plugs need to be replaced frequently. The wires need to be replaced due to length issues, and different sockets require different plugs.
[0005] 2. The modular IoT low-voltage system connectors have difficulty protecting the display screen. The display screen may provide connectors, but the display screen may be easily bumped and damaged. Utility Model Content
[0006] The purpose of this invention is to provide a modular IoT low-voltage system connector to solve the shortcomings of existing modular IoT low-voltage system connectors, such as difficulty in replacing wires and difficulty in protecting the display screen.
[0007] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a modular IoT low-voltage system connector, including wires;
[0008] Fixing blocks are installed on both sides of the wire, and a connecting block is installed on one side of the fixing block. A plug is installed on one side of the connecting block, and mounting plates are installed at the top and bottom of the connecting block.
[0009] A mounting screw runs through one side of the mounting plate, a temperature sensor is mounted on one side of the connecting block, a current sensor is mounted on one side of the connecting block, a display screen is mounted on one end of the connecting block, and a protective structure is mounted on one end of the display screen.
[0010] A connecting structure is installed on one side of the connecting block, and the connecting structure includes a connecting rod, a lever, a buckle, and a mounting block. The mounting block is installed on one side of the connecting block, a connecting rod is installed on one side of the mounting block, and a lever is installed on one side of the connecting rod.
[0011] In use, the plug can first be inserted into the device's socket, allowing different devices to be connected together. The mounting screws and mounting plate form a threaded connection. The mounting screws can be tightened to secure the plug. The temperature sensor can detect problems with the plug, and the current sensor can detect whether there is leakage. The specific situation can be displayed on the screen.
[0012] Furthermore, the top and bottom ends of the connecting block are equipped with anti-slip structures, which include a sponge pad, an anti-slip plate, and a groove. The sponge pad is installed at the top and bottom ends of the connecting block, and the top and bottom ends of the sponge pad are equipped with anti-slip plates. The anti-slip plates and anti-slip grooves can enhance the anti-slip properties of the connecting block.
[0013] Furthermore, the top of the anti-slip plate is provided with a groove, and the grooves are arranged at equal intervals on the top of the anti-slip plate, which can enhance the friction of the anti-slip plate.
[0014] Furthermore, the protective structure includes a fixed plate, a rotating shaft, a rotating rod, and a protective plate. The fixed plate is installed at one end of the connecting block. The rotating shaft is movably connected to the inner side of the fixed plate, and a rotating rod is installed on one side of the rotating shaft. A protective plate is installed on one side of the rotating rod. The protective plate can protect the display screen.
[0015] Furthermore, a locking block is provided on one side of the protective plate, and a locking groove is provided at one end of the connecting block. The protective plate and the connecting block form a locking structure, which facilitates disassembly.
[0016] Furthermore, the outer sidewall of the mounting screw is uniformly provided with external threads, and the inner sidewall of the mounting plate is uniformly provided with internal threads that cooperate with the external threads. The mounting screw and the mounting plate are connected by threads, which can make the plug more stable.
[0017] Furthermore, the bottom end of the connecting rod is equipped with a buckle, and the buckles are symmetrically distributed about the central axis of the mounting block, so that the buckle can fix the fixing block.
[0018] The modular IoT low-voltage system connector provided by this utility model has the following advantages: the mounting block and fixing block on one side of the wire form a snap-fit structure, which can fix the wire and plug together by inserting the fixing block into the mounting block. The wire or plug can also be replaced when needed. The temperature sensor can detect problems with the plug, and the current sensor can detect whether there is leakage. The specific situation can be displayed on the display screen. The protective plate can protect the display screen and prevent damage to the display screen.
[0019] By installing fixing blocks on both sides of the wire, the fixing blocks and the mounting blocks form a locking structure. The fixing blocks can be inserted into the mounting blocks, connecting the wire and the connecting block together. The connecting rod can be made of a flexible metal material. The elasticity of the connecting block will cause the buckle to engage with the fixing block. The buckle can lock the fixing block in place, preventing it from falling off. When it is necessary to replace the wire or plug, the fixing block and the mounting block can be disassembled by pressing the lever, causing the buckle to no longer lock the fixing block, so that the wire or plug can be replaced. This achieves the purpose of modular IoT low-voltage system connectors that facilitate wire replacement.
[0020] By installing a fixing plate at one end of the connecting block, the rotating shaft inside the fixing plate can rotate. The rotation of the rotating shaft will drive the rotating rod to rotate, and the rotation of the rotating rod will drive the protective plate to rotate. The rotating protective plate will cover the surface of the display screen, thus protecting the display screen. The protective plate can be made of transparent plastic material, allowing the display screen to be seen through it. This achieves the purpose of modular IoT low-voltage system connectors to facilitate the protection of the display screen. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;
[0022] Figure 2 This is a frontal cross-sectional view of the present invention.
[0023] Figure 3 For the present utility model Figure 2 Enlarged cross-sectional view of point A in the middle section;
[0024] Figure 4 This is a three-dimensional structural diagram of the protective structure of this utility model;
[0025] Figure 5 This is a three-dimensional structural diagram of the anti-slip structure of this utility model.
[0026] The following are the annotations in the diagram: 1. Wire; 2. Connecting block; 3. Anti-slip structure; 301. Sponge pad; 302. Anti-slip plate; 303. Groove; 4. Display screen; 5. Protective structure; 501. Fixing plate; 502. Rotating shaft; 503. Rotating rod; 504. Protective plate; 6. Temperature sensor; 7. Current sensor; 8. Mounting screw; 9. Mounting plate; 10. Plug; 11. Connecting structure; 1101. Connecting rod; 1102. Toggle plate; 1103. Buckle; 1104. Mounting block; 12. Fixing block. Detailed Implementation
[0027] 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.
[0028] Please see Figures 1-5 One embodiment of this utility model is a modular IoT low-voltage system connector, including a wire 1.
[0029] Fixing blocks 12 are installed on both sides of the conductor 1, and a connecting block 2 is installed on one side of the fixing block 12. Anti-slip structures 3 are installed at the top and bottom of the connecting block 2. The anti-slip structure 3 includes a sponge pad 301, an anti-slip plate 302, and a groove 303. The sponge pad 301 is installed at the top and bottom of the connecting block 2. The anti-slip plate 302 is installed at the top and bottom of the sponge pad 301. A groove 303 is provided at the top of the anti-slip plate 302, and the grooves 303 are arranged at equal intervals at the top of the anti-slip plate 302.
[0030] See attached document Figure 1-2 and attached Figure 5 As shown, plug 10 can be inserted into the socket of the device, allowing different devices to be connected together. The mounting screw 8 and mounting plate 9 form a threaded connection. The mounting screw 8 can be tightened to secure plug 10. Temperature sensor 6 can detect problems with plug 10, and current sensor 7 can detect whether there is leakage. The specific situation can be displayed on display screen 4. Anti-slip plate 302 is installed on connecting block 2 through sponge pad 301. Groove 303 will enhance the friction of anti-slip plate 302, making connecting block 2 easier to grip.
[0031] A plug 10 is installed on one side of the connecting block 2, and mounting plates 9 are installed on both the top and bottom of the connecting block 2.
[0032] A mounting screw 8 passes through one side of the mounting plate 9. External threads are evenly provided on the outer side wall of the mounting screw 8, and internal threads that cooperate with the external threads are evenly provided on the inner side wall of the mounting plate 9. The mounting screw 8 and the mounting plate 9 are connected by threads.
[0033] A temperature sensor 6 is installed on one side of the connecting block 2, a current sensor 7 is installed on one side of the connecting block 2, a display screen 4 is installed on one end of the connecting block 2, and a protective structure 5 is installed on one end of the display screen 4. The protective structure 5 includes a fixed plate 501, a rotating shaft 502, a rotating rod 503, and a protective plate 504. The fixed plate 501 is installed on one end of the connecting block 2. The rotating shaft 502 is movably connected to the inner side of the fixed plate 501, and a rotating rod 503 is installed on one side of the rotating shaft 502. A protective plate 504 is installed on one side of the rotating rod 503. A locking block is provided on one side of the protective plate 504, and a locking groove is provided at one end of the connecting block 2. The protective plate 504 and the connecting block 2 form a locking structure.
[0034] See attached document Figure 1-2 and attached Figure 4 As shown, the rotating shaft 502 inside the fixed plate 501 can rotate. The rotation of the rotating shaft 502 will drive the rotating rod 503 to rotate. The rotation of the rotating rod 503 will drive the protective plate 504 to rotate. The rotating protective plate 504 will cover the surface of the display screen 4. The protective plate 504 can protect the display screen 4. The protective plate 504 can be made of transparent plastic material, and the display screen 4 can be seen through the protective plate 504.
[0035] A connecting structure 11 is installed on one side of the connecting block 2. The connecting structure 11 includes a connecting rod 1101, a lever 1102, a buckle 1103, and a mounting block 1104. The mounting block 1104 is installed on one side of the connecting block 2. The connecting rod 1101 is installed on one side of the mounting block 1104. The buckle 1103 is installed at the bottom end of the connecting rod 1101. The buckles 1103 are symmetrically distributed about the central axis of the mounting block 1104. The lever 1102 is installed on one side of the connecting rod 1101.
[0036] See attached document Figure 1-3 As shown, the fixing block 12 and the mounting block 1104 form a locking structure, which can lock the fixing block 12 into the mounting block 1104 to connect the wire 1 and the connecting block 2 together. The connecting rod 1101 can be made of a flexible metal material. The elasticity of the connecting block 2 will cause the buckle 1103 to lock into the fixing block 12. The buckle 1103 can lock the fixing block 12 to prevent the fixing block 12 from falling off. When it is necessary to replace the wire 1 or the plug 10, the fixing block 12 and the mounting block 1104 can be disassembled by pressing the lever 1102, which will cause the buckle 1103 to no longer lock the fixing block 12, so that the wire 1 or the plug 10 can be replaced.
[0037] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A modular IoT low-voltage system connector, comprising a wire (1); Its features are: Fixing blocks (12) are installed on both sides of the wire (1), and a connecting block (2) is installed on one side of the fixing block (12). A plug (10) is installed on one side of the connecting block (2), and mounting plates (9) are installed at the top and bottom of the connecting block (2). A mounting screw (8) runs through one side of the mounting plate (9), a temperature sensor (6) is installed on one side of the connecting block (2), a current sensor (7) is installed on one side of the connecting block (2), a display screen (4) is installed at one end of the connecting block (2), and a protective structure (5) is installed at one end of the display screen (4). A connecting structure (11) is installed on one side of the connecting block (2), and the connecting structure (11) includes a connecting rod (1101), a lever (1102), a buckle (1103) and a mounting block (1104). The mounting block (1104) is installed on one side of the connecting block (2), and the connecting rod (1101) is installed on one side of the mounting block (1104), and the lever (1102) is installed on one side of the connecting rod (1101).
2. The modular IoT low-voltage system connector according to claim 1, characterized in that: The top and bottom of the connecting block (2) are equipped with anti-slip structures (3). The anti-slip structure (3) includes a sponge pad (301), an anti-slip plate (302) and a groove (303). The sponge pad (301) is installed at the top and bottom of the connecting block (2). The top and bottom of the sponge pad (301) are equipped with anti-slip plates (302).
3. The modular IoT low-voltage system connector according to claim 2, characterized in that: The top of the anti-slip plate (302) is provided with a groove (303), and the grooves (303) are arranged at equal intervals on the top of the anti-slip plate (302).
4. A modular IoT low-voltage system connector according to claim 1, characterized in that: The protective structure (5) includes a fixed plate (501), a rotating shaft (502), a rotating rod (503), and a protective plate (504). The fixed plate (501) is installed at one end of the connecting block (2). The rotating shaft (502) is movably connected to the inner side of the fixed plate (501), and a rotating rod (503) is installed on one side of the rotating shaft (502). A protective plate (504) is installed on one side of the rotating rod (503).
5. A modular IoT low-voltage system connector according to claim 4, characterized in that: A locking block is provided on one side of the protective plate (504), and a locking groove is provided at one end of the connecting block (2). The protective plate (504) and the connecting block (2) form a locking structure.
6. A modular IoT low-voltage system connector according to claim 1, characterized in that: The mounting screw (8) has an external thread evenly distributed on its outer side wall, and the mounting plate (9) has an internal thread evenly distributed on its inner side wall that mates with the external thread. The mounting screw (8) and the mounting plate (9) are connected by threads.
7. A modular IoT low-voltage system connector according to claim 1, characterized in that: The bottom end of the connecting rod (1101) is equipped with a buckle (1103), and the buckles (1103) are symmetrically distributed about the central axis of the mounting block (1104).