A multi-angle adjustable network cable connector
By designing a multi-angle adjustable network cable connector, the problem of inconvenient connection of traditional network cable connectors in different spatial positions and angles is solved, thereby improving stability and convenience and extending the service life of the signal cable.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN KAIWELL ELECTRONICS CO LTD
- Filing Date
- 2025-07-31
- Publication Date
- 2026-07-31
AI Technical Summary
Traditional network cable connectors have a fixed structure, making it difficult to connect effectively in different spatial positions and angles. They are especially inconvenient to bend in narrow spaces, affecting the stability and convenience of network connections.
A multi-angle adjustable network cable connector was designed. Through the interference fit and arc structure between the connector and the plug, combined with the limiting protrusion and the clamping spring, the plug and connector can rotate 180 degrees, ensuring the stable fixation and protection of the signal line.
It achieves stable connection of network cable connectors at different angles, improves the convenience of network connection and the service life of signal cables, reduces the bending angle of signal cables, and enhances the protection effect of signal cables.
Smart Images

Figure CN224582564U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of network cable connector technology, and in particular to a network cable connector that can be adjusted at multiple angles. Background Technology
[0002] In today's information age, network communication technology is developing rapidly, and network connectivity has become an indispensable part of people's daily lives and work. As a crucial carrier of network transmission, the performance of network cable connectors directly affects the stability and convenience of network connections. In practical applications, network cable connectors often need to be connected in various spatial locations and angles, such as behind computer hosts, around routers, and inside server racks—complex environments. Traditional network cable connectors, due to their fixed structure, rely on the bending angle of the network cable itself. However, network cables are generally quite flexible, with limited bending angles, making it inconvenient to bend them at right angles in confined spaces. Utility Model Content
[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a network cable connector that can be adjusted at multiple angles, effectively solving the deficiencies of the prior art.
[0004] The purpose of this utility model is achieved through the following technical solution: a multi-angle adjustable network cable connector, including a connector body and a plug. A connecting groove is formed in the middle of one side of the connector body. A connector head is fixedly connected to the middle of one side of the plug. The connector head is rotatably connected to the middle of one side of the inner wall of the connecting groove. A cavity is formed in the inner wall of the connector head. A connecting hole is formed at the center of both sides of the inner wall of the cavity. A connecting cylinder shaft is fixedly connected to the center of both sides of the inner wall of the connecting groove. The two connecting cylinder shafts are rotatably connected to the two connecting holes respectively. A cable routing channel is formed on both sides of the inner wall of the connector body. The cable routing channel communicates with the inner walls of the two connecting cylinder shafts. A plurality of signal lines are connected to one end of the plug. The plurality of signal lines pass through the cable routing channel through the two connecting cylinder shafts. The plurality of signal lines pass out from the center of one end of the connector body. A network cable sleeve is wrapped around one side of the outer wall of the connector body after the plurality of signal lines pass through. One end of the network cable sleeve is fixedly connected to the center of one end of the outer wall of the connector body.
[0005] Preferably, in any of the above solutions, the width of the connector is adapted to the width of the inner wall of the connecting groove, the thickness of the connector is adapted to the thickness of the connector body, and the connector is interference-fitted with the inner wall of the connecting groove.
[0006] The technical effect achieved by adopting the above solution is that the interference fit can improve the pre-fixing force after rotation and facilitate angle adjustment.
[0007] Preferably, in any of the above solutions, the end of the connector near the plug is an arc-shaped structure, and the end of the connector near the connector is also an arc-shaped structure.
[0008] The technical effect achieved by adopting the above solution is that the arc structure allows for smooth rotation and prevents obstruction and interference.
[0009] Preferably, in any of the above embodiments, the outer wall of the arc structure of the connector is fixedly connected with several limiting protrusions, and two clamping springs are symmetrically fixedly connected on both sides of the inner wall of the connecting groove away from the connector. The ends of the two clamping springs are arc structures, and the arc portions of the two clamping springs respectively clamp the two sides of the limiting protrusions.
[0010] The technical effect achieved by the above solution is that when rotating, several limiting protrusions can be guided to compress and push open the clamping springs with the rotation, and then be inserted between the two clamping springs to achieve elastic clamping and fixing, which facilitates pre-fixing after angle rotation and improves the stability after adjustment.
[0011] Preferably, in any of the above schemes, several signal lines are evenly distributed and pass through the inner wall of the connecting cylinder shaft on both sides into the interior of the wiring channel.
[0012] The technical effect achieved by adopting the above scheme is to make the signal lines run symmetrically on both sides, so as to balance the rotational resistance on both sides.
[0013] This utility model has the following advantages:
[0014] 1. This multi-angle adjustable network cable connector, through the connection hole and the connection cylinder shaft, allows the plug and connector to rotate 180 degrees, so that the network cable sleeve and signal cable can be rotated downward or upward to a position parallel to the chassis, thereby effectively fitting the chassis for installation, allowing the chassis back panel to fully fit against the wall, improving convenience.
[0015] 2. This multi-angle adjustable network cable connector allows the signal cable to pass through the connecting hole and the connecting cylinder shaft, allowing the signal cable to be stored inside the rotating structure, improving the protection effect. At the same time, the connection through the connecting cylinder shaft allows the rotation center of the signal cable to coincide with the rotation center of the plug and the connector, thereby reducing the axial spiral twist of the signal cable, reducing the folding angle, and increasing its service life. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the internal structure of the present invention;
[0018] Figure 3 This utility model Figure 2 Schematic diagram of the cross-sectional structure at point AA.
[0019] In the diagram: 1-Connector, 2-Plug, 3-Connecting slot, 4-Connector head, 5-Network cable sleeve, 6-Signal line, 7-Cavity, 8-Connecting hole, 9-Connecting cylinder shaft, 10-Cable routing channel, 11-Pressure spring, 12-Limiting protrusion. Detailed Implementation
[0020] The present invention will be further described below with reference to the accompanying drawings, but the scope of protection of the present invention is not limited to the following description.
[0021] like Figures 1 to 3 As shown, a multi-angle adjustable network cable connector includes a connector body 1 and a plug 2. A connecting groove 3 is provided in the middle of one side of the connector body 1. A connector head 4 is fixedly connected to the middle of one side of the plug 2. The connector head 4 is rotatably connected to the middle of one side of the inner wall of the connecting groove 3. A cavity 7 is provided in the inner wall of the connector head 4. A connecting hole 8 is provided at the center of both sides of the inner wall of the cavity 7. A connecting cylinder shaft 9 is fixedly connected to the center of both sides of the inner wall of the connecting groove 3. The two connecting cylinder shafts 9 are rotatably connected to the two connecting holes 8 respectively. Cable routing channels 10 are provided on both sides of the inner wall of the connector body 1. The cable routing channels 10 communicate with the inner walls of the two connecting cylinder shafts 9. A number of signal lines 6 are connected to one end of the plug 2. The signal lines 6 pass through the cable routing channels 10 through the two connecting cylinder shafts 9. The signal lines 6 pass out from the center of one end of the connector body 1. A network cable sleeve 5 is wrapped around the outside of one side of the outer wall of the connector body 1. One end of the network cable sleeve 5 is fixedly connected to the center of one end of the outer wall of the connector body 1.
[0022] As an optional technical solution of this utility model: the width of the connector 4 is adapted to the width of the inner wall of the connecting groove 3, the thickness of the connector 4 is adapted to the thickness of the connector 1, and the connector 4 and the inner wall of the connecting groove 3 are interference fit. The interference fit can improve the pre-fixing force after rotation and facilitate angle adjustment.
[0023] As an optional technical solution of this utility model: the end of the connector 1 near the plug 2 is an arc structure, and the end of the connector 4 near the connector 1 is also an arc structure. The arc structure can make the rotation smooth and prevent obstruction and interference.
[0024] As an optional technical solution of this utility model: the outer wall of the arc structure of the connector 4 is fixedly connected with several limiting protrusions 12, and two clamping springs 11 are symmetrically fixedly connected on both sides of the inner wall of the connecting groove 3 away from the connector 4. The ends of the two clamping springs 11 are arc structures, and the arc parts of the two clamping springs 11 respectively clamp the two sides of the limiting protrusions 12. When rotating, the several limiting protrusions 12 can be guided to compress and push the clamping springs 11 open with the rotation, and then be inserted between the two clamping springs 11 to achieve elastic clamping and fixing, which facilitates pre-fixing after angle rotation and improves the stability after adjustment.
[0025] As an optional technical solution of this utility model: several signal lines 6 are evenly distributed and pass through the inner wall of the connecting cylinder shaft 9 on both sides into the wiring channel 10, so that the signal lines 6 are symmetrically routed on both sides, and the rotational resistance on both sides is balanced.
[0026] The working process of this utility model is as follows: When the user uses it...
[0027] 1) The plug 2 and the connector 1 can rotate 180 degrees by connecting the connector hole 8 to the connector shaft 9;
[0028] 2) When rotating, several limiting protrusions 12 can be guided to compress and push open the clamping spring 11 with the rotation, and then be inserted between two clamping springs 11 to achieve elastic clamping and fixing, which facilitates pre-fixing after angle rotation and improves stability after adjustment.
[0029] In summary, this utility model allows the plug 2 and the connector 1 to rotate 180 degrees through the connection hole 8 and the connecting cylinder shaft 9. This allows the network cable sleeve 5 and the signal cable 6 to rotate downwards or upwards to a position parallel to the chassis, effectively fitting the chassis for installation and ensuring the chassis back panel fits snugly against the wall, improving convenience. The connection hole 8 and the connecting cylinder shaft 9 also allow the signal cable to pass through and be stored inside the rotating structure, improving protection. Furthermore, the connection through the connecting cylinder shaft 9 ensures that the rotation center of the signal cable coincides with the rotation center of the plug 2 and the connector 1, reducing the axial spiral bending of the signal cable 6, lowering the bending angle, and extending its service life.
[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A multi-angle adjustable network cable connector, characterized by: The device includes a connector (1) and a plug (2). A connecting groove (3) is formed in the middle of one side of the connector (1). A connector head (4) is fixedly connected to the middle of one side of the plug (2). The connector head (4) is rotatably connected to the middle of one side of the inner wall of the connecting groove (3). A cavity (7) is formed in the inner wall of the connector head (4). Connecting holes (8) are formed at the center of both sides of the inner wall of the cavity (7). Connecting cylinder shafts (9) are fixedly connected to the center of both sides of the inner wall of the connecting groove (3). The two connecting cylinder shafts (9) are rotatably connected to the two connecting holes (8) respectively. Both sides of the inner wall of the connector (1) are provided with wiring channels (10). The wiring channels (10) are connected to the inner walls of the two connecting cylinder shafts (9). One end of the plug (2) is connected to several signal lines (6). The signal lines (6) pass through the wiring channels (10) through the two connecting cylinder shafts (9). The signal lines (6) pass out from the center of one end of the connector (1). The signal lines (6) pass out from one side of the outer wall of the connector (1) and are wrapped with a network cable sleeve (5). One end of the network cable sleeve (5) is fixedly connected to the center of one end of the outer wall of the connector (1).
2. A multi-angle adjustable network connector as claimed in claim 1, wherein: The width of the connector (4) is adapted to the width of the inner wall of the connecting groove (3), the thickness of the connector (4) is adapted to the thickness of the connector (1), and the connector (4) is interference-fitted with the inner wall of the connecting groove (3).
3. The multi-angle adjustable network connector of claim 1, wherein: The end of the connector (1) near the plug (2) is an arc structure, and the end of the connector (4) near the connector (1) is also an arc structure.
4. The multi-angle adjustable network connector of claim 1, wherein: The outer wall of the arc structure of the connector (4) is fixedly connected with several limiting protrusions (12). The inner wall of the connecting groove (3) is symmetrically fixedly connected with two clamping springs (11) on the side away from the connector (4). The ends of the two clamping springs (11) are arc structures, and the arc parts of the two clamping springs (11) respectively clamp the two sides of the limiting protrusions (12).
5. The multi-angle adjustable network connector of claim 1, wherein: Several of the signal lines (6) are bisected and pass through the inner wall of the connecting cylinder shaft (9) on both sides into the interior of the wiring channel (10).