Data line with suspension mechanism
By designing a suspension mechanism on the data cable and using an adjustment component to suspend and fix the data cable, the problem of the lack of a suspension device for the data cable is solved, improving neatness and extending its service life.
Patent Information
- Application Number
- CN202520227763.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-02-13
AI Technical Summary
The lack of hanging devices on existing data cables means that they can only be placed or tangled haphazardly during use, affecting neatness and potentially causing the cables to bend and be damaged, thus shortening their lifespan.
A data cable with a suspension mechanism was designed. The data cable can be suspended and fixed by adjusting components including a rotating plate, rollers, arc plate, anti-slip plate and knob. The data cable is suspended on the wall by the arched data coil, and the size of the coil can be adjusted for easy suspension.
It enables convenient hanging of data cables, keeps cables in good condition, extends service life, and reduces internal breakage or interface damage caused by tangling.
Smart Images

Figure CN223843290U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of data cable technology, and in particular to a data cable with a suspension mechanism. Background Technology
[0002] A data cable is a cable or connector used to transmit data and electrical energy. It is widely used for data interaction between electronic devices. A data cable is usually composed of a conductive core, an insulation layer, a shielding layer, and an outer protective layer. It can support a variety of communication protocols and is used to connect one device to another or a power source.
[0003] Existing data cables often lack hanging devices, and can only be placed or tangled haphazardly during use. This not only affects the neatness of the data cable, but may also cause the cable to bend and be damaged, shortening its lifespan.
[0004] Therefore, given that existing data cables typically lack hanging devices and can only be placed or tangled haphazardly during use, which not only affects the neatness of the data cables but may also lead to bending and damage, shortening their lifespan, a data cable with a hanging mechanism can be designed. With the addition of a hanging device, the data cable can be easily hung on a wall or other support, making it easy to access and maintaining the cable in good condition, thereby extending its lifespan and reducing internal breakage or interface damage caused by tangling. Utility Model Content
[0005] To overcome the problem that existing data cables often lack hanging devices, they can only be placed or tangled haphazardly during use, which not only affects the neatness of the data cables, but may also cause the cables to bend and be damaged, shortening their lifespan.
[0006] The technical solution of this utility model is as follows: a data cable with a suspension mechanism includes a frame and an adjustment component. The adjustment component is provided inside the frame and includes a rotating plate, rollers, an arc plate, an anti-slip plate, anti-slip grooves, a rotating column, and a knob. The rotating plate is rotatably connected inside the frame, and rollers are rotatably connected to the upper and lower ends of the rotating plate. Arc plates are slidably connected to the left and right sides inside the frame. Two arc plates are symmetrically arranged along the vertical center line of the frame. An anti-slip plate is connected to the end of the arc plate away from the vertical center line of the frame. Multiple anti-slip grooves are evenly spaced at the end of the anti-slip plate away from the arc plate. The rollers are movably connected to the arc plates. The front end of the rotating plate extends to the front end of the frame and is connected to a rotating column. A knob is connected to the front end of the rotating column.
[0007] Preferably, by setting an adjustment component, rotating the knob drives the rotating column to rotate, which in turn drives the rotating plate to rotate within the frame. The rotating plate drives the roller to press against the arc plate, causing the arc plate to slide within the frame, thereby pushing the anti-slip plate to press against the data cable and fix the data cable in place. The data cable is then hung on a hook on the wall by the loop formed by the arched data cable. The size of the loop can be adjusted by pulling the data cable as needed, thus facilitating the hanging of the data cable. This solves the problem that existing data cables usually lack hanging devices and can only be placed or tangled randomly during use, which not only affects the neatness of the data cable but may also cause the cable to bend and be damaged, shortening its service life.
[0008] Preferably, the data cable body is movably connected inside the frame, and protective shells are connected to both ends of the data cable body, with two protective shells provided.
[0009] Preferably, the protective case has an anti-collision pad connected to one end near the data cable body, and the anti-collision pad is movably connected to the frame.
[0010] Preferably, the outer end of the protective shell has a threaded groove, and a cap is threadedly connected to the outer end of the threaded groove.
[0011] Preferably, one end of the data cable body passes through the protective shell and is connected to a connector, while the other end of the data cable body passes through the protective shell and is connected to a power supply connector.
[0012] Preferably, the rotating column is rotatably connected to the frame, and the knob is rotatably connected to the frame.
[0013] Preferably, the outer surface of the data cable body is made of Kevlar fiber material.
[0014] The beneficial effects of this utility model are:
[0015] 1. By setting up an adjustment component, turning the knob drives the rotating column to rotate, which in turn drives the rotating plate to rotate within the frame. The rotating plate drives the rollers to press against the arc plate, causing the arc plate to slide within the frame. This pushes the anti-slip plate to press against the data cable, securing it in place. The data cable is then hung on a hook on the wall through the loop formed by the arched data cable. The size of the loop can be adjusted by pulling the data cable as needed, making it easier to hang the data cable. This solves the problem that existing data cables often lack hanging devices, and can only be placed or tangled haphazardly during use. This not only affects the neatness of the data cable, but may also lead to bending and damage to the cable, shortening its lifespan. Attached Figure Description
[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of the data cable with a suspension mechanism according to this utility model.
[0017] Figure 2 The diagram shown is a three-dimensional bottom view of the data cable with a suspension mechanism according to this utility model.
[0018] Figure 3 The diagram shown is a three-dimensional rear view of the data cable with a suspension mechanism according to this utility model.
[0019] Figure 4 The diagram shown is a three-dimensional cross-sectional view of the data cable with a suspension mechanism according to this utility model.
[0020] Explanation of reference numerals in the attached drawings: 1. Frame; 21. Rotating plate; 22. Roller; 23. Arc plate; 24. Anti-slip plate; 25. Anti-slip groove; 26. Rotating column; 27. Knob; 31. Data cable body; 32. Protective shell; 33. Anti-collision pad; 34. Threaded groove; 35. Cover; 36. Connector; 37. Power supply head. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please see Figures 1-4 This utility model provides an embodiment of a data cable with a suspension mechanism, including a frame 1 and an adjustment component. The adjustment component is located inside the frame 1 and includes a rotating plate 21, rollers 22, an arc plate 23, an anti-slip plate 24, anti-slip grooves 25, a rotating column 26, and a knob 27. The rotating plate 21 is dampedly connected inside the frame 1, and rollers 22 are rotatably connected to the upper and lower ends of the rotating plate 21. Arc plates 23 are slidably connected to the left and right sides inside the frame 1. Two arc plates 23 are symmetrically arranged around the vertical center line of the frame 1. An anti-slip plate 24 is connected to the end of the arc plate 23 away from the vertical center line. Multiple anti-slip grooves 25 are evenly spaced at the end of the anti-slip plate 24 away from the arc plate 23. The rollers 22 are movably connected to the arc plates 23. The front of the rotating plate 21... A rotating post 26 is connected to the front end of the frame 1. A knob 27 is connected to the front end of the rotating post 26. By setting an adjustment component, rotating the knob 27 causes the rotating post 26 to rotate. The rotating post 26 causes the rotating plate 21 to rotate inside the frame 1. The rotation of the rotating plate 21 causes the roller 22 to press the arc plate 23, causing the arc plate 23 to slide inside the frame 1, thereby pushing the anti-slip plate 24 to press the data cable and fix the data cable. The data cable is hung on the hook on the wall by the loop formed by the arched data cable. The size of the loop can be adjusted by pulling the data cable as needed, so that the data cable can be hung. This solves the problem that existing data cables usually lack a hanging device and can only be placed or tangled at will. This not only affects the neatness of the data cable, but may also cause the cable to bend and be damaged, shortening its service life.
[0023] Please see Figures 1-4In this embodiment, a data cable body 31 is movably connected inside the frame 1. Protective shells 32 are connected to both ends of the data cable body 31. There are two protective shells 32. The protective shells 32 are used to protect the data head. An anti-collision pad 33 is connected to the end of the protective shell 32 near the data cable body 31. The anti-collision pad 33 is movably connected to the frame 1. The anti-collision pad 33 prevents the frame 1 from hitting the protective shell 32 due to the data cable body 31 being pulled too fast. A threaded groove 34 is opened at the outer end of the protective shell 32. A cover 35 is threadedly connected to the outer end of the threaded groove 34. The cover 35 is connected to the threaded groove 34, thereby protecting the data head.
[0024] Please see Figures 2-4 In this embodiment, one end of the data cable body 31 passes through the protective shell 32 and is connected to a connector 36, and the other end of the data cable body 31 passes through the protective shell 32 and is connected to a power supply head 37. The power supply head 37 is connected to a power source, and the connector 36 is inserted into the electrical device for charging. The rotating post 26 is rotatably connected to the frame 1, and the knob 27 is rotatably connected to the frame 1. The knob 27 facilitates the adjustment of the length of the data cable body 31. The outer surface of the data cable body 31 is made of Kevlar fiber material. The data cable body 31 is movably connected to the anti-slip plate 24. Kevlar fiber material is very lightweight and has extremely high tensile strength, and is often used to enhance the tensile performance of data cables.
[0025] During operation, the knob 27 is turned, which drives the rotating column 26 to rotate. The rotating column 26 drives the rotating plate 21 to rotate within the frame 1. The rotation of the rotating plate 21 drives the roller 22 to press the arc plate 23, causing the arc plate 23 to slide within the frame 1. This pushes the anti-slip plate 24 to press the data cable body 31, thus fixing the data cable body 31 in place. The data cable body 31 is then suspended on a hook on the wall by the loop formed by the arched data cable body 31. The size of the loop can be adjusted by pulling the data cable body 31 as needed, making it easier to hang the data cable body 31. The data cable body 31, made of Kevlar fiber, is very lightweight and has extremely high tensile strength, often used to enhance the tensile performance of data cables. The anti-collision pad 33 prevents the data cable body 31 from being pulled too quickly, causing the frame 1 to collide with the protective shell 32. The cover 35 is opened, the power supply head 37 is connected to the power source, and the connector 36 is inserted into the electrical device for charging.
[0026] Through the above steps, by setting the adjustment component, rotating the knob 27 causes the rotating column 26 to rotate, which in turn causes the rotating plate 21 to rotate within the frame 1. The rotation of the rotating plate 21 causes the roller 22 to press against the arc plate 23, making the arc plate 23 slide within the frame 1. This pushes the anti-slip plate 24 to press against the data cable, fixing the data cable in place. The data cable is then suspended on a hook on the wall by the loop formed by the arched data cable. The size of the loop can be adjusted by pulling the data cable as needed, making it easier to hang the data cable. This solves the problem that existing data cables usually lack a hanging device and can only be placed or tangled randomly during use. This not only affects the neatness of the data cable but may also cause the cable to bend and be damaged, shortening its service life.
Claims
1. A data cable with a suspension mechanism, comprising a frame (1); characterized in that: It also includes an adjustment component. The frame (1) is equipped with an adjustment component, which includes a rotating plate (21), rollers (22), an arc plate (23), an anti-slip plate (24), an anti-slip groove (25), a rotating column (26), and a knob (27). The frame (1) is internally damped and connected to the rotating plate (21). The upper and lower ends of the rotating plate (21) are rotatably connected to the rollers (22). The left and right sides of the frame (1) are slidably connected to the arc plate (23). 23) Two anti-slip plates (24) are symmetrically arranged on the vertical center line of the frame (1). The end of the arc plate (23) away from the vertical center line of the main body is connected to the anti-slip plate (24). The end of the anti-slip plate (24) away from the arc plate (23) is provided with multiple anti-slip grooves (25) at equal intervals. The roller (22) is movably connected to the arc plate (23). The front end of the rotating plate (21) extends to the front end of the frame (1) and is connected to the rotating column (26). The front end of the rotating column (26) is connected to the knob (27).
2. The data cable with a suspension mechanism according to claim 1, characterized in that: The data cable body (31) is movably connected inside the frame (1). The two ends of the data cable body (31) are connected to protective shells (32). There are two protective shells (32).
3. The data cable with a suspension mechanism according to claim 2, characterized in that: The protective shell (32) has a shock-absorbing pad (33) connected to one end of the data cable body (31), and the shock-absorbing pad (33) is movably connected to the frame (1).
4. The data cable with a suspension mechanism according to claim 3, characterized in that: The outer end of the protective shell (32) is provided with a threaded groove (34), and the outer end of the threaded groove (34) is threadedly connected to a cover (35).
5. The data cable with a suspension mechanism according to claim 4, characterized in that: One end of the data cable body (31) passes through the protective shell (32) and is connected to a connector (36), while the other end of the data cable body (31) passes through the protective shell (32) and is connected to a power supply connector (37).
6. The data cable with a suspension mechanism according to claim 1, characterized in that: The rotating column (26) is rotatably connected to the frame (1), and the knob (27) is rotatably connected to the frame (1).
7. The data cable with a suspension mechanism according to claim 2, characterized in that: The outer surface of the data cable body (31) is made of Kevlar fiber material, and the data cable body (31) is movably connected to the anti-slip plate (24).