Data line with pulling resistance
By employing a multi-layered structure and reinforced components, the design enhances the data cable's tensile strength and structural rigidity, resolving the issue of breakage during pulling and improving its lifespan and range.
Patent Information
- Application Number
- CN202422433492.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-10-09
AI Technical Summary
Existing data cables are prone to breakage when stretched, resulting in reduced lifespan and range.
The cable features a multi-layered structure design, including conductive wires, a PET insulating sheath, a tensile layer, a buffer filler, a PVC waterproof layer, a wear-resistant rubber layer, and a steel wire rope. Combined with a protective shell for reinforcing components and flame-retardant silicone, it enhances the tensile strength and structural strength of the data cable.
It improves the tensile strength of the data cable, reduces the risk of breakage, and extends its service life and application range.
Smart Images

Figure CN223514314U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of data cable technology, specifically to a data cable with tensile strength. Background Technology
[0002] Data cables are used for connecting and communicating between computers and external devices. They can also be used for charging mobile phones and connecting them to external devices. In simple terms, they are used for data transfer and charging. With the rapid development of computer hardware, the application of data cables has increased the speed of data transfer between external devices. The biggest benefit of increased speed for users is that they can use more efficient external devices. Depending on the interface and type of data cable, supported devices include: mice, keyboards, printers, scanners, cameras, flash drives, MP3 players, mobile phones, digital cameras, external hard drives, external optical drives, USB network cards, and other electronic products.
[0003] However, existing data cables are prone to breakage when stretched due to insufficient structural strength, rendering them unusable and reducing their lifespan and range. Therefore, we have proposed a data cable with tensile strength to solve the above-mentioned problems. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a data cable with tensile strength, which solves the problem that due to insufficient structural strength, the data cable is prone to breakage when stretched, rendering it unusable and reducing its lifespan and range.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a data cable with tensile strength, comprising a data cable body, the data cable body including a connecting wire, both ends of the connecting wire being connected to USB plugs, and a reinforcing component covering one side of each USB plug and located on the outer wall of one end of the connecting wire.
[0006] Preferably, the connecting wire includes a conductive wire, and multiple conductive wires are provided, and the multiple conductive wires are arranged in a ring array. Each conductive wire is provided with a PET insulating sleeve on its outer wall, and a tensile layer is provided on the outside of the multiple PET insulating sleeves.
[0007] A buffer filler is provided between the tensile layer and the plurality of PET insulating sleeves, a PVC waterproof layer is provided on the outer wall of the tensile layer, and a wear-resistant rubber layer is provided on the outer wall of the PVC waterproof layer.
[0008] Preferably, the connecting line further includes a steel wire rope, which is disposed at the center of the plurality of conductive lines.
[0009] Preferably, the tensile layer is woven from a first tensile fiber and a second tensile fiber.
[0010] Preferably, the buffer filler is made of silicone material.
[0011] Preferably, the reinforcing component includes a protective shell disposed on the outer wall of the USB plug, one end of the USB plug has a through hole for inserting one end of the connecting cable, and flame-retardant silicone is filled between the inner cavity of the protective shell and the outer wall of the USB plug.
[0012] Preferably, the top and bottom of the outer wall of the protective shell are integrally formed with reinforcing ribs, and multiple reinforcing ribs are provided.
[0013] Beneficial effects
[0014] This invention provides a data cable with tensile strength. Compared with the prior art, it has the following advantages:
[0015] Beneficial effects:
[0016] This tensile-resistant data cable connects USB plugs and transmits signals via a connecting cable. The connecting cable itself is also reinforced with tensile strength, reducing the risk of breakage when the data cable is stretched. This improves the lifespan and range of the data cable. Additionally, two reinforcing components strengthen the structure at the connection between the connecting cable and the USB plug, further enhancing the tensile strength of the data cable. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0018] Figure 2 This is a schematic diagram of the cross-sectional structure of the connecting line of this utility model;
[0019] Figure 3 This is a schematic diagram of the tensile layer structure of this utility model;
[0020] Figure 4 This is a schematic diagram of the exploded structure of the reinforcing component of this utility model.
[0021] In the diagram: 1. Data cable body; 2. Connecting wire; 21. Conductive wire; 22. PET insulating sleeve; 23. Steel wire rope; 24. Buffer filler; 25. Tensile layer; 251. First tensile fiber filament; 252. Second tensile fiber filament; 26. PVC waterproof layer; 27. Wear-resistant rubber layer; 3. USB plug; 4. Reinforcing component; 41. Protective shell; 42. Through hole; 43. Flame-retardant silicone; 44. Reinforcing ribs. Detailed Implementation
[0022] 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.
[0023] Please see Figure 1 This utility model provides a technical solution: a data cable with tensile strength, including a data cable body 1, the data cable body 1 including a connecting wire 2, both ends of the connecting wire 2 are connected to USB plugs 3, and the outer wall of both USB plugs 3 on one side and located at one end of the connecting wire 2 is covered with a reinforcing component 4.
[0024] The connecting cable 2 not only connects the USB plugs 3 together but also transmits signals. Furthermore, the connecting cable 2 itself enhances tensile strength, thereby reducing the risk of breakage when the data cable body 1 is stretched. This improves the lifespan and range of the data cable body 1. Additionally, the two reinforcing components 4 strengthen the structural strength at the connection between the connecting cable 2 and the USB plug 3, further enhancing the tensile strength of the data cable body 1.
[0025] See Figure 2 , Figure 3 The connecting wire 2 includes conductive wires 21, and multiple conductive wires 21 are arranged in a ring array. Each conductive wire 21 has a PET insulating sleeve 22 on its outer wall. Tensile layer 25 is provided on the outside of the multiple PET insulating sleeves 22. Buffer filler 24 is provided between the tensile layer 25 and the multiple PET insulating sleeves 22. PVC waterproof layer 26 is provided on the outer wall of the tensile layer 25. Wear-resistant rubber layer 27 is provided on the outer wall of the PVC waterproof layer 26. The tensile layer 25 is woven from first tensile fiber filament 251 and second tensile fiber filament 252. Buffer filler 24 is made of silicone material.
[0026] The conductive wires 21 in the connecting cable 2 can be connected to two USB plugs 3 at both ends and transmit signals. The PET insulating sleeve 22 makes each conductive wire 21 independent, thus preventing multiple conductive wires 21 from contacting each other and ensuring the stability of signal transmission. The tensile layer 25, woven from the first tensile fiber filament 251 and the second tensile fiber filament 252, protects the multiple conductive wires 21 in conjunction with the buffer filler 24 made of silicone material, preventing damage to the conductive wires 21 when compressed, and also enhances the tensile strength of the connecting cable 2 itself, thereby reducing the problem of breakage caused by the connecting cable 2 when stretched, so as to improve the service life and range of the connecting cable 2. The PVC waterproof layer 26 and the wear-resistant rubber layer 27 improve the wear resistance of the connecting cable 2 and prevent external water stains from penetrating inward, thereby improving the safety of the conductive wires 21 in use.
[0027] See Figure 2 The connecting line 2 also includes a steel wire rope 23, which is located at the center of the multiple conductive wires 21. The steel wire rope 23 can further enhance the tensile strength of the connecting line 2 and improve its service life.
[0028] See Figure 1 , Figure 4 The reinforcing component 4 includes a protective shell 41 disposed on the outer wall of the USB plug 3. One end of the USB plug 3 has a through hole 42 for inserting one end of the connecting cable 2. Flame-retardant silicone 43 is filled between the inner cavity of the protective shell 41 and the outer wall of the USB plug 3. Reinforcing ribs 44 are integrally formed on the top and bottom of the outer wall of the protective shell 41. Multiple reinforcing ribs 44 are provided.
[0029] The protective shell 41 in the reinforced component 4 can be installed at the connection between the USB plug 3 and the connecting cable 2. By injecting flame-retardant silicone 43 into the interior of the protective shell 41, the protective shell 41 can be stably and firmly attached to the outer wall of the USB plug 3 after the flame-retardant silicone 43 solidifies. At the same time, it can also strengthen the connection between the USB plug 3 and the connecting cable 2. The multiple reinforcing ribs 44 can not only strengthen the structural strength of the protective shell 41, but also make it easy for the user to hold the protective shell 41, thus facilitating the plugging and unplugging of the USB plug 3.
[0030] During operation, the connecting cable 2 connects the USB plug 3 together and transmits signals. The connecting cable 2 itself also enhances tensile strength, thereby reducing the breakage problem caused by the data cable body 1 when it is pulled, thus improving the service life and range of the data cable body 1. At the same time, the two reinforcing components 4 strengthen the structural strength of the connection between the connecting cable 2 and the USB plug 3, further improving the tensile strength of the data cable body 1.
[0031] The conductive wires 21 in the connecting cable 2 can be connected to two USB plugs 3 at both ends and transmit signals. The PET insulating sleeve 22 makes each conductive wire 21 independent, thus preventing multiple conductive wires 21 from contacting each other and ensuring the stability of signal transmission. The tensile layer 25, woven from the first tensile fiber filament 251 and the second tensile fiber filament 252, protects the multiple conductive wires 21 in conjunction with the buffer filler 24 made of silicone material, preventing damage to the conductive wires 21 when compressed and strengthening the tensile strength of the connecting cable 2 itself. This reduces the problem of breakage caused by the connecting cable 2 when stretched, thereby improving the service life and range of the connecting cable 2. The PVC waterproof layer 26 and the wear-resistant rubber layer 27 improve the wear resistance of the connecting cable 2 and prevent external water stains from penetrating inward, thereby improving the safety of the conductive wires 21. The steel wire rope 23 further strengthens the tensile strength of the connecting cable 2 and improves its service life.
[0032] The protective shell 41 in the reinforced component 4 can be installed at the connection between the USB plug 3 and the connecting cable 2. By injecting flame-retardant silicone 43 into the interior of the protective shell 41, the protective shell 41 can be stably and firmly attached to the outer wall of the USB plug 3 after the flame-retardant silicone 43 solidifies. At the same time, it can also strengthen the connection between the USB plug 3 and the connecting cable 2. The multiple reinforcing ribs 44 can not only strengthen the structural strength of the protective shell 41, but also make it easy for the user to hold the protective shell 41, thus facilitating the plugging and unplugging of the USB plug 3.
[0033] In summary, this device can both transmit signals and enhance the tensile strength of the data cable body 1, thereby reducing the breakage problem caused by the data cable body 1 when it is stretched, and thus improving the service life and scope of the data cable body 1.
[0034] Furthermore, any content not described in detail in this specification is existing technology known to those skilled in the art.
Claims
1. A data cable with tensile strength, comprising a data cable body (1), characterized in that: The main body (1) of the data cable includes a connecting wire (2), both ends of the connecting wire (2) are connected to USB plugs (3), and the outer wall of one side of the two USB plugs (3) and located at one end of the connecting wire (2) is covered with a reinforcing component (4). The connecting line (2) includes a conductive line (21), and multiple conductive lines (21) are provided, and the multiple conductive lines (21) are arranged in a ring array. Each conductive line (21) is provided with a PET insulating sleeve (22) on its outer wall, and a tensile layer (25) is provided on the outside of the multiple PET insulating sleeves (22). A buffer filler (24) is provided between the tensile layer (25) and the plurality of PET insulating sleeves (22), a PVC waterproof layer (26) is provided on the outer wall of the tensile layer (25), and a wear-resistant rubber layer (27) is provided on the outer wall of the PVC waterproof layer (26). The connecting line (2) also includes a steel wire rope (23), which is located at the center of the plurality of conductive lines (21), and the tensile layer (25) is woven from a first tensile fiber filament (251) and a second tensile fiber filament (252); The reinforcing component (4) includes a protective shell (41) disposed on the outer wall of the USB plug (3), and a through hole (42) for inserting one end of the connecting wire (2) is provided at one end of the USB plug (3). Flame-retardant silicone (43) is filled between the inner cavity of the protective shell (41) and the outer wall of the USB plug (3).
2. A data cable with tensile strength according to claim 1, characterized in that: The buffer filler (24) is made of silicone material.
3. A data cable with tensile strength according to claim 1, characterized in that: The protective shell (41) has reinforcing ribs (44) integrally formed on the top and bottom of its outer wall, and there are multiple reinforcing ribs (44).