Magnetic type storage data line
By using a magnetic cable storage design, the magnetic positioning of the slot and the casing solves the problem of data cables scattering and tangling, providing a stable storage and convenient operation solution suitable for various usage scenarios.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGXI RONGXIAN YANXIANG ELECTRIC WIRE CO LTD
- Filing Date
- 2025-04-17
- Publication Date
- 2026-04-28
AI Technical Summary
Existing magnetic data cables are prone to detachment when bumped or touched, causing the cables to unravel and become tangled, resulting in a poor user experience and limited applicability.
A magnetic data cable storage device is designed. After the connecting wire is wound up, it is positioned on the slot. The first and second housings are respectively fitted onto the data connector. The magnetic positioning is used to realize the winding, positioning and storage of the data cable. The protrusions, grooves and magnetic components facilitate connection and positioning. The anti-slip texture and silicone pad ensure the connection is firm and aesthetically pleasing.
It achieves stable storage of data cables, avoiding them from coming apart or getting tangled. It is simple to operate, easy to use, has a wide range of applications, provides a strong connection, and has an attractive appearance.
Smart Images

Figure CN224177705U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of data cable technology, and in particular to a magnetically oriented data cable. Background Technology
[0002] Currently, mobile phones, tablets, and other electronic devices all require data cables for charging or for transferring data with devices such as computers. Data cables are typically soft and flexible, easily unraveling or becoming tangled. If stored for an extended period, untangling a tangled data cable is troublesome and time-consuming, inconvenient for subsequent use. Furthermore, data cables are usually stored by hand or simply stuffed into a storage box, a rather rough method that can easily cause breakage or damage, shortening the cable's lifespan.
[0003] Later, someone invented a magnetic data cable. By adding magnets and other structures to the data cable, it was able to be positioned by the magnets and not get tangled, thus achieving the purpose of winding, positioning, and storing the data cable. However, its structural design was flawed. The mutual attraction between the magnets on the data cable was weak. When the data cable was subjected to external collisions or contact with objects, the magnets would come apart, causing the data cable to unravel and become tangled. This reduced the user experience, made it unusable, and limited its applicability.
[0004] Therefore, a new technical solution needs to be researched to address the above problems. Utility Model Content
[0005] In view of this, the present invention addresses the deficiencies of the existing technology and its main purpose is to provide a magnetically attached data cable storage device. The connecting wire is wound and positioned on the slot, and the first and second housings are respectively fitted onto the first and second data connectors and magnetically attached to each other, thereby realizing the winding, positioning and storage of the data cable. This avoids problems such as the data cable unraveling and tangling. It is simple to operate, convenient to use, has good usability, and a wide range of applications.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A magnetically oriented data cable includes a connecting cable, a first data connector, a second data connector, and a storage assembly; wherein:
[0008] The first data connector is located at one end of the connecting cable, and the second data connector is located at the other end of the connecting cable;
[0009] The storage component is disposed on the connecting line. The storage component includes a first shell and a second shell. The first shell is movably disposed on the connecting line along the length direction of the connecting line and can be detachably fitted onto the first data connector. The second shell is movably disposed on the connecting line along the length direction of the connecting line and can be detachably fitted onto the second data connector. Both the first shell and the second shell are provided with a plurality of slots arranged sequentially for locking and positioning the connecting line. The first shell is detachably connected to the second shell by magnetic attraction.
[0010] As a preferred embodiment, the first housing is provided with a first magnetic accommodating element located beside the slot of the first housing, and the second housing is provided with a second magnetic accommodating element that magnetically attracts the first magnetic accommodating element, located beside the slot of the second housing.
[0011] As a preferred embodiment, one of the first magnetic attractor and the second magnetic attractor is a magnet and the other is an iron sheet; or, the first magnetic attractor and the second magnetic attractor are both magnets of opposite polarity.
[0012] As a preferred embodiment, the first housing has a protrusion extending toward the second housing, the first magnetic element is disposed on the protrusion, the second housing has a groove matching the protrusion, and the second magnetic element is disposed on the groove.
[0013] As a preferred embodiment, the first housing is detachably fitted onto the first data connector by magnetic attraction, and the second housing is detachably fitted onto the second data connector by magnetic attraction.
[0014] As a preferred embodiment, both the first and second housings are provided with recesses that match and connect with the corresponding data connectors. A third magnetic element is provided in each recess, and both the first and second data connectors are provided with a fourth magnetic element that magnetically attracts the third magnetic element. The third and fourth magnetic elements magnetically attract each other to achieve a magnetic connection between the housing and the data connector.
[0015] As a preferred embodiment, the cavity is provided with a first anti-slip texture.
[0016] As a preferred embodiment, a silicone pad is provided on the inner wall surface of the cavity, and the first anti-slip texture is provided on the silicone pad.
[0017] As a preferred embodiment, the outer sides of the first and second housings are provided with a second anti-slip texture, which is located on the side away from the card slot.
[0018] Compared with the prior art, this utility model has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solution, it mainly achieves the winding, positioning, and storage of the data cable by using the design of the storage component. The connecting cable is wound and positioned on the slot, and the first and second shells are respectively fitted onto the first and second data connectors and magnetically positioned against each other. This avoids problems such as the data cable unraveling and tangling. At the same time, the user can separate the first and second shells from the first and second data connectors according to the usage situation, and then position the connecting cable on the corresponding shell, thereby limiting the length of the data cable in daily use, thus meeting the user's needs in different situations. It is simple to operate, convenient to use, has good usability, and a wide range of applications.
[0019] Secondly, the protrusions and grooves facilitate the connection and positioning between the first and second housings, which in turn facilitates the magnetic connection between the first and second magnetic components. At the same time, the third and fourth magnetic components make it easy for users to assemble and disassemble the housings and data connectors, making them convenient to use.
[0020] Furthermore, the first anti-slip texture prevents the data connector from detaching from the housing due to external influences, ensuring a secure connection between the data connector and the housing. Meanwhile, the silicone pad prevents direct contact between the data connector and the cavity, ensuring an aesthetically pleasing surface appearance of the data connector. Additionally, the second anti-slip texture facilitates the user's operation of pushing the housing to separate the housing from the data connector.
[0021] To more clearly illustrate the structural features and effects of this utility model, the following detailed description of this utility model is provided in conjunction with the accompanying drawings and specific embodiments. Attached Figure Description
[0022] Figure 1 This is a structural schematic diagram of an embodiment of the present utility model;
[0023] Figure 2 This is a cross-sectional view of an embodiment of the present utility model;
[0024] Figure 3 yes Figure 2 A magnified view of a portion of the image;
[0025] Figure 4 This is a schematic diagram of the second anti-slip texture according to an embodiment of the present invention;
[0026] Figure 5 This is an application diagram of an embodiment of the present utility model.
[0027] Explanation of reference numerals in the attached diagram:
[0028] 10. Connecting cable; 11. First data connector
[0029] 12. Second data connector 13. Fourth magnetic connector
[0030] 14. Second anti-slip texture; 21. First shell.
[0031] 211. First magnetic component; 212. Protrusion
[0032] 22. Second casing; 221. Second magnetic component
[0033] 222, Groove; 23, Slot
[0034] 24. Cavity 241. Third magnetic chuck
[0035] 25. Silicone pad 251. First anti-slip texture. Detailed Implementation
[0036] Please refer to Figures 1 to 5 As shown, it illustrates the specific structure of an embodiment of the present invention.
[0037] A magnetically oriented data cable includes a connecting cable 20, a first data connector 11, a second data connector 12, and a storage assembly; wherein:
[0038] The first data connector 11 is disposed at one end of the connecting cable 20, and the second data connector 12 is disposed at the other end of the connecting cable 20;
[0039] The storage component is disposed on the connecting line 20. The storage component includes a first housing 21 and a second housing 22. The first housing 21 is movably disposed on the connecting line 20 along the length direction of the connecting line and is detachably sleeved on the first data connector 11. The second housing 22 is movably disposed on the connecting line 20 along the length direction of the connecting line and is detachably sleeved on the second data connector 12. Both the first housing 21 and the second housing 22 are provided with a plurality of slots 23 arranged sequentially for locking and positioning the connecting line. The first housing 21 is detachably connected to the second housing 22 by magnetic attraction.
[0040] Specifically, the first housing 21 is provided with a first magnetic attractor 211, which is located beside the slot 23 of the first housing 21. The second housing 22 is provided with a second magnetic attractor 221 that is magnetically attracted to the first magnetic attractor, which is located beside the slot 23 of the second housing 22. Preferably, one of the first magnetic attractor 221 and the second magnetic attractor 222 is a magnet and the other is an iron sheet; or, the first magnetic attractor 221 and the second magnetic attractor 222 are both opposite magnets.
[0041] In use, first, slip the first and second housings onto the first and second data connectors respectively. Then, control one of the data connectors to wind the connecting cable several times, and then sequentially lock the wound connecting cable into the slots of the housings. Finally, magnetically connect the first and second housings together. Alternatively, slip the first and second housings onto the first and second data connectors respectively, then magnetically connect them together. Afterward, tidy up the connecting cable and lock it into the corresponding slots. During daily use, the first and second housings can be separated, and then separated from the first and second data connectors respectively. The length of the connecting cable can then be adjusted according to its intended use. The connecting cable is wound several times and then secured in the slots of the first or second housing. This storage component design utilizes the winding and positioning of the connecting cable in the slots, along with the magnetic attraction between the first and second housings after they are fitted onto the first and second data connectors. This achieves winding, positioning, and storage of the data cable, avoiding problems such as the cable unraveling and tangling. Furthermore, users can separate the first and second housings from the first and second data connectors according to their needs, and then position the connecting cable in the corresponding housing, thus limiting the length of the data cable during daily use. This meets the needs of users in different situations, is simple to operate, convenient to use, highly usable, and widely applicable.
[0042] Furthermore, the first housing 21 has a protrusion 212 extending toward the second housing, and the first magnetic member 211 is disposed on the protrusion 212. The second housing 22 has a groove 222 matching the protrusion, and the second magnetic member 221 is disposed on the groove 222. Thus, the protrusion and the groove are provided to facilitate the connection and positioning between the first and second housings, thereby facilitating the operation of the first and second magnetic members magnetically connecting with each other.
[0043] Furthermore, the first housing 21 is detachably fitted onto the first data connector 11 via magnetic attraction, and the second housing 22 is detachably fitted onto the second data connector 12 via magnetic attraction. Specifically, both the first housing 21 and the second housing 22 are provided with a cavity 24 that matches and connects to the corresponding data connector. A third magnetic element 241 is provided on the cavity 24. Both the first data connector 11 and the second data connector 12 are provided with a fourth magnetic element 13 that magnetically attracts the third magnetic element. The third magnetic element 241 and the fourth magnetic element 13 magnetically attract each other to achieve a magnetic connection between the housing and the data connector. Preferably, one of the third magnetic element 241 and the fourth magnetic element 13 is a magnet and the other is an iron sheet; or, the third magnetic element 241 and the fourth magnetic element 13 are opposite magnets. Thus, the provision of the third and fourth magnetic elements facilitates the user's easy assembly and disassembly of the housing and the data connector, making it convenient to use.
[0044] The cavity 24 is provided with a first anti-slip texture 251, and a silicone pad 25 is provided on the inner wall surface of the cavity 251. The first anti-slip texture 251 is provided on the silicone pad 25. Furthermore, the outer sides of the first housing 21 and the second housing 22 are provided with a second anti-slip texture 14, which is located on the side away from the slot 23. Thus, the first anti-slip texture prevents the data connector from being detached from the housing due to external influences, ensuring a firm connection between the data connector and the housing. At the same time, the silicone pad prevents direct contact between the data connector and the cavity, ensuring an aesthetically pleasing surface appearance of the data connector. Additionally, the second anti-slip texture facilitates the user's operation of pushing the housing to separate the housing from the data connector.
[0045] The key design feature of this utility model lies in its storage component design. The connecting cable is wound and positioned in a slot, and the first and second housings are respectively fitted onto the first and second data connectors, magnetically attracting each other for positioning. This achieves winding, positioning, and storage of the data cable, avoiding problems such as the data cable unraveling and tangling. Furthermore, users can separate the first and second housings from the first and second data connectors according to their needs, and then position the connecting cable on the corresponding housing, thus limiting the length of the data cable during daily use. This satisfies users' needs in different situations, is simple to operate, convenient to use, highly usable, and widely applicable.
[0046] Secondly, the protrusions and grooves facilitate the connection and positioning between the first and second housings, which in turn facilitates the magnetic connection between the first and second magnetic components. At the same time, the third and fourth magnetic components make it easy for users to assemble and disassemble the housings and data connectors, making them convenient to use.
[0047] Furthermore, the first anti-slip texture prevents the data connector from detaching from the housing due to external influences, ensuring a secure connection between the data connector and the housing. Meanwhile, the silicone pad prevents direct contact between the data connector and the cavity, ensuring an aesthetically pleasing surface appearance of the data connector. Additionally, the second anti-slip texture facilitates the user's operation of pushing the housing to separate the housing from the data connector.
[0048] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the technical scope of the present utility model. Therefore, any minor modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model shall still fall within the scope of the technical solution of the present utility model.
Claims
1. A magnetically attached data cable, characterized in that: It includes a connecting cable, a first data connector, a second data connector, and a storage assembly; wherein: The first data connector is located at one end of the connecting cable, and the second data connector is located at the other end of the connecting cable; The storage component is disposed on the connecting line. The storage component includes a first shell and a second shell. The first shell is movably disposed on the connecting line along the length direction of the connecting line and can be detachably fitted onto the first data connector. The second shell is movably disposed on the connecting line along the length direction of the connecting line and can be detachably fitted onto the second data connector. Both the first shell and the second shell are provided with a plurality of slots arranged sequentially for locking and positioning the connecting line. The first shell is detachably connected to the second shell by magnetic attraction.
2. The magnetic data cable according to claim 1, characterized in that: The first housing is provided with a first magnetic attractor located on the side of the slot of the first housing. The second housing is provided with a second magnetic attractor that magnetically attracts the first magnetic attractor located on the side of the slot of the second housing.
3. The magnetic data cable according to claim 2, characterized in that: One of the first magnetic attractor and the second magnetic attractor is a magnet and the other is an iron sheet; or, the first magnetic attractor and the second magnetic attractor are both magnets of opposite polarity.
4. The magnetic data cable according to claim 2, characterized in that: The first housing has a protrusion extending toward the second housing, the first magnetic element is disposed on the protrusion, the second housing has a groove matching the protrusion, and the second magnetic element is disposed on the groove.
5. A magnetically attached data cable according to claim 1, characterized in that: The first housing is magnetically attached to the first data connector, and the second housing is magnetically attached to the second data connector.
6. A magnetically attached data cable according to claim 5, characterized in that: Both the first and second housings are provided with recesses that match and connect with the corresponding data connectors. A third magnetic element is provided in each recess. Both the first and second data connectors are provided with a fourth magnetic element that magnetically attracts the third magnetic element. The third and fourth magnetic elements magnetically attract each other to achieve a magnetic connection between the housing and the data connector.
7. A magnetically attached data cable according to claim 6, characterized in that: The cavity is provided with a first anti-slip texture.
8. A magnetically attached data cable according to claim 7, characterized in that: A silicone pad is provided on the inner wall surface of the cavity, and the first anti-slip texture is provided on the silicone pad.
9. A magnetically attached data cable according to claim 1, characterized in that: The outer sides of the first and second housings are provided with a second anti-slip texture, which is located on the side away from the card slot.