Magnetic touch pen charging data line
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGXI BRILLIANT ELECTRONICS CO LTD
- Filing Date
- 2025-08-27
- Publication Date
- 2026-08-07
AI Technical Summary
现有充电数据线在收纳时,通常将数据线进行缠绕,数据线在缠绕过程中易打结,不便于后期的再次使用
本实用新型通过设置集成结构,将触控笔头与数据线有机结合,使数据线同时具备充电和触控功能,增加了产品的实用性,同时通过收纳结构,利用磁吸原理实现连接线的便捷收纳,有效防止连接线缠绕打结的问题,便于充电数据线的再次使用。
Smart Images

Figure CN224610266U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of data cable technology, specifically a magnetic stylus charging data cable. Background Technology
[0002] In today's electronic device usage, charging cables and styluses are common accessories. When storing charging cables, they are usually coiled up, which easily leads to tangling and makes them inconvenient for future use. Meanwhile, styluses are separate accessories, easily lost, and users may forget to bring them when needed, affecting the user experience. Utility Model Content
[0003] The purpose of this utility model is to provide a magnetic stylus charging cable. This magnetic stylus charging cable not only has a charging function, but also integrates a stylus function. Through a storage structure, it is convenient to store and organize the cable, avoid tangling, and facilitate future reuse.
[0004] The above-mentioned optimized structure of this utility model is achieved through the following technical solution: a magnetic stylus charging data cable, including a connecting cable; A first interface is located on one side of the connecting line; The second interface is located on the other side of the connecting line; It also includes an integrated structure, which is disposed between the first interface and the second interface; A storage structure is provided on the connecting line; The stylus tip is detachably mounted on the integrated structure.
[0005] In some embodiments, the integrated structure includes a connecting block disposed between the connecting line and the first interface; An integrated port is located on the side of the connecting block away from the first interface and is plugged into and cooperates with the second interface.
[0006] In some embodiments, the integrated structure further includes an integrated groove, which is disposed on the side of the connecting block away from the first interface, and the integrated opening is provided on one side wall of the integrated groove; An integrated block is disposed between the connecting line and the second interface, and is disposed within the integrated slot.
[0007] In some embodiments, the integrated structure further includes a sliding groove disposed on the side of the connecting block away from the integrated port; A sliding ring, which is connected to one side of the stylus tip and can be slidably disposed within the sliding groove; A limiting rod is provided in the sliding groove and passes through the sliding ring; Two elastic cards are symmetrically arranged inside the sliding ring and parallel to the limiting rod, and the distance between the two elastic cards is less than the diameter of the limiting rod.
[0008] In some embodiments, the connecting block is a cylinder, and the cross-sections of the sliding groove and the integrated block are both semicircles.
[0009] In some embodiments, the stylus tip includes a pen body, and the sliding ring is provided on one side of the pen body; A connection port is located on the pen body near the first interface and is plugged into the first interface.
[0010] In some embodiments, the storage structure includes a first storage rod, which is sleeved on one side of the connecting line; The second storage rod is symmetrically sleeved on the other side of the second storage rod; Multiple first magnetic blocks are embedded in the first storage rod; Multiple second magnetic blocks are embedded in the second storage rod and magnetically attach to each of the multiple first magnetic blocks.
[0011] In some embodiments, both the first interface and the second interface are Type-C interfaces.
[0012] In summary, this utility model has the following beneficial effects: This utility model integrates the stylus tip and data cable into a single structure, enabling the data cable to simultaneously perform charging and touch functions, thus increasing the product's practicality. Furthermore, the storage structure utilizes magnetic attraction to facilitate convenient storage of the connecting cable, effectively preventing tangling and knotting, and making the charging data cable easy to reuse. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of the present invention in its stored state; Figure 2 This is a schematic diagram of the structure of the present invention in the charging state; Figure 3 This is a schematic diagram of the connection structure between the integrated structure of this utility model and the first interface and the stylus tip; Figure 4 This is a schematic diagram of the connection structure between the stylus tip, the sliding ring, the limiting rod, and the elastic card of this utility model.
[0014] In the diagram: 1. Connecting wire; 2. First interface; 3. Second interface; 4. Integrated structure; 41. Connecting block; 42. Integrated port; 43. Integrated groove; 44. Integrated block; 45. Sliding groove; 46. Sliding ring; 47. Limiting rod; 48. Elastic card; 5. Storage structure; 51. First storage rod; 52. Second storage rod; 6. Stylus tip; 61. Pen body; 62. Connecting port. Detailed Implementation
[0015] The technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0016] refer to Figure 1-4 A magnetic stylus charging cable includes a connecting cable 1, a first interface 2, a second interface 3, an integrated structure 4, a storage structure 5, and a stylus tip 6. The connecting cable 1 is the main channel for current and data transmission, with an internal conductive core wire and an external insulating and wear-resistant protective layer, effectively protecting the internal core wire, ensuring transmission safety, and extending the cable's lifespan. The first interface 2 is located on one side of the connecting cable 1, allowing connection to electronic devices for charging or data transmission. The second interface 3 is located on the other side of the connecting cable 1, allowing connection to a charging adapter or other devices. Connecting to the power supply or for data interaction, the integrated structure 4 is located between the first interface 2 and the second interface 3, enabling the integration of the first interface 2 and the second interface 3, making the overall structure more compact. The storage structure 5 is located on the connecting cable 1, which can store and organize the connecting cable 1 to avoid tangling and make it convenient to carry and reuse. The stylus tip 6 is detachably located on the integrated structure 4, enabling the touch function of the charging data cable, thereby meeting the user's touch operation needs on electronic devices. Through the detachable connection between the stylus tip 6 and the integrated structure 4, the charging function and the touch function can be switched to meet the usage needs of different application scenarios.
[0017] In some embodiments, the integrated structure 4 includes a connecting block 41 and an integrated port 42. The connecting block 41 is located between the connecting line 1 and the first interface 2, and can provide an installation base for other components of the integrated structure 4. The integrated port 42 is located on the side of the connecting block 41 away from the first interface 2, and is plugged into the second interface 3. When stored, the second interface 3 can be inserted into the second interface 3 to fix the second interface 3, thereby realizing the integration of the first interface 2 and the second interface 3.
[0018] In some embodiments, the integrated structure 4 further includes an integrated groove 43 and an integrated block 44. The integrated groove 43 is located on the side of the connecting block 41 away from the first interface 2. An integrated opening 42 is provided on one side wall of the integrated groove 43. The integrated groove 43 can provide a space for the integrated block 44. The integrated block 44 is located between the connecting line 1 and the second interface 3 and is located in the integrated groove 43. The shape of the integrated block 44 is adapted to the connecting block 41, ensuring the compactness of the structure. This allows the second interface 3 to fit more closely to the connecting block 41 when stored, reducing space occupation. At the same time, it can increase the contact area between the second interface 3 and the connecting block 41, improving the stability of the second interface 3 when it is fixed.
[0019] In some embodiments, the integrated structure 4 further includes a sliding groove 45, a sliding ring 46, a limiting rod 47, and two elastic clips 48. The sliding groove 45 is located on the side of the connecting block 41 away from the integrated port 42, providing a track for the sliding ring 46. The sliding groove 45 can be a straight groove arranged along the length of the connecting block 41. The sliding ring 46 is connected to one side of the stylus tip 6 and can be slidably disposed within the sliding groove 45. By sliding the sliding ring 46 within the sliding groove 45, the stylus tip 6 is moved, facilitating the adjustment of the position between the stylus tip 6 and the connecting block 41. The limiting rod 47 is located within the sliding groove 45 and passes through the sliding ring 46, limiting and guiding the sliding of the sliding ring 46. The sliding ring 46 is prevented from disengaging from the sliding groove 45. Two elastic cards 48 are symmetrically arranged inside the sliding ring 46 and parallel to the limiting rod 47. The distance between the two elastic cards 48 is less than the diameter of the limiting rod 47. When the sliding ring 46 slides towards the connecting line 1, the elastic cards 48 contact the limiting rod 47 and generate a squeezing force. The two elastic cards 48 deform under the force, causing the limiting rod 47 to slide from the side of the two elastic cards 48 near the connecting line 1 to the other side. The limiting rod 47 blocks the two elastic cards 48, thereby fixing the sliding ring 46 in the required position, realizing the connection between the stylus tip 6 and the connecting block 41, and thus realizing the touch function of the charging data cable. When the stylus tip 6 is pulled away from the connecting line 1, the two elastic cards 48 come into contact with the limiting rod 47 and generate a squeezing force. The two elastic cards 48 deform under the force, causing the limiting rod 47 to slide from the side of the two elastic cards 48 away from the connecting line 1 to the other side, releasing the constraint of the limiting rod 47 on the two elastic cards 48. This allows the sliding ring 46 to slide automatically in the sliding groove 45, realizing the separation of the stylus tip 6 from the connecting block 41, exposing the first interface 2, and realizing the charging function of the charging data cable.
[0020] In some embodiments, the connecting block 41 can be a cylinder, and the cross-sections of the sliding groove 45 and the integrated block 44 can be semicircular, so that the connecting block 41 and the integrated block 44 can form a complete cylinder. The rounded surface of the cylinder can improve the comfort of holding, thereby improving the experience of touch operation.
[0021] In some embodiments, the stylus tip 6 includes a pen body 61 and a connector 62. A sliding ring 46 is provided on one side of the pen body 61. The pen body 61 can be made of conductive material and can realize touch function. This is prior art and will not be described in detail here. The pen body 61 can be covered on the connector block 41. The connector 62 is located on the side of the pen body 61 near the first interface 2 and is plugged into the first interface 2. When the stylus tip 6 is not needed, the first interface 2 can be stored and fixed by the cooperation of the connector 62 and the first interface 2. The connection between the stylus tip 6 and the integrated structure 4 can be realized by the plugging and cooperation of the connector 62 and the first interface 2 and the constraint of the two elastic cards 48 by the limiting rod 47.
[0022] In some embodiments, the storage structure 5 includes a first storage rod 51, a second storage rod 52, a plurality of first magnetic blocks, and a plurality of second magnetic blocks. The first storage rod 51 is sleeved on one side of the connecting line 1, and the second storage rod 52 is symmetrically sleeved on the other side. The connecting line 1 can be bent to make the first storage rod 51 and the second storage rod 52 fit together. The plurality of first magnetic blocks are embedded on the first storage rod 51, and the plurality of second magnetic blocks are embedded on the second storage rod 52, and are magnetically attracted to each of the plurality of first magnetic blocks. Through the magnetic attraction between multiple first magnetic blocks and multiple second magnetic blocks, the first storage rod 51 and the second storage rod 52 can be firmly fixed, thereby storing the connecting wire 1 and preventing it from becoming loose. Simultaneously, the magnetically fixed first storage rod 51 and the second storage rod 52 form a magnetic pen holder, facilitating touch operation. Both the first storage rod 51 and the second storage rod 52 can be semi-cylinders, and the diameter of the cylinder formed by them is the same as the diameter of the integrated structure 4, further improving grip comfort and enhancing the touch experience. The distance between the storage structure 5 and the integrated structure 4 can be set according to actual conditions, satisfying integration and storage functions while facilitating grip and touch operation.
[0023] In some embodiments, both the first interface 2 and the second interface 3 can be Type-C interfaces. Type-C interfaces have the advantages of fast transmission speed and reversible insertion, making it convenient to connect with corresponding electronic devices to achieve charging or data transmission, thereby improving the convenience and compatibility of use.
[0024] The specific working principle is as follows: When the data cable is needed for charging or data transfer, the first interface 2 is connected to the electronic device, and the second interface 3 is connected to the charging head or other devices. Current or data is transmitted between the first interface 2 and the second interface 3 through the connecting cable 1 to achieve the corresponding function.
[0025] When the stylus function is needed, the stylus tip 6 is pushed so that the stylus body 61 covers the connecting block 41, at which point the first interface 2 is inserted into the connecting port 62. Simultaneously, the sliding ring 46 connected to the stylus tip 6 slides along the limiting rod 47 within the sliding groove 45. Since the distance between the two elastic cards 48 is less than the diameter of the limiting rod 47, during the sliding process, the elastic cards 48 contact the limiting rod 47 and generate a squeezing force. The two elastic cards 48 deform under this force, causing the limiting rod 47 to slide from the side of the two elastic cards 48 closest to the connecting line 1 to the other side. The limiting rod 47 blocks the two elastic cards 48, thereby fixing the sliding ring 46 in this position, thus fixing the stylus tip 6 on the integrated structure 4.
[0026] Next, the connecting wire 1 is stored. The second storage rod 52 is folded so that the second interface 3 is inserted into the integration port 42, and the integration block 44 enters the integration groove 43, thus initially fixing the second interface 3. At this time, the second storage rod 52 is placed on the first storage rod 51. Since multiple first magnetic blocks and multiple second magnetic blocks are magnetically attached to each other, the magnetic attraction between them securely fixes the second storage rod 52 to the first storage rod 51, completing the storage of the connecting wire 1.
[0027] After being stowed, the first storage rod 51 and the second storage rod 52 form a magnetic pen barrel, and the diameter of the cylinder they form is the same as the diameter of the integrated structure 4, making the whole structure a rounded pen shape, which improves the comfort of holding it. When the user holds this structure, they can perform touch operations on electronic devices through the pen body 61 made of conductive material.
[0028] When it is necessary to switch from the stylus function back to the charging or data transfer function, pull the stylus tip 6 away from the connecting cable 1. At this time, the two elastic cards 48 come into contact with the limiting rod 47 and generate a squeezing force. The two elastic cards 48 deform under the force, causing the limiting rod 47 to slide from the side of the two elastic cards 48 away from the connecting cable 1 to the other side, releasing the constraint of the limiting rod 47 on the two elastic cards 48. The sliding ring 46 can slide automatically in the sliding groove 45, realizing the separation of the stylus tip 6 from the integrated structure 4, exposing the first interface 2.
[0029] Subsequently, the second interface 3 is pulled out from the integrated port 42, the magnetic attraction between the first storage rod 51 and the second storage rod 52 is released, and the connecting cable 1 is unfolded. The first interface 2 and the second interface 3 can then be used again for charging or data transmission, realizing flexible switching between charging and touch functions to meet the needs of different application scenarios.
[0030] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. A magnetic stylus charging cable, comprising a connecting cable (1); The first interface (2) is located on one side of the connecting line (1); The second interface (3) is located on the other side of the connecting line (1); Its features are: It also includes an integrated structure (4), which is located between the first interface (2) and the second interface (3); Storage structure (5), the storage structure (5) is provided on the connecting line (1); The stylus tip (6) is detachably mounted on the integrated structure (4).
2. The magnetic stylus charging cable according to claim 1, characterized in that: The integrated structure (4) includes a connecting block (41), which is disposed between the connecting line (1) and the first interface (2); An integrated port (42) is located on the side of the connecting block (41) away from the first interface (2) and is plugged into the second interface (3).
3. The magnetic stylus charging cable according to claim 2, characterized in that: The integrated structure (4) further includes an integrated groove (43), which is located on the side of the connecting block (41) away from the first interface (2), and the integrated opening (42) is provided on one side wall of the integrated groove (43). An integrated block (44) is located between the connecting line (1) and the second interface (3) and is located in the integrated groove (43).
4. The magnetic stylus charging cable according to claim 3, characterized in that: The integrated structure (4) further includes a sliding groove (45), which is located on the side of the connecting block (41) away from the integrated port (42); A sliding ring (46) is connected to one side of the stylus tip (6) and can be slidably disposed in the sliding groove (45); Limiting rod (47), the limiting rod (47) is provided in the sliding groove (45) and passes through the sliding ring (46). Two elastic cards (48) are symmetrically arranged inside the sliding ring (46) and parallel to the limiting rod (47), and the distance between the two elastic cards (48) is less than the diameter of the limiting rod (47).
5. A magnetic stylus charging cable according to claim 4, characterized in that: The connecting block (41) is a cylinder, and the cross-sections of the sliding groove (45) and the integrated block (44) are both semicircles.
6. A magnetic stylus charging cable according to claim 4, characterized in that: The stylus tip (6) includes a pen body (61), and the pen body (61) has a sliding ring (46) on one side. Connection port (62) is located on the pen body (61) near the first interface (2) and is plugged into the first interface (2).
7. A magnetic stylus charging cable according to claim 1, characterized in that: The storage structure (5) includes a first storage rod (51), which is sleeved on one side of the connecting line (1); The second storage rod (52) is symmetrically sleeved on the other side of the second storage rod (52); Multiple first magnetic blocks are embedded in the first storage rod (51); Multiple second magnetic blocks are embedded in the second storage rod (52) and magnetically attached to each of the multiple first magnetic blocks.
8. The magnetic stylus charging cable according to claim 1, characterized in that: Both the first interface (2) and the second interface (3) are Type-C interfaces.