Charging data line with double Type-C interfaces

By designing a replaceable Type-C connector and cable management box structure, the problem of non-replaceable dual Type-C interface charging data cable interfaces is solved, extending service life and reducing costs, while also providing transmission detection function.

CN223583428UActive Publication Date: 2025-11-21DONGGUAN KANGYI WIRE CO LTD
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Patent Information

Application Number
CN202422879796.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-25
Publication Date
2025-11-21
Estimated Expiration
2034-11-25

AI Technical Summary

Technical Problem

Existing dual Type-C interface charging cables do not allow for interface replacement, resulting in a shortened lifespan and increased usage costs.

Method used

A dual Type-C interface charging cable was designed, which includes a replaceable Type-C connector structure and a cable bundle box, enabling the replacement of damaged connectors and providing storage and protection through the cable bundle box.

Benefits of technology

It enables the replacement of damaged Type-C connectors, extends the lifespan of data cables, reduces replacement costs, and provides better protection and transmission detection functions through the cable management box.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of data lines, and discloses a charging data line with double Type-C interfaces, which comprises a USB connector, the right side of the USB connector is fixedly connected with a USB connecting seat, the right side of the USB connecting seat is movably connected with a third data line, and the right side of the third data line is provided with an interface replaceable structure. The data line can be effectively divided into two parts, due to the fact that a Type-C connector may be damaged, the first connector and the second connector are arranged, the inner contour of the first slot is consistent with the outer contour of the first connector, the first connector can be pulled out of the first slot, and therefore the Type-C connector can be effectively connected. The inner contour of the second slot is consistent with the outer contour of the second connector, and the second connector can be pulled out of the second slot, so that the damaged Type-C connector is replaced, the cost is saved, and the data line can be used for a longer time.
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Description

Technical Field

[0001] This utility model relates to the field of data cable technology, specifically a dual Type-C interface charging data cable. Background Technology

[0002] Type-C, as the interface form of the new generation of universal serial bus hardware, has gradually become the mainstream interface standard for electronic devices after years of promotion, and continues to drive the development of device connection and data transmission.

[0003] With the advancement of technology and the widespread adoption of smart devices, people own more and more electronic devices, such as mobile phones, tablets, and smartwatches. Due to the popularity of Type-C interfaces, most of these devices use Type-C interfaces, which puts pressure on single-head Type-C interface charging cables. The solution is to set up dual Type-C interfaces to charge multiple devices simultaneously. However, current dual Type-C interface charging cables on the market do not allow for interface replacement, which reduces the lifespan of the cable and increases the cost of use.

[0004] Now, a dual Type-C interface charging cable is proposed to solve the above problems. Utility Model Content

[0005] The purpose of this utility model is to provide a dual Type-C interface charging data cable to solve the problem mentioned in the background art of not being able to replace the interface.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a dual Type-C interface charging data cable, including a USB connector, a USB connector fixedly connected to the right side of the USB connector, a third data cable movably connected to the right side of the USB connector, and a replaceable interface structure provided on the right side of the third data cable.

[0007] The replaceable interface structure includes a splitter board, which is movably connected to the right side of the third data line. The right side of the splitter board has a first slot and a second slot. A first connector is installed inside the first slot, and a first Type-C connector is located to the right of the first connector. A first data line is movably connected between the first connector and the first Type-C connector. A first Type-C adapter is installed to the right of the first Type-C connector. A second connector is installed inside the second slot, and a second Type-C connector is located to the right of the second connector. A second data line is movably connected between the second connector and the second Type-C connector. A second Type-C adapter is installed to the right of the second Type-C connector.

[0008] Preferably, the inner contour of the first slot is consistent with the outer contour of the first connector, and the inner contour of the second slot is consistent with the outer contour of the second connector.

[0009] Preferably, the first connector and the second connector are arranged in parallel, the first connector can be pulled out from the first slot, and the second connector can be pulled out from the second slot.

[0010] Preferably, a cable tie box is provided between the USB connector and the splitter board. The cable tie box is sleeved on the outside of the third data cable. A first groove is provided on the left side of the cable tie box, and a first inlet and outlet are provided on the right side inside the first groove. A second groove is provided on the right side of the cable tie box, and a second inlet and outlet are provided on the left side inside the second groove. A limit seat is fixedly connected to the rear end inside the cable tie box. A cable spool is movably connected inside the limit seat. A return spring is movably connected between the limit seat and the cable spool. A limit button is provided at the front end of the cable tie box.

[0011] Preferably, the inner contour of the first groove matches the right contour of the USB connector, and the inner contour of the second groove matches the left contour of the splitter plate.

[0012] Preferably, the limit button can restrict the rotation of the cable tie shaft by extending and retracting it, and the dimensions of the first inlet / outlet, the second inlet / outlet, and the third data cable are matched.

[0013] Preferably, a lithium battery is installed on the front side of the top of the USB connector, a control button is installed on the rear side of the lithium battery, and an indicator light is installed on the top of the shunt plate.

[0014] Preferably, the lithium battery is electrically connected to the indicator light, and the control button is tightly fitted to the USB connector.

[0015] Compared with the prior art, the beneficial effects of this utility model are: this dual Type-C interface charging data cable not only realizes the replacement of damaged Type-C connectors, but also realizes the storage of data cables and the transmission detection of data cables;

[0016] (1) By setting up a first Type-C connector, a first Type-C connector, a second Type-C connector, a second Type-C connector, a first connector, a second connector, a first data cable, a second data cable, a splitter board, a first slot, and a second slot, when in use, by setting up the splitter board, the data cable can be effectively split into two. Since the Type-C connector may be damaged, by setting up the first connector and the second connector, the first connector can be pulled out from the first slot, and the second connector can be pulled out from the second slot, thereby realizing the replacement of the damaged Type-C connector, thus saving costs and allowing the data cable to be used for a longer time;

[0017] (2) By setting up a third data cable, a cable tie box, a first groove, a second groove, a first inlet and outlet, a second inlet and outlet, a limit seat, a cable tie shaft, a return spring, and a limit button, when in use, by setting up a cable tie box, a return spring is installed inside the cable tie box, and the return spring can drive the cable tie shaft. The limit button can limit the rotation of the cable tie shaft, thereby realizing the storage of the third data cable. The first groove on the left side of the cable tie box matches the right contour of the USB connector, and the second groove on the right side of the cable tie box matches the contour of the left side of the splitter plate, so that the data cable can be more tightly packed, thereby providing protection for the data cable when it is not in use;

[0018] (3) By setting up a lithium battery, control button and indicator light, when in use, by pressing the control button, the current of the lithium battery is transmitted to the indicator light through the third data line, thereby realizing the transmission detection of the third data line. Attached Figure Description

[0019] Figure 1 This is a frontal cross-sectional view of the present invention.

[0020] Figure 2 This is a front view structural diagram of the cable tie box of this utility model;

[0021] Figure 3 For the present utility model Figure 1 Schematic diagram of a partial cross-sectional structure at point A in the middle;

[0022] Figure 4 For the present utility model Figure 1 A schematic diagram of a partial cross-sectional structure at point B in the middle section;

[0023] Figure 5 This is a top view of the USB connector of this utility model.

[0024] In the diagram: 1. USB connector; 2. USB connector socket; 3. First Type-C connector; 4. First Type-C connector socket; 5. Second Type-C connector; 6. Second Type-C connector socket; 7. First connector head; 8. Second connector head; 9. First data cable; 10. Second data cable; 11. Splitter board; 12. First slot; 13. Second slot; 14. Third data cable; 15. Cable bundle box; 16. First groove; 17. Second groove; 18. First inlet / outlet; 19. Second inlet / outlet; 20. Limit seat; 21. Cable bundle shaft; 22. Return spring; 23. Limit button; 24. Lithium battery; 25. Control button; 26. Indicator light. Detailed Implementation

[0025] 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.

[0026] Example 1: Please refer to Figure 1-5 A dual Type-C interface charging data cable includes a USB connector 1, a USB connector 2 fixedly connected to the right side of the USB connector 1, a third data cable 14 movably connected to the right side of the USB connector 2, and a replaceable interface structure provided on the right side of the third data cable 14.

[0027] Please see Figure 1-5 A dual Type-C interface charging data cable also includes a replaceable interface structure, which includes a splitter board 11. The splitter board 11 is movably connected to the right side of the third data cable 14. The right side of the splitter board 11 has a first slot 12 and a second slot 13. The first slot 12 is equipped with a first connector 7. The right side of the first connector 7 is provided with a first Type-C connector 4. The first data cable 9 is movably connected between the first connector 7 and the first Type-C connector 4. The right side of the first Type-C connector 4 is equipped with a first Type-C connector 3. The second slot 13 is equipped with a second connector 8. The right side of the second connector 8 is provided with a second Type-C connector 6. The second data cable 10 is movably connected between the second connector 8 and the second Type-C connector 6. The right side of the second Type-C connector 6 is equipped with a second Type-C connector 5.

[0028] The inner contour of the first slot 12 is consistent with the outer contour of the first connector 7, the inner contour of the second slot 13 is consistent with the outer contour of the second connector 8, the first connector 7 and the second connector 8 are arranged in parallel, the first connector 7 can be pulled out from the first slot 12, and the second connector 8 can be pulled out from the second slot 13.

[0029] Specifically, such as Figure 1 As shown, in use, by setting the splitter 11, the data cable can be effectively split into two. Since the Type-C connector may be damaged, by setting the first connector 7 and the second connector 8, the first connector 7 can be pulled out from the first slot 12, and the second connector 8 can be pulled out from the second slot 13, thereby replacing the damaged Type-C connector, thus saving costs and allowing the data cable to be used for a longer time.

[0030] A cable tie box 15 is provided between the USB connector 2 and the splitter plate 11. The cable tie box 15 is sleeved on the outside of the third data cable 14. A first groove 16 is provided on the left side of the cable tie box 15. A first inlet / outlet 18 is provided on the right side inside the first groove 16. A second groove 17 is provided on the right side of the cable tie box 15. A second inlet / outlet 19 is provided on the left side inside the second groove 17. A limit seat 20 is fixedly connected to the rear end inside the cable tie box 15. A cable tie shaft 21 is movably connected inside the limit seat 20. A return spring 22 is movably connected between the limit seat 20 and the cable tie shaft 21. A limit button 23 is provided at the front end of the cable tie box 15. The inner contour of the first groove 16 matches the right contour of the USB connector 2. The inner contour of the second groove 17 matches the left contour of the splitter plate 11. The limit button 23 can restrict the rotation of the cable tie shaft 21 by moving it back and forth. The first inlet / outlet 18 and the second inlet / outlet 19 match the size of the third data cable 14.

[0031] Specifically, such as Figure 1 , Figure 2 and Figure 3 As shown, in use, by setting up the cable tie box 15, a return spring 22 is installed inside the cable tie box 15. The return spring 22 can drive the cable tie shaft 21. The rotation of the cable tie shaft 21 can be limited by the limit button 23, thereby realizing the storage of the third data cable 14. The first groove 16 on the left side of the cable tie box 15 matches the right contour of the USB connector 2, and the second groove 17 on the right side of the cable tie box 15 matches the left contour of the splitter plate 11, so that the data cable can be more tightly packed, thereby providing protection for the data cable when not in use.

[0032] A lithium battery 24 is installed on the front side of the top of the USB connector 2, and a control button 25 is installed on the rear side of the lithium battery 24. An indicator light 26 is installed on the top of the shunt plate 11. The lithium battery 24 and the indicator light 26 are electrically connected. The control button 25 is tightly fitted to the USB connector 2.

[0033] Specifically, such as Figure 1 , Figure 4 and Figure 5 As shown, when in use, by pressing the control button 25, the current of the lithium battery 24 is transmitted to the indicator light 26 through the third data line 14, thereby realizing the transmission detection of the third data line 14.

[0034] Working Principle: In use, this invention firstly, by setting up a splitter plate 11, the data cable can be effectively split into two. Since the Type-C connector may be damaged, by setting up a first connector 7 and a second connector 8, the first connector 7 can be pulled out from the first slot 12, and the second connector 8 can be pulled out from the second slot 13, thereby replacing the damaged Type-C connector, saving costs and extending the lifespan of the data cable. Secondly, by setting up a cable management box 15, a return spring 22 is installed inside the cable management box 15. The cable tie 21 can be driven, and the rotation of the cable tie 21 can be limited by the limit button 23, thereby realizing the storage of the third data cable 14. The first groove 16 on the left side of the cable tie box 15 matches the right contour of the USB connector 2, and the second groove 17 on the right side of the cable tie box 15 matches the left contour of the splitter plate 11, so that the data cable can be more tightly packed, thereby providing protection for the data cable when not in use. At the same time, by pressing the control button 25, the current of the lithium battery 24 is transmitted to the indicator light 26 through the third data cable 14, thereby realizing the transmission detection of the third data cable 14.

[0035] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A dual Type-C interface charging data line comprising a USB connector (1), characterized in that: The right side of the USB connector (1) is fixedly connected to a USB connector (2), and the right side of the USB connector (2) is movably connected to a third data line (14). The right side of the third data line (14) is provided with a replaceable interface structure. The replaceable interface structure includes a splitter board (11), which is movably connected to the right side of the third data line (14). The right side of the splitter board (11) has a first slot (12) and a second slot (13). The first slot (12) has a first connector (7) installed inside. The right side of the first connector (7) has a first Type-C connector (4). The first connector (7) and the first Type-C connector (4) are movably connected to a first data line (9). The right side of the first Type-C connector (4) has a first Type-C connector (3). The second slot (13) has a second connector (8) installed inside. The right side of the second connector (8) has a second Type-C connector (6). The second connector (8) and the second Type-C connector (6) are movably connected to a second data line (10). The right side of the second Type-C connector (6) has a second Type-C connector (5).

2. The dual Type-C interface charging data line according to claim 1, characterized in that: The inner contour of the first slot (12) is consistent with the outer contour of the first connector (7), and the inner contour of the second slot (13) is consistent with the outer contour of the second connector (8).

3. The dual Type-C interface charging data line of claim 1, wherein: The first connector (7) and the second connector (8) are arranged in parallel. The first connector (7) can be pulled out from the first slot (12), and the second connector (8) can be pulled out from the second slot (13).

4. The dual Type-C interface charging data line of claim 1, wherein: A cable tie box (15) is provided between the USB connector (2) and the splitter plate (11). The cable tie box (15) is sleeved on the outside of the third data cable (14). A first groove (16) is provided on the left side of the cable tie box (15). A first inlet and outlet (18) is provided on the right side inside the first groove (16). A second groove (17) is provided on the right side of the cable tie box (15). A second inlet and outlet (19) is provided on the left side inside the second groove (17). A limit seat (20) is fixedly connected to the rear end inside the cable tie box (15). A cable shaft (21) is movably connected inside the limit seat (20). A return spring (22) is movably connected between the limit seat (20) and the cable shaft (21). A limit button (23) is provided at the front end of the cable tie box (15).

5. The dual Type-C interface charging data line of claim 4, wherein: The inner contour of the first groove (16) matches the right contour of the USB connector (2), and the inner contour of the second groove (17) matches the left contour of the splitter plate (11).

6. The dual Type-C interface charging data line of claim 4, wherein: The limit button (23) can be rotated by retracting and extending the limit cable shaft (21), and the dimensions of the first inlet / outlet (18), the second inlet / outlet (19) and the third data cable (14) are matched.

7. The dual Type-C interface charging data line of claim 1, wherein: The front side of the top end of the USB connecting seat (2) is provided with a lithium battery (24), the rear end of the lithium battery (24) is provided with a control button (25), and the top end of the shunt plate (11) is provided with a display lamp (26).

8. The dual Type-C interface charging data line according to claim 7, characterized in that: The lithium battery (24) is electrically connected with the display lamp (26), and the control button (25) is tightly attached with the USB connecting seat (2).