Multi-connector data line
By designing a multi-joint data cable, the first charging connector including the TYPE-C and USB interfaces, and the second charging connector of the TYPE-C and Lightning interfaces, and adopting a slide groove and sliding shaft structure, the problem that the charging data cable cannot be adapted to multiple devices is solved, and a stable and convenient charging connection is achieved.
Patent Information
- Application Number
- CN202422374278.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-09-27
AI Technical Summary
The existing charging data cable cannot adapt to the diversified charging interfaces of different devices, resulting in the inability to meet the charging needs of multiple mobile devices.
A multi-joint data cable is designed, including a first charging connector of a pluggable TYPE-C interface and a USB interface, and a second charging connector of a pluggable TYPE-C interface and a Lightning interface, and prevents the interface from being disengaged during pluggable through a slide groove and a sliding shaft structure, and uses a removable protective cover and an adjusting buckle structure to improve connection stability.
The charging adaptation of a variety of mobile devices is realized, avoiding the problem of the interface falling off during plug-in, and improving the stability and convenience of the connection.
Smart Images

Figure CN223194173U_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present utility model relate to the technical field of data cables, and in particular to a multi-connector data cable. Background Art
[0002] With the development of society, people's living standards are constantly improving. Mobile devices have become indispensable in people's lives. With the continuous development of mobile devices, the production industry of mobile devices has become more prosperous. Devices produced by different device manufacturers have their own standards, such as charging interfaces. Some use TYPE-C interfaces, while some use Lightning interfaces. For the connectors connected to the charging adapters, some use USB connectors, while some use TYPE-C connectors. Therefore, different standards require different charging data cables for adaptation. In the existing charging data cables, generally, the connector connected to the power supply and the charging connector connected to the terminal are both single connectors, which cannot meet the needs of today's diverse mobile devices. Content of the Utility Model
[0003] The present utility model provides a multi-connector data cable to solve the technical problems raised in the above background art.
[0004] The present utility model provides a multi-connector data cable, which includes a cable body, a first charging connector provided at the first end of the cable body, and a second charging connector provided at the second end of the cable body. The first charging connector includes a first TYPE-C interface and a USB interface connected to the first TYPE-C interface through a first connection group; the second charging connector includes a second TYPE-C interface and a Lightning interface connected to the second TYPE-C interface through a second connection group; the first TYPE-C interface can be plugged and connected with the USB interface, and the second TYPE-C interface can be plugged and connected with the Lightning interface.
[0005] Further, the first connection group includes a first connection body provided on the side wall of the housing of the first TYPE-C interface and provided with a first sliding groove, a first sliding arm connected to the housing of the USB interface, and a first sliding shaft provided on the first sliding arm and movable in the first sliding groove to prevent the first sliding arm from disengaging from the first sliding groove; and / or the second connection group includes a second connection body provided on the side wall of the housing of the second TYPE-C interface and provided with a second sliding groove, a second sliding arm connected to the housing of the Lightning interface, and a second sliding shaft provided on the second sliding arm and movable in the second sliding groove to prevent the second sliding arm from disengaging from the second sliding groove.
[0006] Further, the first sliding arm includes two first arm plates disposed opposite to each other. The two first arm plates are spaced apart to form a first accommodating groove for accommodating the first connecting body. The first sliding shaft is connected to the ends of the two first arm plates away from the first TYPE-C interface.
[0007] Further, the second sliding arm includes two second arm plates disposed opposite to each other. The two second arm plates are spaced apart to form a second accommodating groove for accommodating the second connecting body. The second sliding shaft is connected to the ends of the two second arm plates away from the second TYPE-C interface.
[0008] Further, the wire body is folded in half to form a first wire body and a second wire body. The multi-connector data cable further includes a first adjustment buckle connected to the first wire body and the second wire body. A hook buckle is detachably disposed at the connection of the first wire body and the second wire body, and a terminal hanging rope is connected to one end of the hook buckle away from the wire body.
[0009] Further, a terminal hanging piece is provided at one end of the terminal hanging rope away from the hook buckle.
[0010] Further, the first wire body is folded in half to form a first sub-wire close to the first adjustment buckle and a second sub-wire connected to the first sub-wire; the second wire body is folded in half to form a third sub-wire close to the first adjustment buckle and a fourth sub-wire connected to the third sub-wire; the first sub-wire and the fourth sub-wire are connected by the second adjustment buckle, and the second sub-wire and the third sub-wire are connected by the third adjustment buckle.
[0011] Further, the multi-connector data cable further includes a binding loop for tying the first sub-wire, the second sub-wire, the third sub-wire and the fourth sub-wire together.
[0012] Further, a protective cover is detachably sleeved on the USB interface, and / or a protective cover is detachably sleeved on the Lightning interface.
[0013] Further, the first connecting body is integrally formed with the housing of the first TYPE-C interface, and / or the second connecting body is integrally formed with the housing of the second TYPE-C interface, and / or the second sliding arm is integrally formed with the housing of the USB interface, and / or the second sliding arm is integrally formed with the Lightning interface.
[0014] With the above technical solution, the present utility model has at least the following beneficial effects: By setting the first charging connector as a pluggable first TYPE-C interface and a USB interface, the present utility model is adapted to power sources with USB or TYPE-C connectors. And by setting the second charging connector as a pluggable second TYPE-C interface and a Lightning interface, the present utility model can charge mobile devices with TYPE-C or Lightning interfaces, enabling the present utility model to be adapted to various models and power sources. The USB interface is connected to the first TYPE-C interface, so that when using the first TYPE-C interface to connect to a power source, the USB interface will not fall out of the wire body, thus it is not easy to have the problem of the USB interface being lost. When it is necessary to use the USB interface to connect to a power source, just insert the first TYPE-C interface and the USB interface into each other, and then the connection between the two can be achieved, and connect to the power source through the USB interface. The second TYPE-C interface is connected to the Lightning interface, so that when the second TYPE-C interface is connected to a mobile device, the Lightning interface will not fall out of the wire body, thus it is not easy to have the problem of the Lightning interface being lost. When it is necessary to use the Lightning interface to connect to a mobile device, just insert the Lightning interface and the second TYPE-C interface into each other to achieve the connection between the two, and connect to the mobile device through the Lightning interface. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 Stereogram of an embodiment of the multi-connector data cable of the present utility model.
[0016] Figure 2 Stereogram of the first charging head of the multi-connector data cable of the present utility model.
[0017] Figure 3 Stereogram of the second charging head of the multi-connector data cable of the present utility model.
[0018] Figure 4 Stereogram of another embodiment of the multi-connector data cable of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] The present utility model will be further described in detail below in conjunction with the accompanying drawings through specific embodiments. It should be understood that the embodiments described below by referring to the accompanying drawings are exemplary and are intended to explain the present utility model, and should not be construed as a limitation to the present utility model. Moreover, the features in the embodiments of the present utility model can be combined with each other without conflict.
[0020] Such as Figures 1 - 4As shown in the figure, the utility model provides a multi-connector data cable. The multi-connector data cable includes a cable body 1, a first charging connector 2 provided at the first end of the cable body 1, and a second charging connector 3 provided at the second end of the cable body 1. The first charging connector 2 includes a first TYPE-C interface 21 and a USB interface 22 connected to the first TYPE-C interface 21 through a first connection group; the second charging connector 3 includes a second TYPE-C interface 31 and a Lightning interface 32 connected to the second TYPE-C interface 31 through a second connection group; the first TYPE-C interface 21 can be plugged and connected to the USB interface 22, and the second TYPE-C interface 31 can be plugged and connected to the Lightning interface 32.
[0021] In this embodiment, by setting the first charging connector 2 as a pluggable first TYPE-C interface 21 and USB interface 22, the utility model is adapted to power sources with USB or TYPE-C connectors. And by setting the second charging connector 3 as a pluggable second TYPE-C interface 31 and Lightning interface 32, the utility model can charge mobile devices with TYPE-C or Lightning interfaces 32, enabling the utility model to be adapted to various models and power sources. Moreover, the USB interface 22 is connected to the first TYPE-C interface 21, so that when using the first TYPE-C interface 21 to connect to a power source, the USB interface 22 will not fall out of the cable body 1, thus it is not easy to have the problem of the USB interface 22 being lost. When it is necessary to use the USB interface 22 to connect to a power source, just insert the first TYPE-C interface 21 and the USB interface 22 into each other, and then the connection between the two can be achieved, and the USB interface 22 can be used to connect to the power source. And the second TYPE-C interface 31 is connected to the Lightning interface 32, so that when the second TYPE-C interface 31 is connected to a mobile device, the Lightning interface 32 will not fall out of the cable body 1, thus it is not easy to have the problem of the Lightning interface 32 being lost. When it is necessary to use the Lightning interface 32 to connect to a mobile device, just insert the Lightning interface 32 and the second TYPE-C interface 31 into each other, and the connection between the two can be achieved, and the mobile device can be connected through the Lightning interface 32.
[0022] The utility model can charge terminals such as mobile phones, tablets, or laptop computers. Among them, the Lightning interface 32 is suitable for charging terminals such as Apple mobile phones or iPads.
[0023] In a specific embodiment, the first connection group includes a first connection body 41 provided on the side wall of the housing of the first TYPE-C interface 21 and provided with a first chute 42, a first sliding arm 43 connected to the housing of the USB, and a first sliding shaft 44 provided on the first sliding arm 43 and movable in the first chute 42 to prevent the first sliding arm 43 from detaching from the first chute 42; in this embodiment, the first sliding arm 43 is movably connected to the first chute 42 through the first sliding shaft 44, so that it is possible to prevent the USB interface 22 from falling out of the wire body 1 when separated from the first TYPE-C interface 21, and there is a moving space when the USB interface 22 is inserted into the first TYPE-C interface 21.
[0024] Further, the first sliding arm 43 includes two relatively arranged first arm plates 431, and the two first arm plates 431 are spaced apart to form a first accommodation groove for accommodating the first connection body 41. The first sliding shaft 44 is connected to the ends of the two first arm plates 431 away from the first TYPE-C interface 21. The applicant found that in the traditional connection of two interfaces (such as the USB interface 22 and the first TYPE-C interface 21), a plastic wire made of plastic material is usually used for connection. When the two are inserted, the plastic wire is folded and accommodated, resulting in the disconnection of the plastic wire and the easy loss of one of the connectors. To solve this problem, the applicant designed the first arm plate 431 to have a structure for accommodating the first connector. That is, when the first TYPE-C interface 21 is inserted into the USB interface 22, the first connection body 41 can slide into the first accommodation groove. At this time, the first connection shaft moves towards the end away from the USB interface 22 in the first sliding groove, so that the accommodation groove provides a space for accommodating the first connection body 41. This method will not cause folding of the first arm plate 431 or the first connection body 41, overcoming the problem that the plastic wire is folded and disconnected when the two pluggable connectors are connected by the traditional plastic wire.
[0025] In a specific embodiment, the second connection group includes a second connection body 51 provided on the side wall of the housing of the second TYPE-C interface 31 and provided with a second chute 52, a second sliding arm 53 connected to the housing of the Lightning interface 32, and a second sliding shaft 54 provided on the second sliding arm 53 and movable in the second chute 52 to prevent the second sliding arm 53 from detaching from the second chute 52. In this embodiment, the second sliding arm 53 is movably connected to the second chute 52 through the second sliding shaft 54, so that it is possible to prevent the Lightning interface 32 from falling out of the wire body 1 when separated from the second TYPE-C interface 31, and there is a moving space when the Lightning interface 32 is inserted into the second TYPE-C interface 31.
[0026] Further, the second sliding arm 53 includes two oppositely arranged second arm plates 531. The two second arm plates 531 are spaced apart to form a second accommodation groove for accommodating the second connecting body 51. The second sliding shaft 54 is connected to the ends of the two second arm plates 531 away from the second TYPE-C interface 31. The effect of this embodiment is the same as that of the connection between the first sliding arm 43 and the first connecting body 41, and will not be elaborated here.
[0027] In a specific embodiment, the wire body 1 is folded in half to form a first wire body 11 and a second wire body 12. The multi-connector data cable further includes a first adjustment buckle 61 connected to the first wire body 11 and the second wire body 12. A hook buckle 71 is detachably provided at the connection of the first wire body 11 and the second wire body 12, and a terminal hanging rope 72 is connected to one end of the hook buckle 71 away from the wire body 1. In this embodiment, by providing the first adjustment buckle 61, the lengths of the parts of the first wire body 11 and the second wire body 12 away from the hook buckle 71 can be adjusted, and the connection structure of the hook buckle 71 and the terminal hanging rope 72 enables the multi-connector data cable to have the function of the terminal hanging rope 72.
[0028] In a specific embodiment, a terminal hanging piece 73 is provided at one end of the terminal hanging rope 72 away from the hook buckle 71, and the terminal hanging piece 73 can be connected to terminals such as mobile phones.
[0029] In a specific embodiment, the first wire body 11 is folded in half to form a first sub-wire 111 close to the first adjustment buckle 61 and a second sub-wire 112 connected to the first sub-wire 111; the second wire body 12 is folded in half to form a third sub-wire 121 close to the first adjustment buckle 61 and a fourth sub-wire 122 connected to the third sub-wire 121; the first sub-wire 111 and the fourth sub-wire 122 are connected by the second adjustment buckle 62, and the second sub-wire 112 and the third sub-wire 121 are connected by the third adjustment buckle 63. The applicant found that if the second adjustment buckle 62 is used to connect the first sub-wire 111 and the second sub-wire 112 and the third adjustment buckle 63 is used to connect the fourth sub-wire 122 and the third sub-wire 121, then since the parts of the first sub-wire 111 and the third sub-wire 121 not restricted by the first adjustment buckle 61 are in a free state, it is not conducive to the storage of the wire body 1. Therefore, using the second adjustment buckle 62 to connect the first sub-wire 111 and the fourth sub-wire 122 and using the third adjustment buckle 63 to connect the second sub-wire 112 and the third sub-wire 121 can well store the wires, thereby reducing the occurrence of the wire body 1 being entangled and knotted.
[0030] Furthermore, the multi-connector data cable further includes a binding loop 64 that can tie the first sub-cable 111, the second sub-cable 112, the third sub-cable 121, and the fourth sub-cable 122 together, thereby further sorting out the wires.
[0031] In a specific embodiment, the USB interface 22 is detachably sleeved with a protective cover 8, thereby playing a protective role for the USB interface 22.
[0032] In a specific embodiment, the Lightning interface 32 is detachably sleeved with a protective cover 8, thereby being able to play a protective role for the Lightning interface 32.
[0033] In an alternative embodiment, the first connecting body 41 and the housing of the first TYPE-C interface 21 are integrally formed, and / or the second connecting body 51 and the housing of the second TYPE-C interface 31 are integrally formed, and / or the second sliding arm 53 and the housing of the USB interface 22 are integrally formed, and / or the second sliding arm 53 and the Lightning interface 32 are integrally formed, thereby improving the integrity of this multi-connector data cable.
[0034] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these examples without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalent scope.
Claims
1. A multi-connector data cable, characterized by: The multi-connector data cable includes a cable body, a first charging connector arranged at the first end of the cable body, and a second charging connector arranged at the second end of the cable body. The first charging connector includes a first TYPE-C interface and a USB interface connected to the first TYPE-C interface through a first connection group; the second charging connector includes a second TYPE-C interface and a Lightning interface connected to the second TYPE-C interface through a second connection group; the first TYPE-C interface can be plugged and connected to the USB interface, and the second TYPE-C interface can be plugged and connected to the Lightning interface.
2. The multi-connector data cable according to claim 1, wherein: The first connection group includes a first connector provided on the side wall of the shell of the first TYPE-C interface and having a first slide groove, a first slide arm connected to the shell of the USB, and a first sliding axis provided on the first slide arm, which can move in the first slide groove and prevent the first slide arm from detaching from the first slide groove; and / or the second connection group includes a second connector provided on the side wall of the shell of the second TYPE-C interface and having a second slide groove, a second slide arm connected to the shell of the Lightning interface, and a second sliding axis provided on the second slide arm, which can move in the second slide groove and prevent the second slide arm from detaching from the second slide groove.
3. The multi-connector data cable according to claim 2, wherein: The first sliding arm includes two oppositely arranged first arm plates, the two first arm plates are spaced apart to form a first accommodating groove for accommodating the first connector, and the first sliding shaft is connected to the ends of the two first arm plates away from the first TYPE-C interface.
4. The multi-connector data cable according to claim 2, wherein: The second sliding arm includes two oppositely arranged second arm plates, and the two second arm plates are spaced apart to form a second accommodating groove for accommodating the second connector, and the second sliding shaft is connected to the ends of the two second arm plates away from the second TYPE-C interface.
5. The multi-connector data cable according to any one of claims 1 to 4, characterized in that: The wire body is folded in half to form a first wire body and a second wire body. The multi-connector data cable also includes a first adjustment buckle connected to the first wire body and the second wire body. The connection between the first wire body and the second wire body is detachably provided with a hook and a terminal hanging rope connected to the end of the hook away from the wire body.
6. The multi-connector data cable according to claim 5, characterized in that: A terminal hanging piece is provided at one end of the terminal hanging rope away from the hook.
7. The multi-connector data cable according to claim 5, characterized in that: The first line is folded in half to form a first sub-line close to the first adjusting buckle and a second sub-line connected to the first sub-line; the second line is folded in half to form a third sub-line close to the first adjusting buckle and a fourth sub-line connected to the third sub-line; the first sub-line and the fourth sub-line are connected through the second adjusting buckle, and the second sub-line and the third sub-line are connected through the third adjusting buckle.
8. The multi-connector data cable according to claim 7, wherein: The multi-connector data cable further includes a binding ring for binding the first sub-wire, the second sub-wire, the third sub-wire and the fourth sub-wire together.
9. The multi-connector data cable according to any one of claims 1 to 4, characterized in that: The detachable USB interface sleeve is provided with a protective cover, and / or the detachable Lightning interface sleeve is provided with a protective cover.
10. The multi-connector data cable according to claim 2, wherein: The first connector is integrally formed with the shell of the first TYPE-C interface, and / or the second connector is integrally formed with the shell of the second TYPE-C interface, and / or the second slide arm is integrally formed with the shell of the USB interface, and / or the second slide arm is integrally formed with the Lightning interface.