Data line device with adapter

By setting up a connector and connecting arm on the data cable, the adapter is stably fixed and flexibly switched, solving the problems of slippage and aesthetics of traditional data cable adapters and improving the user experience.

CN223665808UActive Publication Date: 2025-12-12GUANGSHUI RONGHE ELETRINIC CO LTD
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Patent Information

Application Number
CN202422851159.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-12-12
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

Traditional data cable adapters tend to slide when not in use, affecting the user experience and being unsightly, and they cannot achieve flexible switching between different interfaces.

Method used

Design a data cable device with a built-in adapter. The cable is equipped with a socket with multiple interfaces. The adapter is fixed by a connecting arm and screws, allowing different connectors to slide and flip, ensuring stable connection.

Benefits of technology

It achieves stable fixation of the adapter when not in use, has a compact structure, and can flexibly switch between different types of interfaces, improving the user experience and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a data line device with an adapter, which comprises the adapter and a wire rod, a bayonet socket is arranged on the wire rod, and at least two different types of interfaces are arranged in the bayonet socket; two ends of the adapter are respectively provided with different types of joints, and any joint is matched with one interface on the bayonet socket; a connecting arm is arranged on the bayonet socket, at least two strip-shaped accommodating holes are formed in the connecting arm, the adapter is provided with a connecting piece, and the connecting piece is clamped into the accommodating holes to enable the adapter to form a structure capable of sliding relative to the connecting arm; the adapter is provided with a plurality of accommodating holes, each accommodating hole corresponds to one interface, and a connecting channel is arranged between the adjacent accommodating holes, so that the adapter can be turned over to enable the joint to be inserted into the matched interface, different types of joints can be switched, and equipment with different interface types can be charged. The whole device is relatively simple and compact in structure, and the adapter can be kept in a plugging state at any time and cannot move randomly, so that the device is not only beneficial to use, but also more attractive.
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Description

TECHNICAL FIELD

[0001] The utility model relates to data line device technical field especially data line device with adapter. BACKGROUND

[0002] At present, the charging of mobile phones and other electronic devices is mainly completed through data lines. The traditional data line generally includes a wire and a USB-A male head and a device plug (such as a TYPE-C connector, a LIGHTNING connector or a MIRCO-USB connector) at both ends of the wire. This kind of data line has only one connector at one end, and can only be connected to one type of interface. Therefore, when facing electronic products with different interfaces, it cannot be used universally. Therefore, in the process of use, the corresponding data line needs to be selected according to the electronic device, otherwise it cannot be used. For this reason, people have invented some data line adapters. The adapter can convert one type of device plug into another, such as MIRCO-USB to TYPE-C. A more typical structure is to connect the adapter to one end of a wire, and the other end is sleeved on the wire of the data line. When needed, the adapter is connected to the device plug of the data line, and when not needed, the adapter is hung on the wire, so as to realize the exchange of two different types of interfaces. However, the structure has the following disadvantages: first, the adapter will slide along the wire when not needed, affecting the use; second, the adapter hung on the data line is not beautiful when not needed, and the structure is not compact. SUMMARY

[0003] The utility model provides a simple and compact structure, more convenient to use, the adapter will not slide along the wire when not used, and more beautiful data line adapter.

[0004] To solve the above technical problems, the utility model adopts the following technical scheme: a data line device with an adapter, including an adapter and a wire, characterized by: the wire is provided with a plug-in seat, at least two different types of interfaces are arranged in the plug-in seat; the two ends of the adapter are respectively provided with different types of connectors, and any connector is matched with one of the interfaces on the plug-in seat; a connecting arm is arranged on the plug-in seat, the connecting arm is provided with at least two strip-shaped accommodating holes, the adapter is provided with a connecting piece, the connecting piece is clamped into the accommodating hole to form a structure that can slide relative to the connecting arm; each accommodating hole corresponds to an interface, and a connecting channel is arranged between adjacent accommodating holes.

[0005] Further, the connecting piece is a screw, the screw rod of the screw passes through the accommodating hole and is screwed into the side wall of the adapter, and the screw nut of the screw is clamped outside the accommodating hole.

[0006] Further, the connecting arm extends forward from the side wall of the plug-in seat, the connecting arm and the plug-in seat are an integral structure, and are made by injection molding.

[0007] Further, the interfaces on the socket include a first interface and a second interface, and the two interfaces are arranged side by side; the connector of the adapter includes a first connector and a second connector, the first connector is matched with the first interface, and the second connector is matched with the second interface.

[0008] Further, the connecting arm has a first accommodating hole and a second accommodating hole, the first accommodating hole is aligned with the first interface, the second accommodating hole is aligned with the second interface, and the extension directions of the two accommodating holes are the same as the direction in which the connector is inserted into the interface; the connecting channel is communicated with the two accommodating holes at the top end.

[0009] Further, a nut is fixed in the adapter by in-mold forming, and the screw rod of a screw is screwed into the nut to connect and fix the adapter.

[0010] The first interface and the second interface are any one of a TYPE-C interface, a LIGHTNING interface or a MIRCO-USB interface, and the interface types of the two interfaces are different; the first connector and the second connector are any one of a TYPE-C connector, a LIGHTNING connector or a MIRCO-USB connector, and the connector types of the first connector and the second connector are different.

[0011] The utility model discloses a socket is set up on one end of the wire, and a plurality of different types of interfaces are arranged in the socket, a connecting arm with a plurality of strip-shaped accommodating holes is arranged on the side surface of the socket, and an adapter is arranged on the connecting arm and can slide and turn along the accommodating hole. The two ends of the adapter are respectively provided with connectors matched with the interfaces, the connector of the adapter is inserted into the matched interface by turning the adapter, different types of connectors can be switched, and different interface types of equipment can be charged. The whole device is simple and compact in structure, the adapter can be kept in the plug-in state at any time and will not be moved randomly, so that the utility model not only is favorable for use, but also is more beautiful and simple. DRAWINGS

[0012] Figure 1 It is a structure schematic view of the adapter and the main body in a separated state.

[0013] Figure 2 It is a structure schematic view of the adapter and the main body in a separated state from another angle.

[0014] Figure 3 It is a schematic view when the adapter and the first interface are plugged in.

[0015] Figure 4 It is a schematic view when the adapter and the second interface are plugged in.

[0016] Figure 5 It is a structure schematic view of the adapter.

[0017] In the figure, 1 is a plug-in seat, 11 is a first interface, 12 is a second interface, 2 is a connecting arm, 21 is a first accommodating hole, 22 is a second accommodating hole, 23 is a connecting channel, 3 is an adapter, 31 is a first connector, 32 is a second connector, 33 is a nut, 4 is a screw, 41 is a nut, 42 is a screw rod, and 5 is a wire. DETAILED DESCRIPTION

[0018] In this embodiment, referring to Figures 1-5 , the data line device with an adapter includes an adapter 3 and a wire 5, one end of the wire 5 is provided with a plug-in seat 1 (the other end can be provided with a USB-A male head), the plug-in seat 1 is provided with at least two different types of interfaces, generally two or three; the two ends of the adapter 3 are respectively provided with different types of connectors, and any one of the connectors is adapted to one of the interfaces on the plug-in seat; the plug-in seat 1 is provided with a connecting arm 2, the connecting arm 2 is provided with at least two strip-shaped accommodating holes, the adapter 3 is provided with a connecting piece, the connecting piece is clamped into the accommodating hole to make the adapter 3 form a structure that can slide relative to the connecting arm 2; each accommodating hole corresponds to an interface, and a connecting channel 23 is provided between adjacent accommodating holes.

[0019] The connecting piece is a screw 4, the screw rod 42 of the screw 4 penetrates through the accommodating hole and is screwed into the side wall of the adapter 3, and the nut 41 of the screw 4 is clamped outside the accommodating hole. Of course, other connecting pieces can also be used, such as a T-shaped connecting piece, for example, a rivet, a screw, a common nail, which can be made of metal, plastic, rubber, wood, etc.

[0020] The connecting arm 2 extends forward from the side wall of the plug-in seat 1, and the connecting arm 2 and the plug-in seat 1 are an integral structure and are made by injection molding.

[0021] The interfaces on the plug-in seat 1 include a first interface 11 and a second interface 12, and the two interfaces are arranged side by side; the connectors of the adapter 3 include a first connector 31 and a second connector 32, the first connector 31 is matched with the first interface 11, and the second connector 32 is matched with the second interface 12.

[0022] The connecting arm 2 has a first accommodating hole 21 and a second accommodating hole 22, the first accommodating hole 21 is aligned with the first interface 11, and the second accommodating hole 22 is aligned with the second interface 12, the extension directions of the two accommodating holes are the same as the direction of inserting the connector into the interface, and the connector can be inserted into the corresponding interface by sliding along the accommodating hole; the connecting channel 23 communicates the two accommodating holes at the top end, the adapter 3 passes through the connecting channel 23 from one accommodating hole (such as the first accommodating hole 21) to the other accommodating hole (such as the second accommodating hole 22) through the screw rod 42, and is turned over by 180 degrees, that is, the first connector 31 and the second connector 32 are exchanged in position, so as to facilitate plugging the required interface.

[0023] A nut 33 is fixed in the inside of the adapter 3 by in-mold forming, and the screw rod 42 of the screw 4 is screwed into the nut 33 to connect and fix the screw 4 with the adapter 3.

[0024] The first interface 11 and the second interface 12 are respectively a LIGHTNING interface and a TYPE-C interface (any one of a LIGHTNING interface, a TYPE-C interface or a MIRCO-USB interface).

[0025] The above has made a detailed description of the utility model, the above is described, only for the preferred embodiment of the utility model, when cannot limit the utility model implementation range, namely all equivalent changes and modifications made according to the scope of the application should still belong to the utility model coverage.

Claims

1. A data cable with adapter, comprising an adapter and a cable, characterized in that: The wire is provided with a socket, the socket is provided with at least two different types of interfaces; the adapter is provided with different types of joints at both ends, and any joint is matched with one of the interfaces on the socket; the socket is provided with a connecting arm, the connecting arm is provided with at least two strip-shaped accommodating holes, the adapter is provided with a connecting piece, the connecting piece is clamped into the accommodating hole to form a structure that can slide relative to the connecting arm; each accommodating hole corresponds to an interface, and a connecting channel is arranged between adjacent accommodating holes.

2. The data line device with a self-adapting joint according to claim 1, characterized in that: The connecting piece is a screw, the screw rod of the screw is screwed into the side wall of the adapter through the accommodating hole, and the screw nut of the screw is clamped outside the accommodating hole.

3. The data line device with a self-adapting joint according to claim 1, characterized in that: The connecting arm extends forward from the side wall of the socket, the connecting arm and the socket are an integral structure, and are made by injection molding.

4. The data cable with adapter of claim 1, wherein: The interfaces on the socket include a first interface and a second interface, and the two interfaces are arranged side by side; the joints of the adapter include a first joint and a second joint, the first joint is matched with the first interface, and the second joint is matched with the second interface.

5. The data line device with a self-adapting joint according to claim 4, characterized in that: The connecting arm has a first accommodating hole and a second accommodating hole, the first accommodating hole is aligned with the first interface, the second accommodating hole is aligned with the second interface, and the extension directions of the two accommodating holes are the same as the direction in which the joint is inserted into the interface; the connecting channel communicates the two accommodating holes at the top end.

6. The data cable with adapter of claim 2, wherein: The nut is fixed in the adapter by in-mold forming, and the screw rod of the screw is screwed into the nut to connect and fix the adapter.

7. The data cable with adapter of claim 4, wherein: The first interface and the second interface are any one of a TYPE-C interface, a LIGHTNING interface or a MIRCO-USB interface, and the interface types of the two are different; the first joint and the second joint are any one of a TYPE-C joint, a LIGHTNING joint or a MIRCO-USB joint, and the joint types of the first joint and the second joint are different.