Data line capable of being separated

By designing a split-type data cable, using a combination of multiple cable bodies and multiple cable heads, and a female-to-female connector, the problems of single function and poor compatibility of traditional data cables are solved, achieving multifunctionality and portability, and meeting the charging and data transmission needs of various devices.

CN223729168UActive Publication Date: 2025-12-26SHENZHEN WK TECH CO LTD
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Patent Information

Application Number
CN202520030143.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2025-12-26
Estimated Expiration
2035-01-07

AI Technical Summary

Technical Problem

Existing data cables have limited functionality and cannot meet the compatibility requirements of multiple interfaces, forcing users to carry multiple data cables, increasing inconvenience and management difficulty.

Method used

A modular data cable has been designed, which combines multiple cable bodies and multiple cable heads, and uses female-to-female connectors to achieve flexible conversion between different interfaces, including USB-A, TYPE-C and Lightning interfaces. It adopts a modular assembly method to achieve multifunctionality and high compatibility.

Benefits of technology

It achieves multi-functionality and high compatibility of data cables, reduces the number of cables to carry, improves portability and durability, and meets the charging and data transfer needs of various devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a separable data line, comprising a first line body, one end of the first line body is provided with a USB-A line head, the other end of the first line body is provided with a first TYPE-C line head, and the first TYPE-C line head is rotatably provided with a female-to-female connecting piece; second TYPE-C wire ends are arranged at the two ends of the second wire body, and clamping positions are arranged on the second TYPE-C wire ends. According to the utility model, through the flexible combination of multiple wire bodies and multiple wire heads, the rotation arrangement of the female-to-female connecting piece and the modular assembly mode, the problems that a traditional data line is single in function, not durable and not portable are effectively solved; and due to the multifunctionality, high compatibility, portability and durability, the mobile terminal becomes an ideal choice in various scenes, and the mobile terminal can easily meet the requirements of users whether charging of the mobile equipment or data transmission between a computer and the mobile equipment.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a data line, in particular to a data line can split. BACKGROUND

[0002] In modern society, with the popularization of intelligent devices (such as smart phones, tablet computers, notebook computers, etc.), the demand for charging and data transmission of multiple interfaces is increasing. However, due to technical limitations, the existing data lines often have the following problems in actual use, and cannot fully meet the diversified needs of users:

[0003] Traditional data line limitations: most traditional data lines only support a single interface (such as USB-A, TYPE-C or Lightning), which requires users to prepare multiple data lines for different devices, adding inconvenience.

[0004] Weak device compatibility: due to the variety of interfaces, different brands and models of devices usually use different charging and data transmission interfaces, which limits users in use due to incompatible cables.

[0005] Users need to carry multiple data lines to adapt to different devices, which not only increases the size and weight of personal items, but also increases the trouble of storage and management. SUMMARY

[0006] The technical problem to be solved by the utility model is to provide a data line that can split to solve the problems in the background art.

[0007] The utility model can split the data line through the following technical solutions, including:

[0008] The first line body, one end of the first line body is provided with a USB-A line head, the other end of the first line body is provided with a first TYPE-C line head, and a female-to-female connector is rotatably arranged on the first TYPE-C line head.

[0009] The second line body, both ends of the second line body are provided with a second TYPE-C line head, and a clamping site is arranged on the second TYPE-C line head.

[0010] The third line body, one end of the third line body is provided with a third TYPE-C line head, and a female-to-female connector is also rotatably arranged on the third TYPE-C line head, and the other end of the third TYPE-C line head is provided with a Lightning line head.

[0011] When the first wire body, the second wire body and the third wire body are connected, the first TYPE-C connector on the first wire body is connected with the second TYPE-C connector at one end of the second wire body through the female-to-female connector; the second TYPE-C connector at the other end of the second wire body is also connected with the third TYPE-C connector of the third wire body through the female-to-female connector.

[0012] As a preferred technical solution, the USB-A connector includes a USB-A connector inner mold, a USB-A shell and a USB-A terminal;

[0013] The USB-A connector inner mold is connected with the first wire body, and the USB-A shell is sleeved on the USB-A connector inner mold; the USB-A terminal is arranged at the front end of the USB-A shell and connected with the USB-A connector inner mold.

[0014] As a preferred technical solution, the first TYPE-C connector and the third TYPE-C connector each include a first TYPE-C connector inner mold, a first TYPE-C shell and a first TYPE-C terminal;

[0015] The first TYPE-C shell is sleeved on the first TYPE-C connector inner mold, and the first TYPE-C terminal is arranged at the front end of the first TYPE-C shell and connected with the first TYPE-C connector inner mold;

[0016] The first TYPE-C connector inner mold of the first TYPE-C connector is connected with the first wire body, and the first TYPE-C connector inner mold of the third TYPE-C connector is connected with the third wire body.

[0017] As a preferred technical solution, the female-to-female connector includes a movable sleeve, a connector inner mold, a female-to-female PCB and a rotating shell;

[0018] The movable sleeve is rotationally arranged on the TYPE-C shell of the first TYPE-C connector or the third TYPE-C connector, and the connector inner mold is arranged on the inner side of the movable sleeve; the female-to-female PCB is installed in the connector inner mold, and the rotating shell is installed at the other end of the connector inner mold; when the first TYPE-C terminal of the first TYPE-C connector or the third TYPE-C connector is inserted into the female-to-female PCB, the first TYPE-C connector or the third TYPE-C connector is connected with the female-to-female connector through buckling, and the second TYPE-C connector is connected with the rotating shell through rotation.

[0019] As a preferred technical solution, the second TYPE-C connector includes a second connector inner mold, a second TYPE-C shell and a second TYPE-C terminal;

[0020] The second TYPE-C shell is arranged at the inner side of the second line head inner mold, and the second TYPE-C terminal is arranged at the front end of the second TYPE-C shell and connected with the second TYPE-C line head inner mold.

[0021] As a preferred technical solution, the Lightning line head comprises a Lightning line head inner mold, a Lightning shell and a Lightning terminal.

[0022] The Lightning shell is arranged at the inner side of the Lightning line head inner mold, and the Lightning terminal is arranged at the front end of the Lightning shell and connected with the Lightning line head inner mold.

[0023] The utility model discloses the beneficial effects are:

[0024] The utility model discloses through the flexible combination of many line bodies, many line heads, the rotary setting of female -to -female connecting piece and the modular assembly mode, effectively solved the single function of traditional data line, not durable and the problem of inconvenient, and its multifunctionality, high compatibility, portability and durability make it become the ideal choice under many kinds of scenes, whether it is mobile device charging or computer and mobile device data transmission, can easily satisfy the user demand. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, the following will be to the embodiment or prior art description needed to use the drawing briefly introduced, obviously, the following description in the drawing is only some embodiments of the utility model, for the ordinary skilled person in the art comes, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings.

[0026] Fig. 1 It is a three-dimensional structure schematic view of the utility model;

[0027] Fig. 2 It is an explosion structure schematic view of the utility model;

[0028] Figs. 3-9 It is a use state structure schematic view of the utility model.

[0029] Mark explanation:

[0030] 1, the first line body; 2, the second line body; 3, the third line body; 4, USB-A line head; 5, the first TYPE-C line head; 6, female-to-female connector; 7, the second TYPE-C line head; 8, the third TYPE-C line head; 9, Lightning line head; 10, USB-A line head inner mode; 11, USB-A shell; 12, USB-A terminal; 13, the first TYPE-C line head inner mode; 14, the first TYPE-C shell; 15, the first TYPE-C terminal; 16, movable sleeve; 17, connector inner mode; 18, female-to-female PCB; 19, rotating shell; 20, the second line head inner mode; 21, the second TYPE-C shell; 22, the second TYPE-C terminal; 23, Lightning line head inner mode; 24, Lightning shell; 25, Lightning terminal. DETAILED DESCRIPTION

[0031] All features disclosed in this specification, or all steps of any methods or processes disclosed in this specification, can be combined in any combination, except combinations where at least some of the features and / or steps are mutually exclusive.

[0032] As Figs. 1-2 shown, the utility model discloses a data line of split body, including:

[0033] The first line body 1 is provided with a USB-A line head 4 at one end, and is provided with a first TYPE-C line head 5 at the other end, and a female-to-female connector 6 is rotatably arranged on the first TYPE-C line head 5;

[0034] The second line body 2 is provided with a second TYPE-C line head 7 at both ends, and a clamping site is arranged on the second TYPE-C line head 7;

[0035] The third line body 3 is provided with a third TYPE-C line head 8 at one end, and a female-to-female connector 6 is also rotatably arranged on the third TYPE-C line head 8, and a Lightning line head 9 is arranged at the other end of the third TYPE-C line head 8;

[0036] When the first line body 1, the second line body 2 and the third line body 3 are connected, the first TYPE-C line head 5 on the first line body 1 is connected with the second TYPE-C line head 7 at one end of the second line body 2 through the female-to-female connector 6; the second TYPE-C line head 7 at the other end of the second line body 2 is also connected with the third TYPE-C line head 8 of the third line body 3 through the female-to-female connector 6.

[0037] In order to facilitate the assembly of the USB-A line head, in the embodiment, the USB-A line head 4 includes a USB-A line head inner mode 10, a USB-A shell 11 and a USB-A terminal 12;

[0038] The USB-A inner module 10 is connected with the first wire body 1, and the USB-A shell 11 is sleeved on the USB-A inner module 10; the USB-A terminal 12 is arranged at the front end of the USB-A shell 11 and connected with the USB-A inner module 10.

[0039] In order to facilitate the assembly of the first TYPE-C wire head and the third TYPE-C wire head, in the embodiment, the first TYPE-C wire head 5 and the third TYPE-C wire head 8 each include a first TYPE-C inner module 13, a first TYPE-C shell 14 and a first TYPE-C terminal 15.

[0040] The first TYPE-C shell 14 is sleeved on the first TYPE-C inner module 13, and the first TYPE-C terminal 15 is arranged at the front end of the first TYPE-C shell 14 and connected with the first TYPE-C inner module 13.

[0041] The first TYPE-C inner module 13 of the first TYPE-C wire head 5 is connected with the first wire body 1, and the first TYPE-C inner module 13 of the third TYPE-C wire head 8 is connected with the third wire body 3.

[0042] In order to realize the assembly of the female-to-female connector, in the embodiment, the female-to-female connector 6 includes a movable sleeve shell 16, a connector inner module 17, a female-to-female PCB 18 and a rotating shell 19.

[0043] The movable sleeve shell 16 is rotationally arranged on the TYPE-C shell of the first TYPE-C wire head 5 or the third TYPE-C wire head 8, and the connector inner module 17 is arranged on the inner side of the movable sleeve shell 16; the female-to-female PCB 18 is mounted in the connector inner module 17, and the rotating shell 19 is mounted at the other end of the connector inner module 17; when the first TYPE-C terminal 15 of the first TYPE-C wire head 5 or the third TYPE-C wire head 8 is inserted into the female-to-female PCB 18, the first TYPE-C wire head 5 or the third TYPE-C wire head 8 is connected with the female-to-female connector 6 through buckling, and the second TYPE-C wire head 7 is spliced with the rotating shell 19 through rotation, clamping and buckling.

[0044] In order to realize the installation of the second TYPE-C wire head, in the embodiment, the second TYPE-C wire head 7 includes a second wire head inner module 20, a second TYPE-C shell 21 and a second TYPE-C terminal 22.

[0045] The second TYPE-C shell 21 is arranged on the inner side of the second wire head inner module 20, and the second TYPE-C terminal 22 is arranged at the front end of the second TYPE-C shell 21 and connected with the second TYPE-C wire head 7.

[0046] In order to realize the installation of the Lightning plug, in the embodiment, the Lightning plug 9 comprises a Lightning plug inner mold 23, a Lightning shell 24 and a Lightning terminal 25;

[0047] The Lightning shell 24 is arranged at the inner side of the Lightning plug inner mold 23, and the Lightning terminal 25 is arranged at the front end of the Lightning shell 24 and connected with the Lightning plug inner mold 23.

[0048] The above merely describes the specific embodiment of the utility model, but the protection scope of the utility model is not limited to this, any change or replacement without creative labor should be covered in the protection scope of the utility model. Therefore, the protection scope of the utility model should be limited by the protection scope defined in the claims.

Claims

1. A data cable with split capability, characterized in that, include: The first cable body (1) has a USB-A cable head (4) at one end and a first TYPE-C cable head (5) at the other end, and a female-to-female connector (6) is rotatably provided on the first TYPE-C cable head (5). The second cable body (2) has a second TYPE-C cable head (7) at both ends, and the second TYPE-C cable head (7) has a locking position. The third cable body (3) has a third TYPE-C cable head (8) at one end, and a female-to-female connector (6) is rotatably provided on the third TYPE-C cable head (8). The other end of the third TYPE-C cable head (8) has a Lightning cable head (9). When the first cable (1), the second cable (2) and the third cable (3) are connected, the first TYPE-C head (5) on the first cable (1) is connected to the second TYPE-C head (7) at one end of the second cable (2) through a female-to-female connector (6); the second TYPE-C head (7) at the other end of the second cable (2) is also connected to the third TYPE-C head (8) of the third cable (3) through a female-to-female connector (6).

2. The split-type data cable according to claim 1, characterized in that: The USB-A connector (4) includes a USB-A connector inner mold (10), a USB-A shell (11), and a USB-A terminal (12); The USB-A cable head inner mold (10) is connected to the first cable body (1), and the USB-A shell (11) is fitted onto the USB-A cable head inner mold (10); the USB-A terminal (12) is placed at the front end of the USB-A shell (11) and connected to the USB-A cable head inner mold (10).

3. The split-type data cable according to claim 1, characterized in that: Both the first TYPE-C connector (5) and the third TYPE-C connector (8) include a first TYPE-C connector inner mold (13), a first TYPE-C outer shell (14), and a first TYPE-C terminal (15); The first TYPE-C housing (14) is fitted onto the first TYPE-C wire end inner mold (13), and the first TYPE-C terminal (15) is placed at the front end of the first TYPE-C housing (14) and connected to the first TYPE-C wire end inner mold (13); Among them, the first TYPE-C head inner mold (13) of the first TYPE-C head (5) is connected to the first body (1), and the first TYPE-C head inner mold (13) of the third TYPE-C head (8) is connected to the third body (3).

4. The split-type data cable according to claim 1, characterized in that: The female-to-female connector (6) includes a movable sleeve (16), a connector inner mold (17), a female-to-female PCB (18), and a rotating housing (19); The movable housing (16) is rotatably mounted on the TYPE-C outer shell of the first TYPE-C head (5) or the third TYPE-C head (8), and the inner mold (17) of the connector is located inside the movable housing (16); the female-to-female PCB (18) is installed inside the inner mold (17), and the rotating housing (19) is installed at the other end of the inner mold (17); when the first TYPE-C terminal (15) of the first TYPE-C head (5) or the third TYPE-C head (8) is inserted into the female-to-female PCB (18), the first TYPE-C head (5) or the third TYPE-C head (8) is connected to the female-to-female connector (6) by a snap fastener, and the second TYPE-C head (7) is positioned by rotation and the snap fastener is spliced ​​with the rotating housing (19).

5. The split-type data cable according to claim 1, characterized in that: The second TYPE-C connector (7) includes a second connector inner mold (20), a second TYPE-C outer shell (21), and a second TYPE-C terminal (22); The second TYPE-C housing (21) is disposed inside the second wire head inner mold (20), and the second TYPE-C terminal (22) is placed at the front end of the second TYPE-C housing (21) and connected to the inner mold of the second TYPE-C wire head (7).

6. The split-type data cable according to claim 1, characterized in that: The Lightning connector (9) includes a Lightning connector inner mold (23), a Lightning housing (24), and a Lightning terminal (25); The Lightning housing (24) is disposed inside the Lightning cable head inner mold (23), and the Lightning terminal (25) is located at the front end of the Lightning housing (24) and connected to the Lightning cable head inner mold (23).