Multi-device compatible intelligent fast charging data line

By designing multi-device compatible adapters and installation mechanisms on the data cable, combined with a winding mechanism, the problems of data cable tangling and inconvenience in use are solved, achieving neat and orderly storage and secure connection, improving the lifespan of the data cable and the aesthetics of the environment.

CN224595976UActive Publication Date: 2026-08-04CHUZHOU KELI TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHUZHOU KELI TECH DEV CO LTD
Filing Date
2025-09-05
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

Existing data cables are prone to tangling when supporting compatibility with multiple devices, causing inconvenience and affecting aesthetics, and lack anti-tangling design.

Method used

A smart fast charging data cable compatible with multiple devices was designed. It adopts an adapter and installation mechanism, combined with a winding mechanism, to ensure that the data cable is neatly and orderly stored and tightly connected to the device. The rotating ring and spring structure prevent excessive pulling force.

Benefits of technology

It enables neat and orderly storage of data cables while ensuring compatibility with multiple devices, avoiding damage caused by tangling and pulling, extending service life and maintaining a clean and aesthetically pleasing working environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of multi-device compatible intelligent fast charging data line, belong to data line technical field, this multi-device compatible intelligent fast charging data line, including data cable, one end of the data cable is fixed with USB plug through adapter, one end of the data cable is fixed with first Type-C connector through adapter;The outside of USB plug and first Type-C connector is equipped with the installation mechanism that makes data line can be neatly and orderly received and closely connected with equipment, the inside of the installation mechanism is equipped with the winding mechanism that ensures that data line is not subjected to greater pulling force in winding process.The utility model is equipped with winding mechanism, can be rotated by rotating ring, drive data line to be wound in winding drum outside, ensure that data line is not subjected to greater pulling force in winding process, effectively prevent internal circuit breakage or short circuit etc. Problem caused by excessive pulling, significantly improve the service life of data line.
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Description

Technical Field

[0001] This utility model relates to the field of data cable technology, and in particular to a smart fast charging data cable that is compatible with multiple devices. Background Technology

[0002] Data cables are typically used as a medium for data communication between mobile devices and computers. In other words, data is transferred between mobile phones and computers via data cables. At the same time, data cables also serve as charging devices during daily use. With the rapid development of the electronics industry, data cables have become an indispensable part of our lives.

[0003] According to the announcement number CN219833241U, a vertical one-to-three retractable data cable with retractable cable harness is proposed. The main body of the one-to-three data cable is stored by a storage device. During the storage process, the main body of the one-to-three data cable comes into contact with the cable management component. The cable management component uses a first cable management protrusion on the fixed frame and a second cable management protrusion on the pressure plate to contact the main body of the one-to-three data cable. The pulling force of the storage device on the main body of the one-to-three data cable, plus the pressure of the pressure plate, makes the first cable management protrusion and the second cable management protrusion form a separation structure for the main body of the one-to-three data cable, thereby allowing the two data cables that are wrapped together to be separated quickly.

[0004] To support compatibility with multiple devices, existing cables have various connectors to accommodate different interfaces. However, the data cables themselves lack anti-tangling design, making them prone to getting tangled in small spaces such as backpacks, increasing the difficulty and time cost of accessing them. When placed on a desktop, they cannot be kept neat and orderly, affecting the aesthetics and tidiness of the work environment.

[0005] Therefore, there is an urgent need to provide a smart fast charging data cable that is compatible with multiple devices to solve the above problems. Utility Model Content

[0006] The technical problem to be solved by this utility model is to overcome the shortcomings of the prior art and provide a smart fast charging data cable that is compatible with multiple devices.

[0007] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: providing a multi-device compatible smart fast charging data cable, including a data cable, one end of which is fixed with a USB plug via an adapter, and another end of which is fixed with a first Type-C connector via an adapter; The other end of the data cable is fixed with a second Type-C connector via an adapter, the other end of the data cable is fixed with a Lightning connector via an adapter, and the other end of the data cable is fixed with a Micro connector via an adapter. The USB plug and the first Type-C connector are provided with an installation mechanism on the outside, which allows the data cable to be neatly and orderly stored and tightly connected to the device. The installation mechanism is provided with a winding mechanism inside, which ensures that the data cable is not subjected to excessive pulling force during the winding process.

[0008] With the above technical solution, one end of the data cable is connected to the device via a USB plug or a first Type-C connector, and the other end of the data cable is connected to the device via a second Type-C connector, a Lightning connector, and a Micro connector, ensuring that the connection between each connector and the data cable is firm and reliable, and that data and power can be transmitted normally.

[0009] The present invention is further configured such that: the installation mechanism includes a first guide rail plate disposed outside one end of the data cable, and a first winding drum is fixed to the top of the first guide rail plate.

[0010] With the above technical solution, the first guide rail plate and the first winding drum serve as the mounting base for the overall installation of the device.

[0011] The present invention is further configured such that: a plug hole is provided inside the first guide rail plate, the inside of the plug hole is fitted and connected to the outside of the USB plug, and a connecting rod is fixed at the top of the first winding drum.

[0012] Through the above technical solution, the first guide rail plate is used to install the USB plug through the plug hole.

[0013] The present invention is further configured such that: a second take-up drum is sleeved on the outside of the connecting rod, a second guide plate is fixed at the top of the second take-up drum, and a first screw is threaded on one side of the second guide plate, one end of which passes through and extends into the inside of the first take-up drum.

[0014] With the above technical solution, the first take-up drum is installed with the second take-up drum via a connecting rod, and the first screw fixes the first take-up drum and the second take-up drum.

[0015] The present invention is further configured such that: a connector hole is provided inside the second guide rail rotating plate, the inside of the connector hole is fitted and connected to the outside of the first Type-C connector, and a toothed retaining plate is fixed on one side of both the first guide rail rotating plate and the second guide rail rotating plate.

[0016] Through the above technical solution, the second guide rail plate is installed on the first Type-C connector through the connector hole, and the toothed retaining plate increases the friction on one side of the first guide rail plate and the second guide rail plate.

[0017] The present invention is further configured such that: the winding mechanism includes a rotating ring rotatably mounted between the first guide rail plate and the second guide rail plate; a spring housing is fixed to one end of the rotating ring; a spring housing cover is fitted onto the top end of the spring housing; and a second screw is threadedly fixed to one side of the spring housing cover, with one end penetrating and extending into the interior of the spring housing.

[0018] Using the above technical solution, by holding the first guide rail plate and the second guide rail plate by hand, the other drive ring rotates, and the data cable is wound around the outside of the first and second take-up drums through the rotating ring.

[0019] The present invention is further configured such that: a cylindrical spring is installed between the spring housing and the spring housing cover, and telescopic rod teeth are fixed at both ends of the cylindrical spring, and the outer sides of the two telescopic rod teeth are respectively tightly fitted with the inner sides of the two toothed plates.

[0020] With the above technical solution, when the rotating ring rotates, the rotating ring will continuously extend and retract through the cylindrical spring. After the rotating ring stops rotating, the cylindrical spring drives the two telescopic rod teeth to fix the rotating ring relatively through the tooth groove plate, preventing the rotating ring from continuing to rotate.

[0021] The beneficial effects of this utility model are as follows: 1. This utility model, by providing a winding mechanism, can drive the data cable to wind around the outside of the winding drum by rotating the rotating ring, ensuring that the data cable is not subjected to excessive pulling force during the winding process, effectively preventing problems such as internal circuit breakage or short circuit caused by excessive pulling, and significantly improving the service life of the data cable. 2. This utility model, by providing an installation mechanism, can install data cables to devices, thereby enabling data cables to be neatly and orderly stored and tightly connected to devices. This avoids the messy situation caused by the random placement of data cables under traditional storage methods, making the work desktop or living environment more tidy and beautiful. Attached Figure Description

[0022] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is an exploded structural diagram of the present invention; Figure 3 This is a structural diagram of the first guide rail rotating plate of this utility model; Figure 4 This is a structural diagram of the second guide rail rotating plate of this utility model; Figure 5 This is an exploded view of the winding mechanism of this utility model.

[0023] In the diagram: 1. Data cable; 2. USB plug; 3. First Type-C connector; 4. Second Type-C connector; 5. Lightning connector; 6. Micro connector; 7. Mounting mechanism; 701. First guide rail plate; 702. First winding drum; 703. Plug hole; 704. Connecting rod; 705. Second winding drum; 706. Second guide rail plate; 707. Connector hole; 708. Toothed retaining plate; 709. First screw; 8. Winding mechanism; 801. Rotating ring; 802. Spring housing; 803. Spring housing cover; 804. Second screw; 805. Cylindrical spring; 806. Telescopic rod teeth. Detailed Implementation

[0024] The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings, so that the advantages and features of the present invention can be more easily understood by those skilled in the art, thereby making a clearer and more definite definition of the scope of protection of the present invention.

[0025] Please see Figures 1-5A multi-device compatible smart fast charging data cable includes a data cable 1, one end of which is fixed with a USB plug 2 via an adapter, and another end of which is fixed with a first Type-C connector 3 via an adapter; the other end of the data cable 1 is fixed with a second Type-C connector 4 via an adapter, a Lightning connector 5 via an adapter, and a Micro connector 6 via an adapter; the USB plug 2 and the first Type-C connector 3 are externally designed to allow the data cable to be neatly and securely stored with the device. The mounting mechanism 7 includes a first guide rail plate 701 located outside one end of the data cable 1. A first take-up drum 702 is fixed to the top of the first guide rail plate 701. A plug hole 703 is provided inside the first guide rail plate 701, and the inside of the plug hole 703 is fitted and connected to the outside of the USB plug 2. A connecting rod 704 is fixed to the top of the first take-up drum 702. A second take-up drum 705 is sleeved on the outside of the connecting rod 704. A second guide rail plate 706 is fixed to the top of the second take-up drum 705. A threaded end of the second guide rail plate 706 extends through and to the first take-up drum 702. The first screw 709 inside the second guide plate 706 has a connector hole 707 inside, which fits into the outside of the first Type-C connector 3. A toothed retainer 708 is fixed to one side of both the first guide plate 701 and the second guide plate 706. One end of the data cable 1 is connected to the device via a USB plug 2 or the first Type-C connector 3, and the other end of the data cable 1 is connected to the device via a second Type-C connector 4, a Lightning connector 5, and a Micro connector 6, ensuring a secure connection between each connector and the data cable 1. It is robust and reliable, capable of transmitting data and power normally. The first guide rail plate 701 and the first take-up drum 702 serve as mounting bases to install the entire device. The first guide rail plate 701 is used to install the USB plug 2 through the plug hole 703. The second guide rail plate 706 is used to install the first Type-C connector 3 through the connector hole 707. The first take-up drum 702 is installed with the second take-up drum 705 through the connecting rod 704. The first screw 709 fixes the first take-up drum 702 and the second take-up drum 705. The toothed retaining plate 708 increases the friction on one side of the first guide rail plate 701 and the second guide rail plate 706.

[0026] like Figure 2 and Figure 5As shown, the mounting mechanism 7 has a winding mechanism 8 inside to ensure that the data cable is not subjected to excessive pulling force during the winding process. The winding mechanism 8 includes a rotating ring 801 rotatably mounted between the first guide rail plate 701 and the second guide rail plate 706. A spring housing 802 is fixed to one end of the rotating ring 801. A spring housing cover 803 is fitted onto the top of the spring housing 802. A second screw 804 is threaded onto one side of the spring housing cover 803, with one end penetrating and extending into the interior of the spring housing 802. A cylindrical spring 805 is installed between the spring housing 802 and the spring housing cover 803. Both ends of the cylindrical spring 805 are fixed with telescopic extension devices. The two telescopic rod teeth 806 are tightly fitted to the inside of the two toothed retaining plates 708. Holding the first guide rail rotating plate 701 and the second guide rail rotating plate 706 by hand, the other hand drives the rotating ring 801 to rotate. The data cable 1 is wound around the outside of the first take-up drum 702 and the second take-up drum 705 through the rotating ring 801. When the rotating ring 801 rotates, the rotating ring 801 will continuously extend and retract through the columnar spring 805. After the rotating ring 801 stops rotating, the columnar spring 805 drives the two telescopic rod teeth 806 to fix the rotating ring 801 relatively through the toothed retaining plates 708 to prevent the rotating ring 801 from continuing to rotate.

[0027] In use, the first guide rail rotating plate 701 and the second guide rail rotating plate 706 are held by hand, while the other hand drives the rotating ring 801 to rotate. The data cable 1 is wound around the outside of the first take-up drum 702 and the second take-up drum 705 through the rotating ring 801. When the rotating ring 801 rotates, the rotating ring 801 will continuously extend and retract through the columnar spring 805. After the rotating ring 801 stops rotating, the columnar spring 805 drives the two telescopic rod teeth 806 to fix the rotating ring 801 relatively through the tooth groove plate 708 to prevent the rotating ring 801 from continuing to rotate. One end of the data cable 1 is connected to the device through the USB plug 2 or the first Type-C connector 3, and the other end of the data cable 1 is connected to the device through the second Type-C connector 4, the Lightning connector 5, and the Micro connector 6, ensuring that the connection between each connector and the data cable 1 is firm and reliable, and that data and power can be transmitted normally.

[0028] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A multi-device compatible intelligent fast charging data line, comprising a data cable (1), characterized in that: One end of the data cable (1) is fixed with a USB plug (2) via an adapter, and one end of the data cable (1) is fixed with a first Type-C connector (3) via an adapter. The other end of the data cable (1) is fixed with a second Type-C connector (4) via an adapter, the other end of the data cable (1) is fixed with a Lightning connector (5) via an adapter, and the other end of the data cable (1) is fixed with a Micro connector (6) via an adapter. The USB plug (2) and the first Type-C connector (3) are provided with an installation mechanism (7) that allows the data cable to be neatly and orderly stored and tightly connected to the device. The installation mechanism (7) is provided with a winding mechanism (8) that ensures that the data cable will not be subjected to a large pulling force during the winding process.

2. The multi-device compatible smart fast charging data line of claim 1, wherein: The installation mechanism (7) includes a first guide rail plate (701) located outside one end of the data cable (1), and a first take-up drum (702) is fixed at the top of the first guide rail plate (701).

3. The multi-device compatible smart fast charging data line of claim 2, wherein: The first guide plate (701) has a plug hole (703) inside, and the inside of the plug hole (703) is fitted and connected to the outside of the USB plug (2). The top of the first winding drum (702) is fixed with a connecting rod (704).

4. The multi-device compatible smart fast charging data line of claim 3, wherein: The connecting rod (704) is fitted with a second take-up drum (705), and a second guide plate (706) is fixed to the top of the second take-up drum (705). A first screw (709) is threaded on one side of the second guide plate (706) and extends through and into the interior of the first take-up drum (702).

5. The multi-device compatible smart fast charging data line of claim 4, wherein: The second guide plate (706) has a connector hole (707) inside, and the inside of the connector hole (707) is fitted and connected to the outside of the first Type-C connector (3). The first guide plate (701) and the second guide plate (706) are both fixed with a toothed retaining plate (708) on one side.

6. The multi-device compatible smart fast charging data line of claim 5, wherein: The winding mechanism (8) includes a rotating ring (801) rotatably mounted between the first guide plate (701) and the second guide plate (706). One end of the rotating ring (801) is fixed with a spring housing (802). A spring housing cover (803) is fitted onto the top of the spring housing (802). A second screw (804) is threaded onto one side of the spring housing cover (803) and extends through and into the interior of the spring housing (802).

7. The multi-device compatible smart fast charging data line of claim 6, wherein: A cylindrical spring (805) is installed between the spring housing (802) and the spring housing cover (803). Both ends of the cylindrical spring (805) are fixed with telescopic rod teeth (806), and the exterior of the two telescopic rod teeth (806) are tightly fitted with the interior of the two toothed plates (708).