Adsorbable data line connector

By designing an adsorption structure and a storage slot limiting structure on the data cable connector, the problem of the data cable connector becoming loose after long-term use is solved, achieving a stable connection and convenient storage.

CN223729161UActive Publication Date: 2025-12-26SHENZHEN DONGSHENG WEIYE ELECTRONIC CO LTD
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Patent Information

Application Number
CN202520010525.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-12-26
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing data cable connectors tend to loosen after prolonged use, causing them to frequently disconnect from the socket and resulting in unstable operation.

Method used

An adsorption-type data cable connector was designed, which adopts an adsorption structure including a rotating shaft, a support rod and a suction cup. The suction cup is used to adsorb onto the wall to increase stability, and the storage slot and limiting structure solve the problems of space occupation and damage caused by vibration.

Benefits of technology

It achieves a stable connection of the data cable connector on the socket, avoiding loosening and damage, and improving ease of use and durability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of data line connectors, in particular to an adsorbable data line connector which comprises a connector body and adsorption structures arranged on the two sides of the connector body and used for enabling the connector body to be inserted into a socket more stably. The adsorption structure comprises a rotating shaft rotationally connected to the connector body, a supporting rod fixedly connected to the shaft face of the rotating shaft, and a suction cup arranged on the end face of the end, away from the rotating shaft, of the supporting rod. A user only needs to rotate the supporting rod to enable the suction face of the suction cup to face a wall, then the connector body is inserted into a socket, the suction cup sucks the wall, and therefore the connector body can be inserted into the socket more stably.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of data line connectors, in particular to a data line connector capable of being adsorbed. BACKGROUND

[0002] The data line connector is a plug of a data line, which is used for plugging into a socket to provide power to an electrical appliance through the data line.

[0003] However, in the prior art, when a user uses the data line connector, the following situation may occur: because the socket has been used for a long time, the data line connector is very loose after being plugged into the socket, so that when the user uses the electrical appliance connected with the data line, the data line connector will be separated from the socket if the user moves the data line connector slightly. Therefore, the present application provides a data line connector capable of being adsorbed, which is used for making the data line connector more stable when being plugged into the socket. CONTENT OF THE UTILITY MODEL

[0004] In view of the deficiencies in the prior art, the present application aims to provide a data line connector capable of being adsorbed, which is used for making the data line connector more stable when being plugged into the socket.

[0005] The above-mentioned purpose of the present application is achieved by the following technical solution: a data line connector capable of being adsorbed, comprising a connector body, an adsorption structure arranged on both sides of the connector body and used for making the connector body more stable when being plugged into a socket, the adsorption structure comprising a rotating shaft rotatably connected to the connector body, a support rod fixedly connected to an axial surface of the rotating shaft, and a suction disc arranged on an end surface of the support rod away from the rotating shaft.

[0006] By adopting the above-mentioned technical solution, when the user encounters a socket that has been used for a long time and the connector body is very loose after being plugged into the socket, the user only needs to rotate the support rod so that the adsorption surface of the suction disc faces the wall, and then plug the connector body into the socket, so that the suction disc adsorbs the wall, thereby making the connector body more stable when being plugged into the socket.

[0007] Further, a receiving groove is arranged on both sides of the connector body along the length direction of the connector body, an inner end of the receiving groove is provided with a connecting sleeve fixedly connected to the connector body, and the rotating shaft is plugged into the connecting sleeve and rotatably connected to the connecting sleeve.

[0008] By adopting the above technical scheme, although the setting of the adsorption structure makes the connector body more stable when being inserted into the socket, the adsorption structure occupies the space on both sides of the connector body, so that the user needs to pay attention to the adsorption structure when placing the connector body to prevent the adsorption structure from being damaged, which is very inconvenient. The setting of the storage groove solves this technical problem. By the setting of the storage groove, when the user does not use the storage structure, the support rod can be rotated to a transverse state, and then the rotating shaft is pushed into the connecting sleeve, so that the support rod with the suction cup is retracted into the storage groove. In this way, the adsorption structure does not occupy the space on both sides of the connector body, and the user does not need to worry about damaging the adsorption structure when placing the connector body, so that the user can store the connector body more conveniently.

[0009] Further, the support rod is a telescopic rod.

[0010] By adopting the above technical scheme, the support rod can be extended longer to facilitate the suction cup to adsorb the wall, and the support rod can be shortened and stored in the storage groove.

[0011] Further, the end of the support rod away from the rotating shaft is provided with a connecting structure, and the suction cup is rotatably connected to the support rod through the connecting structure.

[0012] Further, the connecting structure includes a connecting groove penetrating through the support rod from top to bottom, a rotating shaft rotatably connected to the support rod in the connecting groove, and a connecting rod fixedly connected to the shaft face of the rotating shaft, and the suction cup is fixedly connected to the end face of the connecting rod away from the rotating shaft.

[0013] By adopting the above technical scheme, the setting of the connecting structure enables the suction cup to rotate up and down on the support rod, so that the user can use the suction cup to adsorb on the wall more conveniently.

[0014] Further, the side of the storage groove is provided with a limiting structure for preventing the rotating shaft from extending along the connecting sleeve.

[0015] Further, the limiting structure includes a plug-in groove opened on one side of the storage groove and penetrating through the connector body, and a limiting plate plugged into the connector body through the plug-in groove and used for closing the storage groove.

[0016] Through adoption of the above technical scheme, although the setting of the storage groove makes it more convenient for the user to store the connector body, the user will produce vibration when carrying the connector body to move, and this vibration will cause the rotating shaft to extend out of the storage groove along the connecting sleeve, causing the entire adsorption structure to extend out of the storage groove, so that the adsorption structure can also have the risk of being crushed, and the setting of the limiting structure solves this technical problem. Through the setting of the limiting structure, after the user pushes the adsorption structure into the storage groove, the limiting plate can be pushed to make the limiting plate inserted into the storage groove through the insertion groove and block the storage groove, and at the same time block the adsorption structure in the storage groove. In this way, the adsorption structure will not extend out of the storage groove due to vibration, thereby preventing the adsorption structure from being crushed.

[0017] Further, the limiting plate is provided with a handle away from the storage groove.

[0018] Through adoption of the above technical scheme, the user can pull the limiting plate.

[0019] In summary, the present application includes at least one of the following beneficial technical effects:

[0020] Through the setting of the adsorption structure, when the user encounters a socket that has been used for a long time and the connector body is inserted in the socket very loosely, the user only needs to rotate the supporting rod to make the adsorption surface of the suction cup face the wall, and then insert the connector body into the socket, so that the suction cup sucks the wall, achieving the purpose of making the connector body inserted in the socket more stable. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is a schematic diagram of the overall structure of the embodiment;

[0022] Figure 2 is Figure 1 is an enlarged view of part A in FIG. 1.

[0023] Reference signs: 1, connector body; 10, storage groove; 11, connecting sleeve; 2, adsorption structure; 20, rotating shaft; 21, supporting rod; 22, suction cup; 3, connecting structure; 30, connecting groove; 31, rotating shaft; 32, connecting rod; 4, limiting structure; 40, insertion groove; 41, limiting plate; 42, handle. DETAILED DESCRIPTION

[0024] The present application will be further described in detail below with reference to the accompanying drawings.

[0025] The embodiment, with reference to Figure 1The utility model provides an adsorbing type data line connector, which comprises a connector body 1, adsorption structures 2 arranged on both sides of the connector body 1 for making the connector body more stable when being inserted into a socket, the adsorption structure 2 comprises a rotating shaft 20 rotatably connected to the connector body 1, a supporting rod 21 fixedly connected to the shaft surface of the rotating shaft 20 and a suction disc 22 arranged on the end surface of the supporting rod 21 away from the rotating shaft 20, when a user encounters a socket that has been used for a long time and the connector body 1 is very loose when being inserted into the socket, the user only needs to rotate the supporting rod 21 to make the adsorption surface of the suction disc 22 face the wall, and then inserts the connector body 1 into the socket, so that the suction disc 22 is adsorbed to the wall, thereby making the connector body 1 more stable when being inserted into the socket.

[0026] Although the adsorption structure 2 makes the connector body 1 more stable when being inserted into the socket, the adsorption structure 2 occupies the space on both sides of the connector body 1, so that the user needs to pay attention to the adsorption structure 2 when placing the connector body 1 to prevent the adsorption structure 2 from being damaged, which is very inconvenient. In order to solve this technical problem, the utility model discloses that a receiving groove 10 is arranged on both sides of the connector body 1 along the length direction of the connector body 1, a connecting sleeve 11 fixedly connected to the connector body 1 is arranged at one end in the receiving groove 10, and the rotating shaft 20 is inserted into the connecting sleeve 11 and rotatably connected to the connecting sleeve 11. Through the arrangement of the receiving groove 10, when the user does not use the receiving structure, the supporting rod 21 can be rotated to a transverse state, and then the rotating shaft 20 is pushed to retract into the connecting sleeve 11, so that the supporting rod 21 with the suction disc 22 retracts into the receiving groove 10. In this way, the adsorption structure 2 does not occupy the space on both sides of the connector body 1, so that the user does not need to worry about damaging the adsorption structure 2 when placing the connector body 1, thereby making it more convenient for the user to store the connector body 1.

[0027] In the embodiment, the supporting rod 21 is a telescopic rod, so that the supporting rod 21 can be extended longer to facilitate the suction disc 22 to adsorb the wall, and the supporting rod 21 can also be shortened to be stored in the receiving groove 10.

[0028] Referring to Figure 2 In the embodiment, the end of the supporting rod 21 away from the rotating shaft 20 is provided with a connecting structure 3, and the suction disc 22 is rotatably connected to the supporting rod 21 through the connecting structure 3. The connecting structure 3 comprises a connecting groove 30 penetrating through the supporting rod 21 from top to bottom, a rotating shaft 31 rotatably connected to the supporting rod 21 in the connecting groove 30 and a connecting rod 32 fixedly connected to the shaft surface of the rotating shaft 31. The suction disc 22 is fixedly connected to the end surface of the end of the connecting rod 32 away from the rotating shaft 31. Through the arrangement of the connecting structure 3, the suction disc 22 can rotate up and down on the supporting rod 21, thereby making it more convenient for the user to adsorb the wall using the suction disc 22.

[0029] Although the setting of the storage groove 10 makes it more convenient for the user to store the connector body 1, the user will vibrate when carrying the connector body 1 to move, and this vibration will cause the rotating shaft 20 to extend out of the storage groove 10 along the connecting sleeve 11, causing the entire suction structure 2 to extend out of the storage groove 10, so that the suction structure 2 may also be at risk of being crushed. In order to solve this technical problem, the embodiment is provided with a limiting structure 4 on one side of the storage groove 10 to prevent the rotating shaft 20 from extending along the connecting sleeve 11. The limiting structure 4 includes a plug-in groove 40 opened on one side of the storage groove 10 and penetrating the connector body 1, and a limiting plate 41 plugged into the connector body 1 through the plug-in groove 40 and used to close the storage groove 10. Through the setting of the limiting structure 4, after the user pushes the suction structure 2 into the storage groove 10, the limiting plate 41 can be pushed to make the limiting plate 41 inserted into the storage groove 10 through the plug-in groove 40 and block the storage groove 10, while blocking the suction structure 2 in the storage groove 10. In this way, the suction structure 2 will not extend out of the storage groove 10 due to vibration, thereby preventing the suction structure 2 from being crushed.

[0030] In the embodiment, the side of the limiting plate 41 away from the storage groove 10 is provided with a handle 42 to facilitate the user to pull the limiting plate 41.

[0031] Specific implementation process: when the user encounters a socket that has been used for a long time, and the connector body 1 is inserted into the socket very loosely, the user only needs to pull the supporting rod 21 outward, then extend the supporting rod 21 to make the suction surface of the suction disc 22 align with the wall, and then plug the connector body 1 into the socket to make the suction disc 22 suck the wall, thereby making the connector body 1 more stable in the socket. After using the connector body 1, when it is necessary to store the connector body 1, the user only needs to push the supporting rod 21 to shrink, then rotate the supporting rod 21 to the transverse state, and then push the supporting rod 21 to shrink into the storage groove 10, and then push the limiting plate 41 to block the storage groove 10, so as to store the connector body 1.

[0032] The embodiments of the specific implementation are the preferred embodiments of the application, and are not limited to the protection scope of the application. Therefore, any equivalent changes made according to the structure, shape, principle of the application should be covered within the protection scope of the application.

Claims

1. An adsorptive data line connector, characterized by, The utility model relates to a connector body (1), set up on both sides of connector body (1) for making the connector body (1) is inserted on the socket more stable adsorption structure (2), adsorption structure (2) include the pivot (20) of rotation connection on connector body (1), fixedly connected on the axle surface of pivot (20) support rod (21) and set up on the end face of support rod (21) far from pivot (20) suction disc (22).

2. The adsorbable data line connector of claim 1, wherein, The utility model relates to a connector body (1), set up on both sides of connector body (1) for making the connector body (1) is inserted on the socket more stable adsorption structure (2), adsorption structure (2) include the pivot (20) of rotation connection on connector body (1), fixedly connected on the axle surface of pivot (20) support rod (21) and set up on the end face of support rod (21) far from pivot (20) suction disc (22).

3. The adsorbable data line connector of claim 1, wherein, The utility model relates to a connector body (1), set up on both sides of connector body (1) for making the connector body (1) is inserted on the socket more stable adsorption structure (2), adsorption structure (2) include the pivot (20) of rotation connection on connector body (1), fixedly connected on the axle surface of pivot (20) support rod (21) and set up on the end face of support rod (21) far from pivot (20) suction disc (22).

4. The adsorbable data line connector of claim 2, wherein, The utility model relates to a connector body (1), set up on both sides of connector body (1) for making the connector body (1) is inserted on the socket more stable adsorption structure (2), adsorption structure (2) include the pivot (20) of rotation connection on connector body (1), fixedly connected on the axle surface of pivot (20) support rod (21) and set up on the end face of support rod (21) far from pivot (20) suction disc (22).

5. The adsorbable data line connector of claim 4, wherein, The utility model relates to a connector body (1), set up on both sides of connector body (1) for making the connector body (1) is inserted on the socket more stable adsorption structure (2), adsorption structure (2) include the pivot (20) of rotation connection on connector body (1), fixedly connected on the axle surface of pivot (20) support rod (21) and set up on the end face of support rod (21) far from pivot (20) suction disc (22).

6. The adsorbable data line connector of claim 2, wherein, The utility model relates to a connector body (1), set up on both sides of connector body (1) for making the connector body (1) is inserted on the socket more stable adsorption structure (2), adsorption structure (2) include the pivot (20) of rotation connection on connector body (1), fixedly connected on the axle surface of pivot (20) support rod (21) and set up on the end face of support rod (21) far from pivot (20) suction disc (22).

7. The adsorbable data line connector of claim 6, wherein, The utility model relates to a connector body (1), set up on both sides of connector body (1) for making the connector body (1) is inserted on the socket more stable adsorption structure (2), adsorption structure (2) include the pivot (20) of rotation connection on connector body (1), fixedly connected on the axle surface of pivot (20) support rod (21) and set up on the end face of support rod (21) far from pivot (20) suction disc (22).

8. The adsorbable data line connector of claim 7, wherein, ​