Adjustable hanging rope data line device

By setting up a wire buckle and connecting pipe on the data line, combining the locking and limiting structure, the problem of unadjustable data line length and insufficient load-bearing capacity is solved, and a lanyard data line device with simple structure, easy portability and combined with the mobile phone case is realized.

CN223093252UActive Publication Date: 2025-07-11DONGGUAN XCOSO ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202422138569.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-11
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The existing data cable has complex structure, unadjustable length, insufficient load-bearing capacity, and is not convenient to use with mobile phone covers.

Method used

An adjustable lanyard data line device is designed to form a closed hanging ring through the wire buckle and connecting pipe, combining the locking and limiting structure to achieve length adjustment, and can be used in conjunction with the mobile phone cover to enhance load-bearing capacity.

Benefits of technology

It realizes adjustable data cable length, simple structure, strong load-bearing capacity, and is easy to use with mobile phone covers, improving the convenience of carrying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an adjustable hanging rope data line device which comprises a data line, a mobile phone sleeve, a connecting pipe, a line buckle and a clamping part, and two ends of a wire rod of the data line are respectively provided with a first joint and a second joint; the wire buckle is provided with two wire holes, and the wire penetrates through one wire hole and then penetrates back from the other wire hole to form a hanging ring on one side of the wire buckle. The clamping part is arranged in the mobile phone cover and partially extends out to be connected with the hanging ring so as to form a hanging structure for the mobile phone; the connecting pipe is sleeved on the wire rod on the other side of the wire buckle, and the first connector and the second connector are respectively connected and fixed with the connecting pipe to enable the wire rod to form a hanging rope structure. In this way, the connecting pipe and the connector can be matched to form a hanging rope, the position of the wire buckle on the wire can be changed by pulling the wire buckle, the overlong wire can be taken back in the charging process, the effect of adjusting the length of the data line is achieved, and meanwhile the length of the hanging rope can be adjusted by moving the wire buckle when the data line is used as the hanging rope. Therefore, using habits of different users can be adapted.
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Description

Technical Field

[0001] The utility model relates to the technical field of data line devices, in particular to a data line device that can be used as a lanyard. Background Art

[0002] Traditional data lines generally include wire materials and connectors provided at both ends of the wire materials, such as USB connectors, TYPE-C connectors, etc. Since data lines are generally long and not convenient to carry, people have designed data lines into various portable structures. For example, the multifunctional data line disclosed in the Chinese utility model patent CN207504298U, in which the plugs at both ends of the data line are detachably connected to the connecting member, and a connecting rope is provided on the connecting member. The connecting rope can be used to hang items such as name tags, MP3 players or mobile phones, so that it can be hung around the neck as a lanyard for easy carrying. However, the length of this data line is not easy to adjust to take back the excess amount of the wire material, and the length of the data line in the lanyard state cannot be adjusted. In addition, this data line cannot be used in combination with mobile phones and mobile phone cases, which is not convenient enough, and the structure is relatively complex, and the load-bearing capacity is not high enough. Summary of the Utility Model

[0003] The technical problem to be solved by the utility model is the defect of the prior art, and to provide a lanyard data line device with a simpler structure, adjustable use length and lanyard length, stronger load-bearing capacity, capable of being used in cooperation with mobile phones and mobile phone cases, and more convenient and practical.

[0004] To solve the above technical problem, the utility model adopts the following technical scheme: An adjustable lanyard data line device, including a data line and a mobile phone case. The wire materials at both ends of the data line respectively have a first connector and a second connector. It is characterized in that: it further includes a connecting pipe, a wire buckle and a clamping component. The wire buckle has two wire holes, and the wire material passes through one wire hole and then passes back through the other wire hole to form a closed hanging loop on one side of the wire buckle; the clamping component is installed in the mobile phone case and extends out of the mobile phone case by a part to be connected with the hanging loop to form a hanging structure for the mobile phone; the connecting pipe is sleeved on the wire material on the other side of the wire buckle, and is fixedly connected with the connecting pipe through the first connector and the second connector respectively, so that the wire material on this side of the wire buckle forms a closed loop-shaped lanyard structure, which can be used to hang around the neck or obliquely on the shoulder.

[0005] Further, a locking structure is provided on the first connector, and a limiting structure is provided on the second connector. The connecting pipe is sleeved on the wire material near the second connector side and is blocked by the limiting structure on the second connector, so that the connecting pipe will not fall off from the second connector. By inserting the first connector into the connecting pipe and locking its locking structure with the connecting pipe, the wire material forms a lanyard structure.

[0006] Further, the locking structure is a threaded connection structure. A threaded portion is provided on the first connector, and an internal thread is provided at one end of the connecting pipe opposite to the first connector. The first connector is connected and fixed to the connecting pipe by screwing the threaded portion into the connecting pipe.

[0007] Further, the limiting structure is a snap ring provided on the surface of the second connector, and the end of the connecting pipe is blocked by the snap ring.

[0008] Further, the clamping member includes a card. The main body part of the card is installed in the mobile phone case, and a part of the card extends out of the mobile phone case to form a hanging ear. The hanging ear is connected with a hanging ring, and the hanging ring is connected with a hanging loop.

[0009] Further, the card is attached to the bottom inside the mobile phone case, and the card is pressed after the mobile phone is inserted into the mobile phone case; the hanging ear extends out along the bottom edge of the mobile phone case, and the hanging ear is located below the charging port on the mobile phone case.

[0010] Further, a connecting ring is provided on the hanging loop, and the hanging ring is connected and fixed to the connecting ring through an openable buckle.

[0011] Further, anti-slip lines are longitudinally arranged on the surface of the connecting pipe for easy screwing.

[0012] Preferably, the wire buckle is made of a plastic material or a metal material, and its peripheral surface is an arc structure.

[0013] Further, the first connector and the second connector are TYPE-C connectors, LIGHTNING connectors, MIRCO-USB connectors or USB-A male connectors. The two connectors can be of the same type or different types.

[0014] In the present utility model, by providing a wire buckle and a connecting pipe on the wire, the wire is bundled by the wire buckle to form a hanging loop structure. In this way, not only can a hanging rope be formed in cooperation with the connecting pipe and the connector, but also by pulling the wire buckle to change its position on the wire, the too-long wire during charging can be retracted, achieving the effect of adjusting the length of the data cable. At the same time, when used as a hanging rope, moving the wire buckle can also adjust the length of the hanging rope part to adapt to the usage habits of different users. For example, the lengths required for hanging the mobile phone in front of the chest or slanting across the shoulder are different. In addition, it is fixed in the mobile phone case through the clamping member and used in cooperation with the wire, and has a high load-bearing capacity. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic structural diagram of the hanging state of the present utility model;

[0016] Figure 2 is a schematic structural diagram of the rechargeable state of the present utility model;

[0017] Figure 3Schematic diagram of the mating of the connecting tube and the data line connector;

[0018] Figure 4 Schematic diagram of the structure of the combined state of the card and the mobile phone case.

[0019] In the figure, 1 is the wire, 11 is the first connector, 12 is the second connector, 13 is the threaded part, 14 is the snap ring, 15 is the hanging loop, 2 is the connecting tube, 3 is the wire buckle, 4 is the connecting ring, 5 is the hook, 6 is the hanging ring, 7 is the card, 71 is the hanging ear, 8 is the mobile phone case, and 9 is the mobile phone. Detailed implementation method

[0020] In this embodiment, referring to Figures 1 - 4 , the adjustable lanyard data line device includes a data line and a mobile phone case 8. Both ends of the wire 1 of the data line are respectively provided with a first connector 11 and a second connector 12; it also includes a connecting tube 2, a wire buckle 3 and a clamping component. The wire buckle 3 has two wire holes, and the wire 1 passes through one wire hole and then passes back through the other wire hole to form a closed hanging loop 15 on one side of the wire buckle 3; the clamping component is installed in the mobile phone case 8 and extends out of the mobile phone case 8 by a part to be connected with the hanging loop 15 to form a hanging structure for the mobile phone 9; the connecting tube 2 is sleeved on the wire 1 on the other side of the wire buckle 3. That is to say, the hanging loop 15 and the connecting tube 2 are respectively located on both sides of the wire buckle 3; the wire 1 on this side of the wire buckle 3 forms a closed loop-shaped lanyard structure by connecting and fixing the first connector 11 and the second connector 12 to the connecting tube 2 respectively, which can be used to hang on the neck or obliquely on the shoulder.

[0021] A locking structure is provided on the first connector 11, and a limiting structure is provided on the second connector 12. The connecting tube 2 is sleeved on the wire 1 near the second connector 12 and is blocked by the limiting structure on the second connector 12, so that the connecting tube 2 will not fall off from the second connector 12. By inserting the first connector 11 into the connecting tube 2 and locking its locking structure with the connecting tube 2, the wire 1 forms a lanyard structure. That is to say, when the first connector 11 is connected to the connecting tube 2, the entire wire 1 will form a lanyard. When the first connector 11 is disconnected from the connecting tube 2, the wire 1 will not be closed, and at this time it can be used for charging.

[0022] The locking structure is a threaded connection structure. A threaded part 13 is provided on the first connector 11, and an internal thread 13 is provided at the end of the connecting tube 2 opposite to the first connector 11. The first connector 11 is connected and fixed to the connecting tube 2 by screwing the threaded part 13 into the connecting tube 2. This makes the connection and fixation more stable and has a stronger load-bearing capacity.

[0023] The limiting structure is a snap ring 14 provided on the surface of the second connector 12, and the tail end of the connecting tube 2 is blocked by the snap ring 14.

[0024] The snap-in component includes a card 7. The main part of the card 7 is installed inside the phone case 8, and a part of the card 7 extends outside the phone case 8 to form a hanging ear 71. A hanging ring 6 is connected to the hanging ear 71, and the hanging ring 6 is connected to the hanging loop 15.

[0025] The card 7 is attached to the bottom inside the phone case 8. After the phone 9 is inserted into the phone case 8, the card 7 is pressed down; the hanging ear 71 extends out along the bottom edge of the phone case 8, and the hanging ear 71 is located below the charging port on the phone case 8 and does not interfere with the charging port.

[0026] A connecting ring 4 is provided on the hanging loop 15. The hanging ring 6 is connected and fixed to the connecting ring 4 through a detachable hook 5 (the hook 5 is similar to a keychain) so that the phone 9 can be easily removed.

[0027] Anti-slip patterns are longitudinally provided on the surface of the connecting pipe 2 for easy screwing.

[0028] The wire buckle 3 is made of plastic material or metal material, and its peripheral surface is an arc structure.

[0029] The first connector 11 and the second connector 12 are TYPE-C connectors, LIGHTNING connectors, MIRCO-USB connectors or USB-A male connectors. The two connectors can be of the same type or different types, and the interface type can be selected according to actual needs.

[0030] The above has described the present utility model in detail. The above description is only the preferred embodiment of the present utility model, and it cannot limit the scope of implementation of the present utility model. That is, all equivalent changes and modifications made according to the scope of this application should still fall within the scope covered by the present utility model.

Claims

1. An adjustable lanyard data cable device, comprising a data cable and a mobile phone case, with the two ends of the wire of the data cable respectively having a first connector and a second connector, characterized in that: It further includes a connecting pipe, a wire buckle and a clamping component. The wire buckle has two wire holes. The wire passes through one wire hole and then passes back through the other wire hole to form a closed hanging loop on one side of the wire buckle. The clamping component is installed in the mobile phone case and extends out of the mobile phone case by a part to be connected with the hanging loop to form a hanging structure for the mobile phone. The connecting pipe is sleeved on the wire located on the other side of the wire buckle and is respectively connected and fixed with the connecting pipe through a first joint and a second joint so that the wire on this side of the wire buckle forms a closed loop-shaped hanging rope structure.

2. The adjustable lanyard data cable device according to claim 1, wherein: A locking structure is arranged on the first joint, and a limiting structure is arranged on the second joint. The connecting pipe is sleeved on the wire near the second joint side and is blocked by the limiting structure on the second joint. By inserting the first joint into the connecting pipe and locking its locking structure with the connecting pipe, the wire forms a hanging rope structure.

3. The adjustable lanyard data cable device according to claim 2, wherein: The locking structure is a threaded connection structure. A threaded portion is arranged on the first joint, and an internal thread is arranged at the end of the connecting pipe opposite to the first joint. The first joint is connected and fixed with the connecting pipe by screwing the threaded portion into the connecting pipe.

4. The adjustable lanyard data line device according to claim 2, characterized in that: The limiting structure is a snap ring arranged on the surface of the second joint, and the tail end of the connecting pipe is blocked by the snap ring.

5. The adjustable lanyard data cable device according to claim 1, wherein: The clamping component includes a card. The main body part of the card is installed in the mobile phone case, and a part of the card extends out of the mobile phone case to form a hanging ear. The hanging ear is connected with a hanging ring, and the hanging ring is connected with the hanging loop.

6. The adjustable lanyard data cable device according to claim 5, wherein: The card is attached to the bottom inside the mobile phone case and is pressed by the mobile phone after the mobile phone is installed in the mobile phone case. The hanging ear extends out along the bottom edge of the mobile phone case, and the hanging ear is located below the charging port on the mobile phone case.

7. The adjustable lanyard data cable device according to claim 5, characterized in that: A connecting ring is arranged on the hanging loop, and the hanging ring is connected and fixed with the connecting ring through a hook that can be opened.

8. The adjustable lanyard data cable device according to claim 1, wherein: Anti-slip lines are arranged longitudinally on the surface of the connecting pipe.

9. The adjustable lanyard data cable device according to claim 1, wherein: The wire buckle is made of plastic material or metal material, and its peripheral surface is an arc structure.

10. The adjustable lanyard data cable device according to claim 1, wherein: The first joint and the second joint are TYPE-C joints, LIGHTNING joints, MIRCO-USB joints or USB-A male heads.

Citation Information

Patent Citations

  • Multifunctional data line

    CN207504298U