Storage data line

Through the design of the snap structure and positioning structure, the problems of cumbersome operation and poor connection stability of the data cable container are solved, and the effect of simplifying operation steps and improving connection stability is achieved, enhancing user experience and portability.

CN223141228UActive Publication Date: 2025-07-22SHENZHEN YILI INNOVATION DESIGN CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422393379.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-07-22
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

The existing data cable storage box has cumbersome operation and poor connection stability, especially the increase in the number of screwing and insufficient connection instability caused by the threaded structure.

Method used

The snap structure and positioning structure are adopted to realize the removable connection between the upper and lower shells through the coordination of the card slot and the card block, simplifying the operation steps and improving the connection stability, including the design of the card slot and the card block, the coordination of the positioning groove and the positioning member, and the use of support components and magnetic suction parts to enhance convenience and stability.

Benefits of technology

The data cable pick-up and placement operation steps are simplified, the connection stability and convenience of the box are improved, the snap structure ensures that the upper shell and the lower shell are not easily separated, and the support components and magnetic suction parts provide additional convenience and fixability.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223141228U_ABST
    Figure CN223141228U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of data lines, in particular to a storage data line. Comprising a box body, a connecting line and a buckle structure, the box body comprises an upper shell and a lower shell, the upper shell and the lower shell jointly define a containing space, a first notch is formed in the side, facing the lower shell, of the upper shell, a second notch is formed in the side, facing the upper shell, of the lower shell, and the first notch comprises a first end and a second end which are oppositely arranged; the second notch is located between the first end and the second end; the connecting line comprises a line body and two plugs respectively arranged on two sides of the line body, the two plugs are both accommodated in the accommodating space, and the line body penetrates through the first notch and the second notch; the buckle structure comprises a clamping groove and a clamping block; the clamping grooves are matched with the clamping blocks so that the upper shell can be detachably connected with the lower shell. According to the storage data line, the operation steps of taking and placing the connecting line can be simplified, the connection stability of the locked box body can be kept, and the user experience is better.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of data lines, in particular to a data line storage device. Background Art

[0002] There is a conventional capsule-type data line including a data line body and a storage box. The storage box consists of an upper shell and a lower shell, which jointly enclose a storage cavity. There is a through opening on the upper shell, which is connected to the storage cavity. Both ends of the data line body are hidden in the storage cavity, and the wire body extends out of the storage box through the through opening for easy carrying by the user. Moreover, the upper shell is connected to the lower shell through a threaded structure so that the upper shell can be separated from the lower shell and the data line can be taken out from the storage cavity for the user to use.

[0003] However, in the above structure, if the threaded structure is too long, the number of screwing operations will increase, resulting in cumbersome operation, while if the structure is too short, the connection stability between the upper shell and the lower shell will be insufficient. Summary of the Utility Model

[0004] The technical problem to be solved by the embodiments of the utility model is to provide a data line storage device to solve the problems of cumbersome operation and poor connection stability of the data line with a storage box in the prior art.

[0005] The data line provided by the embodiments of the utility model includes:

[0006] A box body, which includes an upper shell and a lower shell. The upper shell and the lower shell jointly enclose a storage space. There is a first notch on the side of the upper shell facing the lower shell, and a second notch on the side of the lower shell facing the upper shell. The first notch includes a first end and a second end oppositely arranged in a first rotation direction, and the second notch is located between the first end and the second end;

[0007] A data line, which includes a wire body and two plugs respectively installed on both sides of the wire body. Both plugs are placed in the storage space, and the wire body passes through the first notch and the second notch;

[0008] A snap structure, which includes a card slot and a card block; the card slot and the card block cooperate to make the upper shell and the lower shell detachably connected; the card slot is arranged on one of the upper shell or the lower shell, and the card block is arranged on the other of the upper shell or the lower shell. The card slot includes an access slot section and a clamping slot section. One end of the access slot section is connected to the clamping slot section, and the other end extends in a first linear direction for the card block to be inserted or taken out; the clamping slot section extends in the first rotation direction, and the plane of the first rotation direction is at an angle with the first linear direction.

[0009] In one embodiment, an insertion edge is provided on the side of the lower shell facing the upper shell. The insertion edge has an arc surface extending in the first rotation direction. The card slot is arranged at the arc surface. A slot adapted to the insertion edge is provided on the side of the upper shell facing the lower shell. The clamping block is arranged at the wall of the slot.

[0010] In one embodiment, a first positioning structure and a positioning slot are further included. The positioning slot is arranged on the side of the upper shell facing the lower shell. The positioning structure includes a mounting slot, a positioning member and a first elastic element. The mounting slot is arranged on the lower shell and corresponds to the positioning slot. The positioning member is movably arranged in the mounting slot. The first elastic element is clamped between the bottom of the mounting slot and the positioning member, so that one end of the positioning member away from the slot bottom protrudes from the mounting slot. When the positioning slot rotates to be opposite to the mounting slot, the positioning member can abut against the positioning slot to limit the clamping block in the clamping slot section.

[0011] In one embodiment, a support assembly is further included. The support assembly is installed on the side of the lower shell facing away from the upper shell or the side of the upper shell facing away from the lower shell. The support assembly includes a support member. The support member can move to form an included angle with the box body to support the box body.

[0012] In one embodiment, a boss is provided on the side of the upper shell facing away from the lower shell. The boss is cylindrical. The data cable further includes a limit cover plate. The limit cover plate is installed on the side of the boss away from the upper shell.

[0013] The support assembly further includes a rotating seat rotatably connected to the support member. The rotating seat is clamped between the upper shell and the limit cover plate. A rotating hole adapted to the boss is provided on the rotating seat, so that the rotating seat can rotate relative to the boss.

[0014] In one embodiment, a second positioning structure is provided on the side of the boss facing the rotating hole. A plurality of limiting teeth are provided on the side of the rotating hole facing the boss. The plurality of limiting teeth are arranged around the rotation center line of the rotating hole to form a tooth ring. The tooth ring can cooperate with the second positioning structure to adjust the rotation angle of the rotating seat.

[0015] In one embodiment, a receiving groove is provided on the upper shell. The boss is arranged at the bottom of the receiving groove. The rotating seat is received in the receiving groove, so that the support member can be screwed into or out of the receiving groove.

[0016] In one embodiment, a magnetic member is further included. The magnetic member is arranged on the side of the lower shell facing away from the upper shell.

[0017] In one embodiment, the receiving space includes a bottom groove wall arranged opposite to the upper shell, the bottom groove wall is provided with two contour seats, and the two plugs are respectively clamped on the two contour seats.

[0018] In one embodiment, a strap ring is further included, and the strap ring is sleeved and movably connected to the wire body.

[0019] Compared with the prior art, the beneficial effect of the data cable provided by the embodiment of the utility model is that the data cable of the present application is not only equipped with a storage box, which is convenient for users to store and carry, but also simplifies the operation steps of taking and placing the data cable while maintaining the connection stability after the box body is locked.

[0020] Specifically, when taking out the connecting wire, it is only necessary to rotate the upper shell in the first rotation direction so that the first end of the first notch moves toward the second notch, and the card block enters the entry and exit slot section from the card connection slot section, and then the upper shell moves in the first straight direction until the card block is separated from the entry and exit slot section, and the upper shell and the lower shell can be separated to complete the unlocking. When it is necessary to put in the data cable, the upper shell is buckled on the lower shell, and then the upper shell is rotated in the opposite direction so that the second end of the first notch moves toward the second notch, and the upper shell and the lower shell can be locked again by the buckle structure. Compared with the embodiment of the prior art that needs to unlock the storage box by twisting, in the above operation process, the upper shell only needs to rotate a smaller range relative to the lower shell to complete the unlocking and locking, and the operation steps are more convenient and efficient. In addition, the setting of the buckle structure can keep the upper shell and the lower shell from being easily separated after being locked, and the stability of the connection is better. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] The specific implementation of the utility model will be further described in detail below with reference to the accompanying drawings and embodiments, in which:

[0022] Figure 1 This is a three-dimensional schematic diagram of a locked state of a stored data cable provided by an embodiment of the utility model;

[0023] Figure 2 This is a three-dimensional schematic diagram of the storage data cable in the unlocked state provided by the embodiment of the utility model;

[0024] Figure 3 This is a schematic diagram of disassembling the box body and the connecting wires provided in the embodiment of the utility model;

[0025] Figure 4 It is a matching schematic diagram of the locking state of the buckle structure provided by the embodiment of the utility model;

[0026] Figure 5 It is a matching schematic diagram of the unlocked state of the buckle structure provided by the embodiment of the utility model;

[0027] Figure 6It is a disassembly schematic diagram of the box body provided by an embodiment of the present utility model;

[0028] Figure 7 is Figure 6 a partial enlarged view of part A in;

[0029] Figure 8 It is an internal schematic diagram of the second positioning structure provided by an embodiment of the present utility model;

[0030] Figure 9 It is a combined schematic diagram of the support component and the box body provided by an embodiment of the present utility model;

[0031] Figure 10 It is one of the disassembly schematic diagrams of the upper shell, the support component and the limit cover plate provided by an embodiment of the present utility model;

[0032] Figure 11 is Figure 10 a partial enlarged view of part B in;

[0033] Figure 12 It is another disassembly schematic diagram of the upper shell, the support component and the limit cover plate provided by an embodiment of the present utility model;

[0034] Figure 13 It is a three-dimensional schematic diagram of another angle of the data cable in the locked state of the storage data cable provided by an embodiment of the present utility model.

[0035] The reference numerals in the figure are as follows:

[0036] 1000, data cable;

[0037] 10, box body; 11, upper shell; 111, first notch; 1111, first end; 1112, second end; 112, positioning groove; 113, boss; 1131, second positioning structure; 114, slot; 115, accommodation groove; 116, end wall; 117, anti-slip pattern; 12, lower shell; 121, second notch; 122, insertion edge; 123, adjacent part; 1231, rotation direction mark; 13, accommodation space; 131, bottom groove wall; 1311, profiling seat;

[0038] 20, connecting wire; 21, wire body; 22, plug;

[0039] 30, buckle structure; 31, card slot; 311, access slot section; 312, clamping slot section; 32, clamping block;

[0040] 40, first positioning structure; 41, installation groove; 42, positioning member; 43, first elastic element;

[0041] 50. Support component; 51. Support member; 511. Avoidance groove; 52. Rotating seat; 521. Rotating hole; 5211. Limiting teeth; 522. Gear ring;

[0042] 60. Limiting cover plate;

[0043] 70. Magnetic attraction member;

[0044] 80. Belt loop. Detailed implementation manner

[0045] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other. Now, in conjunction with the drawings, the preferred embodiments of the present utility model will be described in detail.

[0046] An embodiment of the present utility model provides a data cable storage device 1000. As Figures 1 to 5 shown, the data cable 1000 includes a box body 10, a connecting wire 20, and a buckle structure 30. The box body 10 includes an upper shell 11 and a lower shell 12. The upper shell 11 and the lower shell 12 jointly enclose a receiving space 13. A first notch 111 is provided on the side of the upper shell 11 facing the lower shell 12, and a second notch 121 is provided on the side of the lower shell 12 facing the upper shell 11. The first notch 111 includes a first end 1111 and a second end 1112 that are oppositely arranged in a first rotation direction (as shown by the 0 direction in Figure 1 ). The second notch 121 is located between the first end 1111 and the second end 1112. The connecting wire 20 includes a wire body 21 and two plugs 22 respectively installed on both sides of the wire body 21. Both plugs 22 are accommodated in the receiving space 13, and the wire body 21 passes through the first notch 111 and the second notch 121. The buckle structure 30 includes a card slot 31 and a card block 32. The card slot 31 and the card block 32 cooperate to enable the upper shell 11 to be detachably connected to the lower shell 12. The card slot 31 is provided on one of the upper shell 11 or the lower shell 12, and the card block 32 is provided on the other of the upper shell 11 or the lower shell 12. The card slot 31 includes an access slot section 311 and a clamping slot section 312. One end of the access slot section 311 communicates with the clamping slot section 312, and the other end extends in a first straight line direction (as shown by the X direction in Figure 1 ) for the card block 32 to be inserted or removed. The clamping slot section 312 extends in the first rotation direction, and the plane of the first rotation direction is at an angle with the first straight line direction. The present application can solve the problems of cumbersome operation and poor connection stability of the data cable with a storage box in the prior art. The data cable storage device 1000 not only simplifies the operation steps of taking and placing the connecting wire 20, but also can maintain the connection stability of the box body 10 after being locked.

[0047] Specifically, when removing the connecting line 20, only by rotating the upper shell 11 in the first rotation direction to make the first end 1111 of the first notch 111 move towards the second notch 121, while the clamping block 32 enters the access slot section 311 from the clamping slot section 312. Subsequently, the upper shell 11 moves in the first linear direction until the clamping block 32 disengages from the access slot section 311, and then the upper shell 11 and the lower shell 12 can be separated to complete unlocking. When it is necessary to insert the data cable 1000, the upper shell 11 is buckled on the lower shell 12, and then the upper shell 11 is rotated in the reverse direction to make the second end 1112 of the first notch 111 move towards the second notch 121, and the upper shell 11 and the lower shell 12 can be locked again through the buckle structure 30. Compared with the prior art embodiments that require screwing to unlock the storage box, in the above operation process, the upper shell 11 only needs to rotate a relatively small range relative to the lower shell 12 to complete unlocking and locking, and the operation steps are more convenient and efficient. Moreover, the setting of the buckle structure 30 can keep the upper shell 11 and the lower shell 12 from being easily separated after being locked, and the connection stability is better.

[0048] In the present application, the upper shell 11 or the lower shell 12 provided with the clamping slot 32 includes an end wall 116, and the end wall 116 is located in the first linear direction of the clamping slot section 312. The other end of the access slot section 311 away from the clamping slot section 312 penetrates through the end wall 116, so that it is convenient for the clamping block to be directly placed into the access slot section 311 from the position where the access slot section 311 penetrates through the end wall 116, and the installation and disassembly are more convenient.

[0049] Refer to Figure 3 , in an embodiment, the lower shell 12 is provided with an insertion edge 122 on the side facing the upper shell 11. The insertion edge 122 has an arc surface extending in the first rotation direction, and the clamping slot 31 is arranged at the arc surface. The upper shell 11 is provided with a slot 114 on the side facing the lower shell 12 that is adapted to the insertion edge 122, and the clamping block 32 is arranged on the slot wall of the slot 114. With such a setting, the slot 114 and the insertion edge 122 cooperate, making it easier for the upper shell 11 to be aligned and installed with the lower shell 12. The arc surface of the insertion edge 122 can provide rotational positioning, facilitating the rotation of the upper shell 11 relative to the lower shell 12 and improving the operation efficiency of unlocking and locking.

[0050] Preferably, the arc surface is annular, so that the upper shell 11 rotates more stably relative to the lower shell 12.

[0051] In an embodiment, the lower shell 12 includes an adjacent portion 123 adjacent to the second notch 121. The second notch 121 is located between the first end 1111 and the second end 1112, so that the adjacent portion 123 can be exposed by the first notch 111. A rotation direction mark 1231 is provided on the adjacent portion 123. With such a setting, it provides a usage operation prompt for the user for the box body 10, reduces misoperation, and provides a better usage experience for the user.

[0052] Preferably, there are two adjacent parts 123, and the two adjacent parts 123 are respectively located on both sides of the second notch 121 in the first rotation direction. The two adjacent parts 123 are respectively provided with corresponding rotation direction marks 1231. When the first end 1111 of the first notch 111 moves towards the second notch 121, or the second end 1111 of the first notch 111 moves towards the second notch 121, the corresponding adjacent part 123 will be blocked, and the other adjacent part 123 will be exposed. Thus, during the user's operation, the two rotation direction marks 1231 will not be exposed simultaneously, making the operation guide clearer and avoiding user confusion about the operation direction.

[0053] In one embodiment, there are two buckle structures 30, and the two buckle structures 30 are arranged in a staggered manner in the first rotation direction. In this way, when the upper shell 11 is locked, the force is more evenly distributed, further improving the reliability of the connection between the two.

[0054] To further maintain the relative position of the latch 32 in the latching groove section 312 and improve the stability during locking. Refer to Figures 6 to 8 In one embodiment, the data cable 1000 further includes a first positioning structure 40 and a positioning groove 112. The positioning groove 112 is arranged on the side of the upper shell 11 facing the lower shell 12. The positioning structure includes an installation groove 41, a positioning member 42, and a first elastic element 43. The installation groove 41 is arranged on the lower shell 12 and corresponds to the positioning groove 112. The positioning member 42 is movably arranged in the installation groove 41. The first elastic element 43 is clamped between the bottom of the installation groove 41 and the positioning member 42, so that one end of the positioning member 42 away from the bottom of the groove protrudes from the installation groove 41. Thus, when the positioning groove 112 rotates to be opposite to the installation groove 41, the positioning member 42 can abut against the positioning groove 112. With such a setting, the first elastic element 43 acts on the positioning member 42, making the positioning member 42 always tend to move away from the bottom of the groove and abut against the upper shell 11. When the upper shell 11 rotates relative to the lower shell 12 and the latch 32 is placed in the latching groove section 312, the positioning groove 112 can rotate to be opposite to the positioning member 42, and the positioning member 42 abuts against the positioning groove 112 under the elastic force of the first elastic element 43 to keep the relative position of the latch 32 in the latching groove section 312 from moving. And when the upper shell 11 rotates in the reverse direction, the positioning member 42 can be forced to overcome the elastic force to disengage from the positioning groove 112, so that the latch 32 disengages from the latching groove section 312. Specifically, the first elastic element 43 is a spring.

[0055] It is worth mentioning that by implementing the above embodiments, when the positioning member 42 cooperates with the positioning groove 112, under the action of the first elastic element 43, it can give the user a certain tactile feedback during operation, enabling the user to more clearly know whether the locking is in place and improving the user experience.

[0056] Preferably, a spherical surface is provided on one side of the positioning member 42 facing the positioning groove 112, and the groove wall of the positioning groove 112 is adapted to the spherical surface. In this way, the contact area between the positioning member 42 and the upper shell 11 is reduced, and the frictional force during rotation is reduced, making the positioning member 42 more smooth when abutting against the upper shell 11 and rotating.

[0057] Referring to Figure 6 , in an embodiment, two positioning grooves 112 are provided, and the two positioning grooves 112 are arranged in a staggered manner in the first rotation direction. One of the positioning grooves 112 is used to maintain the relative position of the latch 32 in the latching groove section 312, and the other positioning groove 112 is used to maintain the relative position of the latch 32 adjacent to the latching groove section 312 when the latch 32 is in the access groove section 311. With such a setting, the latch 32 is initially inserted from the latching groove section 312 into the access groove section 311, and the other positioning groove 112 can still maintain the relative position of the upper shell 11 at this time, reducing the occurrence of the situation where the upper shell 11 accidentally drops without the user applying force to the upper shell 11, and improving the protection of the upper shell 11.

[0058] Referring to Figure 1 , in an embodiment, the upper shell 11 includes an outer peripheral surface, and anti-slip lines 117 are provided on the outer peripheral surface to increase the frictional force and facilitate the user to rotate the upper shell 11.

[0059] Referring to Figure 9 , in an embodiment, the data cable 1000 further includes a support assembly 50. The support assembly 50 is installed on the side of the lower shell 12 facing away from the upper shell 11 or on the side of the upper shell 11 facing away from the lower shell 12. The support assembly 50 includes a support member 51, and the support member 51 can move to be disposed at an angle with the box body 10 to support the box body 10. With such a setting, through the setting of the support member 51, the box body 10 itself can be used as a bracket, eliminating the need for the user to carry an additional bracket, thereby increasing the convenience and experience of the user. For example, the box body 10 can support mobile terminals such as mobile phones and tablets, enabling the user to adjust the pitching angle of the device for convenient viewing and operation of the screen.

[0060] Referring to Figure 10, in one embodiment, a boss 113 is provided on the side of the upper shell 11 facing away from the lower shell 12. The boss 113 is cylindrical. The data cable 1000 further includes a limit cover plate 60, and the limit cover plate 60 is installed on the side of the boss 113 away from the upper shell 11; the support assembly 50 further includes a rotating seat 52 connected to the support member 51. The rotating seat 52 is clamped between the upper shell 11 and the limit cover plate 60, and a rotating hole 521 adapted to the boss 113 is provided on the rotating seat 52, so that the rotating seat 52 can rotate relative to the boss 113. In this way, the upper shell 11 and the limit cover plate 60 limit the axial movement of the rotating seat 52 to maintain the relative position between the rotating hole 521 and the boss 113, so that the rotating seat 52 can rotate smoothly relative to the upper shell 11, and further change the position of the support member 51 relative to the upper shell 11. The user can adjust the position of the support member 51 according to actual usage requirements, improving the flexibility of use.

[0061] In the above embodiment, the limit cover plate 60 and the boss 113 are detachably connected, and there are many ways to set them. For example, plug connection, magnetic connection or threaded connection. Exemplarily, in the present application, a threaded hole is provided on the side of the boss 113 facing the limit cover plate 60, a through hole is provided on the limit cover plate 60, and a screw passes through the through hole and is threadedly connected to the threaded hole, so as to connect the limit cover plate 60 and the boss 113.

[0062] Further, the support member 51 is hinged to the side of the rotating seat 52 away from the rotation center line, so as to adjust the angle of the support member 51 relative to the rotating seat 52.

[0063] Preferably, an avoidance groove 511 is further provided on the opposite side of the position where the support member 51 is rotatably connected to the rotating seat 52. The setting of the avoidance groove 511 facilitates the user to apply a force to the support member 51, so that the support member 51 can be screwed out relative to the rotating seat 52 more quickly.

[0064] Refer to Figures 10 to 12 , in one embodiment, a second positioning structure 1131 is provided on the side of the boss 113 facing the rotating hole 521, and a plurality of limit teeth 5211 are provided on the side of the rotating hole 521 facing the boss 113. The plurality of limit teeth 5211 are arranged around the rotation center line of the rotating hole 521 to form a tooth ring 522. The tooth ring 522 can cooperate with the second positioning structure 1131 to adjust the rotation angle of the rotating seat 52. With such a setting, the second positioning structure 1131 and the tooth ring 522 cooperate to provide positioning when the rotating seat 52 rotates, enabling the user to more precisely control the rotation angle of the rotating seat 52 and having a stronger sense of control.

[0065] In the above embodiment, the setting method of the second positioning structure 1131 is the same as that of the first positioning structure 40, and will not be repeated here.

[0066] Refer to Figure 12, in one embodiment, the upper shell 11 is provided with a receiving groove 115, the boss 113 is disposed at the bottom of the receiving groove 115, and the rotating seat 52 is received in the receiving groove 115 so that the support member 51 can be screwed into or out of the receiving groove 115. With this arrangement, when not in use, the support assembly 50 can be hidden in the receiving groove 115, effectively reducing the occupied space of the support assembly 50 outside, reducing the overall volume, and making it more convenient for the user to carry.

[0067] Referring to Figure 13 , in one embodiment, the data cable 1000 further includes a magnetic member 70, and the magnetic member 70 is disposed on the side of the lower shell 12 facing away from the upper shell 11. With this arrangement, the box body 10 can be magnetically connected to the mobile terminal. The magnetic fixing method is not only convenient and fast, but also can provide a more firm connection when used as a bracket, preventing the mobile terminal from shifting and improving the user experience. Specifically, the magnetic member 70 is a magnet.

[0068] It is worth mentioning that by implementing the above embodiments, the portability of the data cable 1000 can also be increased. For example, the box body 10 can be magnetically attached to the back of the mobile phone, which is convenient for the user to carry, and when the user needs to use the power bank to charge the mobile phone, the connection cable 20 can be used more quickly, saving time and effort.

[0069] Referring to Figure 6 , in one embodiment, the receiving space 13 includes a bottom groove wall 131 disposed opposite to the upper shell 11, and two profiling seats 1311 are provided on the bottom groove wall 131, and the two plugs 22 are respectively clamped on the two profiling seats 1311. With this arrangement, the profiling seats 1311 can protect the plugs 22 on the one hand, and on the other hand, the two plugs 22 can be placed in an orderly manner in the receiving space 13 for work, facilitating quick storage in the box body 10.

[0070] Specifically, the two profiling seats 1311 are arranged in parallel and both are disposed opposite to the second notch 121. In this way, when the two plugs 22 are respectively clamped on the two profiling seats 1311, the wire body 21 can pass through the second notch 121, so that the upper shell 11 can be directly buckled to the lower shell 12, reducing the time required to arrange the wire body 21 during storage.

[0071] The two plugs 22 can be a combination of Lightning interfaces, USB-C interfaces, and USB-A interfaces, and are not limited herein. Exemplarily, in the present application, the two plugs 22 are both USB-C interfaces.

[0072] Referring to Figure 1 And Figure 2, in one embodiment, the data line 1000 further includes a cable tie loop 80, and the cable tie loop 80 is sleeved and movably connected to the wire body 21. With such a setting, on the one hand, the cable tie loop 80 can limit the wire body 21 to prevent the wire body 21 from winding around itself, so as to ensure that the wire body 21 is fixed neatly and orderly. On the other hand, by adjusting the position of the cable tie loop 80, the user can hang and carry the box body 10 through the wire body 21.

[0073] Specifically, the user can hook the wire body 21 with a hook and move the cable tie loop 80 to the end of the wire body 21 away from the box body 10 to lock the hooking position. In this way, the user can hang the box body 10 at a suitable position, such as on a backpack or a suitcase, to further improve portability.

[0074] It should be understood that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them. For those skilled in the art, the technical solutions described in the above embodiments can be modified, or some of the technical features can be equivalently replaced; and all such modifications and replacements should fall within the protection scope of the appended claims of the present invention.

Claims

1. A data cable storage device, characterized in that it comprises a box body, which includes an upper shell and a lower shell. The upper shell and the lower shell jointly enclose a receiving space. A first notch is provided on one side of the upper shell facing the lower shell, and a second notch is provided on one side of the lower shell facing the upper shell. The first notch includes a first end and a second end oppositely arranged in a first rotation direction, and the second notch is located between the first end and the second end; a connecting wire, which includes a wire body and two plugs respectively installed on both sides of the wire body. Both plugs are accommodated in the receiving space, and the wire body passes through the first notch and the second notch; a buckle structure, which includes a card slot and a card block; the card slot and the card block cooperate to enable the upper shell to be detachably connected to the lower shell; the card slot is provided on one of the upper shell or the lower shell, and the card block is provided on the other of the upper shell or the lower shell. The card slot includes an access slot section and a clamping slot section. One end of the access slot section communicates with the clamping slot section, and the other end extends in a first straight line direction for the card block to be inserted or removed; the clamping slot section extends in the first rotation direction, and the plane of the first rotation direction is arranged at an angle to the first straight line direction.

2. The data cable storage device according to claim 1, wherein An insertion edge is provided on one side of the lower shell facing the upper shell. The insertion edge has an arc surface extending in the first rotation direction. The card slot is provided at the arc surface. A slot adapted to the insertion edge is provided on one side of the upper shell facing the lower shell, and the card block is provided on the slot wall of the slot.

3. The data cable storage device according to claim 2, wherein It further includes a first positioning structure. A positioning slot is provided on one side of the upper shell facing the lower shell. The positioning structure includes an installation slot, a positioning member, and a first elastic element. The installation slot is provided on the lower shell and corresponds to the positioning slot. The positioning member is movably arranged in the installation slot. The first elastic element is clamped between the bottom of the installation slot and the positioning member, so that one end of the positioning member away from the slot bottom protrudes from the installation slot. When the positioning slot rotates to be opposite to the installation slot, the positioning member can abut against the positioning slot to limit the card block in the clamping slot section.

4. The data cable storage device according to any one of claims 1 to 3, characterized in that It further includes a support assembly, which is installed on the side of the lower shell facing away from the upper shell or the side of the upper shell facing away from the lower shell. The support assembly includes a support member, and the support member can move to be arranged at an angle to the box body for supporting the box body.

5. The data cable storage device according to claim 4, wherein A boss is provided on the side of the upper shell facing away from the lower shell. The boss is cylindrical. The data cable further includes a limit cover plate, and the limit cover plate is installed on the side of the boss away from the upper shell; The support assembly further includes a rotating seat rotatably connected to the support member. The rotating seat is clamped between the upper shell and the limit cover plate, and a rotating hole adapted to the boss is provided on the rotating seat, so that the rotating seat can rotate relative to the boss.

6. The data cable storage device according to claim 5, wherein A second positioning structure is provided on one side of the boss facing the rotation hole, and a plurality of limiting teeth are provided on one side of the rotation hole facing the boss. The plurality of limiting teeth are arranged around the rotation center line of the rotation hole to form a tooth ring, and the tooth ring can cooperate with the second positioning structure to adjust the rotation angle of the rotating seat.

7. The data cable storage device according to claim 6, wherein The upper shell is provided with a receiving groove, the boss is arranged at the bottom of the receiving groove, and the rotating seat is received in the receiving groove so that the support member can be screwed into or out of the receiving groove.

8. The data cable storage device according to any one of claims 1 to 3, characterized in that, It further includes a magnetic member, and the magnetic member is arranged on the side of the lower shell facing away from the upper shell.

9. The data cable storage device according to claim 1, wherein The receiving space includes a bottom groove wall arranged opposite to the upper shell, and two profiling seats are arranged on the bottom groove wall, and the two plugs are respectively clamped on the two profiling seats.

10. The data cable storage device according to claim 1, wherein, It further includes a cable tie ring, and the cable tie ring is sleeved and movably connected to the wire body.