Data line with storage mechanism
By introducing a storage mechanism and a limiting mechanism into the data cable, the problems of data cable tangling and knotting and storage box loss during carrying are solved, realizing automatic storage and convenient carrying.
Patent Information
- Application Number
- CN202520029923.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Traditional data cables are prone to tangling and knotting during transport, and their storage boxes are easily lost, making them inconvenient to use.
Design a data cable with a storage mechanism, including a storage shell and a winding roller, and achieve automatic storage and fixation of the data cable through a limiting mechanism and a torsion spring.
It enables automatic storage of data cables when not in use, avoiding tangling and knots, reducing the risk of losing the storage box, and improving portability.
Smart Images

Figure CN223713250U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the device technical field of adjustable bendable lead in support, concretely is a data line with storage mechanism. BACKGROUND
[0002] With the wide use of electronic products, people often need to transmit data between electronic devices, and data lines, as a tool for data transmission, have been widely used. Data lines are cables used for transmitting data, which are usually composed of two or more wires and can be used to connect computers, mobile phones, printers, hard drives and other devices to transmit data between them. In order to facilitate use, people often carry data lines in pockets or bags.
[0003] The traditional data line is a single wire with plugs and delivery heads at both ends. The length of the data line is fixed and cannot be extended or shortened. When carrying the data line, people usually roll it up for storage. However, over time, the data line will spread out and become tangled when taken out of the bag or pocket. When using it, the tangled data line needs to be untangled first, which brings inconvenience to the use of the data line and also reduces its service life. Placing the data line in a storage box can prevent it from tangling and knotting, but the data line and the storage box are two separate entities, which can easily lead to the storage box being lost. SUMMARY
[0004] (I) Technical problems solved
[0005] To overcome the shortcomings of the prior art, the utility model provides a data line with a storage mechanism, which can automatically store the data line when not in use, preventing the data line from tangling and knotting when carried, and preventing the storage box from being lost, making it easier to store and carry the data line.
[0006] (II) Technical solutions
[0007] To achieve the above purpose, the utility model provides the following technical solutions: a data line with a storage mechanism, comprising a storage shell, a winding roller rotatably connected inside the storage shell, the upper and lower ends of the winding roller being rotatably connected to the top wall and bottom wall of the storage shell, respectively;
[0008] A partition ring is fixedly connected to the inner surface of the storage shell, and the partition ring does not contact the winding roller. A data line is provided inside the storage shell. A torsion slot is provided on the lower side of the winding roller, and a torsion spring is fixedly connected to the top wall of the torsion slot.
[0009] The lower end of the torsion spring is fixedly connected with the bottom wall of the storage shell, the torsion spring drives the winding roller to reset, the storage shell is provided with a limiting mechanism, and the limiting mechanism can be used for limiting and fixing after the data line is stored in the storage shell.
[0010] The limiting mechanism comprises a connecting groove, a sliding groove, a clamping groove, a control block, a clamping block, two limiting grooves, two limiting plates, two first springs, a baffle groove, a sliding baffle and a second spring.
[0011] Preferably, the data line is arranged on the left side of the winding roller, and both ends of the data line are slidably arranged on the left side of the storage shell.
[0012] Both ends of the data line are arranged on the upper and lower sides of the separation ring, and the left side of the outer surface of the winding roller is fixedly connected with two buckles.
[0013] The two buckles are arranged on the upper and lower sides of the separation ring, and the data line passes through the two buckles.
[0014] Preferably, the connecting groove is arranged on the upper side of the storage shell, the connecting groove extends into the interior of the storage shell, and the sliding groove is arranged on the upper side of the winding roller.
[0015] The sliding groove is opposite to the connecting groove in position, and the clamping groove is arranged on the bottom wall of the sliding groove.
[0016] Preferably, the clamping groove is a rectangular groove, the control block is slidably connected in the connecting groove and the sliding groove, the clamping block is fixedly connected to the lower side of the control block, and the clamping block is matched with the clamping groove.
[0017] The two limiting grooves are arranged in the interior of the storage shell, and are arranged on the left and right sides of the connecting groove respectively.
[0018] Preferably, the two limiting plates are slidably connected in the two limiting grooves respectively, and opposite surfaces of the two limiting plates are fixedly connected with the control block.
[0019] The two first springs are fixedly connected to the lower side of the limiting plate respectively, the lower ends of the two first springs are fixedly connected with the bottom wall of the two limiting grooves respectively, and the baffle groove is arranged in the interior of the storage shell.
[0020] Preferably, the baffle groove is arranged on the front side of the connecting groove, the baffle groove is communicated with the interior of the connecting groove, and the sliding baffle is slidably connected in the interior of the baffle groove.
[0021] The sliding baffle is in contact with the control block but is not fixedly connected with the control block, the second spring is fixedly connected to the front side of the sliding baffle, and the front end of the second spring is fixedly connected with the front wall of the baffle groove.
[0022] (Three) beneficial effects
[0023] Compared with the prior art, the data line with the storage mechanism has the following beneficial effects:
[0024] (1), the data line with the storage mechanism, the sliding baffle moves to the front side, and then the blocking state of the control block is removed, and then the control block and the clamping block move upward, and then the limiting state between the clamping block and the clamping groove is removed, and then the winding roller winds the data line, and then the data line is wound on the outer surface of the winding roller, and then the two plugs stop at the outer surface of the storage shell, and then the storage of the data line can be completed, and in this way, the data line can be automatically stored and placed when not in use, and the user can carry the data line without winding and knotting, and the storage box will not be lost, and the storage and carrying of the data line are facilitated.
[0025] (2), the data line with the storage mechanism, the baffle slot is opened in the inside of the storage shell, the baffle slot is arranged on the front side of the connecting groove, the baffle slot is communicated with the inside of the connecting groove, the sliding baffle is slidably connected in the inside of the baffle slot, the second spring is fixedly connected on the front side of the sliding baffle, and the front end of the second spring is fixedly connected with the front wall of the baffle slot, so that the winding roller is limited and fixed when the data line is used, and the winding roller will not automatically shrink the data line when used, and the sliding baffle is in the inside, so that the situation of removing the limiting and fixing due to accidental touch is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0026] Fig. 1 The utility model relates to a data line structure schematic diagram with storage mechanism,
[0027] Fig. 2 The utility model relates to a storage shell front side section connection structure schematic diagram,
[0028] Fig. 3 The utility model relates to a storage shell left side section connection structure schematic diagram.
[0029] In the drawing: 1, storage shell, 2, winding roller, 3, separation ring, 4, data line, 5, buckle, 6, torsion slot, 7, torsion spring, 8, connecting groove, 9, sliding groove, 10, clamping groove, 11, control block, 12, clamping block, 13, limiting slot, 14, limiting plate, 15, first spring, 16, baffle slot, 17, sliding baffle, 18, second spring. DETAILED DESCRIPTION
[0030] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative efforts under the premise that no creative efforts are made, belong to the scope of protection of the present application.
[0031] Please refer to Figs. 1 to 3 The utility model provides a new technical scheme: a data line with storage mechanism, including storage shell 1, the inside rotation connection has winding roll 2 of storage shell 1, and the upper and lower two ends of winding roll 2 are rotationally connected with the top wall and bottom wall of storage shell 1, and the inner surface of storage shell 1 is fixedly connected with the partition ring 3, the partition ring 3 does not contact with winding roll 2, and the inside of storage shell 1 is provided with data line 4, data line 4 is arranged on the left side of winding roll 2, and the two ends of data line 4 are slidably penetrated out of the left side of storage shell 1, and the two ends of data line 4 are arranged on the upper and lower sides of partition ring 3 respectively, two buckles 5 are fixedly connected on the left side of the outer surface of winding roll 2, two buckles 5 are arranged on the upper and lower sides of partition ring 3 respectively, data line 4 passes through two buckles 5, a torsion groove 6 is formed in the lower side of winding roll 2, a torsion spring 7 is fixedly connected on the top wall of torsion groove 6, the lower end of torsion spring 7 is fixedly connected with the bottom wall of storage shell 1, and winding roll 2 is reset by torsion spring 7, a limiting mechanism is arranged on storage shell 1, and the limiting mechanism can be limited and fixed after data line 4 is stored in the inside of storage shell 1, and the limiting mechanism includes connecting groove 8, sliding groove 9, clamping groove 10, control block 11, clamping block 12, two limiting grooves 13, two limiting plates 14, two first springs 15, baffle groove 16, sliding baffle 17 and second spring 18.
[0032] Further, the connecting groove 8 is formed on the upper side of the storage shell 1, the connecting groove 8 extends into the inside of the storage shell 1, the sliding groove 9 is formed on the upper side of the winding roll 2, the sliding groove 9 is opposite to the position of the connecting groove 8, the clamping groove 10 is formed on the bottom wall of the sliding groove 9, the clamping groove 10 is a rectangular groove, the control block 11 is slidably connected in the connecting groove 8 and the sliding groove 9, the clamping block 12 is fixedly connected on the lower side of the control block 11, the clamping block 12 is matched with the clamping groove 10, the diameter of the winding roll 2 is designed according to the length of the data line 4, and then the clamping groove 10 on the winding roll 2 is matched with the clamping block 12 after the data line 4 is pulled out and after the data line 4 is stored, the two limiting grooves 13 are formed in the inside of the storage shell 1, the two limiting grooves 13 are arranged on the left and right sides of the connecting groove 8, and the two limiting grooves 13 are communicated with the inside of the connecting groove 8.
[0033] Further, two limiting plates 14 are respectively slidably connected in the two limiting grooves 13, the opposite surfaces of the two limiting plates 14 are fixedly connected with the control block 11, two first springs 15 are respectively fixedly connected on the lower side of the limiting plate 14, the lower ends of the two first springs 15 are respectively fixedly connected with the bottom wall of the two limiting grooves 13, the baffle groove 16 is opened in the inside of the storage shell 1, the baffle groove 16 is arranged on the front side of the connecting groove 8, the baffle groove 16 is communicated with the inside of the connecting groove 8, the sliding baffle 17 is slidably connected in the inside of the baffle groove 16, the sliding baffle 17 is in contact with the control block 11 but not fixedly connected, the second spring 18 is fixedly connected on the front side of the sliding baffle 17, and the front end of the second spring 18 is fixedly connected with the front wall of the baffle groove 16.
[0034] When starting work, when it is necessary to store the data line 4, the user moves the sliding baffle 17 to the front side, and then the sliding baffle 17 will move to the inside of the baffle groove 16, at this time the second spring 18 starts to be compressed, and then the sliding baffle 17 removes the blocking state of the control block 11, and then the two first springs 15 start to push the two limiting plates 14 to move upward, and then the two limiting plates 14 drive the control block 11 to move upward synchronously, at this time the control block 11 will block the sliding baffle 17, and then the sliding baffle 17 will be blocked in the inside of the baffle groove 16, and then the control block 11 drives the clamping block 12 to move upward, and then the clamping block 12 will move out of the clamping groove 10, and then the limiting state between the clamping block 12 and the clamping groove 10 is removed, and then the winding roller 2 can rotate, and then the torsion spring 7 will start to reset from the deformed state, drive the winding roller 2 to rotate, the winding roller 2 drives the two buckles 5 to rotate synchronously, and then the two buckles 5 drive the data line 4 to be wound, and then the data line 4 will be wound on the outer surface of the winding roller 2, until the two plugs are stopped at the outer surface of the storage shell 1, and then the storage of the data line 4 can be completed.
[0035] When using, the two plugs of the data line 4 can be pulled out, and after being pulled out completely, the control block 11 is pressed downward, according to the above, the control block 11 drives the clamping block 12 to move to the inside of the clamping groove 10 to form a limiting, and then the control block 11 is located on the lower side of the sliding baffle 17, after the sliding baffle 17 is not blocked, the second spring 18 pushes the sliding baffle 17 to move to the upper side of the control block 11 to block it, so that the clamping block 12 and the clamping groove 10 can be clamped all the time, in this way, the data line 4 can be automatically stored and placed when not in use, so that the data line 4 will not be tangled and knotted when carried by the user, and the storage box will not be lost, which facilitates the storage and carrying of the data line 4 by people.
[0036] Working principle: when starting work, when the data line 4 needs to be stored, the user moves the sliding baffle 17 to the front side, and then the sliding baffle 17 will move to the inside of the baffle groove 16, at this time the second spring 18 starts to become a compressed state, and then the sliding baffle 17 removes the blocking state of the control block 11, and then the two first springs 15 start to push the two limiting plates 14 to move upwards, and then the two limiting plates 14 drive the control block 11 to move upwards synchronously, at this time the control block 11 will block the sliding baffle 17, and then the sliding baffle 17 will be blocked in the inside of the baffle groove 16, and then the control block 11 drives the clamping block 12 to move upwards, and then the clamping block 12 will move out from the inside of the clamping groove 10, and then the limiting state between the clamping block 12 and the clamping groove 10 is removed, and then the winding roller 2 can rotate, and then the torsion spring 7 will start to reset from the deformed state, drive the winding roller 2 to rotate, the winding roller 2 drives the two buckles 5 to rotate synchronously, and then the two buckles 5 drive the data line 4 to be wound, and then the data line 4 will be wound on the outer surface of the winding roller 2, until the two plugs are stopped on the outer surface of the storage shell 1, and then the storage of the data line 4 can be completed.
[0037] When in use, the two plugs of the data line 4 can be pulled out, and after being pulled out completely, the control block 11 is pressed downward, and according to the above, the control block 11 drives the clamping block 12 to move to the inside of the clamping groove 10 to form limiting, and then the control block 11 will be on the lower side of the sliding baffle 17, after the sliding baffle 17 is not blocked, the second spring 18 will push the sliding baffle 17 to move to the upper side of the control block 11 to block it, so that the clamping block 12 and the clamping groove 10 can be clamped all the time.
[0038] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to these embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A data cable with a storage mechanism, comprising a storage shell (1), wherein a winding roller (2) is rotatably connected inside the storage shell (1), and the upper and lower ends of the winding roller (2) are rotatably connected to the top wall and the bottom wall of the storage shell (1), respectively. A separator ring (3) is fixedly connected to the inner surface of the storage shell (1). The separator ring (3) does not contact the winding roller (2). A data cable (4) is provided inside the storage shell (1). A torsion groove (6) is provided on the lower side of the winding roller (2). A torsion spring (7) is fixedly connected to the top wall of the torsion groove (6). The lower end of the torsion spring (7) is fixedly connected to the bottom wall of the housing (1), and the torsion spring (7) drives the winding roller (2) to reset. Its characteristic is that: The storage shell (1) is provided with a limiting mechanism, which can limit and fix the data cable (4) after it is stored inside the storage shell (1); The limiting mechanism includes a connecting groove (8), a sliding groove (9), a snap-fit groove (10), a control block (11), a snap-fit block (12), two limiting grooves (13), two limiting plates (14), two first springs (15), a baffle groove (16), a sliding baffle (17), and a second spring (18).
2. The data cable with a storage mechanism according to claim 1, characterized in that: The data line (4) is located on the left side of the take-up roller (2), and both ends of the data line (4) slide through the left side of the storage shell (1); The two ends of the data cable (4) are respectively set on the upper and lower sides of the separator ring (3), and two buckles (5) are fixedly connected to the left side of the outer surface of the take-up roller (2); Two clips (5) are respectively set on the upper and lower sides of the separator ring (3), and the data cable (4) passes through the two clips (5).
3. The data cable with a storage mechanism according to claim 1, characterized in that: The connecting groove (8) is opened on the upper side of the storage shell (1) and extends into the interior of the storage shell (1). The sliding groove (9) is opened on the upper side of the winding roller (2). The sliding groove (9) and the connecting groove (8) are positioned opposite each other, and the snap-fit groove (10) is opened on the bottom wall of the sliding groove (9).
4. A data cable with a storage mechanism according to claim 2, characterized in that: The snap-fit groove (10) is a rectangular groove. The control block (11) is slidably connected inside the connecting groove (8) and the sliding groove (9). The snap-fit block (12) is fixedly connected to the lower side of the control block (11). The snap-fit block (12) is adapted to the snap-fit groove (10). Both limiting grooves (13) are opened inside the storage shell (1). The two limiting grooves (13) are respectively set on the left and right sides of the connecting groove (8). Both limiting grooves (13) are connected to the inside of the connecting groove (8).
5. A data cable with a storage mechanism according to claim 1, characterized in that: The two limiting plates (14) are slidably connected inside the two limiting grooves (13), and the opposite surfaces of the two limiting plates (14) are fixedly connected to the control block (11); Two first springs (15) are fixedly connected to the lower side of the limiting plate (14), and the lower ends of the two first springs (15) are fixedly connected to the bottom wall of the two limiting grooves (13). The baffle groove (16) is opened inside the storage shell (1).
6. A data cable with a storage mechanism according to claim 5, characterized in that: The baffle groove (16) is provided on the front side of the connecting groove (8), and the baffle groove (16) is connected to the interior of the connecting groove (8). The sliding baffle (17) is slidably connected to the interior of the baffle groove (16). The sliding baffle (17) is in contact with the control block (11) but not fixedly connected. The second spring (18) is fixedly connected to the front side of the sliding baffle (17), and the front end of the second spring (18) is fixedly connected to the front wall of the baffle groove (16).