Take-up device

By designing a wire retractor for winding ducts, storage ducts and locking parts, the problems of easy damage and complex structure of the data cable are solved, and the effective storage and plug protection of the data cable are realized, reducing the difficulty and cost of production.

CN223141222UActive Publication Date: 2025-07-22SHENZHEN GEM MICRO-POWER TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422087359.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-07-22
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

Existing data cables are easily knotted and entangled with each other during carrying and charging, resulting in damage, and the existing cable collectors are complex in structure, costly and difficult to recover.

Method used

A wire collector is designed, including a winding groove, a first storage groove and a second storage groove. The data line is wound through the winding notch, the storage notch and the chute groove structure, and is fixed by a locking member to prevent the data line from loosening.

Benefits of technology

Effectively prevent data cable from being disengaged and plug damage, reduce production difficulty, adapt to different plug shapes, save material costs, and adapt to data cables of different lengths.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The take-up device comprises a body, a winding groove is formed in the circumferential direction of the body in a surrounding mode, at least one side of the body in the axial direction is provided with a first containing groove and a second containing groove, the winding groove is used for guiding winding of a data line, and the first containing groove is used for containing and fixing a first plug of the data line; the second accommodating groove is used for accommodating and fixing a second plug of the data line; a first winding notch is formed in the groove wall, close to the first storage groove, of the winding groove, and is used for guiding part of the data line close to the first plug to face the first storage groove; a second winding notch is formed in the groove wall, close to the second storage groove, of the winding groove, and is used for guiding part of the data line close to the second plug to face the second storage groove; a plurality of guide grooves are arranged between the two side walls of the winding groove in a surrounding manner and are used for guiding the winding path of the data line. Through the take-up device, the data line can be prevented from being separated, and the first plug and the second plug of the data line can be stored and fixed to prevent the data line from being damaged.
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Description

Technical Field

[0001] This application relates to the technical field of data cable management devices, and particularly to a wire winder. Background Art

[0002] With the popularization of portable mobile electronic devices (such as mobile phones, tablet computers, etc.), various electronic device products have become an indispensable part of people's daily lives. The role of the data cables used for charging and data transmission of electronic device products is also irreplaceable. Various data cables are prone to knotting and tangling with each other during carrying and charging, and over time, the data cables are easily damaged. Utility Model Content

[0003] This application mainly provides a wire winder. The data cable can be stored by winding around the body, and the wound data cable is fixed to the body by a locking member.

[0004] According to the first aspect of this application, a wire winder is provided, including a body. A wire winding groove is circumferentially and surroundingly provided on the body. At least one side in the axial direction of the body is provided with a first storage groove and a second storage groove. The wire winding groove is used to guide the winding of the data cable. The first storage groove is used to store and fix the first plug of the data cable. The second storage groove is used to store and fix the second plug of the data cable. A first wire winding notch is provided on the groove wall of the wire winding groove close to the first storage groove. The first wire winding notch is used to guide a part of the data cable close to the first plug towards the first storage groove. A second wire winding notch is provided on the groove wall of the wire winding groove close to the second storage groove. The second wire winding notch is used to guide a part of the data cable close to the second plug towards the second storage groove. A plurality of guiding grooves are also circumferentially and surroundingly provided between the two side walls of the wire winding groove. The plurality of guiding grooves are used to guide the winding path of the data cable.

[0005] As a further scheme of the wire winder provided by this application, a first storage notch is provided on one side of the first storage groove close to the first wire winding notch. The first storage notch is used to guide a part of the data cable close to the first plug to be stored in the first storage groove. A second storage notch is provided on one side of the second storage groove close to the second wire winding notch. The second storage notch is used to guide a part of the data cable close to the second plug to be stored in the second storage groove.

[0006] As a further scheme of the wire winder provided by this application, a first card slot is further provided between the first wire winding notch and the first storage notch. The first card slot is used to hold a part of the data cable close to the first plug. A second card slot is also provided between the second wire winding notch and the second storage notch. The second card slot is used to hold a part of the data cable close to the second plug.

[0007] As a further solution of the wire reel provided in the present application, the guiding grooves are parallel to each other.

[0008] As a further solution of the wire reel provided in the present application, at least the groove walls of the guiding grooves near the first wire winding notch are provided with first guiding notches, the first guiding notches communicate with the first wire winding notch, and the first guiding notches are used to guide the first plug of the data cable towards the first storage groove; at least the side walls of the guiding grooves near the second wire winding notch are provided with second guiding notches, the second guiding notches communicate with the second wire winding notch, and the second guiding notches are used to guide the second plug of the data cable towards the second storage groove.

[0009] As a further solution of the wire reel provided in the present application, a plurality of mutually parallel partition plates are arranged in a surrounding manner between the two side walls of the wire winding groove, and the guiding grooves are formed at intervals between adjacent two partition plates and between the partition plate close to the side wall of the wire winding groove and the side wall of the wire winding groove; the first guiding notch is arranged on the partition plate close to the first storage groove, and the second guiding notch is arranged on the partition plate close to the second storage groove.

[0010] As a further solution of the wire reel provided in the present application, the partition plates among the plurality of partition plates without the first guiding notch and the second guiding notch are provided with wire crossing notches, and the wire crossing notches are used to guide the data cable to cross from one guiding groove to another guiding groove.

[0011] As a further solution of the wire reel provided in the present application, the first storage groove and the second storage groove are respectively arranged on both sides in the axial direction of the body, and the middle of the body is further provided with a first rotating part and a second rotating part, the first rotating part and the second rotating part are rotatably installed on the body, the first storage groove is arranged on the first rotating part, and the second storage groove is arranged on the second rotating part.

[0012] As a further solution of the wire reel provided in the present application, it further includes a locking member, one end of the locking member is movably installed on one side in the axial direction of the body, and the other end of the locking member can be fixed on the other side in the axial direction of the body to fix the data cable wound on the wire winding groove.

[0013] According to a second aspect of the present application, the present application provides a wire winder, including a main body, a wire winding groove is circumferentially provided around the main body, at least one side in the axial direction of the main body is provided with a first storage groove and a second storage groove, the wire winding groove is used to guide the winding of the data cable, the first storage groove is used to store and fix the first plug of the data cable, and the second storage groove is used to store and fix the second plug of the data cable; a first wire winding notch is provided on the groove wall of the wire winding groove close to the first storage groove, and the first wire winding notch is used to guide a part of the data cable close to the first plug towards the first storage groove; a second wire winding notch is provided on the groove wall of the wire winding groove close to the second storage groove, and the second wire winding notch is used to guide a part of the data cable close to the second plug towards the second storage groove.

[0014] For the wire winder according to the above embodiment, the data cable is wound in the wire winding groove, and the side wall of the wire winding groove can block the wound data cable to prevent it from detaching. At the same time, the first storage groove and the second storage groove can respectively store and fix the first plug and the second plug of the data cable to prevent the first plug and the second plug of the data cable from being damaged. At the same time, the data cable wound in the wire winding groove is fixed to the main body through the locking member, and the data cable can be fixed to prevent it from loosening. Description of the Drawings

[0015] Figure 1 Is a perspective view of the wire winder provided by the present application in the first embodiment;

[0016] Figure 2 Is a perspective view of the wire winder provided by the present application in the first embodiment with the locking member locked;

[0017] Figure 3 Is a perspective view of the wire winder provided by the present application in the first embodiment from another perspective;

[0018] Figure 4 Is a perspective view of the wire winder provided by the present application in the second embodiment;

[0019] Figure 5 Is a perspective view of the wire winder provided by the present application in the second embodiment with the locking member locked;

[0020] Figure 6 Is a perspective view of the wire winder provided by the present application in the second embodiment from another perspective. Detailed Description of the Embodiments

[0021] The present invention is further described in detail below by specific embodiments in conjunction with the accompanying drawings. Wherein similar elements in different embodiments adopt associated similar element numbers. In the following embodiments, many detailed descriptions are for making the present application better understood. However, those skilled in the art can easily recognize that some features can be omitted in different situations, or can be replaced by other elements, materials, methods. In some cases, some operations related to the present application are not shown or described in the specification, this is to avoid the core part of the present application being overwhelmed by too much description, and for those skilled in the art, it is not necessary to describe these related operations in detail, and they can fully understand the related operations according to the description in the specification and the general technical knowledge in the art.

[0022] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate manner to form various implementations. At the same time, the steps or actions in the method description can also be interchanged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the various sequences in the specification and the drawings are only for the purpose of clearly describing a certain embodiment and are not meant to be a required sequence, unless otherwise specified that a certain sequence must be followed.

[0023] The serial numbers of the components in this document, such as "first", "second", etc., are only used to distinguish the objects described and do not have any order or technical meaning. The "connection" and "coupling" mentioned in this application, unless otherwise specified, include direct and indirect connections (couplings).

[0024] In order to store the data cable, some cable retractors often use an elastic structure to allow the turntable to automatically rotate so that the data cable can be automatically wound on the turntable, but this structure is complex, the manufacturing cost is high, and it is difficult to recover when a failure occurs, which invisibly increases the cost of use. At the same time, the data cable is located inside the cable retractor after being stored, and the plug of the data cable is located outside the cable retractor. Due to bending and other reasons, the plug and part of the data cable near the plug may be damaged.

[0025] In view of the above problems, the present application provides a cable take-up device, which can wind the data cable in the circumferential winding groove of the body, and respectively receive the first plug and the second plug of the data cable in the axial first receiving groove and the second receiving groove of the body to receive the data cable.

[0026] Embodiment 1

[0027] See also Figures 1 - 3As shown in the figure, the take-up reel provided in this embodiment includes a main body 10. A wire winding groove 11 is provided in the circumferential direction of the main body 10. The wire winding groove 11 is arranged around the circumferential direction of the main body 10. At least one side in the axial direction of the main body 10 is provided with a first storage groove 12 and a second storage groove 12'. The wire winding groove 11 is used to guide the winding of the data cable. Usually, a first plug and a second plug are respectively provided at both ends of the data cable. The first plug can be a female plug connected to a mobile device (such as a mobile phone or a tablet computer, etc.), and the second plug can be a male plug connected to a charging device or a power supply or a terminal device (such as a computer, etc.). The first storage groove 12 is used to fix the first plug of the data cable, and the second storage groove 12' is used to store the second plug of the data cable, so that the first plug and the second plug of the data cable are not exposed outside the main body 10, and the first plug and the second plug can be protected respectively through the first storage groove 12 and the second plug 12' to prevent them from being damaged.

[0028] The data cable is usually a charging cable that can charge a mobile device or a data cable that can be connected to a terminal device to transmit data. A female plug and a male plug are respectively arranged at both ends thereof. The first storage groove 12 and the second storage groove 12' are adapted to the shapes of the female plug and the male plug, so as to store the female plug and the male plug in a tight fit manner.

[0029] For different mobile devices, the female plug can be in the form of a Type-C interface, a Lightning interface, etc. Therefore, a plurality of first storage grooves 12 with different shapes and sizes can be provided to adapt to the storage of different female plugs, making the application of this take-up reel more extensive.

[0030] In this way, two first storage grooves 12 can be provided on one side in the axial direction of the main body 10, or two first storage grooves 12 can be provided on both sides in the axial direction of the main body 10. The two first storage grooves 12 can respectively store the female plugs of different types of data cables.

[0031] In this embodiment, taking the setting of one first storage groove 12 as an example for illustration, at the same time, the first storage groove 12 and the second storage groove 12' are respectively provided on both sides in the axial direction of the main body 10.

[0032] The main body 10 is usually integrally formed by injection molding. The main body 10 is also provided with a hollowed-out portion 13 along its axial direction, which can effectively save the material cost of production, and the first storage groove 12 and the second storage groove 12' are respectively arranged in the non-hollowed-out area of the main body 10 along its axial direction.

[0033] In this embodiment, the first storage groove 12 and the second storage groove 12' are respectively provided on both sides in the axial direction of the main body 10, and the first storage groove 12 and the second storage groove 12' are symmetrically arranged, which can reduce the manufacturing difficulty of the main body 10.

[0034] When the data line wound into the winding groove 11 needs to be guided into the first receiving groove 12, in order to guide the data line into the first receiving groove 12 and the second receiving groove 12' without being loose, continue to refer to Figures 1 - 3 As shown, a first winding notch 111 is provided on the groove wall of the winding groove 11 near the first receiving groove 12. The first winding notch 111 is used to guide the part of the data line near the first plug toward the first receiving groove 12. The side of the first winding notch 111 can form a block for the part of the data line to prevent it from being displaced and becoming loose, and can also prevent the part of the data line from being bent across. A second winding notch 111' is provided on the groove wall of the winding groove 11 near the second receiving groove 12'. The second winding notch 111' is used to guide the part of the data line near the second plug toward the second receiving groove 12'. The side of the second winding notch 111' can form a block for the part of the data line to prevent it from being displaced and becoming loose, and can also prevent the part of the data line from being bent across.

[0035] Continue to see Figures 1 - 3 As shown, in order to prevent the data line wound in the winding groove 11 from becoming loose or messy, a plurality of guide grooves 112 are also provided between the two side walls of the winding groove 11. The plurality of guide grooves 112 are used to guide the winding path of the data line so that the data line can be wound along the path of the guide grooves 112.

[0036] In this embodiment, the provision of multiple guide grooves 112 allows the data cable to be wound in the winding groove 11 along the path of the guide grooves 112 when winding, making the data cable more beautiful when winding. At the same time, the first receiving groove 12 and the second receiving groove 12' respectively receive the first plug and the second plug of the data cable, which can prevent the plugs from bending.

[0037] In the present application, a plurality of guide grooves 112 are arranged parallel to each other, so that the groove walls of the guide grooves 112 are parallel to each other. In a preferred embodiment, the groove walls of the guide grooves 112 are parallel to the groove walls of the winding grooves 11. Such an arrangement can reduce the difficulty of product manufacturing compared to the method of using spiral guide grooves or winding grooves, and only the side walls need to be kept parallel.

[0038] See also Figure 1 and Figure 2 As shown, the first receiving groove 12 is surrounded by a first wall 121 protruding from the side surface of the main body 10 in the axial direction. When a portion of the data cable close to the first plug is guided to the first receiving groove 12 through the first winding notch 111, in order to avoid the problem of bending of the portion of the data cable crossing the first wall 121, a first receiving notch 122 is provided on one side of the first receiving groove 12 close to the first winding notch 111. The first receiving notch 122 is used to guide a portion of the data cable close to the first plug to be received in the first receiving groove 12.

[0039] After a part of the data cable near the first plug is guided through the first wire-winding notch 111 and towards the first storage groove 12, it can enter the first storage groove 12 through the first storage notch 122.

[0040] Similarly, referring to Figure 3 As shown, the second storage groove 12' is enclosed by a second arm body 121' protruding from the side surface in the circumferential direction of the main body 10. When guiding a part of the data cable near the second plug through the second wire-winding notch 111' towards the second storage groove 12', in order to avoid the problem that this part of the data cable is bent when crossing the second arm body 121', a second storage notch 122' is also provided on one side of the second storage groove 12' close to the second wire-winding notch 111'. The second storage notch 122' is used to guide a part of the data cable near the second plug to be stored in the second storage groove 12'. Specifically, after a part of the data cable near the second plug is guided through the second wire-winding notch 111' and towards the second storage groove 12', it can enter the second storage groove 12' through the second storage notch 122'.

[0041] Continuing to refer to Figure 1 and Figure 2 As shown, a first card slot 14 is also provided between the first wire-winding notch 111 and the first storage notch 122. The first card slot 14 is used to hold a part of the data cable near the first plug. As Figure 3 shown, a second card slot 14' is also provided between the second wire-winding notch 111' and the second storage notch 122'. The second card slot 14' is used to hold a part of the data cable near the second plug.

[0042] In a preferred embodiment, both the first card slot 14 and the second card slot 14' are linear slots. The two ends of the linear slot of the first card slot 14 are the first wire-winding notch 111 and the first storage notch 122 respectively, and the two ends of the linear slot of the second card slot 14' are the second wire-winding notch 111' and the second storage notch 122' respectively, which can prevent a part of the data cable near the first plug and the second plug from being bent.

[0043] Of course, the user can move out a part of the data cable held in the first card slot 14 and the second card slot 14' in a "pulling" manner from the first card slot 14 and the second card slot 14' to drive the first plug or the second plug out of the first storage groove 12 or the second storage groove 12'.

[0044] If the data cable needs to be wound in the guiding groove 112 and then the plug is to be stored in the first storage groove 12, and in order to avoid a part of the data cable near the plug from crossing the guiding groove 112, as Figure 1 and Figure 2As shown, a first guiding notch 113 is provided on the groove wall of the guiding groove 112 at least near the first winding notch 111. The first guiding notch 113 communicates with the first winding notch 111. The first guiding notch 113 is used to guide the first plug of the data line towards the first receiving groove 12, that is, a part of the data line near the first plug can enter the first receiving groove 12 from the first card slot 14 through the first guiding notch 113 and the first winding notch 111, which can avoid the phenomenon that a part of the data line near the first plug bends across the guiding groove 112.

[0045] Of course, as Figure 3 shown, a second guiding notch 113' is provided on the groove wall of the guiding groove 112 near the second winding notch 111'. The second guiding notch 113' communicates with the second winding notch 111'. The second guiding notch 113' is used to guide the second plug of the data line towards the second receiving groove 12', that is, a part of the data line near the second plug can enter the second receiving groove 12' from the second card slot 14' through the second guiding notch 113' and the second winding notch 111', which can avoid the phenomenon that a part of the data line near the second plug bends across the guiding groove 112.

[0046] In an embodiment of the present application, a plurality of parallel partitions 15 are arranged in the winding groove 111. Guiding grooves 112 are formed at intervals between adjacent two partitions 15 and between the partition 15 near the side wall of the winding groove 11 and the side wall of the winding groove 11. In this way, parallel guiding grooves 112 can be formed. Among them, the first guiding notch 113 is arranged on the partition 15 near the first receiving groove 12, and the second guiding notch 113' is arranged on the partition 15 near the second receiving groove 12'.

[0047] In another embodiment of the present application, a plurality of parallel grooves (not shown in the figure) are provided at the bottom of the winding groove 111, and the plurality of parallel grooves form the guiding groove 112.

[0048] Of course, the formation method of the guiding groove 112 is not limited to the above two, and other methods can also be adopted, which can be selected according to actual needs and will not be elaborated here.

[0049] In this embodiment, a crossing notch (not shown in the figure) can be provided on the partition 15 among the plurality of partitions 15 where the first guiding notch 113 and the second guiding notch 113' are not provided. The crossing notch is used to guide the data line to cross from one guiding groove 112 to another guiding groove 112, that is, to enable the data lines in adjacent two guiding grooves 112 to cross, so that the data lines can be wound around each other between adjacent two guiding grooves 112 to achieve spiral winding.

[0050] It should be noted that some existing wire reelers or wire organizers set the guiding groove in a spiral form. In this way, during the injection molding process of the product, the structure of the product is made complex, thus increasing the difficulty of product manufacturing. This product is relatively easier to manufacture.

[0051] In this embodiment, it can be considered that the spanning notch, the first guiding notch 113, and the second guiding notch 113' are on the same straight line to further reduce the difficulty of product manufacturing.

[0052] In some embodiments, a magnetic attraction structure can be arranged in the first storage groove 12 and the second storage groove 12'. By means of magnetic attraction, the first plug and the second plug of the data cable are magnetically adsorbed, which not only improves the fixing strength but also facilitates the operation of the user. Of course, in other embodiments, a binding band can also be arranged on the first storage groove 12 or the second storage groove 12', and the first plug or the second plug of the data cable is fixed by means of tying.

[0053] In this embodiment, as Figures 1 - 3 shown, the shape and size of the first storage groove 12 are equivalent to or slightly smaller than the shape and size of the first plug of the data cable, and the shape and size of the second storage groove 12' are equivalent to or slightly smaller than the shape and size of the second plug of the data cable. When the first plug or the second plug of the data cable is placed in the first storage groove 12 or the second storage groove 12', a tight fit can be achieved between the first storage groove 12 or the second storage groove 12' and the first plug or the second plug of the data cable, so as to clamp the first plug or the second plug of the data cable through the first storage groove 12 or the second storage groove 12'.

[0054] In one embodiment, along the height direction of the first storage groove 12, it is the height of the first plug of the data cable placed in the first storage groove 12. Among them, the height of the first storage groove 12 is less than the height of the first plug of the data cable. In this way, it is convenient for the operator to remove the first plug of the data cable clamped in the first storage groove 12. In a preferred embodiment, the height of the first storage groove 12 is half of the height of the first plug of the data cable.

[0055] Similarly, along the height direction of the second storage groove 12', it is the height of the second plug of the data cable placed in the second storage groove 12'. Among them, the height of the second storage groove 12' is less than the height of the second plug of the data cable. Similarly, it is also convenient for the operator to remove the second plug of the data cable clamped in the second storage groove 12', and the height of the second storage groove 12' can be half of the height of the second plug of the data cable.

[0056] Of course, in other embodiments, a first avoidance groove communicating with the first storage groove 12 may also be provided, or a second avoidance groove communicating with the second storage groove 12' may be provided. The first avoidance groove or the second avoidance groove can avoid the operator's fingers, and the operator can move the first plug or the second plug of the data cable out of the first storage groove 12 or the second storage groove 12' in a "pinching" manner through the first avoidance groove or the second avoidance groove.

[0057] Alternatively, a picking object made of a flexible material such as non-woven fabric with toughness is provided in the first storage groove 12 or the second storage groove 12'. One end of the picking object is fixed in the first storage groove 12 or the second storage groove 12'. In a preferred embodiment, one end of the picking object is fixed in the middle of the first storage groove 12 or the second storage groove 12'. After the first plug of the data cable is clamped in the first storage groove 12 or the second plug of the data cable is clamped in the second storage groove 12', part of the picking object is pressed under the first plug or the second plug of the data cable, and the other end of the picking object is located outside the first storage groove 12 or the second storage groove 12'. When it is necessary to take out the first plug or the second plug of the data cable, by pulling the other end of the picking object, the first plug of the data cable can be quickly separated from the first storage groove 12, or the second plug of the data cable can be quickly separated from the second storage groove 12'.

[0058] See Figures 1 - 3 As shown, the cable winder provided in this embodiment further includes a locking member 20. One end of the locking member 20 is movably installed on one side in the axial direction of the body 10, and the other end of the locking member 20 can be fixed on the other side in the axial direction of the body 10 to fix the data cable wound around the winding groove 11 when the other end of the locking member 20 is fixed on the other side in the axial direction of the body 10.

[0059] In this embodiment, taking the movable connection position between one end of the locking member 20 and one side in the axial direction of the body 10 as a fulcrum, moving the locking member 20 away from the winding groove 11 can reserve the winding space of the winding groove 11. Fix the plug at one end of the data cable through the corresponding first storage groove 12 in the axial direction of the body 10, wind the data cable in the winding groove 11, and the side wall of the winding groove 11 can block the wound data cable to prevent it from detaching. After the data cable is wound, fix the plug at the other end of the data cable through the corresponding other first storage groove 12 in the axial direction of the body 10, and then fix the data cable wound around the winding groove 11 to the body 10 through the locking member 20, and the arrangement of the data cable can be completed. The locking member 20 and the body 10 cooperate to fix the data cable to prevent the data cable from loosening, and the setting of the first storage groove 12 can fix the plugs at both ends of the data cable to prevent the plugs from being damaged.

[0060] As Figures 1 - 3As shown, one end of the locking member 20 is hinged to one side wall of the wire winding groove 11, a clamping portion 21 is provided at the other end of the locking member 20, a clamping position 114 is provided on the other side wall of the wire winding groove 11, and the clamping portion 21 is clamped and connected to the clamping position 114 so that the locking member 20 fixedly winds the data wire on the wire winding groove 11. Among them, Figure 1 and Figure 3 For the state where the clamping portion 21 is not clamped to the clamping position 114, the locking member 20 can rotate away from the wire winding groove 11 around the hinge position between the locking member 20 and one side wall of the wire winding groove 11 and open, and then the data wire can be wound into the wire winding groove 11. Figure 2 For the state where the clamping portion 21 is clamped to the clamping position 114, the data wire wound on the wire groove 11 is fixed in the wire winding groove 11.

[0061] In this embodiment, two locking members 20 are provided on the opposite sides in the circumferential direction of the main body 10 to ensure that the data wire wound in the wire winding groove 11 is firmly fixed.

[0062] In an embodiment of the present application, after the data wire is wound in the wire winding groove 11, due to the different lengths of different data wires, if when the data wire is about to be completely wound, the first plug or the second plug of the data wire is not in the position of aligning with or facing the first receiving groove 12 or the second receiving groove 12', thus, it will also cause the phenomenon that the data wire is bent and damaged. Therefore, in the present application, the first receiving groove 12 and the second receiving groove 12' are respectively provided on both sides in the axial direction of the main body 10, and a first rotating portion and a second rotating portion are provided in the middle of the main body 10. The first rotating portion and the second rotating portion can be installed on the main body 10 independently and rotatably. The first receiving groove 12 is provided on the first rotating portion, and the second receiving groove 12' is provided on the second rotating portion. In this way, the positions of the first receiving groove 12 and the second receiving groove 12' can be adjusted relatively independently, so that the first receiving groove 12 or the second receiving groove 12' can be aligned with or face the first plug or the second plug of the data wire to adapt to the use of data wires of different lengths.

[0063] Embodiment 2

[0064] This embodiment also provides a wire winder. The difference between this wire winder and that in Embodiment 1 is that the structure of the wire winder provided in this embodiment is relatively simple, and the guiding groove provided between the two side walls of the wire winding groove is cancelled.

[0065] See Figures 4 - 6As shown in the figure, the wire winder provided in this embodiment includes a body 10. A wire winding groove 11 is provided in the circumferential direction of the body 10. The wire winding groove 11 is arranged around the circumferential direction of the body 10. At least one side in the axial direction of the body 10 is provided with a first storage groove 12 and a second storage groove 12'. The wire winding groove 11 is used to guide the winding of the data cable. Usually, a first plug and a second plug are respectively provided at both ends of the data cable. The first plug can be a female plug connected to a mobile device (such as a mobile phone or a tablet computer, etc.), and the second plug can be a male plug connected to a charging device or a power source or a terminal device (such as a computer, etc.). The first storage groove 12 is used to fix the first plug of the data cable, and the second storage groove 12' is used to store the second plug of the data cable, so that the first plug and the second plug of the data cable are not exposed outside the body 10, and the first plug and the second plug can be protected respectively through the first storage groove 12 and the second plug 12' to prevent them from being damaged.

[0066] The data cable is usually a charging cable that can charge a mobile device, or a data cable that can be connected to a terminal device to transmit data. A female plug and a male plug are respectively arranged at both ends thereof. The first storage groove 12 and the second storage groove 12' are adapted to the shapes of the female plug and the male plug, so as to store the female plug and the male plug in a tightly fitting manner.

[0067] For different mobile devices, the female plug can be in the form of a Type-C interface, a Lightning interface, etc. Therefore, a plurality of first storage grooves 12 with different shapes and sizes can be provided to adapt to the storage of different female plugs, making the application of this wire winder more extensive.

[0068] In this way, two first storage grooves 12 can be provided on one side in the axial direction of the body 10, or two first storage grooves 12 can be provided on both sides in the axial direction of the body 10. The two first storage grooves 12 can respectively store the female plugs of different types of data cables.

[0069] In this embodiment, taking the setting of one first storage groove 12 as an example for illustration, at the same time, the first storage groove 12 and the second storage groove 12' are respectively arranged on both sides in the axial direction of the body 10.

[0070] The body 10 is usually integrally formed by an injection molding method. The body 10 is also provided with a hollowed-out part 13 along its axial direction, which can effectively save the material cost of production, and the first storage groove 12 and the second storage groove 12' are respectively arranged in the non-hollowed-out areas of the body 10 along its axial direction.

[0071] In this embodiment, the first storage groove 12 and the second storage groove 12' are respectively arranged on both sides in the axial direction of the body 10, and the first storage groove 12 and the second storage groove 12' are symmetrically arranged, which can reduce the production difficulty of the body 10.

[0072] When the data line wound into the winding groove 11 needs to be guided into the first receiving groove 12, in order to guide the data line into the first receiving groove 12 and the second receiving groove 12' without being loose, continue to refer to Figures 4 - 6 As shown, a first winding notch 111 is provided on the groove wall of the winding groove 11 near the first receiving groove 12. The first winding notch 111 is used to guide the part of the data line near the first plug toward the first receiving groove 12. The side of the first winding notch 111 can form a block for the part of the data line to prevent it from being displaced and becoming loose, and can also prevent the part of the data line from being bent across. A second winding notch 111' is provided on the groove wall of the winding groove 11 near the second receiving groove 12'. The second winding notch 111' is used to guide the part of the data line near the second plug toward the second receiving groove 12'. The side of the second winding notch 111' can form a block for the part of the data line to prevent it from being displaced and becoming loose, and can also prevent the part of the data line from being bent across.

[0073] See also Figure 4 and Figure 5 As shown, the first receiving groove 12 is surrounded by a first wall 121 protruding from the side surface of the main body 10 in the axial direction. When a portion of the data cable close to the first plug is guided to the first receiving groove 12 through the first winding notch 111, in order to avoid the problem of bending of the portion of the data cable crossing the first wall 121, a first receiving notch 122 is provided on one side of the first receiving groove 12 close to the first winding notch 111. The first receiving notch 122 is used to guide a portion of the data cable close to the first plug to be received in the first receiving groove 12.

[0074] After being guided toward the first receiving groove 12 through the first winding notch 111 , a portion of the data cable close to the first plug can enter the first receiving groove 12 through the first receiving notch 122 .

[0075] Similarly, see Figure 6 As shown, the second receiving groove 12' is enclosed by a second arm 121' protruding from the side of the body 10 in the circumferential direction. When a portion of the data line close to the second plug is guided to the second receiving groove 12' through the second winding notch 111', in order to avoid the problem of the portion of the data line crossing the second arm 121' and bending, a second receiving notch 122' is further provided on one side of the second receiving groove 12' close to the second winding notch 111'. The second receiving notch 122' is used to guide the portion of the data line close to the second plug to be received in the second receiving groove 12'. Specifically, after the portion of the data line close to the second plug is guided to the second receiving groove 12' through the second winding notch 111', it can enter the second receiving groove 12' through the second receiving notch 122'.

[0076] Continue to see Figure 4 andFigure 5 As shown, a first card slot 14 is further provided between the first winding notch 111 and the first storage notch 122. The first card slot 14 is used for clamping a part of the data cable close to the first plug. As Figure 6 shown, a second card slot 14' is further provided between the second winding notch 111' and the second storage notch 122'. The second card slot 14' is used for clamping a part of the data cable close to the second plug.

[0077] In a preferred embodiment, both the first card slot 14 and the second card slot 14' are linear slots. The two ends of the linear slot of the first card slot 14 are the first winding notch 111 and the first storage notch 122 respectively, and the two ends of the linear slot of the second card slot 14' are the second winding notch 111' and the second storage notch 122' respectively, which can prevent the parts of the data cable close to the first plug and the second plug from being bent.

[0078] Of course, the user can move out the part of the data cable clamped in the first card slot 14 and the second card slot 14' in a "pulling" manner from the first card slot 14 and the second card slot 14' to drive the first plug or the second plug out of the first storage slot 12 or the second storage slot 12'.

[0079] In some embodiments, a magnetic attraction structure can be provided in the first storage slot 12 and the second storage slot 12'. By means of magnetic attraction, the first plug and the second plug of the data cable are magnetically adsorbed, which can improve the fixing strength and is also convenient for the user to operate. Of course, in other embodiments, a binding band can also be provided on the first storage slot 12 or the second storage slot 12' to fix the first plug or the second plug of the data cable by binding.

[0080] In this embodiment, as Figures 4 - 6 shown, the shape and size of the first storage slot 12 are equivalent to or slightly smaller than the shape and size of the first plug of the data cable. The shape and size of the second storage slot 12' are equivalent to or slightly smaller than the shape and size of the second plug of the data cable. When the first plug or the second plug of the data cable is placed in the first storage slot 12 or the second storage slot 12', a tight fit can be achieved between the first storage slot 12 or the second storage slot 12' and the first plug or the second plug of the data cable, so as to clamp the first plug or the second plug of the data cable through the first storage slot 12 or the second storage slot 12'.

[0081] In one embodiment, along the height direction of the first storage slot 12, it is the height of the first plug of the data cable placed in the first storage slot 12. Among them, the height of the first storage slot 12 is less than the height of the first plug of the data cable. In this way, it is convenient for the operator to move out the first plug of the data cable clamped in the first storage slot 12. In a preferred embodiment, the height of the first storage slot 12 is half of the height of the first plug of the data cable.

[0082] Similarly, along the height direction of the second storage groove 12', it is the height of the second plug of the data cable placed in the second storage groove 12'. Among them, the height of the second storage groove 12' is less than the height of the second plug of the data cable, which can also facilitate the operator to remove the second plug of the data cable clamped in the second storage groove 12'. The height of the second storage groove 12' can be half of the height of the second plug of the data cable.

[0083] Of course, in other embodiments, a first avoidance groove communicating with the first storage groove 12 or a second avoidance groove communicating with the second storage groove 12' can also be provided. The first avoidance groove or the second avoidance groove can avoid the operator's fingers, and the operator can move the first plug or the second plug of the data cable out of the first storage groove 12 or the second storage groove 12' in a "pushing" manner through the first avoidance groove or the second avoidance groove.

[0084] Or, a picking object made of a flexible material such as non-woven fabric with toughness is provided in the first storage groove 12 or the second storage groove 12'. One end of the picking object is fixed in the first storage groove 12 or the second storage groove 12'. In a preferred embodiment, one end of the picking object is fixed in the middle of the first storage groove 12 or the second storage groove 12'. After the first plug of the data cable is clamped in the first storage groove 12 or the second plug of the data cable is clamped in the second storage groove 12', part of the picking object is pressed under the first plug or the second plug of the data cable, and the other end of the picking object is located outside the first storage groove 12 or the second storage groove 12'. When it is necessary to take out the first plug or the second plug of the data cable, by pulling the other end of the picking object, the first plug of the data cable can be quickly separated from the first storage groove 12, or the second plug of the data cable can be quickly separated from the second storage groove 12'.

[0085] See Figures 4 - 6 As shown, the cable winder provided in this embodiment further includes a locking member 20. One end of the locking member 20 is movably installed on one side in the axial direction of the body 10, and the other end of the locking member 20 can be fixed on the other side in the axial direction of the body 10 to fix the data cable wound around the winding groove 11 when the other end of the locking member 20 is fixed on the other side in the axial direction of the body 10.

[0086] In this embodiment, taking the movable connection position on one side of the axial direction of the main body 10 as the fulcrum for one end of the locking member 20, moving the locking member 20 away from the wire winding groove 11 can reserve the wire winding space for the wire winding groove 11. Fix the plug at one end of the data cable through the corresponding first receiving groove 12 in the axial direction of the main body 10, wind the data cable in the wire winding groove 11, and the side wall of the wire winding groove 11 can block the wound data cable to prevent it from detaching. After the data cable is wound, fix the plug at the other end of the data cable through the corresponding other first receiving groove 12 in the axial direction of the main body 10, and then fix the data cable wound on the wire winding groove 11 to the main body 10 through the locking member 20, thus completing the arrangement of the data cable. The locking member 20 cooperates with the main body 10 to fix the data cable to prevent the data cable from loosening, and the setting of the first receiving groove 12 can fix the plugs at both ends of the data cable to prevent the plugs from being damaged.

[0087] As Figures 4 - 6 shown, one end of the locking member 20 is hinged to one side wall of the wire winding groove 11, a clamping portion 21 is provided at the other end of the locking member 20, a clamping position 114 is provided on the other side wall of the wire winding groove 11, and the clamping portion 21 is clamped and connected to the clamping position 114 to fix the data cable wound on the wire winding groove 11 by the locking member 20. Among them, Figure 4 and Figure 5 show the state where the clamping portion 21 is not clamped to the clamping position 114. The locking member 20 can rotate away from the wire winding groove 11 around the hinge position between the locking member 20 and one side wall of the wire winding groove 11 and open, and then the data cable can be wound into the wire winding groove 11. Figure 5 show the state where the clamping portion 21 is clamped to the clamping position 114 to fix the data cable wound on the wire groove 11 in the wire winding groove 11.

[0088] In this embodiment, two locking members 20 are provided on opposite sides in the circumferential direction of the main body 10 to ensure the stable fixation of the data cable wound in the wire winding groove 11.

[0089] In one embodiment of the present application, after the data cable is wound in the winding groove 11, due to the different lengths of different data cables, if the first plug or the second plug of the data cable is not in the position of aligning with or facing the first receiving groove 12 or the second receiving groove 12' when the data cable is about to be completely wound, thus, it will also cause the phenomenon that the data cable is bent and damaged. Therefore, in the present application, the first receiving groove 12 and the second receiving groove 12' are respectively arranged on both sides of the axial direction of the body 10, and a first rotating part and a second rotating part are arranged in the middle of the body 10. The first rotating part and the second rotating part can be installed on the body 10 independently and rotatably. The first receiving groove 12 is arranged on the first rotating part, and the second receiving groove 12' is arranged on the second rotating part. In this way, the positions of the first receiving groove 12 and the second receiving groove 12' can be adjusted relatively independently, so that the first receiving groove 12 or the second receiving groove 12' can be aligned with the first plug or the second plug of the data cable to adapt to the use of data cables with different lengths.

[0090] In summary, in the cable winder provided by the present application, the data cable is wound in the winding groove, and the side wall of the winding groove can form a barrier to the wound data cable to prevent it from detaching. At the same time, the first receiving groove and the second receiving groove can respectively receive and fix the first plug and the second plug of the data cable to prevent the first plug and the second plug of the data cable from being damaged. At the same time, the data cable wound in the winding groove is fixed to the body through the locking member, so that the data cable can be fixed to prevent it from loosening.

[0091] The above uses specific examples to elaborate on the present invention, which is only used to help understand the present invention and is not intended to limit the present invention. For those skilled in the technical field to which the present invention belongs, according to the idea of the present invention, several simple deductions, deformations or replacements can also be made.

Claims

1. A wire winder, characterized in that, It includes a body. A wire winding groove is circumferentially provided around the body. At least one side in the axial direction of the body is provided with a first receiving groove and a second receiving groove. The wire winding groove is used to guide the winding of the data cable. The first receiving groove is used to receive and fix the first plug of the data cable. The second receiving groove is used to receive and fix the second plug of the data cable. A first wire winding notch is provided on the groove wall of the wire winding groove close to the first receiving groove. The first wire winding notch is used to guide a part of the data cable close to the first plug towards the first receiving groove. A second wire winding notch is provided on the groove wall of the wire winding groove close to the second receiving groove. The second wire winding notch is used to guide a part of the data cable close to the second plug towards the second receiving groove. A plurality of guiding grooves are also circumferentially provided between the two side walls of the wire winding groove. The plurality of guiding grooves are used to guide the winding path of the data cable.

2. The take-up device according to claim 1, wherein, A first receiving notch is provided on one side of the first receiving groove close to the first wire winding notch. The first receiving notch is used to guide a part of the data cable close to the first plug to be received in the first receiving groove. A second receiving notch is provided on one side of the second receiving groove close to the second wire winding notch. The second receiving notch is used to guide a part of the data cable close to the second plug to be received in the second receiving groove.

3. The take-up device according to claim 2, wherein, A first card slot is further provided between the first wire winding notch and the first receiving notch. The first card slot is used to hold a part of the data cable close to the first plug. A second card slot is further provided between the second wire winding notch and the second receiving notch. The second card slot is used to hold a part of the data cable close to the second plug.

4. The take-up device according to claim 1, characterized in that, The guiding grooves are parallel to each other.

5. The take-up device according to claim 4, wherein At least the groove wall of the guiding groove close to the first wire winding notch is provided with a first guiding notch. The first guiding notch is communicated with the first wire winding notch. The first guiding notch is used to guide the first plug of the data cable towards the first receiving groove. At least the side wall of the guiding groove close to the second wire winding notch is provided with a second guiding notch. The second guiding notch is communicated with the second wire winding notch. The second guiding notch is used to guide the second plug of the data cable towards the second receiving groove.

6. The take-up device according to claim 5, characterized in that, A plurality of parallel partition plates are circumferentially provided between the two side walls of the wire winding groove. The guiding grooves are formed at intervals between adjacent two partition plates and between the partition plate close to the side wall of the wire winding groove and the side wall of the wire winding groove. The first guiding notch is provided on the partition plate close to the first receiving groove. The second guiding notch is provided on the partition plate close to the second receiving groove.

7. The take-up device according to claim 6, wherein A wire crossing notch is provided on the partition plate among the plurality of partition plates where the first guiding notch and the second guiding notch are not provided. The wire crossing notch is used to guide the data cable to cross from one guiding groove to another guiding groove.

8. The take-up device according to claim 1, characterized in that, The first receiving groove and the second receiving groove are respectively provided on both sides in the axial direction of the body. A first rotating part and a second rotating part are further provided in the middle of the body. The first rotating part and the second rotating part are rotatably installed on the body. The first receiving groove is arranged on the first rotating part. The second receiving groove is arranged on the second rotating part.

9. The take-up device according to claim 1, wherein, Further included is a locking member, one end of the locking member is movably installed on one side in the axial direction of the body, and the other end of the locking member can be fixed on the other side in the axial direction of the body to fix the data cable wound around the wire winding groove.

10. A wire winder, characterized in that, It includes a body, a wire winding groove is circumferentially provided around the body, at least one side in the axial direction of the body is provided with a first storage groove and a second storage groove, the wire winding groove is used to guide the winding of the data cable, the first storage groove is used to store and fix the first plug of the data cable, and the second storage groove is used to store and fix the second plug of the data cable; a first wire winding notch is provided on the groove wall of the wire winding groove close to the first storage groove, and the first wire winding notch is used to guide a part of the data cable close to the first plug towards the first storage groove; a second wire winding notch is provided on the groove wall of the wire winding groove close to the second storage groove, and the second wire winding notch is used to guide a part of the data cable close to the second plug towards the second storage groove.

Citation Information

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