Desktop wire clamping device, data line assembly and electronic equipment suite

By designing a desktop card cable with reduced width, friction layer and multi-card cable trough structure, the cable adaptability and stability problems are solved, and the applicability and stable connection to different electronic devices are achieved.

CN223194326UActive Publication Date: 2025-08-05曹敬斌
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Patent Information

Application Number
CN202422266581.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-08-05
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

The existing desktop cables are difficult to adapt to cables of different thicknesses, resulting in unstable cable connections and cannot meet the needs of different electronic devices.

Method used

A desktop card duct is designed. The width of the card duct decreases in the incoming direction, forming a V-shaped structure with a wide outer and narrow inner body, and a friction layer is provided on the groove surface. The card duct mechanism includes multiple card ducts arranged at intervals. The socket and the card duct are retractable and connected, and the base is equipped with a glue layer to fix it on the table.

Benefits of technology

It realizes a stable adaptation of cables of different thicknesses to prevent cables from loosening and shaking, meets the height adjustment needs of various electronic equipment, and simplifies the installation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electronic equipment accessories, in particular to a desktop wire clamping device which comprises a base and a wire clamping mechanism arranged on the base, a wire clamping groove is formed in the wire clamping mechanism and comprises a groove opening and a groove bottom, the groove opening is formed in one side of the wire clamping mechanism, and the groove bottom is arranged in the wire clamping mechanism. The direction from the groove opening to the groove bottom is defined as the wire inlet direction, and the width of the wire clamping groove is gradually decreased in the wire inlet direction. The wire clamping groove of the desktop wire clamping device is of the V-shaped structure which is wide outside and narrow inside and gradually contracts, a thick cable can abut against the wire clamping groove at the position close to the groove opening, and a thin cable can abut against the wire clamping groove at the position close to the groove bottom. The width of the wire clamping groove is gradually reduced along the wire inlet direction, so that the wire clamping groove can adapt to cables with different thicknesses, the cables with different thicknesses can be clamped by the wire clamping groove at different positions of the wire clamping groove, the cables cannot be loosened due to matching gaps, and the applicability and the fixing stability of the desktop wire clamping device are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of electronic device accessories, and particularly relates to a desktop cable holder, a data cable assembly and an electronic device kit.

Background Art

[0002] In the usage scenario of an electronic device, it is often necessary to make an electrical connection with a cable such as a data cable for charging and signal transmission. However, the cable lacks support when simply relying on its own cooperation with the electronic device, and the height and angular attitude of the effective cooperative connection are difficult to be stably guaranteed. A desktop cable holder can lift the cable and adjust the cable attitude so as to cooperate and connect with the electronic device at a suitable height and angle. However, the cables corresponding to different electronic devices have different thicknesses, and the existing desktop cable holders have poor adaptability to cables of different thicknesses and are difficult to meet the applicable requirements of users for different electronic devices.

Content of the Utility Model

[0003] To solve the above problems, the utility model provides a desktop cable holder, a data cable assembly and an electronic device kit.

[0004] In one embodiment for solving the above technical problems, the utility model provides a desktop cable holder, which includes a base and a cable clamping mechanism arranged on the base. A cable slot is formed in the cable clamping mechanism. The cable slot includes a slot opening and a slot bottom. The slot opening is arranged on one side of the cable clamping mechanism, and the slot bottom is arranged inside the cable clamping mechanism. The direction from the slot opening to the slot bottom is defined as the inlet direction, and the width of the cable slot decreases along the inlet direction.

[0005] Preferably, the included angle range of the cable slot is 5° - 30°.

[0006] Preferably, a friction layer is arranged on the slot surface of the cable slot.

[0007] Preferably, at least two cable slots are formed in the cable clamping mechanism, and the cable slots are arranged at intervals along the direction away from the base.

[0008] Preferably, the included angle range of the cable slot is 5° - 30°, and the included angles of different cable slots are the same or different.

[0009] Preferably, the cable clamping mechanism includes a socket part and a cable clamping part. One end of the socket part is connected to the base, and the other end is telescopically connected to the cable clamping part. The cable slot is arranged on the cable clamping part.

[0010] Preferably, at least two limiting holes are formed in one of the socket part and the wire clamping part, the limiting holes are arranged at intervals along the direction away from the base, a limiting part is arranged on the other of the socket part and the wire clamping part, and when the wire clamping part expands and contracts relative to the socket part, the limiting part is respectively connected with different limiting holes in a matching manner.

[0011] Preferably, a movable hole is formed in the side surface where the limiting part is located, and the movable hole is arranged outside the limiting part.

[0012] Preferably, an adhesive layer is arranged on one side of the base away from the wire clamping mechanism.

[0013] To solve the above technical problems, in another embodiment, the present utility model provides a data cable assembly, the data cable assembly includes a data cable and the desktop wire clamping device described above, the data cable includes a wire body and a data cable connector, the wire body abuts against the wire clamping groove, and the wire body is connected with the data cable connector.

[0014] To solve the above technical problems, in another embodiment, the present utility model provides an electronic device kit, the electronic device kit includes an electronic device and the data cable assembly described above, and the electronic device is electrically connected with the data cable.

[0015] Compared with the prior art, the desktop wire clamping device, the data cable assembly and the electronic device kit of the present utility model have the following advantages:

[0016] 1. The desktop wire clamping device in an embodiment of the present utility model includes a base and a wire clamping mechanism arranged on the base. A wire clamping groove is formed in the wire clamping mechanism. The wire clamping groove includes a groove opening and a groove bottom. The groove opening is arranged on one side of the wire clamping mechanism, and the groove bottom is arranged inside the wire clamping mechanism. The direction from the groove opening to the groove bottom is defined as the wire inlet direction, and the width of the wire clamping groove decreases along the wire inlet direction. By setting the width of the wire clamping groove to decrease along the wire inlet direction, the widths at different positions of the wire clamping groove are different, forming a V-shaped structure that gradually contracts with a wider outer and a narrower inner. Thicker cables can abut against the wire clamping groove closer to the groove opening, and thinner cables can abut against the wire clamping groove closer to the groove bottom. The decreasing width of the wire clamping groove along the wire inlet direction enables the wire clamping groove to adapt to cables of different thicknesses, and cables of different thicknesses can be clamped tightly by the wire clamping groove at different positions, without the cables loosening due to the fitting gap, improving the applicability and fixing stability of the desktop wire clamping device.

[0017] 2. The included angle range of the wire clamping groove in an embodiment of the present utility model is 5° - 30°. By setting the included angle range of the wire clamping groove to be 5° - 30°, this included angle range limits the change rate of the width of the wire clamping groove, making the width of the wire clamping groove decrease gently along the wire inlet direction, and cables of different thicknesses can abut against the wire clamping groove stably.

[0018] 3. In an embodiment of the present utility model, a friction layer is provided on the groove surface of the wire clamping groove. By providing a friction layer on the groove surface of the wire clamping groove, the friction layer can provide strong friction when the wire clamping groove abuts against the wire, enabling the wire clamping groove to firmly fix the wire and preventing the wire from swaying back and forth relative to the desktop wire holder or slipping out of the wire clamping groove. The friction layer can be provided with structures such as threads, bumps, frosting, stripes, etc. to increase friction, or a material with a relatively high friction coefficient can be used to increase friction, making the fixing effect of the wire clamping groove on the wire more firm and reliable.

[0019] 4. In an embodiment of the present utility model, at least two wire clamping grooves are provided in the wire clamping mechanism, and the wire clamping grooves are arranged at intervals along the direction away from the base. Since different electronic devices have different sizes and their corresponding wire matching heights are also different, the wire clamping grooves are arranged at intervals along the direction away from the base, and at least two wire clamping grooves are provided in the wire clamping mechanism, enabling the user to select the wire clamping groove with the corresponding height according to the height requirement, so that the wire clamping groove can better meet the user's height adjustment requirement for different electronic devices.

[0020] 5. In an embodiment of the present utility model, the included angle range of the wire clamping groove is 5° - 30°, and the included angles of different wire clamping grooves are the same or different. Since the wire clamping grooves are arranged at intervals along the direction away from the base, different wire clamping grooves can provide different height supports for the wire. When the included angles of different wire clamping grooves are the same, by selecting wire clamping grooves with different heights, the width dimension of the wire clamping groove remains unchanged and the wire clamping ability is the same; while when the included angles of different wire clamping grooves are different, different wire clamping grooves with different heights have different width change ranges due to different included angles, and the union of the width change ranges of different wire clamping grooves expands the interval range of the wire thickness dimensions that the wire clamping mechanism can accommodate. The user can select different wire clamping grooves according to the thickness of the wire used, enabling the wire clamping groove to adapt to the size of the wire, and further increasing the adaptability range of the desktop wire holder to the wire thickness.

[0021] 6. In an embodiment of the present utility model, the wire clamping mechanism includes a socket part and a wire clamping part. One end of the socket part is connected to the base, and the other end is telescopically connected to the wire clamping part, and the wire clamping groove is provided on the wire clamping part. By providing that the wire clamping mechanism includes a socket part and a wire clamping part, and the socket part and the wire clamping part are telescopically connected, when facing different electronic devices, the user can adjust the position relationship between the wire clamping part and the socket part by telescoping, thereby adjusting the height of the wire clamping groove on the wire clamping part to make the height of the wire clamping groove match the required height of the electronic device and meet the user's height adjustment requirement.

[0022] 7. In one embodiment of the present utility model, at least two limiting holes are provided in one of the socket member and the wire clamping member. The limiting holes are arranged at intervals along the direction away from the base. The other of the socket member and the wire clamping member is provided with a limiting member. When the wire clamping member expands and contracts relative to the socket member, the limiting member is respectively connected in cooperation with different limiting holes. By providing at least two limiting holes in one of the socket member and the wire clamping member, the limiting holes are arranged at intervals along the direction away from the base, and the other is provided with a limiting member. By adjusting the expansion and contraction of the position relationship between the wire clamping member and the socket member, the limiting member can be connected in cooperation with the limiting holes at different heights, thus simply and conveniently realizing the height adjustment of the wire clamping groove.

[0023] 8. An activity hole is provided on the side surface where the limiting member is located in one embodiment of the present utility model. The activity hole is arranged outside the limiting member. By providing an activity hole on the side surface where the limiting member is located and arranging the activity hole outside the limiting member, an activity space is left for the limiting member, making it easier for the limiting member to swing with less restraint. When the wire clamping member expands and contracts relative to the socket member, the limiting member swings when being squeezed, so that the limiting member disengages from the limiting hole, and when the limiting member moves to the position corresponding to the next limiting hole, it reconnects with this limiting hole in cooperation.

[0024] 9. An adhesive layer is provided on the surface of the base away from the wire clamping mechanism in one embodiment of the present utility model. By providing an adhesive layer on the surface of the base away from the wire clamping mechanism, the adhesive layer can ensure that the desktop wire clamping device adheres firmly to the table, preventing it from moving or falling off under the action of the cable and maintaining a stable working state. And the adhesive layer can simplify the installation process of the desktop wire clamping device, and can be simply and conveniently installed without using additional tools or accessories.

[0025] 10. The data cable assembly in one embodiment of the present utility model includes a data cable and the above-mentioned desktop wire clamping device. The data cable includes a wire body and a data cable connector. The wire body abuts against the wire clamping groove, and the wire body is connected to the data cable connector. Since the data cable includes a wire body and a data cable connector connected to the wire body, and the wire body abuts against the wire clamping groove, only the wire body in the data cable is restricted by the wire clamping groove, while the data cable connector can swing freely for convenient multi-angle and all-round connection.

[0026] 11. The electronic device kit in one embodiment of the present utility model includes an electronic device and the above-mentioned data cable assembly. The electronic device is electrically connected to the data cable. The electronic device kit has the same beneficial effects as the above-mentioned data cable assembly, which will not be elaborated here.

Description of the Drawings

[0027] To more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0028] Figure 1 It is a schematic perspective view of a desktop wire clip provided by the first embodiment of the present utility model.

[0029] Figure 2 It is a usage state diagram of the desktop wire clip.

[0030] Figure 3 It is a side view of the desktop wire clip provided by the first embodiment of the present utility model.

[0031] Figure 4 It is a schematic perspective view of a desktop wire clip provided by the second embodiment of the present utility model Figure 1 .

[0032] Figure 5 It is a schematic perspective view of a desktop wire clip provided by the second embodiment of the present utility model Figure 2 .

[0033] Figure 6 It is a schematic perspective view of a wire clamping member of the desktop wire clip provided by the second embodiment of the present utility model.

[0034] Figure 7 It is a schematic perspective view of a data cable assembly provided by the third embodiment of the present utility model.

[0035] Figure 8 It is a schematic perspective view of an electronic device kit provided by the fourth embodiment of the present utility model Figure 1 .

[0036] Figure 9 It is a schematic perspective view of an electronic device kit provided by the fourth embodiment of the present utility model Figure 2 . [

[0037] Explanation of the drawing reference numerals:

[0038] 1. Desktop wire clip; 1a. Desktop wire clip; 2. Electronic device; 3. Cable; 100. Data cable assembly; 101. Data cable; 1011. Data cable connector; 1012. Cable body; 200. Electronic device kit; 201. Electronic device interface;

[0039] 10. Wire clamping mechanism; 10a. Wire clamping mechanism; 11. Wire clamping groove; 12. Socket part; 13. Wire clamping member; 20. Base; 30. Adhesive layer;

[0040] 111. Notch; 112. Groove bottom; 113. Friction layer; 121. Limit hole; 131. Limiting member; 132. Moving hole.

Detailed implementation manners

[0041] In order to make the objectives, technical solutions and advantages of the present utility model clearer and more understandable, the present utility model will be further described in detail below in combination with the attached drawings and implementation examples. It should be understood that the specific implementation examples described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0042] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for the purpose of illustration.

[0043] In the present utility model, the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "front", "rear", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal", etc. is based on the orientation or positional relationship shown in the attached drawings. These terms are mainly used to better describe the present utility model and its embodiments, and are not used to limit that the indicated device, element or component must have a specific orientation, or be constructed and operated in a specific orientation.

[0044] Moreover, in addition to being able to represent the orientation or positional relationship, some of the above terms may also be used to represent other meanings. For example, the term "upper" may also be used to represent a certain attachment relationship or connection relationship in some cases. For those of ordinary skill in the art, the specific meanings of these terms in the present utility model can be understood according to the specific situation.

[0045] In addition, the terms "installation", "setting", "provided with", "connection", "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or there is internal communication between two devices, elements or components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to the specific situation.

[0046] Please refer to Figure 1 and Figure 2, the first embodiment of the present utility model provides a desktop wire clip 1. The desktop wire clip 1 includes a base 20 and a wire clamping mechanism 10 provided on the base 20. A wire slot 11 is formed on the wire clamping mechanism 10. The wire slot 11 includes a slot opening 111 and a slot bottom 112. The slot opening 111 is provided on one side of the wire clamping mechanism 10, and the slot bottom 112 is provided inside the wire clamping mechanism 10. The direction from the slot opening 111 to the slot bottom 112 is defined as the wire inlet direction, and the width of the wire slot 11 decreases along the wire inlet direction.

[0047] Understandably, by setting the width of the wire slot 11 to decrease along the wire inlet direction, the widths at different positions of the wire slot 11 are different, forming a V-shaped structure that is wider outside and narrower inside and gradually contracts. The thicker cable 3 can abut against the wire slot 11 closer to the slot opening ********, and the thinner cable 3 can abut against the wire slot 11 closer to the slot bottom 112. The decreasing width of the wire slot 11 along the wire inlet direction enables the wire slot 11 to adapt to cables 3 of different thicknesses. Cables 3 of different thicknesses can be clamped by the wire slot 11 at different positions of the wire slot 11, and the cables 3 will not loosen due to the fitting gap, improving the applicability and fixing stability of the desktop wire clip 1. It should be noted that the opening direction of the slot opening 111 can be set on the left and right sides of the wire clamping mechanism 10, or on the upper side of the wire clamping mechanism 10 away from the base 20. As long as the slot opening 111 forms an entrance for the cable 3 to enter the wire slot 11, other opening directions are not limited here.

[0048] It should be noted that the desktop wire clip 1 is different from the desktop cable organizer. The desktop cable organizer only needs to separate the cables 3 to prevent entanglement. The desktop cable organizer can limit the cables 3 in a certain area range in a non-contact form. The cables 3 are not clamped by the desktop cable organizer, and the cables 3 can move back and forth or shake relative to the desktop cable organizer. While preventing entanglement, the desktop cable organizer also provides convenience for the user to pull and move the cables 3 because the cables 3 can move. The desktop wire clip 1, on the other hand, serves the electrical connection requirements between the electronic device 2 and the cable 3. Different from the desktop cable organizer, the desktop wire clip 1 requires that the cable 3 can still be clamped when the cable 3 is pulled, and the cable 3 and the desktop wire clip 1 need to maintain a fixed state without relative displacement. The electronic device 2 is electrically connected to the cable 3 of the desktop wire clip 1 by magnetic attraction or manual connection. When the electronic device 2 is docked with the cable 3, the cable 3 needs to be clamped by the desktop wire clip 1 so as not to move or shake relatively, so as to avoid the failure of the docking between the electronic device 2 and the cable 3.

[0049] Please combine Figure 1 and Figure 3 , further, the included angle range of the wire slot 11 is 5° - 30°.

[0050] It should be noted that there is a missing part in the English translation of . The asterisk "********" in the translation indicates that there is some content missing in the original Chinese text that needs to be filled in for a complete and accurate translation.Understandably, the included angle α formed by the card slot 11 due to the decreasing width along the wire inlet direction satisfies 5° ≤ α ≤ 30°. By setting the included angle range of the card slot 11 to be 5° - 30°, this included angle range limits the rate of change of the width of the card slot 11, making the width of the card slot 11 decrease gently along the wire inlet direction, so that wires 3 of different thicknesses can be firmly abutted against the card slot 11.

[0051] Please refer to Figure 3 , further, a friction layer 113 is provided on the groove surface of the card slot 11.

[0052] Understandably, by providing the friction layer 113 on the groove surface of the card slot 11, the friction layer 113 can provide a strong frictional force when the card slot 11 abuts against the wire 3, so that the card slot 11 can firmly fix the wire 3, preventing the wire 3 from shaking back and forth relative to the desktop wire holder 1 or slipping out of the card slot 11. The friction layer 113 can be provided with structures such as threads, bumps, abrasives, particles, stripes, etc. to increase the frictional force, or a material with a relatively high coefficient of friction can be used to increase the frictional force, making the fixing effect of the card slot 11 on the wire 3 more firm and reliable.

[0053] Please continue to combine Figure 1 and Figure 3 , further, the wire clamping mechanism 10 is provided with at least two card slots 11, and the card slots 11 are arranged at intervals along the direction away from the base 20.

[0054] Understandably, since different electronic devices 2 have different sizes and their corresponding wire 3 mating heights are also different, the card slots 11 are arranged at intervals along the direction away from the base 20, and the wire clamping mechanism 10 is provided with at least two card slots 11, so that the user can select the card slot 11 with the corresponding height according to the height requirement, enabling the card slot 11 to better meet the user's height adjustment requirement for different electronic devices 2.

[0055] Specifically, as a preferred embodiment, the wire clamping mechanism 10 is provided with two card slots 11, and the two card slots 11 are arranged at intervals along the direction away from the base 20, so that the two card slots 11 have different heights.

[0056] Please continue to combine Figure 1 and Figure 3 , further, the included angle range of the card slot 11 is 5° - 30°, and the included angles of different card slots 11 are the same or different.

[0057] Understandably, since the wire clamping grooves 11 are arranged at intervals along the direction away from the base 20, different wire clamping grooves 11 can provide different height supports for the wire 3. When the included angles of different wire clamping grooves 11 are the same, by selecting wire clamping grooves 11 with different heights, the width dimension of the wire clamping grooves 11 remains unchanged and the wire clamping ability is the same; while when the included angles of different wire clamping grooves 11 are different, different wire clamping grooves 11 with different heights have different width change ranges due to different included angles, and the union of the width change ranges of different wire clamping grooves 11 expands the interval range of the thickness dimensions of the wires 3 that the wire clamping mechanism 10 can accommodate. The user can select different wire clamping grooves 11 according to the thickness of the wire 3 used, so that the wire clamping grooves 11 can be adapted to the size of the wire 3, further increasing the adaptation range of the desktop wire clamp 1 to the thickness of the wire 3.

[0058] Please continue to combine Figure 1 and Figure 3 , further, an adhesive layer 30 is provided on one side of the base 20 away from the wire clamping mechanism 10.

[0059] Understandably, by providing the adhesive layer 30 on one side of the base 20 away from the wire clamping mechanism 10, the adhesive layer 30 can ensure that the desktop wire clamp 1 is firmly adhered to the table, preventing it from moving or falling off under the action of the wire 3 and maintaining a stable working state. And the adhesive layer 30 can simplify the installation process of the desktop wire clamp 1, and the installation can be simply and conveniently completed without using additional tools or accessories.

[0060] Please combine Figures 4 to 6 , the second embodiment of the present invention provides a desktop wire clamp 1a, which is different from the desktop wire clamp 1 provided in the first embodiment in that: the wire clamping mechanism 10a includes a socket part 12 and a wire clamping part 13, one end of the socket part 12 is connected to the base 20, and the other end is telescopically connected to the wire clamping part 13, and the wire clamping groove 11 is provided on the wire clamping part 13.

[0061] Understandably, by providing that the wire clamping mechanism 10a includes a socket part 12 and a wire clamping part 13, and the socket part 12 and the wire clamping part 13 are telescopically connected, when facing different electronic devices 2, the user can telescopically adjust the positional relationship between the wire clamping part 13 and the socket part 12, and then adjust the height of the wire clamping groove 11 on the wire clamping part 13, so that the height of the wire clamping groove 11 matches the height required by the electronic device 2, meeting the user's height adjustment needs. The telescopic movement of the wire clamping part 13 relative to the socket part 12 achieves the same effect as setting at least two wire clamping grooves 11 in the first embodiment, and can provide wire clamping grooves 11 with different heights for the user to choose, and the telescopic movement of the wire clamping part 13 relative to the socket part 12 enables the height of the wire clamping groove 11 to be continuously adjusted.

[0062] It should be noted that Figure 4 shows the state where the wire clamping part 13 shrinks towards the socket part 12, so that the wire clamping groove 11 is adjusted to a lower height state;Figure 5 It shows the state where the wire clamping member 13 extends away from the socket member 12, so that the wire clamping groove 11 is adjusted to a state of a higher height.

[0063] Please continue to combine with Figures 4 to 6 , further, at least two limiting holes 121 are provided in one of the socket member 12 and the wire clamping member 13, the limiting holes 121 are arranged at intervals along the direction away from the base 20, and a limiting member 131 is provided on the other of the socket member 12 and the wire clamping member 13. When the wire clamping member 13 expands and contracts relative to the socket member 12, the limiting member 131 is respectively connected in cooperation with different limiting holes 121.

[0064] It can be understood that by providing at least two limiting holes 121 in one of the socket member 12 and the wire clamping member 13, the limiting holes 121 are arranged at intervals along the direction away from the base 20, and a limiting member 131 is provided on the other, and by adjusting the expansion and contraction of the position relationship between the wire clamping member 13 and the socket member 12, the limiting member 131 can be connected in cooperation with the limiting holes 121 at different heights, so as to simply and conveniently realize the height adjustment of the wire clamping groove 11.

[0065] [[ID=, further, three limiting holes 121 are arranged at intervals along the direction away from the base 20 on the opposite side walls of the socket member 12, and the limiting member 131 is arranged on the wire clamping member 13; as another preferred embodiment, three limiting holes 121 are arranged at intervals along the direction away from the base 20 on the opposite side walls of the wire clamping member 13, and the limiting member 131 is arranged on the socket member 12.

[0066] Please refer to Figure 6 , further, a moving hole 132 is provided on the side surface where the limiting member 131 is located, and the moving hole 132 is arranged outside the limiting member 131.

[0067] It can be understood that by providing a moving hole 132 on the side surface where the limiting member 131 is located, and the moving hole 132 is arranged outside the limiting member 131, a moving space is left for the limiting member 131, so that the limiting member 131 can be less restricted and is easy to swing. When the wire clamping member 13 expands and contracts relative to the socket member 12, the limiting member 131 swings when being squeezed, so that the limiting member 131 disengages from the limiting hole 121, and when the limiting member 131 moves to the position corresponding to the next limiting hole 121, it is reconnected in cooperation with the limiting hole 121.

[0068] Specifically, as a preferred embodiment, the moving hole 132 is U-shaped, and the U-shaped moving hole 132 can reduce the restriction with a semi-surrounding structure on three sides, providing greater flexibility for the swing of the limiting member 131.

[0069] Please refer to Figure 7, the third embodiment of the present utility model provides a data cable assembly 100. The data cable assembly 100 includes a data cable 101 and the desktop cable clip 1 of the first embodiment or the desktop cable clip 1a of the second embodiment of the present utility model. The data cable 101 includes a cable body 1012 and a data cable connector 1011. The cable body 1012 abuts against the cable slot 11, and the cable body 1012 is connected to the data cable connector 1011.

[0070] It can be understood that since the data cable 101 includes a cable body 1012 and a data cable connector 1011 connected to the cable body, the cable body 1012 abuts against the cable slot 11, only the cable body 1012 in the data cable 101 is restricted by the cable slot 11, and the data cable connector 1011 can swing freely to facilitate multi-angle and all-round connection.

[0071] Please refer to Figure 8 and Figure 9 , the fourth embodiment of the present utility model provides an electronic device kit 200. The electronic device kit 200 includes an electronic device 2 and the data cable assembly 100 of the third embodiment of the present utility model. The electronic device 2 is electrically connected to the data cable 101. The electronic device kit 200 has the same beneficial effects as the above data cable assembly 100 and will not be elaborated here.

[0072] It should be noted that the electronic device 2 is provided with an electronic device interface 201. Since the desktop cable clip 1 has cable slots 11 with different heights, it can adapt to electronic device interfaces 201 with different heights. Figure 8 shows a scenario where the data cable 101 abuts against the cable slot 11 at a lower height and is connected to the electronic device interface 201 at a lower height; Figure 9 shows a scenario where the data cable 101 abuts against the cable slot 11 at a higher height and is connected to the electronic device interface 201 at a higher height. The electronic device interface 201 and the data cable connector 1011 can be connected by magnetic attraction or snap connection, and other connection methods are not limited here.

[0073] Compared with the prior art, the desktop cable clip, data cable assembly and electronic device kit of the present utility model have the following advantages:

[0074] 1. The wire clamping device on the desktop in an embodiment of the present utility model includes a base and a wire clamping mechanism disposed on the base. A wire clamping groove is formed on the wire clamping mechanism. The wire clamping groove includes a groove opening and a groove bottom. The groove opening is disposed on one side of the wire clamping mechanism, and the groove bottom is disposed inside the wire clamping mechanism. The direction from the groove opening to the groove bottom is defined as the wire inlet direction, and the width of the wire clamping groove decreases along the wire inlet direction. By setting the width of the wire clamping groove to decrease along the wire inlet direction, the widths at different positions of the wire clamping groove are different, forming a V-shaped structure that is wide outside and narrow inside and gradually contracts. Thicker cables can abut against the wire clamping groove closer to the groove opening, and thinner cables can abut against the wire clamping groove closer to the groove bottom. The decreasing width of the wire clamping groove along the wire inlet direction enables the wire clamping groove to adapt to cables of different thicknesses, and cables of different thicknesses can be firmly clamped by the wire clamping groove at different positions of the wire clamping groove, without the cables loosening due to the fitting gap, improving the applicability of the desktop wire clamping device and the stability of fixation.

[0075] 2. The included angle range of the wire clamping groove in an embodiment of the present utility model is 5° - 30°. By setting the included angle range of the wire clamping groove to be 5° - 30°, this included angle range defines the rate of change of the width of the wire clamping groove, making the width of the wire clamping groove decrease gently along the wire inlet direction, and cables of different thicknesses can abut against the wire clamping groove firmly.

[0076] 3. A friction layer is provided on the groove surface of the wire clamping groove in an embodiment of the present utility model. By providing a friction layer on the groove surface of the wire clamping groove, the friction layer can provide a strong frictional force when the wire clamping groove abuts against the cable, enabling the wire clamping groove to firmly fix the cable and preventing the cable from shaking back and forth relative to the desktop wire clamping device or slipping out of the wire clamping groove. The friction layer can be provided with structures such as threads, bumps, frosting, stripes, etc. to increase the frictional force, or a material with a high coefficient of friction can be used to increase the frictional force, making the fixing effect of the wire clamping groove on the cable more firm and reliable.

[0077] 4. The wire clamping mechanism in an embodiment of the present utility model is provided with at least two wire clamping grooves, and the wire clamping grooves are arranged at intervals along the direction away from the base. Since different electronic devices have different sizes and their corresponding cable fitting heights are also different, the wire clamping grooves are arranged at intervals along the direction away from the base, and the wire clamping mechanism is provided with at least two wire clamping grooves, enabling the user to select the wire clamping groove corresponding to the required height according to the height requirement, so that the wire clamping groove can better meet the height adjustment requirements of different electronic devices.

[0078] 5. In an embodiment of the present utility model, the included angle range of the wire clamping grooves is 5° - 30°. The included angles of different wire clamping grooves are the same or different. Since the wire clamping grooves are arranged at intervals along the direction away from the base, different wire clamping grooves can provide different height supports for the cables. When the included angles of different wire clamping grooves are the same, by selecting wire clamping grooves with different heights, the width dimension of the wire clamping grooves remains unchanged and the wire clamping ability is the same; while when the included angles of different wire clamping grooves are different, different wire clamping grooves with different heights have different width change ranges due to different included angles, and the union of the width change ranges of different wire clamping grooves expands the interval range of the wire thickness dimensions that the wire clamping mechanism can accommodate. The user can select different wire clamping grooves according to the thickness of the used cable, enabling the wire clamping grooves to adapt to the size of the cable, and further increasing the adaptation range of the desktop wire clamp to the cable thickness.

[0079] 6. The wire clamping mechanism in an embodiment of the present utility model includes a socket part and a wire clamping part. One end of the socket part is connected to the base, and the other end is telescopically connected to the wire clamping part. The wire clamping grooves are arranged on the wire clamping part. By setting that the wire clamping mechanism includes a socket part and a wire clamping part, and the socket part is telescopically connected to the wire clamping part, when facing different electronic devices, the user can adjust the position relationship between the wire clamping part and the socket part telescopically, thereby adjusting the height of the wire clamping grooves on the wire clamping part to make the height of the wire clamping grooves match the required height of the electronic device, meeting the user's height adjustment requirements.

[0080] 7. In an embodiment of the present utility model, at least two limiting holes are provided on one of the socket part and the wire clamping part, and the limiting holes are arranged at intervals along the direction away from the base. The other of the socket part and the wire clamping part is provided with a limiting part. When the wire clamping part telescopically moves relative to the socket part, the limiting part is respectively connected in cooperation with different limiting holes. By setting that at least two limiting holes are provided on one of the socket part and the wire clamping part, and the limiting holes are arranged at intervals along the direction away from the base, and the other is provided with a limiting part, through telescopic adjustment of the position relationship between the wire clamping part and the socket part, the limiting part can be connected in cooperation with the limiting holes at different heights, thus simply and conveniently realizing the height adjustment of the wire clamping grooves.

[0081] 8. An activity hole is provided on the side surface where the limiting part is located, and the activity hole is arranged outside the limiting part. By providing an activity hole on the side surface where the limiting part is located, and arranging the activity hole outside the limiting part, an activity space is left for the limiting part, making the limiting part less restricted and easy to swing. When the wire clamping part telescopically moves relative to the socket part, the limiting part swings when being squeezed, so that the limiting part disengages from the limiting hole, and when the limiting part moves to the position corresponding to the next limiting hole, it is reconnected in cooperation with this limiting hole.

[0082] 9. A glue layer is provided on one side of the base in an embodiment of the present utility model, which is away from the wire clamping mechanism. By providing the glue layer on the side of the base away from the wire clamping mechanism, the glue layer can ensure that the desktop wire clamp is firmly adhered to the table, preventing it from moving or falling off under the action of the cable and maintaining a stable working state. Moreover, the glue layer can simplify the installation process of the desktop wire clamp, and the installation can be simply and conveniently completed without using additional tools or accessories.

[0083] 10. The data cable assembly in an embodiment of the present utility model includes a data cable and the above-mentioned desktop wire clamp, and the data cable abuts against the wire slot. Since the data cable includes a wire body and a data cable connector connected to the wire body, and the wire body abuts against the wire slot, only the wire body of the data cable is restricted by the wire slot, while the data cable connector can swing freely to facilitate multi-angle and all-round connection.

[0084] 11. The electronic device kit in an embodiment of the present utility model includes an electronic device and the above-mentioned data cable assembly, and the electronic device is electrically connected to the data cable. The electronic device kit has the same beneficial effects as the above-mentioned data cable assembly, which will not be elaborated here.

[0085] The above are only the preferred embodiments of the present utility model, and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A desktop cable clamp, characterized in that: The desktop wire clamp includes a base and a wire clamping mechanism arranged on the base. A wire clamping groove is provided on the wire clamping mechanism. The wire clamping groove includes a slot opening and a slot bottom. The slot opening is arranged on one side of the wire clamping mechanism, and the slot bottom is arranged inside the wire clamping mechanism. The direction from the slot opening to the slot bottom is defined as the wire entry direction, and the width of the wire clamping groove decreases along the wire entry direction.

2. The desktop cable clamp according to claim 1, wherein: The included angle of the wire clamping slot ranges from 5° to 30°.

3. The desktop cable clamp according to claim 1, wherein: The groove surface of the wire clamping groove is provided with a friction layer.

4. The desktop cable clamp according to claim 1, wherein: The wire clamping mechanism is provided with at least two wire clamping grooves, and the wire clamping grooves are arranged at intervals in a direction away from the base.

5. The desktop cable clamp according to claim 4, wherein: The included angle of the wire clamping slot ranges from 5° to 30°, and the included angles of different wire clamping slots are the same or different wire clamping slots have different included angles.

6. The desktop cable clamp according to claim 1, wherein: The wire-holding mechanism comprises a sleeve connector and a wire-holding component. One end of the sleeve connector is connected to the base, and the other end is telescopically connected to the wire-holding component. The wire-holding groove is provided on the wire-holding component.

7. The desktop cable clamp according to claim 6, wherein: One of the sleeve and the wire clamping member is provided with at least two limiting holes, and the limiting holes are spaced apart in the direction away from the base. The other of the sleeve and the wire clamping member is provided with a limiting member. When the wire clamping member is extended or retracted relative to the sleeve, the limiting member is respectively matched and connected with different limiting holes.

8. The desktop cable clamp according to claim 7, wherein: A movable hole is provided on the side where the limiting member is located, and the movable hole is arranged on the outside of the limiting member.

9. The desktop cable clamp according to claim 1, wherein: A glue layer is provided on a side of the base away from the wire clamping mechanism.

10. A data cable assembly, characterized in that: The data cable assembly includes a data cable and a desktop cable holder as described in any one of claims 1 to 9, wherein the data cable includes a cable body and a data cable connector, the cable body abuts against the cable holder slot, and the cable body is connected to the data cable connector.

11. An electronic equipment kit, characterized in that: The electronic device kit includes an electronic device and the data cable assembly according to claim 10, wherein the electronic device is electrically connected to the data cable.