Electronic device

By designing an electronic device with storage space and a rotating storage cover, the problem of inconvenient power cord storage is solved, achieving simple and efficient storage of power cords and improving the comfort of using electronic products.

CN122054486APending Publication Date: 2026-05-15SAMSUNG ELECTRONICS SUZHOU COMP +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SAMSUNG ELECTRONICS SUZHOU COMP
Filing Date
2024-11-15
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing methods for storing power cords for electronic products are cumbersome and inconvenient, lacking a unified storage solution, resulting in clutter, affecting aesthetics, and posing safety hazards.

Method used

Design an electronic device comprising a housing with a storage space and a rotatable storage cover. The storage space has a latch for securing a power cord. The storage cover is fixed by a pivot connecting component. The latches are arranged in different directions to control the extension of the power cord. The storage cover is rotatable to facilitate the storage and use of the power cord.

Benefits of technology

It enables simple and efficient storage of power cords, improves the user experience, prevents power cords from scattering, enhances safety, and can be used as a stand to improve the comfort of using electronic products when not in use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an electronic device which is used for being placed on a contact surface for use and comprises a shell with a containing space, the containing space is provided with an opening, the opening is covered with a containing cover, the containing cover is configured to be rotatably covered on the opening, and the containing cover is arranged in the containing space. The storage cover is provided with an opening, a data line and / or a power line are / is stored in the opening, the storage cover comprises a first surface and a second surface, when the storage cover is in a closed state, the first surface is supported on the contact surface, and when the storage cover is in an open state, the second surface is supported on the contact surface. The storage structure disclosed by the invention can store the power line and the electronic product to be carried together, is convenient to use and can lift the rear part of the electronic product; when the power line is not used, the power line is stored in the storage structure, and the cover is closed; when the power line needs to be used, the cover of the storage structure is opened, and the power line is pulled out.
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Description

Technical Field

[0001] This invention generally relates to the field of electronic products. Background Technology

[0002] With the continuous advancement of technology, electronic products have become an indispensable part of modern society, greatly enriching people's lives and work. From smartphones and tablets to laptops, portable game consoles, and smart home devices, electronic products are diverse in type and function. They have won the favor of consumers worldwide with their powerful data processing capabilities, convenient communication functions, and rich entertainment experiences. These electronic products not only meet people's daily communication needs but also promote the rapid dissemination of information, improve work efficiency, and enrich leisure life.

[0003] However, despite the increasing sophistication and portability of electronic products, the accompanying power cords often remain a major inconvenience for users. Power cords not only vary in length but also lack a standardized storage solution, leading to a messy and disorganized appearance after use, which can be both unsightly and potentially dangerous. This is especially true for users who frequently need to carry their electronic devices. Traditional storage methods, such as using straps, coiling, or using storage bags, while offering some relief from the tangled problem, are often cumbersome and can damage the cords. Furthermore, some electronic products come with power cords of various specifications, further increasing the difficulty and complexity of storage. Therefore, designing a simple yet efficient power cord storage solution has become a pressing technical challenge in current electronic product design. Summary of the Invention

[0004] In order to solve the above technical problems, the purpose of this invention is to provide an electronic product that can have a storage function.

[0005] To achieve the above objectives, the present invention discloses an electronic device for use on a contact surface, comprising a housing having a storage space with an opening, the opening being covered by a storage cover, the storage cover being configured to rotatably cover the opening, the opening housing a data cable and / or a power cable, the storage cover comprising a first surface and a second surface, wherein in the closed state, the first surface supports the contact surface, and in the open state, the second surface supports the contact surface.

[0006] A further improvement of the present invention is that the storage space is provided with a plurality of bayonets for fixing the data cable and / or power cable.

[0007] A further improvement of the present invention is that some of the plurality of slots are placed along a first direction, and at least a portion of the slots near the edge of the storage space are placed along a second direction, wherein the second direction intersects the first direction.

[0008] A further improvement of the present invention is that the storage cover includes a cable outlet hole, and the latch in the latch, which is placed in the second direction, is configured to be inclined toward the cable outlet hole so that the data cable extends toward the position of the cable outlet hole.

[0009] A further improvement of the present invention is that the housing and / or storage space are provided with a rotating shaft connecting component, and the storage cover is fixed to the rotating shaft connecting component by means of the rotating shaft.

[0010] A further improvement of the present invention is that the rotating shaft connecting component includes a central rotating shaft hole disposed in the middle of the storage space, the central rotating shaft hole includes an upwardly extending first wall and a second wall, and a rotating shaft insertion port disposed between the first wall and the second wall for the rotating shaft to be inserted, the first wall and the second wall being configured such that the line connecting the center of the rotating shaft insertion port and the center of the rotating shaft hole forms a certain angle with the vertical direction.

[0011] A further improvement of the present invention is that the first surface includes an elongated first rubber foot, which supports the contact surface when the storage cover covers the opening.

[0012] A further improvement of the present invention is that the second surface includes two second rubber feet separately disposed on both sides of the second surface, and when the storage cover is fully opened, the second rubber feet are supported on the contact surface.

[0013] A further improvement of the present invention is that the second rubber foot includes an inclined surface, and when the storage cover is fully opened, the second rubber foot is in complete contact with the contact surface.

[0014] A further improvement of the present invention is that the sidewalls of the housing and / or storage space are configured with arcuate surfaces to prevent interference between them when the storage cover rotates.

[0015] This application addresses the problems of existing technologies by providing a housing with a storage space having an opening. A storage cover is provided over the opening, and the cover is rotatably configured to cover the opening. A data cable and / or power cable are stored within the opening. The storage cover includes a first surface and a second surface. In the closed state, the first surface supports a contact surface; in the open state, the second surface supports the contact surface. The storage structure disclosed in this invention can store power cables and electronic products for convenient carrying and also elevates the rear of the electronic product. When the power cable is not in use, it is stored within the storage structure and the cover is closed. When the power cable is needed, the cover is opened, and the power cable is pulled out for use. Attached Figure Description

[0016] Appendix Figure 1 In the preferred embodiment of this application, the storage structure is in the off power cord storage state; Appendix Figure 2 In the preferred embodiment of this application, the storage structure is in the power cord storage state. Appendix Figure 3 In the preferred embodiment of this application, the storage structure is in the power cord pull-out state. Appendix Figure 4 In the preferred embodiment of this application, the storage structure is in the off power cord pull-out state; Appendix Figure 5 This is a perspective view of the storage lid in the closed state in a preferred embodiment of this application; Appendix Figure 6 This is a partial enlarged view of the receiving cover pressing structure in a preferred embodiment of this application; Appendix Figure 7 This is a perspective view of the storage lid in the open state in a preferred embodiment of this application.

[0017] Appendix Figure 8 This is a cross-sectional schematic diagram of the storage cover in a preferred embodiment of this application; Appendix Figure 9 This is a schematic diagram and enlarged view of the fixed structure position in a preferred embodiment of this application; Appendix Figure 10 This is a cross-sectional schematic diagram of the fixing structure in a preferred embodiment of this application; Appendix Figure 11 This is a schematic diagram showing the position of the rotating shaft connecting component in a preferred embodiment of this application; Appendix Figure 12 This is a cross-sectional view of the intermediate shaft hole in a preferred embodiment of this application; Appendix Figure 13 This is a schematic diagram of the A-A' section position in a preferred embodiment of this application; Appendix Figure 14This is a schematic cross-sectional view and a partial enlarged view of section A-A' in a preferred embodiment of this application; Appendix Figure 15 This is a magnified view of a portion of the hook in a preferred embodiment of this application; Appendix Figure 16 This is an exploded view of a preferred embodiment of this application; Appendix Figure 17 This is a schematic diagram of the preferred embodiment of the present application before the rotating shaft is inserted into the intermediate rotating shaft hole; Appendix Figure 18 This is a schematic diagram of the preferred embodiment of this application after the rotating shaft is inserted into the intermediate rotating shaft hole; Appendix Figure 19 This is a schematic diagram of the electronic product with the cover closed, according to a preferred embodiment of this application. Appendix Figure 20 A partial enlarged view of the closed state of the storage cover in a preferred embodiment of this application; Appendix Figure 21 This is a schematic diagram of the electronic product with the storage cover open in a preferred embodiment of this application; Appendix Figure 22 This is a partial enlarged view of the storage lid in the opened state in a preferred embodiment of this application; Appendix Figure 23 This is a cross-sectional view of the storage cover when it is opened in a preferred embodiment of this application; Appendix Figure 24 This is a cross-sectional view of the storage cover during the closing process in a preferred embodiment of this application; Appendix Figure 25 This is a cross-sectional view of the closed state of the storage cover in a preferred embodiment of this application; Appendix Figure 26 This is a cross-sectional view of the storage cover before it is opened in a preferred embodiment of this application. Detailed Implementation

[0018] In the following description, the terminology used in the specification will be briefly described, and embodiments will be described in detail. All terms used herein, including descriptive or technical terms, should be interpreted as having the meaning understood by one of ordinary skill in the art. However, these terms may have different meanings depending on the intent of one of ordinary skill in the art, precedent, or the emergence of new technologies.

[0019] Furthermore, some terms may be chosen by the applicant, and in such cases, the meaning of the chosen terms will be described in detail in the detailed description of the embodiments. Therefore, the terms used herein must be defined based on their meanings in conjunction with the description throughout the specification. Additionally, when a component “comprises” or “contains” an element, the component may also include other elements without excluding them, unless there is a specific description to the contrary. In the following description, terms such as “component” and “module” indicate a unit for performing at least one function or operation, wherein units and modules may be implemented as hardware or software or by combining hardware and software.

[0020] Embodiments will now be described more fully with reference to the accompanying drawings. However, embodiments may be implemented in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the concept of the embodiments to those skilled in the art. In the following description, well-known functions or structures are not described in detail, as they would obscure the embodiments with unnecessary detail, and throughout the specification, the same reference numerals in the drawings denote the same or similar elements.

[0021] An electronic device for placement on a contact surface includes a housing having a storage space. One end of the storage space has an opening, and a storage cover is rotatably positioned over the opening. It should be noted that the storage cover refers only to the cover that covers the storage space; the storage cover itself may or may not have a storage function. The storage cover includes a first surface and a second surface. In a closed state, the first surface supports the contact surface; in an open state, the second surface supports the contact surface.

[0022] The opening houses the power cord. The power cord provides power to the device, transferring current from a power source (such as a socket, power bank, or computer USB port) to the device's internal battery or circuitry, ensuring continuous operation. The power cord of this application can also function as a data cable, used for data transfer, such as transferring photos, music, and videos from a computer to a mobile phone or other mobile devices, or enabling file sharing between different devices. In some embodiments, both the power cord and data cable can be housed simultaneously. The following explanation uses the power cord as an example.

[0023] The storage space is provided with a plurality of latches for securing the power cord. When the power cord is stored therein, the plurality of latches can secure the power cord and also determine the direction of extension of the power cord. In a preferred embodiment of the invention, some of the latches are positioned along a first direction, and at least one latch near each end of the storage space is positioned along a second direction, the second direction intersecting the first direction.

[0024] The storage cover may include a cable exit hole, and the latches in the second direction are configured to be inclined toward the cable exit hole so that the power cord extends toward the location of the cable exit hole. In a preferred embodiment of the invention, the cable exit hole of the storage cover may be located near the center of the side of the storage cover. The second direction may be configured toward the center of the side of the storage cover.

[0025] The storage cover is fixed to the hinge connecting component via a hinge. The hinge connecting component can be located on the housing or inside the storage space, or part of the hinge connecting component can be located on the housing and part inside the storage space. The hinge connecting component can be a first hinge connecting component and a second hinge connecting component respectively located on both sides of the hinge.

[0026] The pivot connection component also includes a central pivot hole located in the middle of the storage space. The central pivot hole includes an upwardly extending first wall and a second wall, and a pivot insertion port located between the first wall and the second wall for the pivot to be inserted. The first wall and the second wall are configured such that the line connecting the center of the pivot insertion port and the center of the pivot hole forms a certain angle with the vertical direction.

[0027] The storage cover includes a first surface and a second surface, wherein the first surface includes an elongated first rubber foot that can be supported on the contact surface when the storage cover covers the opening. The area of ​​the first rubber foot can be approximately equal to the area of ​​the first surface.

[0028] The second surface of the storage cover may include two second adhesive feet separately disposed on both sides of the second surface. When the storage cover is fully opened, the second adhesive feet support the contact surface. In some embodiments, the second adhesive feet may include an inclined surface, so that when the storage cover is fully opened, the second adhesive feet are in complete contact with the contact surface. The inclined second adhesive feet raise one edge of the electronic product, which can enhance the heat dissipation of the electronic product. In some embodiments, the second surface of the storage cover may also include an inclined surface, with the second adhesive feet disposed parallel to the second surface of the storage cover, which can also achieve the effect of the second adhesive feet being in complete contact with the contact surface when the storage cover is fully opened.

[0029] The sidewalls of the housing and / or storage space are provided with curved surfaces to prevent interference when the storage lid rotates. The curved surfaces are configured to protrude towards the housing or storage space. The edge of the storage lid does not interfere with these curved surfaces when the storage lid rotates.

[0030] The working principle of the preferred embodiment of the present invention will be described below with reference to the accompanying drawings.

[0031] See appendix Figure 1 To be continued Figure 4 , attached Figure 1 In the preferred embodiment of this application, the storage structure is in the power cord-retrieval state when the power cord is off; Appendix Figure 2In the preferred embodiment of this application, the storage structure is in the power cord storage state; (attached) Figure 3 In the preferred embodiment of this application, the storage structure is in the power cord pull-out state; (attached) Figure 4 In the preferred embodiment of this application, the storage structure is in the off state with the power cord pulled out.

[0032] An electronic device includes a housing 1 and a storage structure disposed on the housing 1. The storage structure includes a flip-up storage cover 2 and has a storage space inside, within which a power cord 3 is disposed. The storage cover 2 includes a first surface, which, in a closed state, rests on a contact surface. The contact surface is the surface on which the electronic device is placed during use, and may be a desktop, workbench, or floor. The contact surface is not within the scope of protection of this application, nor does it limit the scope of protection of this invention.

[0033] The storage cover 2 can be opened by rotating along the pivot. The storage cover 2 can rotate more than 90 degrees. When the power cord 3 is located inside the storage structure, the power cord 3 can be extended along the extension direction of the storage cover 2. The storage cover 2 includes a second surface, which, in the open state, is supported on the contact surface.

[0034] With the storage structure open, the power cord 3 can be pulled out. The storage cover 2 has a cable exit hole 8 for the power cord 3 to pass through. After the power cord 3 is pulled out, the storage cover 2 can rotate back to the closed position in the opposite direction. In a preferred embodiment of the invention, the cable exit hole 8 of the storage cover 2 is located on the side of the storage cover 2 near the center. In this case, the power cord 3 passes through the hole in the storage cover 2 without affecting the closing of the storage cover 2. After being pulled out, the power cord 3 can extend along the extension direction of the storage cover 2.

[0035] See appendix Figure 5 To be continued Figure 7 , attached Figure 5 This is a perspective view of the storage lid in the closed state in a preferred embodiment of this application; (Attached) Figure 6 This is a partially enlarged view of the receiving cover pressing structure in a preferred embodiment of this application; (See attached image) Figure 7 This is a perspective view of the storage lid in the open state in a preferred embodiment of this application.

[0036] The storage cover 2 includes a first surface and a second surface located on the side, wherein the first surface is provided with a first adhesive foot 6 and the second surface is provided with a second adhesive foot 7. The first adhesive foot 6 and the second adhesive foot 7 are located on different planes.

[0037] The first adhesive foot 6 is elongated and extends along the direction of the storage cover 2. The first adhesive foot 6 substantially covers the first surface. When the storage cover 2 covers the opening, the first adhesive foot 6 rests on the contact surface. Two second adhesive feet 7 are respectively disposed at both ends of the second surface of the storage cover 2. When the storage cover 2 is fully open, the second adhesive feet 7 rest on the contact surface. Preferably, the second adhesive foot 7 may include an inclined surface, so that when the storage cover 2 is fully open, the second adhesive foot 7 is in complete contact with the contact surface.

[0038] The second surface of the storage cover 2 is provided with a pressing structure 9 and a latch 10 connected to the lower edge of the second surface of the storage cover 2. When the storage cover 2 is closed, the latch 10 is configured to engage with the housing 1. When it is necessary to open the storage cover 2, the pressing structure 9 is pressed down, the second surface deforms, and the latch 10 separates from the housing 1.

[0039] The storage cover 2 has a pivot on its third surface, and a pivot connecting component is provided within the housing 1 and the storage space. The storage cover 2 is fixed to the pivot connecting component via the pivot. The pivot is connected to the housing 1, and the third surface is the surface opposite to the second surface. A first pivot 11 and a second pivot 12 are respectively provided at both ends of the storage cover 2, and a middle pivot 13 is provided in the middle of the storage cover 2.

[0040] See appendix Figure 8 , attached Figure 8 This is a cross-sectional schematic diagram of the storage cover in a preferred embodiment of this application. The second adhesive foot 7 includes an inclined surface, and when the storage cover 2 is fully opened, the second adhesive foot 7 is in complete contact with the contact surface. The angle α of the support surface of the second adhesive foot 7 is preferably an acute angle less than 90 degrees. Setting this angle is beneficial for the second adhesive foot 7 to fully contact the tabletop when the storage cover 2 is opened and supported on the support surface.

[0041] The hook 10 connects to the lower edge of the second surface of the storage cover 2. The angle of the hook 10 is δ, preferably 45°~60°. To increase the strength of the hook 10, the hook 10 can be made to have a certain thickness. The height C in the figure indicates the thickness of the hook 10.

[0042] The first pivot 11 of the storage cover 2 can be set to a diameter a. (Not in...) Figure 8 The diagram shows that the second and intermediate shafts can also be set with the same diameter a as the first shaft 11.

[0043] The cable exit hole 8 may include an arc surface with a radius of b that matches the curvature of the power cord 3. The cable exit holes 8 at both ends of the storage cover 2 can be set to the same size or different sizes. ∠β and ∠ε determine the slope of the two side walls of the cable exit hole 8. ∠β can be equal to ∠ε, and both angles can be set to >90°, which facilitates the entry of the power cord.

[0044] See appendix Figure 9 To be continued Figure 10 , attached Figure 9 This document provides a schematic diagram and enlarged view of the fixed structure position in a preferred embodiment of this application. (Attached) Figure 10 This is a cross-sectional schematic diagram of the fixing structure in a preferred embodiment of this application. Multiple power cord fixing structures are placed within the storage space: all fixing structures can adopt the same construction, and the number and placement of the fixing structures depend on the actual situation.

[0045] The fixing structure in the preferred embodiment of this application includes two rows of a plurality of bayonets 4, wherein the bayonets 4 in the middle position can be placed horizontally, and the horizontally placed bayonets 4 can be arranged in two rows, with the two rows arranged parallel to each other.

[0046] The two bayonets 4 at both ends of the edge can be placed at an angle, with the fixing structure at both ends tilted at a certain angle, as shown in the figure. The two bayonets 4 are tilted in different directions, where ∠θ=∠η. This arrangement facilitates the smooth extension of the power cord at the outlet. Of course, different arrangements are possible in other embodiments.

[0047] See appendix Figure 10 Each bayonet 4 has a hollow power cord storage hole, which includes a circular hole with an inner diameter of d and an opening with a width of e, smaller than the inner diameter d. The opening is located above the storage hole. The opening also has elastic walls that slope towards both sides of the opening, with a certain angle relative to the vertical direction. In the attached diagram, ∠λ and ∠μ indicate the opening slope, which is approximately 30 to 60 degrees. This design facilitates the insertion of the power cord. A certain gap can be provided between the power cord storage hole and the power cord, such as a 0.2mm gap on one side, allowing the power cord to move axially.

[0048] See appendix Figure 11 To be continued Figure 12 , attached Figure 11 This is a schematic diagram showing the position of the rotating shaft connecting component in a preferred embodiment of this application; (See attached diagram) Figure 12 This is a cross-sectional view of the central pivot hole in a preferred embodiment of this application. The pivot connecting components may be a central pivot hole 51 disposed in the middle of the storage space and a first pivot connecting component 52 and a second pivot connecting component 53 disposed on both sides of the pivot.

[0049] The intermediate shaft hole 51 includes an upwardly extending first wall and a second wall, with a shaft insertion port disposed between the first and second walls for inserting a shaft. The first and second walls are configured such that the line connecting the center of the shaft insertion port and the center of the shaft hole forms a certain angle with the vertical direction. The intermediate shaft hole 51 includes a circular hole with an inner diameter of h and an opening with a width of i that is smaller than the inner diameter h. The opening is located above the intermediate shaft hole 51. Elastic walls inclined towards both sides of the opening are also provided at the opening, with a certain slope relative to the vertical direction. In the attached figure, ∠ν and ∠ρ indicate the slope of the opening, which is approximately 30 to 60 degrees. This arrangement facilitates the insertion of the shaft.

[0050] See appendix Figure 13 To be continued Figure 15 , attached Figure 13 This is a schematic diagram of the A-A' section position in a preferred embodiment of this application; attached. Figure 14 This is a schematic cross-sectional view and a partial enlarged view of section A-A' in a preferred embodiment of this application. (Attached) Figure 15 This is a magnified view of a portion of the hook in a preferred embodiment of this application.

[0051] The housing 1 is provided with a hook hole 14 for inserting the hook 10. The outer side of the housing with the hook hole 14 can be provided with an angle ∠o of approximately 30° to 60°. In a preferred embodiment of the present invention, ∠o can be 45 degrees. See attached drawing. Figure 14 The side wall of the housing 1 or the storage space that contacts the rotating side of the storage cover 2 is provided with an arc surface to prevent interference when the storage cover 2 rotates, and the arc surface protrudes towards the housing 1. The height j of the hook hole 14 should be greater than the attached... Figure 8 The thickness C of the hook 10. Preferably, there is a gap of 0.1 to 2 cm between the hook 10 and the hook hole 14 above, and a gap of 0.3 cm to 2 cm between the hook 10 and the hook hole 14 below. The hook 10 and the hook hole 14 should have an engagement width of at least 1 mm, preferably 0.1 cm to 0.5 cm, to effectively prevent the hook 10 from falling off.

[0052] See appendix Figure 16 To be continued Figure 18 , attached Figure 16 This is an exploded view of a preferred embodiment of this application. (Attached) Figure 17 This is a schematic diagram of the preferred embodiment of this application before the rotating shaft is inserted into the intermediate rotating shaft hole; (See attached diagram) Figure 18This is a schematic diagram showing the shaft inserted into the intermediate shaft hole according to a preferred embodiment of this application. The shaft connecting components include a first shaft connecting component 52 and a second shaft connecting component 53 respectively disposed on both sides of the shaft, and an intermediate shaft hole 51 disposed in the middle of the storage space. The storage cover 2 is respectively provided with a first shaft 11 connected to the first shaft connecting component 52, a second shaft 12 connected to the second shaft connecting component 53, and an intermediate shaft 13 connected to the intermediate shaft hole 51. The first shaft 11 and the second shaft 12 are inserted into the shaft holes of the first shaft connecting component 52 and the second shaft connecting component 53 from the side. The intermediate shaft 13 is inserted into the intermediate shaft hole 51 from the top. The shaft connecting components can be disposed in the housing 1 or the storage space, and can be made of plastic material (PC or PC+ABS), which is deformable and elastic, facilitating the insertion of the shaft. A certain gap can be set between the shaft and the shaft hole, for example, a single-sided gap of 0.1mm, so that the shaft can rotate but does not wobble.

[0053] See appendix Figure 19 To be continued Figure 22 , attached Figure 19 This is a schematic diagram of the electronic product with the cover closed, according to a preferred embodiment of this application; (See attached diagram) Figure 20 A partial enlarged view of the storage lid in the closed state in a preferred embodiment of this application; (See attached image) Figure 21 This is a schematic diagram of the electronic product with the storage cover open in a preferred embodiment of this application; (See attached diagram) Figure 22 This is a partially enlarged view of the storage cover in the opened state in a preferred embodiment of this application. The storage cover 2 includes a first surface and a second surface, wherein the first surface includes an elongated first adhesive foot 6. When the storage cover 2 covers the opening, the first adhesive foot 6 can be supported on the contact surface. The area of ​​the first adhesive foot 6 can be approximately equal to the area of ​​the first surface. At this time, the distance from the bottom surface of the first adhesive foot 6 to the housing 1 is m. The power cord 3 can extend from the outlet hole 8.

[0054] The second surface of the storage cover 2 may include two second adhesive feet 7 separately disposed on both sides of the second surface. When the storage cover 2 is fully open, the second adhesive feet 7 are supported on the contact surface. The second adhesive feet 7 may include an inclined surface. When the storage cover 2 is fully open, the second adhesive feet 7 are in full contact with the contact surface. The inclined second adhesive feet 7 raise one edge of the electronic product, which can enhance the heat dissipation of the electronic product. At this time, the distance from the bottom surface of the second adhesive feet 7 to the housing 1 is I, where I is greater than m. When the storage cover 2 is open, the distance between the electronic product housing 1 and the contact surface is greater.

[0055] The first adhesive foot 6 and the second adhesive foot 7 can be made of soft materials, such as silicone or TPU, with a hardness of 70° to 90°, preferably 85°. The first adhesive foot 6 and the second adhesive foot 7 can be attached to the storage cover 2 using, for example, double adhesive. To increase the stability of the support, the opening angle ω of the storage cover 2 should be greater than 90°. When the storage cover 2 is opened, the electronic product is supported at an angle ξ, where ∠ξ is not 0°, preferably 5° to 15°.

[0056] See appendix Figures 23 to 26 , attached Figure 23 This is a cross-sectional view of the storage cover in a preferred embodiment of this application when it is open; the storage cover 2 can be rotated clockwise back to the closed position as shown in the figure. Figure 24 This is a cross-sectional view of the storage cover during the closing process in a preferred embodiment of this application; during the closing process of the storage cover 2, the hook 10 on the storage cover 2 interferes to a certain extent with the housing 1. (Attached) Figure 25 This is a cross-sectional view of the closed state of the storage cover in a preferred embodiment of this application; the hook 10 and the housing 1 should have an engagement width of at least 1 mm, preferably 0.1 cm to 0.5 cm, which can effectively prevent the hook 10 from falling off. (See attached image) Figure 26 This is a cross-sectional view of the storage cover before it is opened in a preferred embodiment of this application. Pressing the pressing structure 9 on the second surface of the storage cover 2 can deform the second surface, at which point the hook 10 and the hook hole 14 disengage, and rotating the storage cover 2 can open the storage cover 2.

[0057] The storage structure disclosed in this invention can store power cords and electronic products together for easy carrying and also raises the rear of the electronic products. When the power cord is not in use, it can be stored in the storage structure and the cover closed. When the power cord is needed, the cover of the storage structure can be opened and the power cord can be pulled out for use.

[0058] When the electronic product is a computer, tablet, or other device with a large screen, the power cord is securely held in place at the bottom of the device, preventing a messy appearance. The storage cover can remain open while the power cord is in use, acting as a stand to elevate the rear of the device, improving heat dissipation and user comfort. For example, with a laptop, this structure allows the keyboard to tilt at a certain angle, making it more comfortable for most users. When high heat dissipation is not required or users are not comfortable with tilting the keyboard, the storage cover can be closed while the power cord is in use.

[0059] It should be understood that the embodiments described herein should be considered in a descriptive sense only and not for limiting purposes. The description of features or aspects within each embodiment should generally be considered applicable to other similar features or aspects in other embodiments. Although one or more embodiments have been described with reference to the accompanying drawings, those skilled in the art will understand that various changes in form and detail may be made therein without departing from the spirit and scope defined by the appended claims.

Claims

1. An electronic device for use placed on a contact surface, characterized by: The application relates to a data line and / or power line storage device, which comprises a housing (1) with a storage space, wherein the storage space is provided with an opening, the opening is covered with a storage cover (2), the storage cover (2) is arranged to be rotatable to cover the opening, the opening is provided with a data line and / or power line (3), the storage cover (2) comprises a first surface and a second surface, the first surface is supported on a contact surface when the storage cover (2) is closed, and the second surface is supported on the contact surface when the storage cover (2) is opened. 2.The electronic device of claim 1, wherein: A plurality of sockets (4) for fixing the data line and / or power line (3) are arranged in the storage space. 3.The electronic device of claim 2, wherein: Some sockets (4) in the plurality of sockets (4) are arranged along a first direction, and at least some sockets (4) near the edge of the storage space are arranged along a second direction, wherein the second direction intersects the first direction. 4.The electronic device of claim 3, wherein: The storage cover (2) is provided with a wire outlet hole (8), and the sockets (4) arranged along the second direction are arranged to be inclined towards the wire outlet hole (8) so that the data line extends towards the position of the wire outlet hole (8). 5.The electronic device of claim 1, wherein: The housing (1) and / or the storage space are provided with a rotating shaft connecting component, and the storage cover (2) is fixed on the rotating shaft connecting component through a rotating shaft. 6.The electronic device of claim 5, wherein: The rotating shaft connecting component comprises a middle rotating shaft hole (51) arranged in the middle of the storage space, the middle rotating shaft hole (51) comprises a first wall and a second wall extending upwards, a rotating shaft insertion opening is arranged between the first wall and the second wall for inserting the rotating shaft, and the first wall and the second wall are arranged to be inclined to the vertical direction. 7.The electronic device of claim 1, wherein: The first surface comprises a first glue foot (6) in a strip shape, and the first glue foot (6) is supported on the contact surface when the storage cover (2) covers the opening. 8.The electronic device of claim 1, wherein: The second surface comprises two second glue feet (7) arranged on both sides of the second surface, and the second glue feet (7) are supported on the contact surface when the storage cover (2) is completely opened. 9.The electronic device of claim 8, wherein: The second glue feet (7) comprise an inclined surface, and the second glue feet (7) are completely in contact with the contact surface when the storage cover (2) is completely opened. 10.The electronic device of claim 1, wherein: The side wall of the housing (1) and / or the storage space is arranged with an arc surface for avoiding mutual interference when the storage cover (2) rotates.