Mounting bracket and electronic device assembly

By designing a mounting bracket with an open accommodating cavity and wire hanging parts, the problems of limited cable storage space and inconvenient operation in the prior art are solved, and more efficient cable storage and installation cleanliness are achieved.

WO2025112524A1PCT designated stage expired Publication Date: 2025-06-05HUAWEI TECH CO LTD
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Patent Information

Application Number
PCT/CN2024/102822
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-11-30
Filing Date
2024-07-01
Publication Date
2025-06-05

AI Technical Summary

Technical Problem

The existing installation bracket has limited space when storing electronic equipment cables, which is inconvenient to operate, which affects the cleanliness and installation efficiency.

Method used

A mounting bracket is designed, including a receiving cavity with an opening and a hanging wire piece, allowing the bundled cable of the electronic device to enter the receiving cavity and hang it on the hanging wire piece, omitting the step of winding the winding coil.

Benefits of technology

It improves the convenience and efficiency of cable storage, and improves the cleanliness and efficiency of electronic equipment installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application belongs to the technical field of mounting devices. Provided are a mounting bracket and an electronic device assembly. The mounting bracket provided in the present application is configured to bear an electronic device, the mounting bracket comprising a bracket body and a cable hanging member, wherein the bracket body is provided with an accommodating cavity, the accommodating cavity being provided with an opening; and the cable hanging member is connected to a cavity wall of the accommodating cavity. A bundled cable of the electronic device can enter inside the accommodating cavity through the opening and hang on the cable hanging member. The mounting bracket provided in the present application allows for convenient and quick storage of cables of the electronic device, thereby improving the convenience and operation efficiency of storage operations while meeting the cable storage requirements, and thus meeting multiple requirements for the mounting of the electronic device in respect of mounting wiring neatness and mounting efficiency.
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Description

Mounting bracket and electronic equipment components

[0001] This application claims priority to Chinese patent application No. 202323305124.4 filed on November 30, 2023, with utility model name “Mounting bracket and electronic equipment assembly”, the entire contents of which are incorporated by reference into this application. Technical Field

[0002] The present application relates to the technical field of installation equipment, and in particular to a mounting bracket and an electronic equipment assembly. Background Art

[0003] WLAN (Wireless Local Area Network) equipment, ONT (Optical Network Terminal), FTTR (Fiber to the Room) equipment, optical modems, and smart home devices typically require mounting brackets to secure them to the wall. Some mounting brackets also feature integrated cable management, allowing them to store power cords for these devices, ensuring neat wiring.

[0004] In the related art, mounting brackets with cable storage functions are usually equipped with a cable winding reel. When in use, the power cord needs to be wound around the reel in turns. However, due to the size of the mounting bracket itself, the cable storage space on the mounting bracket is also very limited, and the process of winding the power cord is not convenient.

[0005] Utility Model Content

[0006] An embodiment of the present application provides a mounting bracket and an electronic device assembly, which can conveniently and quickly store the cables of the electronic device, so as to improve the convenience and efficiency of the storage operation while meeting the cable storage needs, thereby meeting the multiple needs of installation wiring neatness and installation efficiency during the installation of the electronic device.

[0007] In a first aspect, the present application provides a mounting bracket, which is used to support electronic equipment. The mounting bracket includes a bracket body and a wire hanging member, the bracket body has a accommodating cavity, and the accommodating cavity has an opening; the wire hanging member is connected to the cavity wall of the accommodating cavity; wherein the bundled cables of the electronic equipment can enter the interior of the accommodating cavity through the opening and be hung on the wire hanging member.

[0008] In the solution shown in the present application, the mounting bracket includes a bracket body having a accommodating cavity, so that the mounting bracket can accommodate the cables of the electronic device through the accommodating cavity on the bracket body while carrying the electronic device. Considering that the power cord and other cables of the electronic device are generally in a bundled state when shipped, the accommodating cavity is provided with an opening, and a hanging piece is connected to the cavity wall of the accommodating cavity. Therefore, when the electronic device is installed through the mounting bracket, the bundled cables of the electronic device can be fed into the interior of the accommodating cavity through the opening and directly hung on the hanging piece, thereby omitting the steps of untying the cable ties for the bundled cables and winding the cables on the winding reel, thereby improving the convenience and efficiency of the storage operation of the cables of the electronic device, and further contributing to the improvement of the efficiency of the installation and layout of the electronic device.

[0009] In a possible implementation, the wire hanging member includes at least two hooks, which are arranged in pairs, and the hook portions of the two hooks in the pair face away from each other; wherein the bundled cables are suitable for being hung on at least one pair of hooks.

[0010] In the solution presented in this application, the cable hanging member includes at least two hooks arranged in pairs, and the bundled cables of the electronic device can be hung on at least one pair of these hooks. Because the hook portions of each pair of hooks face away from each other, the hook portions can hook onto the bundled cables hung on the pair of hooks, preventing the bundled cables from falling off the hooks. This not only ensures the reliable hanging of the bundled cables, but also the simple structure of the hooks requires very little space for installation, further facilitating the lightweight and miniaturized design of the mounting bracket.

[0011] In a possible implementation, the at least two hooks are connected to the bottom wall of the accommodating cavity and are arranged at intervals along the circumference of the bottom wall, and the bottom wall is opposite to the opening.

[0012] In the solution shown in the present application, at least two hooks are connected to the bottom wall of the accommodating cavity. Since the bottom wall is opposite to the opening, the operational convenience of hanging the bundled cables is improved; and when the hooks are set on the bottom wall, the hook portion of the hook protrudes toward the side wall of the accommodating cavity. The bundled cables hung on the hooks are actually put on the rod portion of the hooks and are blocked by the hook portion. Therefore, the probability of the bundled cables slipping off the hooks can be further reduced, the hanging reliability of the bundled cables is improved, and the stability of the bundled cables in the accommodating cavity is ensured.

[0013] In a possible implementation, the mounting bracket further includes a cover member, which covers the opening of the accommodating cavity, and the cover member is movably or detachably connected to the bracket body.

[0014] In the solution shown in this application, by providing a cover to block the opening of the accommodating cavity, it is possible to further prevent the bundled cables from falling out of the accommodating cavity. Since the cover and the intermediate plate are movably or detachably connected, the cover can be installed or adjusted in position according to actual needs, making the usage scenario and method more flexible.

[0015] In a possible implementation, the bracket body is provided with an edge portion, which surrounds the opening of the accommodating cavity; the cover is provided on the outside of the edge portion, and the inner side wall of the cover is connected to the outer side wall of the edge portion.

[0016] In the solution shown in the present application, a rim portion surrounding the opening of the accommodating cavity is provided on the bracket body, and the rim portion is connected in cooperation with the cover member. On the one hand, it can position the cover member to ensure that the cover member plays a role in covering the opening of the accommodating cavity. On the other hand, it can also enable the cover member to be fixed relative to the bracket body to prevent the cover member from accidentally opening due to factors such as its own gravity, thereby preventing the bundled cables from falling out of the accommodating cavity.

[0017] In a possible implementation, a first wire outlet is provided on the cover member, and a second wire outlet is provided on the edge portion, and the first wire outlet is communicated with the second wire outlet; wherein the first wire outlet and the second wire outlet are used to allow both ends of the bundled cables to pass through.

[0018] In the solution shown in the present application, a first wire outlet is provided on the cover member, and a second wire outlet is provided on the edge portion. The first wire outlet and the second wire outlet are connected so that the two ends of the bundled cables can pass through them to connect to the plug and the electronic device respectively to meet the wiring requirements.

[0019] In one possible implementation, one kind of a rotation hole and a rotation shaft protrusion and the other kind of a rotation hole are respectively provided on the cover member and the edge portion, and the rotation shaft protrusion is located in the rotation hole so that the cover member can rotate relative to the bracket body; and / or, one kind of a card block and a card slot are respectively provided on the inner side wall of the cover member and the outer side wall of the edge portion, and the card block is engaged with the card slot.

[0020] In the solution shown in the present application, the cover plate and the edge portion are rotatably connected by means of a rotating hole and a rotating shaft protrusion on the one hand, and are clamped by means of a clamping block and a clamping slot on the other hand. Therefore, when it is necessary to hang the bundled cables, the cover plate can be rotated to expose the accommodating cavity and the wire hanging member, which is convenient for the wire hanging operation; after the bundled cables are hung, the cover plate is rotated again to block the opening of the accommodating cavity and the hung bundled cables, and the cover plate is clamped on the edge portion to prevent the bundled cables from escaping from the accommodating cavity. The entire operation process is convenient and fast, and the hanging reliability of the bundled cables is good.

[0021] In a possible implementation, a mounting hole is provided on the bracket body, and the mounting hole is used to fix the bracket body on a mounting carrier; an avoidance notch is provided on the cover member, and the mounting hole is exposed from the avoidance notch.

[0022] In the solution shown in the present application, a mounting hole is provided on the bracket body, and an avoidance gap is provided on the cover plate to expose the mounting hole. The mounting hole enables the mounting bracket to be directly fixed on the mounting carrier by nailing to meet the layout requirements of the mounting bracket, and due to the setting of the avoidance gap, there is no interference between the cover plate and the fixing nail used for nailing, thereby ensuring the normal rotation of the cover plate and the normal nailing of the fixing nail.

[0023] In a possible implementation, the cover member has at least one weight-reducing hole; and for any of the weight-reducing holes, at most one hook in a pair of the hooks is exposed from the weight-reducing hole.

[0024] In the solution presented in this application, by providing at least one weight-reducing hole in the cover, the cover's own weight can be reduced, thereby contributing to a lightweight design for the mounting bracket and electronic device assembly, while also saving materials and reducing costs. However, both hooks in a pair of hooks cannot be simultaneously exposed through the same weight-reducing hole to prevent bundled cables hung from the pair of hooks from falling through the weight-reducing hole, rendering the cover inoperable.

[0025] In a possible implementation, the mounting bracket further includes a heat sink, which is connected to the bracket body and can be in thermal contact with a radiator of the electronic device carried by the bracket body to increase a heat dissipation area.

[0026] In the solution shown in this application, the mounting bracket includes a heat sink, which is connected to the bracket body. When the electronic device is also mounted on the bracket body, the heat sink can be in thermal contact with the radiator in the electronic device, thereby expanding the heat dissipation area and improving the heat dissipation efficiency.

[0027] In a possible implementation, the heat sink is cooperatively connected with a mounting structure on the electronic device, so that the bracket body supports and fixes the electronic device.

[0028] In the solution shown in this application, the heat sink can also be connected to the mounting structure on the electronic device, so that the heat sink not only plays a role in enhancing heat dissipation, but also plays a role in installing and fixing the electronic device, so that the electronic device can be installed on the bracket body.

[0029] In a possible implementation, the bracket body is a metal bracket; and / or the heat sink and the bracket body are an integrally formed structure.

[0030] In the solution shown in the present application, the bracket body may be a metal bracket, and / or the heat sink and the bracket body are an integrally formed structure, so that the heat sink can further transfer the heat from the radiator of the electronic device to the bracket body, and further expand the heat dissipation area through the bracket body to further improve the heat dissipation efficiency.

[0031] In a possible implementation, the mounting bracket further includes a mounting member, which is connected to the bracket body and is used to connect the mounting bracket to a mounting carrier.

[0032] In the solution shown in the present application, the mounting bracket can be deployed in other scenarios through the mounting parts, wherein the connection method between the mounting parts and the mounting carrier can be any method other than nailing, such as snap connection, screw connection, etc., thereby avoiding leaving nail holes on the mounting carrier and being able to meet the user's diverse deployment needs.

[0033] In a possible implementation, the mounting member includes a movable portion, a first leg portion and a second leg portion, the first leg portion and the second leg portion are located on the same side of the movable portion; one end of the movable portion is detachably connected to the first leg portion, and the other end of the movable portion is movably or detachably connected to the second leg portion; the first leg portion and the second leg portion are each detachably or rotatably connected to the bracket body at one end away from the movable portion; wherein a first mounting structure is provided on the first leg portion, and a second mounting structure is provided on the second leg portion, the distance between the first mounting structure and the second mounting structure is equal to the distance between the two screw holes on the electrical base box, and the first mounting structure and the second mounting structure are respectively selected from one of a through hole and a slot.

[0034] In a second aspect, the present application provides an electronic device assembly, comprising an electronic device and a mounting bracket as described in any one of the first aspects, wherein the electronic device is detachably connected to the mounting bracket.

[0035] In the solution shown in the present application, the mounting bracket includes a bracket body having a accommodating cavity, so that the mounting bracket can accommodate the cables of the electronic device through the accommodating cavity on the bracket body while carrying the electronic device. Considering that the power cord and other cables of the electronic device are generally in a bundled state when shipped, the accommodating cavity is provided with an opening, and a hanging piece is provided on the cavity wall of the accommodating cavity. Therefore, when the electronic device is installed through the mounting bracket, the bundled cables of the electronic device can be fed into the interior of the accommodating cavity through the opening and directly hung on the hanging piece, thereby omitting the steps of untying the cable ties and winding the cables on the winding reel, thereby improving the convenience and efficiency of the storage operation of the cables of the electronic device, and further contributing to the improvement of the efficiency of the installation and layout of the electronic device. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] FIG1 is a schematic diagram of an assembly of an electronic device component provided by an exemplary embodiment of the present application;

[0037] FIG2 is a schematic structural diagram of a mounting bracket with bundled cables provided by an exemplary embodiment of the present application;

[0038] FIG3 is a schematic structural diagram of a mounting bracket without a bundled cable provided by an exemplary embodiment of the present application;

[0039] FIG4 is a schematic structural diagram of a mounting bracket in an open cover state provided by an exemplary embodiment of the present application;

[0040] FIG5 is a cross-sectional schematic diagram of a mounting bracket in a covering state provided by an exemplary embodiment of the present application;

[0041] FIG6 is a schematic structural diagram of a bracket body provided by an exemplary embodiment of the present application;

[0042] FIG7 is a schematic structural diagram of a cover member provided by an exemplary embodiment of the present application;

[0043] FIG8 is a schematic structural diagram of a mounting bracket in a covering state provided by an exemplary embodiment of the present application;

[0044] FIG9 is a schematic diagram showing the arrangement relationship between a heat sink in a mounting bracket and a radiator in an electronic device provided by an exemplary embodiment of the present application;

[0045] FIG10 is a cross-sectional schematic diagram of a connection between a mounting bracket and an electronic device provided by an exemplary embodiment of the present application;

[0046] FIG11 is a schematic diagram of an assembly of a mounting bracket and an electronic device provided by an exemplary embodiment of the present application;

[0047] FIG12 is a side view of a mounting bracket, an electronic device, and a mounting carrier provided by an exemplary embodiment of the present application;

[0048] FIG13 is an exploded view of a mounting bracket and a wall socket provided by an exemplary embodiment of the present application;

[0049] FIG14 is a schematic structural diagram of an electrical base box provided by an exemplary embodiment of the present application.

[0050] Reference numerals: 100, mounting bracket; 1, bracket body; 11, accommodating cavity; 111, opening; 112, bottom wall; 12, edge portion; 121, second wire outlet; 122, rotating shaft protrusion; 123, clamping groove; 124, first edge; 125, second edge; 126, third edge; 13, mounting hole; 2, wire hanging member; 21, hook; 211, hook portion; 3, cover member; 31, first wire outlet; 32, rotating hole; 33, clamping block; 34, avoidance notch; 35, weight-reducing hole; 4, heat dissipation member; 5, mounting member; 51, movable portion; 52, first leg portion; 521, first mounting structure; 53, second leg portion; 531, second mounting structure; 200, electronic device; 210, bundled cables; 220, radiator; 230, circuit board; 240, heat conductor; 250, mounting structure; 260, housing; 300, mounting carrier; 310, wall socket; 311, electrical panel; 312, electrical base box; 3121, screw hole. DETAILED DESCRIPTION

[0051] In order to make the objectives, technical solutions and advantages of this application clearer, the implementation methods of this application will be further described in detail below with reference to the accompanying drawings.

[0052] Mounting brackets are often needed to install and secure electronic devices in homes and offices. Some mounting brackets also have integrated cable management features, allowing them to store cables such as power cables, fiber optic cables, and network cables, ensuring neat wiring during installation.

[0053] In the related art, a mounting bracket with a cable storage function is usually equipped with a cable winding reel or other styles of cable winding structures. When a user uses a mounting bracket to install an electronic device, the user needs to take the electronic device and its cables out of the packaging box, first untie the cable ties tied to the cables, then wind the cables around the cable winding reel of the mounting bracket one by one, and then fix the mounting bracket to the corresponding installation position on the wall. After the fixing is completed, the electronic device is fixed on the mounting bracket, and finally the cable is connected to the corresponding interface on the electronic device. However, with the development of the trend of miniaturization of equipment, the structure of the mounting bracket has become more and more compact, which results in very limited storage space for cables on the mounting bracket, and the operating space available for winding near the cable winding reel is also small, so the operation process of winding the power cord is not convenient.

[0054] The present embodiment relates to a mounting bracket 100 for carrying an electronic device 200 and achieving its installation and fixation on a mounting carrier 300. Since the various cables of the electronic device 200 are generally bundled together with cable ties when shipped, the mounting bracket 100 provided in the embodiment of the present application can also directly store the bundled cables 210 of the electronic device 200 when used to carry the electronic device 200, without having to untie the cable ties and eliminating the step of winding the cables. This improves the convenience and efficiency of the storage operation of the cables of the electronic device 200, thereby helping to improve the efficiency of the installation and layout of the electronic device 200. Among them, the bundled cables 210 in the embodiment of the present application can be, for example, power cables, network cables, optical fiber cables, etc.

[0055] The following introduces the implementation method and related structural features of the mounting bracket 100 provided in the embodiment of the present application.

[0056] Figure 1 is a schematic diagram of a mounting bracket 100 in a use environment according to an embodiment of the present application. In Figure 1, the mounting bracket 100 carries an electronic device 200 and is mounted on a wall socket 310. Figure 2 is a schematic diagram of the structure of the mounting bracket 100 according to an embodiment of the present application, with the electronic device 200 (not shown) and the bundled cables 210 mounted thereon. Figure 3 is a schematic diagram of the structure of the mounting bracket 100 according to an embodiment of the present application, with the bundled cables 210 not mounted thereon (not shown).

[0057] As shown in Figure 1, the mounting bracket 100 provided in the embodiment of the present application is used to carry the electronic device 200. As shown in Figure 2, the mounting bracket 100 includes a bracket body 1, and a wire hanging member 2 connected to the bracket body 1. The bracket body 1 is box-shaped, and its interior is hollow to form a accommodating cavity 11. One side of the accommodating cavity 11 is open. When the mounting bracket 100 carries the electronic device 200, the bundled cables 210 of the electronic device 200 can be sent into the interior of the accommodating cavity 11 through the opening 111 to complete the storage of the cables, thereby improving the neatness of the installation and wiring of the electronic device 200. The wire hanging member 2 is connected to the cavity wall of the accommodating cavity 11, for example, it can be connected to the bottom wall 112 or the side wall of the accommodating cavity 11, and is used to hang the bundled cables 210 of the electronic device 200 to achieve the fixation of the bundled cables 210 inside the accommodating cavity 11. The bottom wall 112 of the accommodating cavity 11 is opposite to the opening 111 of the accommodating cavity 11 , and the side wall of the accommodating cavity 11 is adjacent to the opening 111 of the accommodating cavity 11 and is connected to the bottom wall 112 obliquely or vertically.

[0058] In some examples, as shown in FIG1 , when the mounting bracket 100 carries the electronic device 200, the electronic device 200 is located on the opening side of the accommodating cavity 11 and connected to the bracket body 1. At this time, the bundled cables 210 of the electronic device 200 can enter the interior of the accommodating cavity 11 through the opening 111 and be hung on the cable hanging member 2 for fixation. The electronic device 200 can also shield the opening 111 of the accommodating cavity 11, so that the cables are not visible on the panel side of the electronic device 200. This improves the neatness of the installation and wiring of the electronic device 200 and enhances the visual effect of the electronic device 200 after installation.

[0059] In some examples, the wire hanging member 2 may include at least two hooks 21 arranged in pairs, and the bundled cables 210 may be hung on at least one pair of the hooks 21. For example, as shown in FIG2 , the wire hanging member 2 includes four hooks 21. Among the four hooks 21, two hooks 21 arranged along one diagonal direction of the bottom wall 112 constitute a pair, and two hooks 21 arranged along the other diagonal direction of the bottom wall 112 constitute another pair. The bundled cables 210 are hung on one pair of hooks 21. For another example, as shown in FIG3 , the wire hanging member 2 includes four hooks 21. Among the four hooks 21, two hooks 21 located on the left side of the accommodating cavity 11 constitute a pair, and two hooks 21 located on the right side of the accommodating cavity 11 constitute a pair. The bundled cables 210 may be hung on any pair of the hooks 21.

[0060] The user can select which pair or pairs of hooks 21 the bundled cables 210 are hung on based on actual needs. For example, when the overall length of the bundled cables 210 is relatively short, it can be hung on two hooks 21 located on the same side of the accommodating cavity 11, such as the two hooks 21 located at the upper left corner and the lower left corner of the accommodating cavity 11 in FIG3 ; when the overall length of the bundled cables 210 is relatively long, as shown in FIG2 , it can be hung on two hooks 21 arranged diagonally; when the overall length of the bundled cables 210 is even longer, it can be hung on more hooks 21, such as the three hooks 21 located at the upper left corner, the lower left corner, and the lower right corner of the accommodating cavity 11 in FIG3 , thereby forming an L-shaped arrangement in the accommodating cavity 11.

[0061] It should be noted that in the embodiment of the present application, the number of bundled cables 210 accommodated in the accommodating cavity 11 can be selected according to actual needs. In some scenarios, the accommodating cavity 11 can accommodate more than one bundled cable 210, such as accommodating both a power cord and an optical fiber. In this case, more than one bundled cable 210 can be hung on the same hook 21 or on different hooks 21.

[0062] Generally speaking, the bundled cables 210 of the electronic device 200 are shaped like an "8" and have two loop structures. Therefore, when the bundled cables 210 are hung on a pair of hooks 21, the two loop structures can be hung on the two hooks 21, respectively. Each hook 21 includes a hook portion 211 and a rod portion connected to each other. As shown in Figures 2 and 3, for each of the two hooks 21 in a pair of hooks 21, the hook portions 211 of the two hooks 21 are generally facing away from each other, so that the hook portions 211 of the two hooks 21 can respectively hook the wires of the bundled cables 210, preventing the bundled cables 210 from falling off the corresponding hooks 21.

[0063] In some examples, the wire hanging member 2 can be connected to the side walls of the accommodating chamber 11. For example, the rods of a pair of hooks 21 are respectively connected to two opposing side walls of the accommodating chamber 11, and the hook portion 211 of each hook 21 is connected to the end of the corresponding rod away from the bottom wall 112 and is positioned toward the bottom wall 112 of the accommodating chamber 11. A wire hanging gap is formed between the hook portion 211 of each hook 21 and the bottom wall 112 of the accommodating chamber 11, and the bundled cable 210 can pass through the wire hanging gap to be hung on the corresponding hook 21.

[0064] In other examples, the wire hanging member 2 can be connected to the bottom wall 112 of the accommodating chamber 11. As shown in Figure 3, the stems of multiple hooks 21 are connected to the bottom wall 112 of the accommodating chamber 11 and are spaced circumferentially near the edge of the bottom wall 112. The hook portions 211 of the multiple hooks 21 are connected to the ends of the stems away from the bottom wall 112. A wire hanging gap is formed between the hook portion 211 of each hook 21 and the side wall of the accommodating chamber 11. The bundled cable 210 can pass through this gap to be hung on the corresponding hook 21.

[0065] The width of the wire hanging gap can be set according to actual needs and is not specifically limited in the embodiments of the present application. In some examples, the wire hanging gap is configured to facilitate the passage of the bundled cables 210 for hanging on the corresponding hooks 21, and to prevent the bundled cables 210 hung on the hooks 21 from being easily removed. For example, the width of the wire hanging gap is greater than the diameter of the wire body of the bundled cables 210 and less than twice the diameter of the wire body of the bundled cables 210.

[0066] In some examples, to more effectively prevent the bundled cables 210 from escaping from the accommodating chamber 11, a cover member 3 is further provided at the opening 111 of the accommodating chamber 11. The cover member 3 can cover at least a portion of the opening 111 of the accommodating chamber 11. After the cover member 3 is provided over the opening 111 of the accommodating chamber 11, even if the bundled cables 210 fall off the hook 21, the cover member 3 will prevent the bundled cables 210 from escaping from the accommodating chamber 11 due to the shielding effect of the cover member 3.

[0067] Figure 4 shows a schematic diagram of the structure of the mounting bracket 100 when the cover 3 is open, Figure 8 shows a schematic diagram of the structure of the mounting bracket 100 when the cover 3 is covering the mounting bracket 100, and Figure 5 is a schematic cross-sectional view of the mounting bracket 100 in Figure 8. When the cover 3 is open, the opening 111 of the accommodating cavity 11 is exposed, allowing the bundled cables 210 to be introduced into the accommodating cavity 11 through the opening 111. When the cover 3 is covering the mounting bracket 100, the opening 111 of the accommodating cavity 11 is blocked by the cover 3, preventing the bundled cables 210 inside the accommodating cavity 11 from escaping through the opening 111, and preventing the bundled cables 210 outside the accommodating cavity 11 from being introduced into the accommodating cavity 11.

[0068] In some examples, as shown in FIG7 , the cover member 3 has weight-reducing holes 35. These weight-reducing holes 35 can reduce the weight of the cover member 3, thereby achieving a lightweight design for the mounting bracket 100 and the electronic device 200 assembly. Furthermore, these weight-reducing holes 35 can save material and reduce manufacturing costs. In the embodiments of the present application, there are no specific restrictions on the number, shape, or location of the weight-reducing holes 35, as long as they meet the structural strength and rigidity requirements of the cover member 3 to achieve its function.

[0069] However, it should be noted that the size of the lightening holes 35 must meet the following requirements: for any lightening hole 35, at most one hook 21 of a pair of hooks 21 can be exposed from the lightening hole 35. In other words, both hooks 21 of a pair of hooks 21 cannot be exposed from the same lightening hole 35 at the same time. This is to prevent the bundled cables 210 hung on the pair of hooks 21 from falling through the lightening hole 35 and rendering the cover member 3 inoperable.

[0070] For example, as shown in FIG8 , two weight-reducing holes 35 are provided on the cover member 3 , wherein no hook 21 is exposed in the upper weight-reducing hole 35 in FIG8 , and only one hook 21 located at the lower left corner of the accommodating cavity 11 is exposed in the lower weight-reducing hole 35 in FIG8 (another hook 21 arranged in pair with the hook 21 is arranged at the upper right corner of the accommodating cavity 11 , and its position is indicated by a dotted line in FIG3 ). In other examples, for the two hooks 21 located at the lower part of FIG3 , since the two hooks 21 belong to two pairs of hooks 21 , the bundled cables 210 will not be hung at the same time and will only be hung on these two hooks 21 , and therefore the two hooks 21 can be exposed from one weight-reducing hole 35 at the same time.

[0071] In some examples, the cover member 3 and the bracket body 1 are detachably connected, such as by a snap-fit ​​connection or a screw connection. Taking the snap-fit ​​connection as an example, when the cover member 3 is in the covering state, it is actually snap-fitted and fixed to the bracket body 1, covering at least a portion of the opening 111 of the accommodating cavity 11; while when the cover member 3 is in the open state, it is actually detached from the bracket body 1, exposing the opening 111 of the accommodating cavity 11. In other words, in the covering state, the cover member 3 and the bracket body 1 are snap-fitted to each other, while in the open state, the cover member 3 and the bracket body 1 are no longer snap-fitted and move away from each other.

[0072] As an example, referring to Figures 6 and 7 , a snap-fit ​​connection between the cover and the bracket body 1 is provided with a snap-fit ​​slot 123 on the bracket body 1 and a snap-fit ​​block 33 on the cover 3. The snap-fit ​​block 33 can be snapped into the snap-fit ​​slot 123, thereby securing the cover 3 to the bracket body 1. To improve the securing effect on the cover 3, the number of both the snap-fit ​​block 33 and the snap-fit ​​slot 123 can be more than one, and more than one snap-fit ​​slot 123 can be provided around the opening 111 of the accommodating cavity 11.

[0073] In other examples, the cover member 3 is connected to the bracket body 1, and relative movement, such as relative rotation or relative sliding, can occur between the cover member 3 and the bracket body 1. Taking relative rotation as an example, the cover member 3 in the covering state, as shown in FIG8, can be rotated in a direction away from the opening 111 of the accommodating cavity 11 under external actuation, and after rotating a certain angle, the opening 111 of the accommodating cavity 11 is exposed, so that the cover member 3 is in the open state shown in FIG4; and the cover member 3 in the open state, as shown in FIG4, can be rotated in a direction close to the opening 111 of the accommodating cavity 11 under external actuation, and after rotating a certain angle, it covers at least a portion of the opening 111 of the accommodating cavity 11, so that the cover member 3 enters the covering state shown in FIG8.

[0074] A possible rotational connection between the cover member 3 and the bracket body 1 is shown in Figures 6 and 7 . For example, the bracket body 1 is provided with two rotational protrusions 122, and the cover member 3 is provided with two rotation holes 32. The two rotational protrusions 122 are respectively located in the two rotation holes 32 and can freely rotate in the corresponding rotation holes 32 around the axis of the rotation holes 32. The two rotational protrusions 122 are respectively located on opposite sides of the opening 111 of the accommodating cavity 11.

[0075] It should be pointed out that there may be more than one connection method between the cover member 3 and the bracket body 1 at the same time. For example, referring to Figures 5 to 8, there are both a rotation connection and a snap connection between the cover member 3 and the bracket body 1, and the rotating hole 32 and the block 33 are respectively arranged at the opposite ends of the cover member 3.

[0076] As shown in FIG4 , in some examples, the bracket body 1 is further provided with a rim portion 12. The rim portion 12 is used to cooperate with the cover member 3, and on the one hand, serves to position the cover member 3, and on the other hand, serves to secure the cover member 3. Referring to FIG5 , the rim portion 12 is provided around the opening 111 of the accommodating cavity 11. For example, the rim portion 12 may be connected to the edge of the opening 111 of the accommodating cavity 11, or the rim portion 12 may surround the outside of the opening 111 of the accommodating cavity 11 and be spaced apart from the opening 111 of the accommodating cavity 11.

[0077] As shown in Figure 7 , the cover member 3 is box-shaped and includes a cover body and a frame connected to the edge of the cover body and arranged perpendicular to the cover body. Referring to Figure 5 , when the cover member 3 is in the covering state, the cover body of the cover member 3 rests on top of the edge portion 12 and covers at least a portion of the opening 111 of the accommodating cavity 11. The frame of the cover member 3 surrounds the outside of the edge portion 12, and the inner sidewall of the frame is connected to the outer sidewall of the edge portion 12.

[0078] In some embodiments, as shown in FIG6 , at least one of the rotation protrusion and the latching groove 123 can be provided on the edge portion 12. Since the edge portion 12 is connected and fixed to the bracket body 1, the cover member 3 can be rotatably connected to the bracket body 1 and / or snap-fitted to the bracket body 1 through the edge portion 12. For example, referring to FIG6 , the edge portion 12 includes a first edge 124, a second edge 125, and a third edge 126 that are vertically connected in sequence. The first edge 124 and the third edge 126 are positioned opposite each other. Two rotation protrusions are provided on the ends of the first edge 124 and the third edge 126, respectively, away from the second edge 125. The latching groove 123 is provided on the second edge 125.

[0079] Generally speaking, the bundled cable 210 of the electronic device 200 needs to be connected to corresponding connectors or interfaces at both ends. For example, when the bundled cable 210 is a power cord, the power cord is connected to a plug and a USB interface at both ends, wherein the plug is used to be plugged into a power outlet to draw power, and the USB interface is used to electrically connect to the electronic device 200 to supply power to the electronic device 200.

[0080] After the bundled cables 210 are accommodated in the accommodating cavity 11 and hung on the wire hanging member 2, in order to ensure the normal use of the bundled cables 210, referring to Figures 5 and 6, in some examples, a second wire outlet 121 is provided on the second edge 125 of the edge portion 12. When the bundled cables 210 are located in the accommodating cavity 11, both ends of the bundled cables 210 can pass through the second wire outlet 121 and be respectively plugged into corresponding electrical devices (such as a power socket) or electronic devices 200.

[0081] For the mounting bracket 100 with the cover member 3, in some examples, see Figures 5 and 7, a first wire outlet 31 is provided on the cover member 3. The first wire outlet 31 is located on the side of the second wire outlet 121 away from the opening 111 of the accommodating cavity 11 and is connected to the second wire outlet 121. The two ends of the bundled cables 210 can pass through the connection between the first wire outlet 31 and the second wire outlet 121 to be respectively plugged into the corresponding electrical equipment (such as a power socket) or electronic device 200.

[0082] The embodiment of the present application does not impose any specific restrictions on the connection area between the first wire outlet 31 and the second wire outlet 121, as long as the connection allows both ends of the bundled cable 210 to pass through it, ensuring the normal implementation of the function of the bundled cable 210. In some examples, as shown in Figure 5, the area of ​​the first orthographic projection of the first wire outlet 31 on the set projection plane is greater than or equal to the area of ​​the second orthographic projection of the second wire outlet 121 on the set projection plane, and the second orthographic projection coincides with the first orthographic projection or is located within the first orthographic projection. The set projection plane is perpendicular to the opening direction of the first wire outlet 31 and the second wire outlet 121, that is, perpendicular to the direction in which the two ends of the bundled cable 210 pass through the first wire outlet 31 and the second wire outlet 121.

[0083] In other examples, the area of ​​the first orthographic projection can be smaller than the area of ​​the second orthographic projection, and the first orthographic projection can be located within the second orthographic projection. In this way, when the cover member 3 is in the covering state, the second edge 125 will not be exposed from the first wire outlet 31, thereby making the overall structure of the mounting bracket 100 more concise and improving the visual effect.

[0084] The following describes the connection and matching method between the mounting bracket 100 and the electronic device 200 and related structural features.

[0085] As shown in FIG11 , a corresponding connection structure is provided on the mounting bracket 100 , and a mounting structure 250 is provided on the back of the electronic device 200 . The mounting structure 250 can be plugged into and matched with the connection structure, so that the bracket body 1 supports and fixes the electronic device 200 .

[0086] Exemplarily, the connecting structure on the mounting bracket 100 can be a plug-in tongue, which is connected to the top of the bracket body 1; the mounting structure 250 on the electronic device 200 can be a slot, into which the plug-in tongue can be inserted, wherein since the opening direction of the slot is different from the direction of the interaction force between the plug-in tongue and the slot (in Figure 9, the opening direction of the slot is downward, and the direction of the interaction force between the plug-in tongue and the slot is perpendicular to the paper surface), the electronic device 200 will not fall off the bracket body 1 naturally.

[0087] Of course, in other examples of the present application, the connection structure and the mounting structure 250 may also have other forms, as long as the electronic device 200 can be detachably connected to the mounting bracket 100. For example, the connection structure on the mounting bracket 100 may be a first screw hole, and the mounting structure 250 on the electronic device 200 may be a second screw hole. The mounting bracket 100 and the electronic device 200 can be fastened together by screws passing through the first screw hole and the second screw hole in sequence.

[0088] Furthermore, with the trend toward miniaturization of electronic devices, the heat dissipation requirements of some electronic components within them are becoming increasingly challenging. In related art, heat sinks are typically added to dissipate heat from these components. However, due to the small size of the devices and the limited available space, heat sink placement is significantly limited, and their effectiveness in dissipating heat is quite limited.

[0089] In order to meet the current increasing heat dissipation demand, in the embodiments of the present application, on the one hand, consideration is given to designing a heat dissipation solution based on the electronic device product itself, and on the other hand, consideration is given to designing a heat dissipation solution in combination with the actual installation scenario of the electronic device product.

[0090] For the heat dissipation solution based on the electronic device product itself, in some examples of the present application, a radiator 220 can be added to the electronic device 200, and the radiator 220 can be connected to or arranged adjacent to the electronic components in the electronic device 200 that are prone to heat (such as functional components on the circuit board 230, etc.), so as to absorb and conduct the heat emitted by the electronic components. In other examples, heat dissipation holes can also be opened on the housing 260 of the electronic device 200 to enhance the flow of air between the inside and outside of the electronic device 200, so that the heat of the electronic components can be transferred to the outside world in a timely manner through the air. In some other examples, if the electronic device 200 has a metal shell (such as a metal middle frame or a metal back plate), then a heat conducting member can also be provided in the electronic device 200. The heat conducting member is in thermal contact with the heat-generating electronic components and in thermal contact with the metal shell, so that the heat generated by the electronic components is conducted to the metal shell and dissipated through the metal shell.

[0091] Regarding heat dissipation solutions based on the actual product installation scenario, some embodiments of the present application also consider further enhancing heat dissipation based on the mounting bracket 100. For example, considering improving the heat dissipation effect based on the connection structure on the mounting bracket 100 for mating with the electronic device 200. Referring to Figures 10 and 11, when the electronic device 200 is supported and fixed on the mounting bracket 100, the connection structure on the mounting bracket 100 will extend into the interior of the housing of the electronic device 200, so a heat dissipation solution can be arranged based on this connection structure.

[0092] In some examples, the connection structure can be made of a material with a high thermal conductivity, that is, the connection structure can serve as a heat sink 4, having both a connection function and a heat dissipation function. The heat sink 4 can conduct, diffuse, or exchange heat generated by the heat-generating electronic components to dissipate heat from the electronic components, thereby preventing the electronic components from overheating and affecting the performance of the electronic device 200.

[0093] The embodiment of the present application does not impose any specific restrictions on the shape of the heat sink 4, which can be selected by the designer according to actual needs. For example, the heat sink 4 can be plate-shaped or flat-shaped similar to a plate, so that the heat sink 4 has a larger heat conduction area.

[0094] Refer to Figure 9, which shows a local structure of the place where a heat sink 4 and an electronic device 200 cooperate when the electronic component that generates heat is a functional element on a circuit board 230, such as a processor, wherein the heat sink 4 can be, for example, the above-mentioned plug-in tongue. As shown in Figure 9, along the thickness direction of the electronic device 200, the circuit board 230, the heat sink 220, and the heat sink 4 are in a stacked position relationship. The functional element that generates heat on the circuit board 230 and the heat sink 220 at least partially overlap along the thickness direction of the electronic device, that is, the positive projection of the functional element on the heat sink 220 along the thickness direction needs to at least partially overlap with the surface of the heat sink 220, so that the heat generated by the functional element during operation can be conducted to the heat sink 220 along the thickness direction to achieve initial heat dissipation. Moreover, when the radiator 220 is in direct contact with the heat sink 4, the radiator 220 and the heat sink 4 at least partially overlap along the thickness direction of the electronic device 200, that is, the positive projection of the radiator 220 on the heat sink 4 along the thickness direction needs to at least partially overlap with the surface of the heat sink 4, so that the heat conducted from the functional element to the radiator 220 can continue to be conducted to the heat sink 4 along the thickness direction, thereby achieving further heat dissipation.

[0095] 9 and 10 , to enhance heat transfer and protect the heat sink 220, a thermal conductor 240 may be disposed between the heat sink 220 of the electronic device 200 and the heat sink 4 of the mounting bracket 100. Along the thickness direction of the electronic device 200, the circuit board 230, the heat sink 220, the thermal conductor 240, and the heat sink 4 are stacked in sequence. That is, the heat sink 4 is in indirect thermal contact with the heat sink 220 via the thermal conductor 240. The heat sink 220 and the thermal conductor 240 at least partially overlap along the thickness direction of the electronic device 200. That is, the orthographic projection of the heat sink 220 along the thickness direction onto the thermal conductor 240 must at least partially overlap with the surface of the thermal conductor 240. This allows heat transferred from the functional components to the heat sink 220 to continue to transfer along the thickness direction to the thermal conductor 240, and then to the heat sink 4 via the thermal conductor 240, achieving further heat dissipation.

[0096] Taking the above-mentioned plug-in tongue as the heat sink 4 as an example, as shown in FIG10 , after being inserted into the slot, the heat sink 4 will be locked inside the electronic device 200, and the heat sink 4 and the heat sink 220 will be in indirect thermal contact via the heat conductor 240. In this case, the heat on the heat sink 220 is transferred to the heat conductor 240 by heat conduction, and then transferred to the heat sink 4 by the heat conductor 240 by heat conduction. Because the heat sink 220 and the heat sink 4 exchange heat with the air separately and simultaneously, compared with the solution of the related art that only dissipates heat through the heat sink 220, the heat dissipation area is increased, effectively improving the heat dissipation efficiency.

[0097] It should be noted that, in order to achieve a better heat conduction effect, the heat conducting member 240, as a heat conducting structure, generally has a thermal conductivity not lower than the thermal conductivity of the heat sink 220. For example, the heat conducting member 240 of the present application can be made of materials such as thermally conductive resin and metal, wherein the thermally conductive resin can be, for example, PI (Polyimide) material (thermal conductivity 0.4-0.8W / mk), silicone material (thermal conductivity 0.8-2.0W / mk), polyurethane material (thermal conductivity 0.2-0.3W / mk); wherein the metal can be copper (thermal conductivity 400W / mk or more) or copper-containing alloy, aluminum (thermal conductivity 200W / mk or more) or aluminum-containing alloy, steel (thermal conductivity 100W / mk or more) and the like.

[0098] In some examples, the heat conductor 240 can be, for example, a PI thermal pad. The PI thermal pad can be bonded to the heat sink 220 using an adhesive, thereby ensuring that the PI thermal pad and the heat sink 220 are tightly fitted, thereby improving thermal conductivity. After the heat sink 4 is inserted into the slot, the heat sink 220 is in indirect thermal contact with the heat sink 4 via the PI thermal pad, so that heat can be transferred from the heat sink 220 to the heat sink 4 via the PI thermal pad, and then to the air, achieving heat transfer and more efficient cooling of the electronic components in the electronic device 200.

[0099] In the embodiment of the present application, in order to further improve the heat dissipation effect, the bracket body 1 can also participate in the heat dissipation.

[0100] In some examples, the bracket body 1 can be a metal bracket. As shown in FIG10 , the metal bracket is connected to the heat sink 4, so that the heat from the heat sink 4 is transferred to the metal bracket and then transferred to the air through the metal bracket for dissipation, thereby further expanding the heat dissipation area and further enhancing the heat dissipation effect.

[0101] The metal bracket may be, for example, a copper bracket, a steel bracket or an aluminum bracket, or may be an alloy bracket containing copper, steel or aluminum, which has both good mechanical strength and thermal conductivity.

[0102] In some examples, the heat sink 4 and the bracket body 1 are integrally formed using the same heat dissipation material. This provides excellent structural strength, while heat from the heat sink 4 is transferred to the bracket body 1 and then to the air through the bracket body 1 for dissipation, further expanding the heat dissipation area and enhancing the heat dissipation effect. For example, the heat sink 4 and the bracket body 1 can be formed using an integral molding process using any of PI, metal, alloy, and metal-based composite materials.

[0103] It should be pointed out that when the bracket body 1 and the heat sink 4 are both made of metal, for cost and product weight considerations, the structures other than the bracket body 1 and the heat sink 4 in the mounting bracket 100 can be made of plastic material, for example, the hanging wire part 2 can be a plastic hook, and the cover part 3 can be a plastic cover.

[0104] The following describes the installation and matching method between the mounting bracket 100 and the mounting carrier 300 and related structural features.

[0105] In some examples, the mounting bracket 100 can be directly nailed to the mounting carrier 300. In the embodiments of the present application, the mounting carrier 300 can be, for example, a wall. Referring to FIG8 , the bracket body 1 is provided with a mounting hole 13. The mounting bracket 100 can be directly nailed to the wall by driving a fixing nail through the mounting hole 13.

[0106] Continuing to refer to FIG8 , an avoidance notch 34 is provided on the cover member 3, and the avoidance notch 34 allows the mounting hole 13 to be exposed therefrom, so that there is no interference between the cover member 3 and the mounting hole 13 during the process of driving in the fixing nail and during the process of switching the state of the cover member 3, thereby ensuring the normal rotation of the cover member 3 and the normal driving of the fixing nail.

[0107] However, some users may find the process of nailing in the fixing nails very cumbersome, or may be unwilling to nail the fixing nails in the wall and leave nail holes. In this case, the mounting bracket 100 can be fixed to the wall in a non-nailed manner using the mounting member 5 .

[0108] The mounting bracket 100 further includes a mounting member 5, which is connected to the bracket body 1 and is used to connect the mounting bracket 100 to the mounting carrier 300. The mounting member 5 can be connected to the mounting carrier 300 by any connection method other than nailing, such as snap connection or screw connection. Optionally, the mounting member 5 can be a plastic snap connection with high mechanical strength.

[0109] FIG12 is a schematic diagram of the coordination structure between a mounting bracket 100, an electronic device 200, and a mounting carrier 300 according to an embodiment of the present application. FIG13 is an exploded view of other structures after omitting the mounting carrier 300 based on FIG12.

[0110] In some scenarios, the mounting carrier may be, for example, a wall, with a wall socket mounted on the wall. The wall socket includes an electrical base box (shown by dotted lines in FIG12 ) secured to the wall, and an electrical panel engaged with the electrical base box. For example, the electrical base box may be an 86-inch box (also known as a square iron box), as shown in FIG14 . The 86-inch box generally has two screw holes for securing the mounting bracket of the functional module. The electrical panel may be a switch panel or a socket panel.

[0111] The mounting bracket 100 can be assembled to the electrical base box 312 via the mounting member 5, thereby avoiding leaving nail holes on the mounting carrier 300. In some examples, as shown in Figure 13, the mounting member 5 can include a movable portion 51, a first leg portion 52, and a second leg portion 53. The first leg portion 52 and the second leg portion 53 are located on the same side of the movable portion 51, wherein the first leg portion 52 and the second leg portion 53 can be respectively arranged perpendicular to the movable portion 51. Accordingly, the first leg portion 52 and the second leg portion 53 are arranged parallel to each other and spaced apart. One end of the movable portion 51 is detachably connected to the first leg portion 52, and the other end of the movable portion 51 is rotatably or detachably connected to the second leg portion 53. The ends of the first leg portion 52 and the second leg portion 53, each away from the movable portion, are detachably or rotatably connected to the bracket body 1. The detachable connection method can be, for example, a snap connection.

[0112] The user can choose whether to use the mounting member 5 according to actual needs. When the mounting member 5 is not needed, based on the connection relationship between the first leg 52 and the second leg 53 and the bracket body 1 respectively, the mounting member 5 can be removed from the bracket body 1, or the first leg 52 and the second leg 53 can be rotated to fold the mounting member 5 to the side of the bracket body 1 away from the cover member 3. The folded state is shown in Figure 8.

[0113] In some examples, in order to achieve assembly between the mounting member 5 and the electrical base box 312, as shown in Figure 13, a first mounting structure 521 is provided on the first leg 52, and a second mounting structure 531 is provided on the second leg 53. The distance between the first mounting structure 521 and the second mounting structure 531 is equal to the distance between the two screw holes 3121 on the electrical base box 312. The first mounting structure 521 and the second mounting structure 531 are respectively selected from one of a through hole and a slot, and the electrical base box 312 is fixed on the mounting carrier 300.

[0114] As can be seen, the first leg 52, the movable portion 51, the second leg 53, and the bracket body 1 are connected end to end, thereby enclosing a frame-shaped space that matches the shape of the electrical bottom box 312. During installation, the mounting member 5 can be placed at the open end of the electrical bottom box 312, and the movable portion 51 can be engaged with the first leg 52 to enclose the electrical bottom box 312, thereby achieving a preliminary fixation of the mounting member 5 to the electrical bottom box 312. Then, a screw is sequentially passed through the first mounting structure 521 and a screw hole 3121 on the electrical bottom box 312, and another screw is sequentially passed through the second mounting structure 531 and another screw hole 3121 on the electrical bottom box 312, thereby fastening the mounting member 5 to the electrical bottom box 312, thereby achieving the fixation of the mounting bracket 100 to the electrical bottom box 312. Finally, the electrical panel 311 can be normally placed on the electrical bottom box 312. This method utilizes the screw holes 3121 and screws of the electrical bottom box 312 itself for assembly, is easy to operate, and does not form additional nail holes on the mounting carrier 300 .

[0115] Therefore, the embodiment of the present application provides two different arrangements of the mounting bracket 100 based on the mounting hole 13 on the bracket body 1 and the mounting member 5. That is, the mounting bracket 100 provided in the embodiment of the present application can be applicable to at least two installation scenarios and can meet the user's diverse layout needs.

[0116] An embodiment of the present application also provides an electronic device 200 assembly, which includes an electronic device 200 and the above-mentioned mounting bracket 100. The electronic device 200 is detachably connected to the mounting bracket 100 and is installed and fixed on a mounting carrier 300 (such as a wall) through the mounting bracket 100.

[0117] Among them, the electronic devices in the embodiments of the present application may include but are not limited to WLAN devices, ONT devices, FTTR devices, optical modems, routers, gateways, whole-house smart terminal devices, etc.

[0118] In the description of this application, unless otherwise specified, " / " means "or", for example, A / B can mean A or B. "And / or" in this article is merely a description of the association relationship of associated objects, indicating that three relationships can exist. For example, A and / or B can mean: A exists alone, A and B exist at the same time, and B exists alone. In addition, "at least one" means one or more, and "a plurality" means two or more. Words such as "first" and "second" do not limit the quantity and execution order, and words such as "first" and "second" do not limit them to be necessarily different.

[0119] In this application, words such as "exemplary" or "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described in this application as "exemplary" or "for example" should not be construed as preferred or advantageous over other embodiments or designs. Rather, the use of words such as "exemplary" or "for example" is intended to present the relevant concepts in a concrete manner.

[0120] All of the above optional technical solutions can be combined in any way to form optional embodiments of the present application, and will not be described in detail here.

[0121] The above description is merely an optional embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included in the scope of protection of the present application.

Claims

1. A mounting bracket, characterized in that: The mounting bracket (100) is used to carry the electronic device (200), and the mounting bracket (100) comprises a bracket body (1) and a wire hanging member (2). The support body (1) has a receiving cavity (11), and the receiving cavity (11) has an opening (111); The wire hanging member (2) is connected to the cavity wall of the accommodating cavity (11); The bundled cables (210) of the electronic device (200) can enter the interior of the accommodating cavity (11) through the opening (111) and be hung on the wire hanging member (2).

2. The mounting bracket according to claim 1, characterized in that: The wire hanging member (2) comprises at least two hooks (21), the at least two hooks (21) are arranged in pairs, and the hook portions (211) of the two hooks (21) in the pair are away from each other; Wherein, the bundled cables (210) are suitable for being hung on at least one pair of the hooks (21).

3. The mounting bracket according to claim 2, characterized in that: The at least two hooks (21) are connected to the bottom wall (112) of the accommodating cavity (11) and are arranged at intervals along the circumference of the bottom wall (112); the bottom wall (112) is opposite to the opening (111).

4. The mounting bracket according to claim 2, characterized in that: The mounting bracket (100) further comprises a cover plate member (3), the cover plate member (3) being arranged to cover the opening (111) of the accommodating cavity (11), and the cover plate member (3) being movably or detachably connected to the bracket body (1).

5. The mounting bracket according to claim 4, characterized in that: The support body (1) is provided with an edge portion (12), and the edge portion (12) surrounds the opening (111) of the accommodating cavity (11); The cover plate member (3) is arranged on the outside of the edge portion (12), and the inner side wall of the cover plate member (3) is connected to the outer side wall of the edge portion (12).

6. The mounting bracket according to claim 5, characterized in that: The cover plate (3) is provided with a first wire outlet (31), the edge portion (12) is provided with a second wire outlet (121), and the first wire outlet (31) is communicated with the second wire outlet (121); The first wire outlet (31) and the second wire outlet (121) are each used to allow two ends of the bundled cable (210) to pass through.

7. The mounting bracket according to claim 5, characterized in that: The cover plate member (3) and the edge portion (12) are respectively provided with one or the other of a rotation hole (32) and a rotation shaft protrusion (122), wherein the rotation shaft protrusion (122) is located in the rotation hole (32), so that the cover plate member (3) can rotate relative to the bracket body (1); and / or, One of a clamping block (33) and a clamping groove (123) and the other are respectively provided on the inner side wall of the cover plate (3) and the outer side wall of the edge portion (12), and the clamping block (33) is clamped in the clamping groove (123).

8. The mounting bracket according to claim 4, characterized in that: The bracket body (1) is provided with a mounting hole (13), and the mounting hole (13) is used to fix the bracket body (1) on a mounting carrier (300); The cover plate (3) is provided with an avoidance notch (34), and the mounting hole (13) is exposed from the avoidance notch (34).

9. The mounting bracket according to claim 4, characterized in that: The cover plate member (3) has at least one weight-reducing hole (35); For any one of the lightening holes (35), at most one hook (21) of a pair of the hooks (21) is exposed from the lightening hole (35).

10. The mounting bracket according to claim 1, characterized in that: The mounting bracket (100) further comprises a heat sink (4), which is connected to the bracket body (1) and can be in thermal contact with a heat sink (220) of the electronic device (200) carried by the bracket body (1) to increase the heat dissipation area.

11. The mounting bracket according to claim 10, characterized in that: The heat sink (4) is connected in cooperation with the mounting structure (250) on the electronic device (200), so that the bracket body (1) supports and fixes the electronic device (200).

12. The mounting bracket according to claim 10, characterized in that: The stent body (1) is a metal stent; and / or, The heat sink (4) and the bracket body (1) are an integrally formed structure.

13. The mounting bracket according to claim 1, characterized in that: The mounting bracket (100) further comprises a mounting member (5), wherein the mounting member (5) is connected to the bracket body (1) and is used to connect the mounting bracket (100) to a mounting carrier (300).

14. The mounting bracket according to claim 13, characterized in that: The mounting member (5) comprises a movable portion (51), a first leg portion (52) and a second leg portion (53), wherein the first leg portion (52) and the second leg portion (53) are located on the same side of the movable portion (51); One end of the movable portion (51) is detachably connected to the first leg portion (52), and the other end of the movable portion (51) is movably or detachably connected to the second leg portion (53); One end of each of the first supporting leg (52) and the second supporting leg (53) away from the movable portion (51) is detachably or rotatably connected to the bracket body (1); The first leg portion (52) is provided with a first mounting structure (521), the second leg portion (53) is provided with a second mounting structure (531), the distance between the first mounting structure (521) and the second mounting structure (531) is equal to the distance between two screw holes (3121) on the electrical base box (312), the first mounting structure (521) and the second mounting structure (531) are respectively selected from one of a through hole and a slot, and the electrical base box (312) is fixed on the mounting carrier (300).

15. An electronic device assembly, characterized in that: The electronic device assembly comprises an electronic device (200) and a mounting bracket (100) according to any one of claims 1 to 14, wherein the electronic device (200) and the mounting bracket (100) are detachably connected.

Citation Information

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