Electronic device mounting apparatus and electronic device
This electronic device installation device, based on the principle of magnetic attraction, solves the problems of difficult and unreliable installation of outdoor communication equipment, providing a convenient and reliable installation solution. It is suitable for various support devices and meets the needs of users for self-installation.
Patent Information
- Application Number
- PCT/CN2025/096218
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-07-31
- Filing Date
- 2025-05-21
- Publication Date
- 2026-02-05
AI Technical Summary
Existing outdoor communication equipment is difficult to install, unreliable, and requires complex engineering operations, failing to meet the needs of most users. It is particularly difficult to fix in situations where there are no poles or walls, and the double-sided adhesive does not adhere well in low-temperature environments.
The electronic device installation device, which adopts the principle of magnetic attraction, uses the magnetic components of the first and second bodies to adhere and fix the device to both sides of the support device such as glass. Combined with anti-slip and fixing components, it can achieve reliable installation without the need for special tools or professional personnel.
It enables convenient and reliable installation on various support devices, adapts to different ambient temperatures, avoids damage to the wall, meets users' self-installation needs, and improves the flexibility and stability of installation.
Smart Images

Figure CN2025096218_05022026_PF_FP_ABST
Abstract
Description
Electronic device mounting device and electronic device
[0001] The present application claims priority to the Chinese patent application No. 202411047815.5, filed on July 31, 2024, and entitled "Electronic device mounting device and electronic device", the content of which is incorporated herein by reference in its entirety. TECHNICAL FIELD
[0002] The present application relates to the field of communication technology, in particular to an electronic device mounting device and an electronic device. BACKGROUND
[0003] With the continuous development of outdoor communication equipment, customers have higher requirements for its installation and use, and continue to develop in the direction of low-cost installation and operation, user self-installation and extreme use experience. At present, outdoor communication equipment has problems such as difficult installation, unreliable installation and overly engineered operation. For example, the outdoor communication equipment can be fastened on the pole body by using a hose clamp, which requires the user's home to have a pole body, making it difficult to meet the needs of most families. For another example, the outdoor communication equipment can be installed on the wall surface through a wall nail, which requires permanent damage to the wall and requires professional installation. For another example, the outdoor communication equipment can be fixed on the glass by using double-sided tape, but the double-sided tape has high requirements for temperature and activation pressure. If the environmental temperature is low or the activation pressure is too small, the double-sided tape cannot achieve effective bonding, which is easy to cause the outdoor communication equipment to fall off. SUMMARY
[0004] Therefore, the present application provides an electronic device mounting device and an electronic device to solve the above-mentioned problems of existing outdoor communication equipment, such as difficult installation, unreliable installation and overly engineered operation.
[0005] In a first aspect, the present application provides an electronic device mounting device, comprising a first body, a second body and an anti-skid member. The first body comprises a first magnetic member, and the first body is provided with a mounting structure for mounting an electronic device. The second body comprises a second magnetic member, the second magnetic member is used to cooperate with the first magnetic member to generate an attractive force, and the second magnetic member and the first magnetic member are respectively adsorbed on both sides of a support device through the attractive force. The anti-skid member is connected to the surface of the first body facing the second body.
[0006] The electronic device mounting device provided by the embodiment of the present application can be fixed on the window glass by the magnetic attraction mode without relying on the rod body near the house. Since most houses have window glass, the mounting device provided by the embodiment can meet the needs of most users. Of course, the mounting device can also be fixed on other support devices with small thickness, and the application scenarios are more abundant. In addition, the mounting device is detachably clamped on both sides of the support device such as glass by the magnetic attraction mode, which facilitates the disassembly and assembly operation, and the user can complete the installation by manual operation without punching holes in the wall or wood board by using special tools. In addition, the mounting device does not need to be pasted on the glass by using double-sided adhesive, and the magnetic attraction mode will not be affected by the environmental temperature. At the same time, the user does not need to apply a pressing force, and the first body and the second body can be fixed on the support device such as glass by the magnetic attraction force between the first body and the second body, which facilitates the installation operation and also ensures the reliability of the installation. In addition, by arranging the anti-slip piece on the first body, the adsorption position can be fixed or basically fixed after the first body is adsorbed on the glass, thereby ensuring the stability of the electronic device hanging.
[0007] In a possible implementation, the first body further comprises a first cover, and the first cover covers a surface of the first magnetic piece. And / or, the second body further comprises a second cover, and the second cover covers a surface of the second magnetic piece. The first cover can completely cover the first magnetic piece, so as to protect the first magnetic piece from being exposed to sunlight or being eroded by rain, and to prolong the service life of the first body as a whole.
[0008] In a possible implementation, the first cover comprises a first shell and a first cover body, the first cover body is buckled to the first shell, a first closed space is formed between the first cover body and the first shell, and the first magnetic piece is arranged in the first closed space. And / or, the second cover comprises a second shell and a second cover body, the second cover body is buckled to the second shell, a second closed space is formed between the second cover body and the second shell, and the second magnetic piece is arranged in the second closed space. The first cover is assembled in a split mode by using the first shell and the first cover body, so as to facilitate the assembly of the first cover and the first magnetic piece.
[0009] In a possible implementation, the first shell and the first cover are both provided with first positioning slots, when the first shell is buckled with the first cover, the first positioning slots in the first shell and the first positioning slots in the first cover are buckled correspondingly, so that the first positioning slots in the first shell and the first positioning slots in the first cover form the first closed space. And / or, the second shell and the second cover are both provided with second positioning slots, when the second shell is buckled with the second cover, the second positioning slots in the second shell and the second positioning slots in the second cover are buckled correspondingly, so that the second positioning slots in the second shell and the second positioning slots in the second cover form the second closed space.
[0010] For example, the first shell and the first cover, the number of the first positioning slots in the first shell and the first positioning slots in the first cover can be multiple, so that the first closed space formed by the first positioning slots in the first shell and the first positioning slots in the first cover can have multiple, wherein, all the first closed space can be provided with the first magnetic member, or part of the first closed space can be provided with the first magnetic member, and the first magnetic member can be flexibly arranged in different positions of the first closed space to meet different installation scenarios of electronic devices. In addition, the assembly mode of the second magnetic member, the second cover and the second shell can be the same as that of the first cover, the first shell and the first magnetic member 11, and the corresponding technical effects are similar, which will not be described here.
[0011] In a possible implementation, the first shell and the first cover are sealed and buckled. And / or, the second shell and the second cover are sealed and buckled. And / or, the first positioning slots in the first shell and the first positioning slots in the first cover are sealed and buckled. And / or, the second positioning slots in the second shell and the second positioning slots in the second cover are sealed and buckled. In this way, by means of sealed buckling, it can prevent water vapor and other pollutants from penetrating into the interior of the first shell and the first cover to corrode the first magnetic member, or penetrating into the interior of the second shell and the second cover to corrode the second magnetic member.
[0012] In a possible implementation, the first shell and the first cover are sealed and buckled by means of point gluing process, melting process or waterproof structure. And / or, the second shell and the second cover are sealed and buckled by means of point gluing process, melting process or waterproof structure. And / or, the first positioning slots in the first shell and the first positioning slots in the first cover are sealed and buckled by means of point gluing process, melting process or waterproof structure. And / or, the second positioning slots in the second shell and the second positioning slots in the second cover are sealed and buckled by means of point gluing process, melting process or waterproof structure. By means of the above sealing methods, effective sealing can be ensured to prevent the corrosion of the magnetic member by water vapor and other pollutants.
[0013] In a possible implementation, the first cover is formed on the surface of the first magnetic member by an injection molding process. And / or, the second cover is formed on the surface of the second magnetic member by an injection molding process. The first cover or the second cover formed by the injection molding process can achieve an integrated structure design, which is beneficial to improve the structural reliability of the first cover and the second cover, and can also ensure a better sealing effect on the first magnetic member or the second magnetic member.
[0014] In a possible implementation, the mounting structure includes a fixing member, one end of the fixing member is connected to the first body, and the other end of the fixing member protrudes from the surface of the first body and is used to mount the electronic device. The fixing member can be a screw, a pin, or a plastic member, and has stable structural support strength, which can ensure reliable support of the electronic device and facilitate installation of the electronic device.
[0015] In a possible implementation, the fixing member includes a connecting portion and a limiting portion, one end of the connecting portion is connected to the first body, and the other end of the connecting portion away from the first body is connected to the limiting portion. The limiting portion protrudes from the side surface of the connecting portion in the radial direction of the connecting portion. The limiting portion, the connecting portion, and the first body can form a groove-shaped structure, at least part of the side wall of the clamping groove of the electronic device can be located in the groove-shaped structure, and can be clamped on the connecting portion, and the limiting portion can limit the side wall of the clamping groove in the thickness direction of the first body, preventing the electronic device from falling off.
[0016] In a possible implementation, the electronic device mounting apparatus further includes a support assembly connected to the first body and / or the second body and capable of switching between a support state and a storage state. When the support assembly is in the support state, at least part of the support assembly protrudes from the surface of the second body. By blocking the support assembly, the first body cannot be attached to the second body, thereby avoiding the problem that the first body and the second body are difficult to separate after being attached, or causing the user to be pinched.
[0017] In a possible implementation, when the first body and / or the second body are attached to the support device, the support assembly is in the storage state, the support assembly is stored in the second body, and the support assembly does not protrude from the surface of the first body and / or the second body, thereby ensuring that the first body and / or the second body can be effectively attached to the support device such as glass during use.
[0018] In a possible implementation, the corresponding position of the support assembly in the storage state is a first position, and the corresponding position of the support assembly in the support state is a second position, and the angle between the first position and the second position is greater than 90 degrees. In the switching from the support state to the storage state, the first body and / or the second body provided with the support assembly is moved away from the first position and towards the support device, and when the first body and / or the second body provided with the support assembly is attached to the support device, the support assembly is switched to the storage state.
[0019] In a possible implementation, the support assembly comprises a support piece, an elastic piece and a rotating shaft, the support piece is rotationally connected to the first body and / or the second body through the rotating shaft. One end of the elastic piece is connected to the first body and / or the second body, and the other end of the elastic piece is connected to the support piece. In the support state, at least part of the support piece protrudes from the surface of the first body and / or the second body by the elastic force of the elastic piece. Taking the case that the support assembly is arranged on the second body as an example, when the second body is not used, the support assembly is in the support state, and in the support state, the elastic piece can be kept in a compressed state, so that the elastic force generated by the elastic piece can keep at least part of the support piece in the support state of protruding from the surface of the second body and located between the first body and the second body.
[0020] In a possible implementation, the angle of rotation of the support piece when switching from the storage state to the support state is greater than 90 degrees. For ease of description, the position of the support piece in the storage state can be defined as a first position, and the position of the support piece in the support state can be defined as a second position. When the support piece switches from the first position to the second position, the angle of rotation is greater than 90 degrees, so that when the support piece in the second position is subjected to the extrusion force from the first body in the thickness direction of the second body, a component force in the direction away from the first position will be generated on the support piece, which will not cause the support piece to rotate towards the first position, thereby ensuring that the support piece can play a stable supporting role.
[0021] In a possible implementation, the first body and / or the second body is provided with a mounting groove, the rotating shaft is connected to the inner wall of the mounting groove, and in the storage state, the support piece is stored in the mounting groove. In the storage state, the support piece is stored in the mounting groove, so that the support piece does not protrude from the surface of the first body and / or the second body, thereby ensuring that the first body and / or the second body can be effectively attached to the support device such as glass.
[0022] In a possible implementation, the anti-skid member is integrally formed with the first cover of the first body by a molding process. In this way, the anti-skid member can be reliably combined with the first cover, and the anti-skid member can be effectively prevented from falling off.
[0023] In a possible implementation, the electronic device mounting apparatus further includes a buffer member connected to the first body, and at least part of the buffer member protrudes from a surface of the first body. In this way, during the mounting of the electronic device to the mounting structure on the first body, the buffer member can achieve a buffering effect through contact with the electronic device, so that the electronic device can be prevented from directly colliding or pressing against the first body, and the first body can be prevented from being directly impacted by the electronic device. In addition, during the mounting of the electronic device to the first body, when the electronic device contacts the buffer member, the buffer member can provide a certain damping force, so that the installation feeling can be improved, and the user experience can be improved.
[0024] In a possible implementation, the first body is provided with a groove, and at least part of the buffer member is arranged in the groove. In this way, the part of the buffer member located in the groove can be adhered to the inner wall of the groove, so that the buffer member can be reliably fixed and prevented from falling off.
[0025] In a possible implementation, the buffer member and the mounting structure are arranged on the same side of the first body away from the second body, so that better buffering effect can be achieved during the mounting of the electronic device to the mounting structure.
[0026] In a possible implementation, the electronic device mounting apparatus further includes a pulling member, one end of the pulling member being connected to the first body or the second body. In this way, the end of the pulling member away from the first body or the second body is a free end, and the free end can be connected to a nearby fixed structure. For example, when the first body and the second body are clamped on both sides of the window glass, the free end of the pulling member can be bound to the handle of the window, or bound to the window frame or other suitable structure, so that when the first body or the second body pulled by the pulling member is accidentally separated from the glass, the first body or the second body pulled by the pulling member can still be prevented from falling to the ground and being damaged by the action of the pulling member.
[0027] In a possible implementation, the first body or the second body is provided with a mounting hole, and one end of the pulling member is provided with a lock buckle, at least part of the lock buckle being arranged in the mounting hole. In this way, the lock buckle can be used to lock the pulling member to the side wall of the mounting hole, so that the assembly of the pulling member and the first body can be facilitated.
[0028] In a possible implementation, the first body is provided with a limiting hole, and the limiting hole is used for cooperating with a limiting protrusion on the electronic device. During installation of the electronic device, the limiting protrusion on the electronic device can be inserted into the limiting hole on the first body, so that the installation of the electronic device can be limited, and meanwhile, the electronic device can be prevented from shaking after installation is completed, thereby ensuring the stability of the installation of the electronic device.
[0029] In a possible implementation, the electronic device includes a camera, a lamp or an electronic clock.
[0030] In a possible implementation, the electronic device includes a communication device, and the communication device includes a client terminal device, a radio remote unit, an interface data unit or a router.
[0031] In a second aspect, the embodiments of the present application further provide an electronic device, including a body and the electronic device installation device provided by the first aspect of the present application, and the electronic device installation device is used for installing the body.
[0032] It should be understood that the foregoing general description and the following detailed description are only exemplary and are not limiting to the present application. BRIEF DESCRIPTION OF DRAWINGS
[0033] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without any creative labor.
[0034] FIG. 1 is a structural schematic diagram of an electronic device provided by an embodiment of the present application;
[0035] FIG. 2 is a structural schematic diagram of a first body in an electronic device installation device provided by an embodiment of the present application;
[0036] FIG. 3 is a sectional view of FIG. 2 at A-A;
[0037] FIG. 4 is a structural schematic diagram of a first body in an electronic device installation device provided by another embodiment of the present application;
[0038] FIG. 5 is a structural schematic diagram of an electronic device provided by another embodiment of the present application;
[0039] FIG. 6 is a partial side view of a first body in an electronic device installation device provided by an embodiment of the present application;
[0040] FIG. 7 is a partial sectional view of a first body in an electronic device installation device provided by an embodiment of the present application when the first body is connected with an electronic device;
[0041] Fig. 8 is a structural schematic diagram of a second body in an electronic device mounting apparatus according to an embodiment of the present application;
[0042] Fig. 9 is a sectional view of Fig. 8 at B-B;
[0043] Fig. 10 is a diagram of the electronic device mounting apparatus according to an embodiment of the present application in use;
[0044] Fig. 11 is a diagram of the electronic device mounting apparatus according to an embodiment of the present application assembled with an electronic device;
[0045] Fig. 12 is an exploded view of a first body and an anti-skid member in the electronic device mounting apparatus according to an embodiment of the present application;
[0046] Fig. 13 is a front view of the first body in the electronic device mounting apparatus according to an embodiment of the present application;
[0047] Fig. 14 is a front view of the second body in the electronic device mounting apparatus according to an embodiment of the present application;
[0048] Fig. 15 is an exploded view of the first body in the electronic device mounting apparatus according to an embodiment of the present application;
[0049] Fig. 16 is an exploded view of the first body in the electronic device mounting apparatus according to another embodiment of the present application;
[0050] Fig. 17 is an exploded view of the second body in the electronic device mounting apparatus according to an embodiment of the present application;
[0051] Fig. 18 is an exploded view of the second body in the electronic device mounting apparatus according to another embodiment of the present application;
[0052] Fig. 19 is a structural schematic diagram of the second body in the electronic device mounting apparatus according to another embodiment of the present application;
[0053] Fig. 20 is a schematic diagram of the first body and the second body cooperating in a supporting state of a supporting assembly in the electronic device mounting apparatus according to an embodiment of the present application;
[0054] Fig. 21 is a structural schematic diagram of the second body in the electronic device mounting apparatus according to another embodiment of the present application;
[0055] Fig. 22 is an exploded view of the supporting assembly in the electronic device mounting apparatus according to an embodiment of the present application;
[0056] Fig. 23 is a schematic diagram of the second body in a glass mounting process in the electronic device mounting apparatus according to an embodiment of the present application;
[0057] Fig. 24 is a state diagram of the second body and the glass in the electronic device mounting device according to an embodiment of the present application;
[0058] Fig. 25 is a side view of the second body in the electronic device mounting device according to an embodiment of the present application;
[0059] Fig. 26 is an enlarged view of part C in Fig. 22;
[0060] Fig. 27 is a structural schematic diagram of the first body in the electronic device mounting device according to another embodiment of the present application;
[0061] Fig. 28 is a structural schematic diagram of the electronic device according to another embodiment of the present application;
[0062] Fig. 29 is a schematic diagram of the cooperation between the first body and the pulling member in the electronic device mounting device according to an embodiment of the present application;
[0063] Fig. 30 is a schematic diagram of the cooperation between the first body and the second body and the pulling member in the electronic device mounting device according to an embodiment of the present application.
[0064] Fig. 31 is a structural schematic diagram of the electronic device mounting device according to another embodiment of the present application. DETAILED DESCRIPTION
[0065] In order to better understand the technical solutions of the present application, the embodiments of the present application are described in detail below with reference to the drawings.
[0066] It should be clear that the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0067] The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting thereof. The singular forms "a," "an," and "the" as used in the description herein and in the appended claims are intended to include plural forms as well, unless the context clearly indicates otherwise.
[0068] It should be understood that the term "and / or" used herein is only to describe an association relationship of associated objects, which means that there can be three relationships, for example, A and / or B, which can represent the three cases of A alone, A and B together, and B alone. In addition, the character " / " herein generally represents an "or" relationship between the front and rear associated objects.
[0069] In the description of the application, unless otherwise expressly specified and limited, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance; unless otherwise specified or explained, the term "multiple" means two or more; the terms "connection", "fixation" and the like should be understood in a broad sense, for example, "connection" can be fixed connection, or detachable connection, or integral connection, or electrical connection; it can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.
[0070] The outdoor communication device is a device that can realize signal transceiving. For example, the outdoor communication device can convert signals provided by an operator or wired broadband signals into broadband or Wi-Fi signals for direct use by users. The outdoor communication device can be a customer premise equipment (CPE), a base station, etc., and can be widely applied to network access in various scenarios such as homes, hospitals, factories, communities, airports, and train stations.
[0071] The outdoor communication device needs to be reliably installed before use. In the related art, the outdoor communication device can be installed on a holding pole through the cooperation of a throat collar and a special base. The throat collar needs to be connected and fixed with the special base, then the throat collar is bound around the pole body, and finally the outdoor communication device can be installed on the special base. However, this installation method is more engineering, and the operability is poor, and it is required that the user's house is near a pole body that can be used for installing the throat collar, which is difficult to meet the use requirements of most users.
[0072] In addition, an installation manner of installing the outdoor communication device on a wall can also be used. Specifically, a punching tool such as an electric screwdriver can be used to punch a hole in the wall, a special base can be fastened on the wall by using a bolt, and finally the outdoor communication device can be installed on the special base. However, this installation manner needs professional construction personnel to install on site, and has high installation cost and great difficulty. In addition, the hole punching will cause permanent damage to the wall, which is difficult for some users to accept.
[0073] For another example, the outdoor communication device can also be pasted on the glass of a window by using double-sided adhesive tape. The double-sided adhesive tape generally uses pressure-sensitive adhesive. Due to the material properties of the pressure-sensitive adhesive, it cannot function normally in a low-temperature environment below 20℃. In addition, the pressure-sensitive adhesive has a certain pressing force requirement for activation, for example, the pressing force is generally required to be greater than >0.1Mpa. If the pressing force is small, it is difficult to ensure reliable pasting of the outdoor communication device, and the device is prone to fall off.
[0074] In view of this, an electronic device mounting device (hereinafter referred to as a mounting device) is provided in the embodiments of the present application, which can realize the installation of the electronic device by using the principle of magnetic attraction. FIG. 1 is a structural schematic diagram of an electronic device provided by an embodiment of the present application. Referring to FIG. 1, the electronic device can be a camera, a lamp, or an electronic clock, etc., which can be installed on the mounting device provided by the embodiments of the present application. The electronic device can also be a communication device. For example, the communication device can be a customer premise equipment (CPE), a remote radio unit (RRU), an interface data unit (IDU), or a router, etc. The embodiments of the present application do not limit the type of the communication device electronic device 100. In addition, the mounting device provided by the embodiments of the present application can also be used to install mechanical devices such as mechanical clocks, etc., which are not limited by the embodiments of the present application.
[0075] In an embodiment, the mounting device provided by the embodiments of the present application can be packaged and sold independently of the electronic device. In other embodiments, the electronic device can include a body and the mounting device provided by the embodiments of the present application. The body can realize the functions of the electronic device such as wireless communication, lighting, camera, etc. The mounting device can realize the installation of the body, and the body and the mounting device can be packaged and sold as a whole.
[0076] Figure 2 is a structural schematic diagram of a first body in an electronic device mounting device according to an embodiment of the present application. Referring to Figure 2, the mounting device according to the present embodiment includes a first body 1, and the first body 1 includes a first mounting surface 13 for attaching to a support device. The support device can be a glass, a resin product, or the like with a small thickness. Figure 3 is a sectional view of Figure 2 at A-A. As shown in Figure 3, the first body 1 includes a first magnetic member 11, which can be a magnet capable of generating a magnetic force. The first magnetic member 11 can be made of a neodymium iron boron, a samarium cobalt, a neodymium nickel cobalt, a ferrite permanent magnet material, or the like. Figure 4 is a structural schematic diagram of the first body 1 in an electronic device mounting device according to another embodiment of the present application. Referring to Figure 4, the first body 1 can be provided with a mounting structure 3, which can be used to mount an electronic device and reliably support and fix the electronic device.
[0077] In one embodiment, referring to Figure 4, the mounting structure 3 can include a fixing member 31, one end of the fixing member 31 being connected to the first body 1, and the other end of the fixing member 31 protruding from the surface of the first body 1. The fixing member 31 can be a screw, a pin, or a plastic member, and has a stable structural support strength, which can ensure reliable support of the electronic device and facilitate installation of the electronic device. In one embodiment, the mounting structure 3 can include one fixing member 31, or a plurality of fixing members 31. Referring to Figure 4, when the mounting structure 3 includes a plurality of fixing members 31, the reliability of the electronic device installation can be ensured.
[0078] Figure 5 is a structural schematic diagram of an electronic device according to another embodiment of the present application. Referring to Figure 5, the electronic device 100 can be provided with clamping grooves 110, and the positions and the number of the clamping grooves 110 can be consistent with the positions and the number of the fixing members 31. The electronic device 100 can be hung on the corresponding fixing members 31 through the clamping grooves 110, which facilitates installation of the electronic device 100.
[0079] In one embodiment, Fig. 6 is a partial side view of the first body 1 in the electronic device mounting apparatus provided by the embodiments of the present application. Referring to Fig. 6, the fixing member 31 can include a connecting portion 311 and a limiting portion 312. One end of the connecting portion 311 is connected to the first body 1, and the other end of the connecting portion 311 is connected to the limiting portion 312. The limiting portion 312 protrudes from the side surface of the connecting portion 311 in the radial direction of the connecting portion 311. The radial direction of the connecting portion 311 is perpendicular to the thickness direction Z of the first body 1. Fig. 7 is a partial cross-sectional view of the first body 1 and the electronic device when they are connected in the electronic device mounting apparatus provided by the embodiments of the present application. As shown in Fig. 7, in this embodiment, a slot-shaped structure can be formed between the limiting portion 312, the connecting portion 311 and the first body 1. At least part of the side wall 111 of the clamping groove 110 of the electronic device 100 can be located in the slot-shaped structure and can be clamped on the connecting portion 311. The limiting portion 312 can limit the side wall 111 of the clamping groove 110 in the thickness direction Z of the first body 1, thereby preventing the electronic device 100 from falling off.
[0080] Fig. 8 is a structural schematic view of the second body 2 in the electronic device mounting apparatus provided by one embodiment of the present application. Referring to Fig. 8, the second body 2 includes a second mounting surface 23 for being attached to the aforementioned support device made of glass or the like. Fig. 9 is a cross-sectional view of Fig. 8 at B-B. As shown in Fig. 9, the mounting apparatus further includes the second body 2, which includes a second magnetic member 21. The second magnetic member 21 can also be a magnet capable of generating a magnetic force, and can be made of neodymium iron boron, samarium cobalt, neodymium nickel cobalt, ferrite permanent magnet material or the like. The second magnetic member 21 is used to cooperate with the first magnetic member 11 to generate an attractive force. For example, the first magnetic member 11 and the second magnetic member 21 have opposite polarities. By using the principle of opposite polarities attracting each other, the magnetic attraction force can drive the first body 1 and the second body 2 to move closer to each other.
[0081] In some embodiments, one of the first body 1 and the second body 2 includes a magnetic member capable of generating a magnetic force, and the other can include a metal magnetic conductor. The metal magnetic conductor can include iron, nickel, silicon steel plate, nickel-iron alloy and ferrite material, etc. The metal magnetic conductor cannot generate a magnetic force, but can be attracted by the magnetic member, so that an attractive force can also be generated between the magnetic member and the metal magnetic conductor.
[0082] Figure 10 is a state diagram of the electronic device mounting device in use according to an embodiment of the present application. Referring to Figure 10, in the use of the mounting device according to the embodiment, the first body 1 and the second body 2 can be respectively arranged on the two sides of the aforementioned support device such as glass. The support device can be the glass 200 with a small thickness as shown in Figure 10, or other products with a small thickness made of materials such as resin. The support device can allow the magnetic field to pass through, i.e. the first magnetic member 11 and the second magnetic member 21 arranged on the two sides of the support device can generate sufficient magnetic attraction force to ensure that the first body 1 and the second body 2 can be clamped on the two sides of the support device.
[0083] In the embodiment, the first magnetic member 11 and the second magnetic member 21 can be arranged one or more than one. The number, size and distribution of the first magnetic member 11 and the second magnetic member 21 can be dynamically adjusted. For example, the first magnetic member 11 can be arranged multiple. The multiple first magnetic members 11 can be arranged near the edge of the first body 1 and in the middle of the first body 1. The number, size and distribution of the second magnetic member 21 can be the same as those of the first magnetic member 11, so that each area of the first body 1 and the second body 2 can be reliably adsorbed on the support device such as glass by the magnetic attraction force.
[0084] In other embodiments, the number, size and distribution of the first magnetic member 11 and the second magnetic member 21 can be flexibly adjusted according to different mounting environments. For example, the number, size and distribution of the first magnetic member 11 and the second magnetic member 21 can be determined according to factors such as the material and thickness of the support device such as glass, and the demand for magnetic attraction force. The embodiment is not limited in this regard.
[0085] For example, referring to Figure 10, the aforementioned support device is taken as the glass 200 on the window. In the installation process, the first body 1 can be positioned on one side of the glass 200, and the first mounting surface 13 of the first body 1 can be attached to the surface of the glass 200. The first body 1 can be held in position by hand. Then, the second mounting surface 23 of the second body 2 can be attached to the surface of the glass 200 away from the first body 1, and the second body 2 can be aligned with the first body 1. The first body 1 and the second body 2 can be stably fixed on the two sides of the glass 200 by the magnetic attraction force between the first magnetic member 11 and the second magnetic member 21. Figure 11 is a state diagram of the electronic device mounting device and the electronic device assembled according to an embodiment of the present application. Referring to Figure 11, finally, the electronic device 100 can be mounted on the mounting structure 3 of the first body 1, thereby completing the installation of the electronic device 100.
[0086] When the electronic device is an outdoor electronic device, the first body 1 can be arranged on the side of the window glass 200 facing the outdoor, and the second body 2 can be arranged on the inner side of the window glass 200 facing the indoor. When the electronic device is an indoor electronic device, the first body 1 can be arranged on the side of the window glass 200 facing the indoor, and the second body 2 can be arranged on the side of the window glass 200 facing the outdoor. In this way, the first body 1 and the second body 2 can be arranged indoors or outdoors flexibly according to the installation requirements of the electronic device.
[0087] In an embodiment, FIG. 12 is an exploded view of the assembly of the first body 1 and the anti-skid piece 5 in the electronic device mounting device provided by the embodiment of the present application. Referring to FIG. 12, the mounting device further includes an anti-skid piece 5 connected to the surface of the first body 1 facing the side of the second body 2. In the process of using the mounting device, taking the installation on the glass as an example, the first body 1 can be attached to the surface of the glass through the anti-skid piece 5, and a large friction force can be generated between the anti-skid piece 5 and the glass. Therefore, when the first body 1 and the second body 2 are adsorbed on the glass, the first body 1 can be reliably positioned on the glass through the anti-skid piece 5, so that the first body 1 can be fixed on the glass for a long time or substantially fixed. “Substantially fixed” can be understood as the first body 1 moving within a small range, that is, the first body 1 has a small movement amount, which can be ignored. For example, the first body 1 rotates within an angle range of 2° or slides within a range of 1 mm, and the rotation amount or sliding amount can be ignored, and the first body 1 can be considered as substantially fixed. Therefore, by arranging the anti-skid piece 5 on the first body 1, the stability of the adsorption position can be ensured after the first body 1 is adsorbed on the glass, and the stability of the electronic device hanging installation can be ensured.
[0088] In an embodiment, the anti-skid piece 5 can be made of silica gel material, and of course other silicon-based materials can also be used. The material selected by the anti-skid piece 5 is subject to the condition that it can increase the friction force between the anti-skid piece 5 and the glass, and the present embodiment does not limit this.
[0089] In an embodiment, referring to FIG. 12, the anti-skid piece 5 can be integrally formed with the first cover 12 of the first body 1 through a molding process. In this way, the anti-skid piece 5 and the first cover 12 can be reliably combined and fixed, and the anti-skid piece 5 can be effectively prevented from falling off.
[0090] Therefore, the electronic device mounting device provided by the embodiment of the present application can be fixed on the window glass by the magnetic attraction without relying on the pole near the house. Since most houses have window glass, the mounting device provided by the embodiment of the present application can meet the needs of most users. Of course, as described above, the mounting device can also be fixed on other support devices with a smaller thickness, and the application scenarios are more abundant. In addition, the mounting device is detachably clamped on both sides of the glass and the like support device by the magnetic attraction, which facilitates the disassembly and assembly operation, and the user can complete the installation by manually operating without using special tools to punch holes in the wall or the like. In addition, the mounting device does not need to be pasted on the glass by using double-sided adhesive, and the magnetic attraction is not affected by the ambient temperature. At the same time, the user does not need to apply a pressing force, and the first body 1 and the second body 2 can be fixed on the glass and the like support device by the magnetic attraction between the first body 1 and the second body 2, which facilitates the installation operation and also ensures the reliability of the installation.
[0091] In an embodiment, FIG. 13 is a front view of the first body 1 in the electronic device mounting device provided by the embodiment of the present application. Referring to FIG. 13, the first body 1 also includes a first cover 12, and the first cover 12 can be wrapped on the surface of the first magnetic member 11. The first cover 12 can be made of plastic and can be processed by injection molding. The first cover 12 can completely wrap the first magnetic member 11, thereby protecting the first magnetic member 11 from being exposed to sunlight or rain erosion, which is conducive to prolonging the service life of the first body 1 as a whole.
[0092] In an embodiment, FIG. 14 is a front view of the second body 2 in the electronic device mounting device provided by the embodiment of the present application. Referring to FIG. 14, the second body 2 can also include a second cover 22, and the second cover 22 can be wrapped on the surface of the second magnetic member 21. The second cover 22 can be made of the same or similar material as the first cover 12, for example, the first cover 12 and the second cover 22 can both be made of ABS plastic. When the first body 1 or the second body 2 is located outdoors, the cover material of the first body 1 or the second body 2 located outdoors can be outdoor PC plastic to enhance the corrosion resistance and oxidation resistance. The cover material of the first body 1 or the second body 2 located indoors can be ABS plastic. Of course, the materials of the first cover 12 and the second cover 22 can also be other materials, which are not limited by the embodiment. The second cover 22 can also protect the second magnetic member 21 to prolong the service life of the second body 2 as a whole.
[0093] In an embodiment, FIG. 15 is an exploded view of the first body 1 in the electronic device mounting apparatus according to an embodiment of the present application. Referring to FIG. 15, the first cover 12 includes a first housing 121 and a first cover body 122. The first cover body 122 is fastened to the first housing 121, and one or more first closed spaces can be formed between the first cover body 122 and the first housing 121 after the first cover body 122 is fastened to the first housing 121. The first magnetic member 11 can be disposed in the first closed space. The first housing 121 and the first cover body 122 can be separately manufactured and fastened to each other by assembly. For example, the first housing 121 and the first cover body 122 can be fastened to each other by a sliding rail and groove structure, a snap structure, or a point bonding structure. The first housing 121 and the first cover body 122 can be fastened to each other by a point bonding structure, a melting structure, or a waterproof structure after the first housing 121 and the first cover body 122 are fastened to each other. The first housing 121 and the first cover body 122 can be fastened to each other by any of the above structures. The first magnetic member 11 can be disposed in the first housing 121, and the first cover body 122 can be fastened to the first housing 121 to enclose the first magnetic member 11.
[0094] In order to prevent water vapor and other pollutants from penetrating into the first housing 121 and the first cover body 122 and corroding the first magnetic member 11, the first housing 121 and the first cover body 122 can be fastened to each other. For example, the first housing 121 and the first cover body 122 can be fastened to each other by a point bonding structure. For example, a glue solution can be applied to the interface between the first housing 121 and the first cover body 122. When the first cover body 122 is fastened to the first housing 121, the glue solution can be squeezed and filled in the interface between the first housing 121 and the first cover body 122, thereby fastening the first housing 121 and the first cover body 122.
[0095] Exemplarily, the first shell 121 and the first cover 122 can be sealed by a melting process. For example, the material at the joint of the first shell 121 and / or the first cover 122 can be melted by ultrasonic vibration friction, and then the first shell 121 and the first cover 122 can be closed. The first shell 121 and the first cover 122 can be combined into one by the melted material. After solidification, the melted material can effectively seal the joint of the first shell 121 and the first cover 122, so that the first shell 121 and the first cover 122 form a closed overall structure. In order to not damage the structural design required by the first shell 121 and / or the first cover 122 when melting the material on the first shell 121 and / or the first cover 122, and to avoid reducing the structural strength, design accuracy and other structural parameters, a redundant design can be provided at the position of the first shell 121 and / or the first cover 122 that needs to be melted. The redundant design can be a structural design other than the structural design required by the first shell 121 and / or the first cover 122. For example, the redundant design can be a protruding structure for melting, which can be provided on the joint surface of the first shell 121 and / or the first cover 122. The protruding structure can continuously extend on the joint surface of the first shell 121 and the first cover 122, and the cross-sectional shape of the protruding structure can be triangular, trapezoidal, etc., which is not limited in the embodiment.
[0096] Exemplarily, the joint of the first shell 121 and the first cover 122 can be sealed by a waterproof structure. For example, a waterproof rubber strip can be installed at the joint surface between the first shell 121 and the first cover 122. The waterproof rubber strip can be elastically deformed by the extrusion of the first shell 121 and the first cover 122, so as to reliably abut and fit the joint surface of the first shell 121 and the first cover 122, eliminate the gap between the first shell 121 and the first cover 122, and achieve the purpose of waterproof sealing.
[0097] In an embodiment, referring to FIG. 15, the first shell 121 can be provided with a first positioning groove 12a. FIG. 16 is an exploded view of the first body 1 in the electronic device mounting device provided in another embodiment of the application. Referring to FIG. 16, the first cover 122 can be provided with a first positioning groove 12b. In combination with FIG. 15, the number, size and position distribution of the first positioning groove 12a in the first shell 121 and the first positioning groove 12b in the first cover 122 are the same. When the first cover 122 is closed with the first shell 121, the first positioning groove 12a in the first shell 121 and the first positioning groove 12b in the first cover 122 correspond to each other and can form the first closed space.
[0098] In an embodiment, referring to FIG. 15 and FIG. 16 simultaneously, the number of the first positioning slots 12a in the first shell 121 and the first positioning slots 12b in the first cover 122 can be set to be multiple, so that the first closed space formed by the first positioning slots 12a in the first shell 121 and the first positioning slots 12b in the first cover 122 can have multiple, wherein, all the first closed spaces can be provided with the first magnetic member 11, or part of the first closed spaces can be provided with the first magnetic member 11, and the first magnetic member 11 can be flexibly arranged in different positions of the first closed space to meet different installation scenarios of electronic devices.
[0099] The first positioning slots 12a in the first shell 121 and the first positioning slots 12b in the first cover 122 can also be sealingly connected, and the sealing connection mode can be one of the sealing connection modes between the first shell 121 and the first cover 122, so that the first closed space formed between the first positioning slots 12a in the first shell 121 and the first positioning slots 12b in the first cover 122 can be formed into a completely sealed space, so as to effectively prevent pollutants such as water vapor from entering the first closed space and eroding the first magnetic member 11.
[0100] The first shell 121 and the first cover 122 can be sealingly connected by the above sealing mode, or the first positioning slots 12a in the first shell 121 and the first positioning slots 12b in the first cover 122 can be sealingly connected by the above sealing mode, or the first shell 121 and the first cover 122 can be sealingly connected by the above sealing mode, and the first positioning slots 12a in the first shell 121 and the first positioning slots 12b in the first cover 122 can be sealingly connected by the above sealing mode.
[0101] In an embodiment, FIG. 17 is an exploded view of the second body 2 in the electronic device mounting device provided by an embodiment of the present application. Referring to FIG. 17, the second shell 22 can include a second shell 221 and a second cover 222, the second cover 222 is buckled to the second shell 221, the second cover 222 and the second shell 221 form a second closed space, and the second magnetic member 21 is arranged in the second closed space. The assembly mode of the second magnetic member 21, the second cover 222 and the second shell 221 can be the same as the assembly mode of the first cover 122, the first shell 121 and the first magnetic member 11, the sealing mode is the same, and the corresponding technical effects are similar, which will not be described here.
[0102] In an embodiment, referring to FIG. 17, the second shell 221 can be provided with a second positioning slot 22a. FIG. 18 is an exploded view of the second body 2 of the electronic device mounting apparatus according to another embodiment of the present application, referring to FIG. 18, the second cover 222 can be provided with a second positioning slot 22b. In combination with FIG. 17, the number, size and position distribution of the second positioning slot 22a in the second shell 221 and the second positioning slot 22b in the second cover 222 are the same, when the second cover 222 is buckled with the second shell 221, the second positioning slot 12a in the second shell 221 and the second positioning slot 12b in the second cover 222 are matched one by one, and the second closed space described above can be formed.
[0103] In an embodiment, the first cover 12 can be coated on the surface of the first magnetic member 11 by an injection molding process, and / or the second cover 22 can also be coated on the surface of the second magnetic member 21 by an injection molding process. The first cover 12 or the second cover 22 formed by injection molding can realize an integrated structure design, which is beneficial to improve the structural reliability of the first cover 12 and the second cover 22, and can also ensure a better sealing effect on the first magnetic member 11 or the second magnetic member 21.
[0104] In normal use of the mounting apparatus, the first body 1 and the second body 2 are respectively arranged on both sides of the support device such as glass, and can be clamped on the glass by magnetic attraction. However, if a misoperation occurs during use, for example, the first body 1 and the second body 2 are accidentally attracted to each other, due to the large magnetic attraction between the first magnetic member 11 and the second magnetic member 21, it is difficult to separate the first body 1 and the second body 2, which reduces the user experience. In addition, the large magnetic attraction between the first magnetic member 11 and the second magnetic member 21 can also easily cause the first body 1 and the second body 2 to pinch the user's fingers, skin and other tissues.
[0105] Therefore, in an embodiment, the mounting apparatus can further include a support assembly 4, for example, the support assembly 4 can be connected to one side of the first body facing the second body 2. FIG. 19 is a structural schematic view of the second body 2 of the electronic device mounting apparatus according to another embodiment of the present application, referring to FIG. 19, for example, the support assembly 4 can be connected to one side of the second body 2 having the second mounting surface 23. For example, part of the support assembly 4 can be connected to the first body, and another part of the support assembly 4 can be connected to the second body 2. The support assembly 4 can be switched between a support state and a storage state.
[0106] In the following, the support assembly 4 is arranged on the second body 2 as an example. Referring to FIG. 19, in a natural state when the second body 2 is not in use, the support assembly 4 is in a supporting state. FIG. 20 is a schematic view of the first body 1 and the second body 2 in cooperation in the electronic device mounting apparatus provided by the embodiment of the present application, in which the support assembly 4 is in the supporting state. Referring to FIG. 20, when the support assembly 4 is in the supporting state, at least a part of the support assembly 4 protrudes from the surface of the second body 2 and is located between the first body 1 and the second body 2. In this way, the first body 1 cannot be attached to the second body 2 due to the blocking of the support assembly 4, so that the problem that the first body 1 and the second body 2 are difficult to separate after being attached or the user is injured can be avoided.
[0107] In addition, FIG. 21 is a schematic view of the structure of the second body 2 in the electronic device mounting apparatus provided by another embodiment of the present application, in which the support assembly 4 is in a storage state. Referring to FIG. 21, when the support assembly 4 is in the storage state, the support assembly 4 can be stored in the second body 2, and the support assembly 4 does not protrude from the second mounting surface 23 of the second body 2, so that the second mounting surface 23 can be effectively attached to the support device such as glass when the second body 2 is in use.
[0108] In an embodiment, FIG. 22 is an exploded view of the support assembly 4 in the electronic device mounting apparatus provided by the embodiment of the present application. Referring to FIG. 22, the support assembly 4 includes a support piece 41, an elastic piece 42 and a rotating shaft 43, and the support piece 41 is rotationally connected to the second body 2 through the rotating shaft 43. One end of the elastic piece 42 is connected to the second body 2, and the other end of the elastic piece 42 is connected to the support piece 41. In the following, the support assembly 4 is in the supporting state when the second body 2 is not in use, and in the supporting state, the elastic piece 42 can be kept in a compressed state, so that the elastic force generated by the elastic piece 42 can enable at least a part of the support piece 41 to be kept in the supporting state of protruding from the surface of the second body 2 and being located between the first body 1 and the second body 2.
[0109] In an embodiment, FIG. 22 exemplarily shows that the elastic piece 42 is a torsion spring, and in use, the torsion spring can be sleeved on the rotating shaft 43, and the elastic arms 421 at both ends of the torsion spring can abut against the second body 2 and the support piece 41, respectively. In other embodiments, the elastic piece 42 can also be a spring sheet or the like, which is not limited in the present embodiment.
[0110] In use, FIG. 23 is a schematic view of the installation of the second body 2 to the glass in the electronic device installation apparatus provided by the embodiment of the present application, referring to FIG. 23, taking the installation of the installation apparatus to the glass 200 as an example, when the second body 2 is attached to the glass 200, the support 41 will first contact the glass 200, by applying a certain pressure (the pressure direction shown in FIG. 23) to the second body 2, while making the second body 2 slightly move in the direction opposite to the direction in which the support 41 pops out of the second body 2 (the moving direction shown in FIG. 23), the support 41 can overcome the elastic force of the elastic member 42 and rotate into the second body 2. FIG. 24 is a state diagram of the second body 2 attached to the glass 200 in the electronic device installation apparatus provided by the embodiment of the present application, referring to FIG. 24, after the support 41 rotates into the second body 2, the second installation surface 23 of the second body 2 can be attached to the glass 200, and the magnetic attraction force between the first magnetic member 11 and the second magnetic member 21 can ensure that the second body 2 is stably clamped on the glass 200. The magnetic attraction force between the first magnetic member 11 and the second magnetic member 21 is greater than the elastic force of the elastic member 42 after compression in the storage state.
[0111] In an embodiment, FIG. 25 is a side view of the second body 2 in the electronic device installation apparatus provided by the embodiment of the present application, referring to FIG. 25, the angle α through which the support 41 rotates when switching from the storage state to the supporting state is greater than 90°. For ease of description, the position of the support 41 in the storage state can be defined as a first position, and the position of the support 41 in the supporting state can be defined as a second position. When the support 41 switches from the first position to the second position, the angle through which the support 41 rotates is greater than 90°, thus, when the support 41 in the second position is subjected to the extrusion force from the first body 1 in the thickness direction Z of the second body 2, a component force in the direction away from the first position will be generated on the support 41, which will not cause the support 41 to rotate to the first position, so as to ensure that the support 41 can play a stable supporting role.
[0112] In an embodiment, FIG. 26 is a partial enlarged view of point C in FIG. 22, referring to FIG. 26, the second body 2 is provided with a mounting groove 24, and the rotating shaft 43 is connected to the inner wall 241 of the mounting groove 24, in the storage state, the support 41 is stored in the mounting groove 24, so that the support 41 will not protrude from the surface of the second body 2, thus ensuring that the second installation surface 23 of the second body 2 can be effectively attached to the support device such as the glass.
[0113] In an embodiment, Fig. 27 is a structural schematic diagram of a first body 1 in an electronic device mounting apparatus according to another embodiment of the present application. Referring to Fig. 27, the mounting apparatus further comprises a buffer member 6 connected to the first body 1, and at least a part of the buffer member 6 protrudes from a surface of the first body 1 away from the second body 2. During the mounting of the electronic device to the mounting structure 3 on the first body 1, the buffer member 6 can achieve a buffering effect through contact with the electronic device, avoiding direct collision or extrusion of the electronic device to the first body 1, and reducing the direct impact force of the electronic device on the first body 1. In an embodiment, the material of the buffer member 6 can be silica gel, rubber, etc. Of course, in some embodiments, the buffer member 6 can also be a spring.
[0114] In an embodiment, in order to facilitate the mounting and fixing of the buffer member 6 on the first body 1, a recess can be provided on the first body 1, and at least a part of the buffer member 6 can be arranged in the recess. The part of the buffer member 6 located in the recess can be adhered to the inner wall of the recess, thereby achieving reliable fixing of the buffer member 6 and preventing it from falling off.
[0115] In an embodiment, since the electronic device usually needs to be mounted on the side of the first body 1 away from the second body 2, in order to achieve better buffering effect during the mounting of the electronic device to the mounting structure 3, the buffer member 6 and the mounting structure 3 can be arranged on the same side of the first body 1 away from the second body 2. In addition, in other embodiments, the mounting structure 3 and the buffer member 6 can also be arranged on the top surface, side surface, etc. of the first body 1, and the specific arrangement position can be determined according to the mounting requirements of the electronic device, which is not limited in the present embodiment.
[0116] In an embodiment, referring to Fig. 27, a limiting hole 14 can also be arranged on the first body 1. Fig. 28 is a structural schematic diagram of an electronic device according to another embodiment of the present application. Referring to Fig. 28, a limiting protrusion 120 can be arranged on the electronic device 100. In combination with Fig. 27, the limiting hole 14 can cooperate with the limiting protrusion 120 on the electronic device. During the mounting of the electronic device 100, the limiting protrusion 120 can be inserted into the limiting hole 14 on the first body 1, thereby achieving mounting limiting of the electronic device 100, and also preventing the electronic device 100 from shaking after the mounting is completed, and ensuring the stability of the mounting of the electronic device 100.
[0117] In one embodiment, Fig. 29 is a schematic view of the cooperation between the first body 1 and the pulling member 7 in the electronic device mounting apparatus according to the embodiments of the present application. Referring to Fig. 29, the mounting apparatus further comprises a pulling member 7, one end of which is connected to the first body 1. Alternatively, in other embodiments, the pulling member 7 can be connected to the second body 2. Alternatively, in other embodiments, Fig. 30 is a schematic view of the cooperation between the first body 1 and the second body 2 and the pulling member 7 in the electronic device mounting apparatus according to the embodiments of the present application. Referring to Fig. 30, the pulling member 7 can be provided with two, one of which can be connected to the first body 1 and the other of which can be connected to the second body 2. The other end of the pulling member 7 is a free end 71, which can be connected to a structure fixed nearby. For example, when the first body 1 and the second body 2 are clamped on both sides of the window glass, the free end 71 of the pulling member 7 can be tied to the handle of the window or to the window frame or to other suitable structures, so that when the first body 1 or the second body 2 being pulled is accidentally separated from the glass, the first body 1 or the second body 2 being pulled can still be prevented from falling to the ground and being damaged by the action of the pulling member 7.
[0118] In one embodiment, referring to Fig. 29, the first body 1 can be provided with a mounting hole 8, and one end of the pulling member 7 can be provided with a lock 72, by which the pulling member 7 can be locked to the side wall of the mounting hole 8, thereby facilitating the assembly of the pulling member 7 and the first body 1.
[0119] In other embodiments, referring to Fig. 30, the second body 2 can also be provided with a mounting hole 8, and the pulling member 7 can be connected to the second body 2 through the mounting hole 8 on the second body 2, which will not be described here.
[0120] The above merely provides preferred embodiments of the present application, but should not be used to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. An electronic device mounting apparatus, characterized by comprising: The application relates to a magnetic mounting structure for electronic devices, comprising: a first body comprising a first magnetic element, and an installation structure for installing an electronic device being arranged on the first body; a second body comprising a second magnetic element for cooperating with the first magnetic element to generate an attractive force, the second magnetic element and the first magnetic element being respectively adsorbed on two sides of a supporting device through the attractive force; an anti-skid element connected to a surface of the first body facing the second body.
2. The electronic device mounting apparatus of claim 1, wherein The first body further comprises a first cover covering a surface of the first magnetic element; and / or The second body further comprises a second cover covering a surface of the second magnetic element.
3. The electronic device mounting apparatus of claim 2, wherein The first cover comprises a first shell and a first cover body, the first cover body being buckled on the first shell, a first closed space being formed between the first cover body and the first shell, and the first magnetic element being arranged in the first closed space; and / or The second cover comprises a second shell and a second cover body, the second cover body being buckled on the second shell, a second closed space being formed between the second cover body and the second shell, and the second magnetic element being arranged in the second closed space.
4. The electronic device mounting apparatus of claim 3, wherein First positioning grooves are arranged in the first shell and the first cover body, the first positioning grooves in the first shell and the first cover body being buckled correspondingly when the first shell is buckled on the first cover body, so that the first positioning grooves in the first shell and the first cover body form the first closed space; and / or Second positioning grooves are arranged in the second shell and the second cover body, the second positioning grooves in the second shell and the second cover body being buckled correspondingly when the second shell is buckled on the second cover body, so that the second positioning grooves in the second shell and the second cover body form the second closed space.
5. The electronic device mounting apparatus of claim 4, wherein The first shell and the first cover body are sealedly buckled; and / or the second shell and the second cover body are sealedly buckled; and / or the first positioning grooves in the first shell and the first cover body are sealedly buckled; and / or the second positioning grooves in the second shell and the second cover body are sealedly buckled.
6. The electronic device mounting apparatus of claim 5, wherein The first shell and the first cover body are sealedly buckled through a point-gluing process, a melting process or a waterproof structure; and / or the second shell and the second cover body are sealedly buckled through a point-gluing process, a melting process or a waterproof structure; and / or the first positioning grooves in the first shell and the first cover body are sealedly buckled through a point-gluing process, a melting process or a waterproof structure; and / or the second positioning grooves in the second shell and the second cover body are sealedly buckled through a point-gluing process, a melting process or a waterproof structure.
7. The electronic device mounting apparatus of claim 2, wherein The first cover is covered on the surface of the first magnetic element through an injection molding process; and / or The second cover is covered on the surface of the second magnetic element through an injection molding process.
8. The electronic device mounting arrangement of any of claims 1-7, wherein, The mounting structure comprises a fixing member, one end of the fixing member is connected to the first body, and the other end of the fixing member protrudes from the surface of the first body for mounting the electronic device.
9. The electronic device mounting apparatus of claim 8, wherein The fixing member comprises a connecting portion and a limiting portion, one end of the connecting portion is connected to the first body, and the other end of the connecting portion is connected to the limiting portion away from the first body; In the radial direction of the connecting portion, the limiting portion protrudes from the side surface of the connecting portion.
10. The electronic device mounting arrangement of any of claims 1-9, wherein, Further comprising a support assembly, the support assembly is connected to the first body and / or the second body and can be switched between a support state and a storage state; When the support assembly is in the support state, at least part of the support assembly protrudes from the surface of the first body and / or the second body.
11. The electronic device mounting apparatus of claim 10, wherein The corresponding position of the support assembly in the storage state is a first position, and the corresponding position of the support assembly in the support state is a second position, the angle between the first position and the second position is greater than 90°; Wherein, when switching from the support state to the storage state, the first body and / or the second body provided with the support assembly is moved away from the first position and towards the support device, when the first body and / or the second body provided with the support assembly is attached to the support device, the support assembly is switched to the storage state.
12. The electronic device mounting apparatus according to claim 10 or 11, characterized by The support assembly comprises a support member, an elastic member and a rotating shaft, the support member is rotatably connected to the first body and / or the second body through the rotating shaft; One end of the elastic member is connected to the first body and / or the second body, and the other end of the elastic member is connected to the support member; wherein, in the support state, at least part of the support member protrudes from the surface of the first body and / or the second body through the elastic force of the elastic member.
13. The electronic device mounting apparatus of claim 12, wherein The first body and / or the second body is provided with a mounting groove, and the rotating shaft is connected to the inner wall of the mounting groove, and in the storage state, the support member is stored in the mounting groove.
14. The electronic device mounting arrangement of any of claims 1-13, wherein, The anti-skid member is integrally formed with the first shell of the first body through a molding process.
15. The electronic device mounting arrangement of any of claims 1-14, wherein, Further comprising a buffer member, the buffer member is connected to the first body, and at least part of the buffer member protrudes from the surface of the first body.
16. The electronic device mounting apparatus of claim 15, wherein The first body is provided with a recess, and at least part of the buffer member is arranged in the recess.
17. The electronic device mounting apparatus of claim 15, wherein The buffer member and the mounting structure are arranged on the same side of the first body away from the second body.
18. The electronic device mounting arrangement of any of claims 1-17, wherein, Further comprising a pulling member, one end of the pulling member is connected to the first body or the second body.
19. The electronic device mounting apparatus of claim 18, wherein The first body or the second body is provided with a mounting hole, one end of the pulling member is provided with a lock catch, at least part of the lock catch is arranged in the mounting hole and is locked on the side wall of the mounting hole.
20. The electronic device mounting arrangement of any of claims 1-19, wherein, The first body is provided with a limiting hole for cooperating with a limiting protrusion on the electronic device.
21. The electronic device mounting arrangement of any of claims 1-18, wherein, The electronic device comprises a camera, a lamp or an electronic clock.
22. The electronic device mounting arrangement of any of claims 1-18, wherein, The electronic device comprises a communication device, and the communication device comprises a customer terminal device, a radio frequency remote unit, an interface data unit or a router.
23. An electronic device, comprising: An electronic device mounting apparatus according to any one of claims 1 to 22, for mounting the body.
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