Support device
The magnetically connected bracket device solves the problems of complex installation and poor stability of customer terminal equipment, and realizes rapid and simple installation and disassembly, avoiding damage to the load bearing structure.
Patent Information
- Application Number
- CN202311684030.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-08
- Publication Date
- 2025-06-10
AI Technical Summary
The installation method of existing customer terminal equipment requires the use of screws, nails and other parts and tools, which leads to complex installation, damage to the load-bearing structure, and poor stability, and there is a risk of falling off.
A bracket device is designed to achieve rapid installation and disassembly by means of a magnetic component through a magnetic attachment connection between the first device body and the second device body, thereby avoiding damage to the load bearing structure.
It realizes simple and quick installation and disassembly of the bracket device, avoiding the user being accidentally injured by parts or tools, and can adjust the magnetic suction force to meet different installation needs, improving installation stability.
Smart Images

Figure CN120120451A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a bracket device, and more particularly to a bracket device that can be simply and quickly installed on a load-bearing structure and can be simply and quickly removed from the load-bearing structure. Background Art
[0002] In view of the popularity and prevalence of networks and 3C technology products, the demand for customer-premises equipment (CPE) in the current market has increased, and the installation requirements for customer-premises equipment have also received more attention.
[0003] The current installation methods of customer-premises equipment mostly require the use of parts such as screws and nails with tools to install them on load-bearing structures such as panels, walls, windows, and columns. However, the use of tools is more complicated for users who install by hand, and the method of fixing the equipment to the load-bearing structure with parts such as screws and nails requires destructive installation of the load-bearing structure, which will damage the appearance of the load-bearing structure and may affect its overall structural strength. Moreover, if there is a large gap between the customer-premises equipment and the load-bearing structure, or the installation technique is not proficient enough, the installation stability of the customer-premises equipment may not meet expectations, and there is even a risk of falling off during use.
[0004] Therefore, how to provide a bracket device that can be simply and quickly installed on a load-bearing structure to streamline the installation process and meet the installation requirements of various different devices has become the goal that the current market is committed to developing. Summary of the Invention
[0005] An embodiment of the present invention provides a bracket device, which includes a first device body and a second device body. The first device body includes a first magnetic component. The second device body is detachably magnetically connected to the first device body, and the second device body includes a second magnetic component and a third magnetic component. The second magnetic component is detachably magnetically connected to the first magnetic component. The third magnetic component is pivotally provided on the second magnetic component, wherein the second magnetic component and the third magnetic component abut against each other, and the second magnetic component is located between the first device body and the third magnetic component. The first device body faces a surface of a load-bearing structure with the first magnetic component, and the second device body faces another surface of the load-bearing structure relative to the surface with the second magnetic component, so that the first device body and the second device body are respectively positioned on two sides of the load-bearing structure. At this time, a magnetic attraction force is generated between the first magnetic component and the second magnetic component, and the first device body and the second device body are correspondingly magnetically connected to position the bracket device on the load-bearing structure. The third magnetic component pivots relative to the second magnetic component to adjust the intensity of the magnetic attraction force between the first magnetic component and the second magnetic component.
[0006] Another embodiment of the present invention is to provide a bracket device, which includes a first device body and a second device body. The first device body includes a first magnetic component. The second device body is detachably magnetically connected to the first device body, and the second device body includes a carrier, a housing, a second magnetic component, a third magnetic component, and an adjustment member. The carrier includes a guiding groove. The housing is coupled to the carrier and includes a clamping groove, wherein the housing and the carrier define an accommodating space, and the guiding groove communicates with the clamping groove to form an adjustment structure. The second magnetic component is disposed on the carrier and located in the accommodating space, and the second magnetic component is detachably magnetically connected to the first magnetic component. The third magnetic component is pivotally disposed on the second magnetic component and located in the accommodating space, wherein the second magnetic component is located between the first device body and the third magnetic component, and there is a component gap between the second magnetic component and the third magnetic component. The adjustment member is fixedly disposed on the third magnetic component, wherein the adjustment member protrudes out of the accommodating space and is displaceably clamped in the adjustment structure. The first device body faces a surface of a bearing structure with the first magnetic component, and the second device body faces another surface of the bearing structure relative to the surface with the second magnetic component, so that the first device body and the second device body are respectively positioned on two sides of the bearing structure. At this time, a magnetic attraction force is generated between the first magnetic component and the second magnetic component, so that the first device body and the second device body are correspondingly magnetically connected to position the bracket device on the bearing structure. When the adjustment member is displaced in the adjustment structure, the third magnetic component is displaced relative to the second magnetic component to adjust the strength of the magnetic attraction force between the first magnetic component and the second magnetic component.
[0007] Thereby, the bracket device of the present invention is detachably magnetically connected by the first device body and the second device body, so that the first device body and the second device body are respectively positioned on two sides of the bearing structure to position the bracket device on the bearing structure. This can eliminate the installation process of the known bracket device that requires parts such as screws and nails and auxiliary manual or electric tools, making the loading and unloading of the bracket device of the present invention simpler and more convenient, and can also avoid the situation that the user is accidentally injured by parts or tools during the loading and unloading process. Furthermore, the bracket device of the present invention can adjust the strength of the magnetic attraction force between the first magnetic component and the second magnetic component according to needs to meet the requirements of positioning, installation and disassembly. Furthermore, the use of the bracket device of the present invention is more convenient and is conducive to repeated disassembly and assembly, and has excellent market application potential. Description of the Drawings
[0008] To make the above and other objects, features, advantages and embodiments of the present invention more obvious and understandable, the description of the drawings is as follows:
[0009] Figure 1 Schematic diagram showing the bracket device according to an embodiment of the present invention;
[0010] Figure 2 Another schematic diagram of the bracket device shown Figure 1 ;
[0011] Figure 3 Another exploded view of the first device body of the bracket device shown Figure 1 ;
[0012] Figure 4 Another exploded view of the second device body of the bracket device shown Figure 1 ;
[0013] Figure 5 Another exploded view of the second magnetic component and the third magnetic component of the second device body shown Figure 4 ;
[0014] Figure 6A Another schematic diagram of the magnetic pole arrangement when the magnetic attraction force between the first device body and the second device body of the bracket device is in a weak magnetic state shown Figure 1 ;
[0015] Figure 6B Another schematic diagram of the magnetic pole arrangement when the magnetic attraction force between the first device body and the second device body of the bracket device is in a strong magnetic state shown Figure 1 ;
[0016] Figure 6C Another schematic diagram of the magnetic pole arrangement when the magnetic attraction force between the first device body and the second device body of the bracket device is released shown Figure 1 ;
[0017] Figure 7 Another schematic diagram of the bracket device applied to the bearing structure shown Figure 1 ;
[0018] Figure 8 Another schematic diagram of the bracket device according to another embodiment of the present invention shown
[0019] Figure 9 Another exploded view of the second device body of the bracket device shown Figure 8 ;
[0020] Figure 10 Another exploded view of the second magnetic component and the third magnetic component of the second device body shown Figure 9 ;
[0021] Figure 11 Another schematic diagram of the bracket device according to yet another embodiment of the present invention shown
[0022] Figure 12 Another exploded view of the second device body of the bracket device shown Figure 11 ;
[0023] Figure 13A Another schematic diagram of the bracket device shown Figure 11An operating schematic diagram of the bracket device when applied to a load-bearing structure;
[0024] Figure 13B Illustrate Figure 11 Another operating schematic diagram of the bracket device when applied to a load-bearing structure;
[0025] Figure 13C Illustrate Figure 11 Another operating schematic diagram of the bracket device when applied to a load-bearing structure; and Figure 14 Illustrate Figure 13C A cross-sectional view of the second device body of the bracket device.
[0026] Description of main component symbols:
[0027] 100, 200, 300 Bracket device
[0028] 101 Mounting frame
[0029] 110, 210, 310 First device body
[0030] 111 Pad body
[0031] 120, 220, 320 Second device body
[0032] 121 Hinge member
[0033] 122 Buffer pad body
[0034] 123 Slide block
[0035] 124 Limit groove
[0036] 130, 230, 330 First magnetic component
[0037] 131 Housing
[0038] 132 First magnet
[0039] 133 Space inside the housing
[0040] 134 First housing part
[0041] 135 Second housing part
[0042] 140, 240, 340 Second magnetic component
[0043] 141, 141a, 241 Second magnet
[0044] 142, 242 Internal space
[0045] 143, 243 Mounting disc part
[0046] 144, 244 First cover part
[0047] 150, 250, 350 Third magnetic component
[0048] 151, 251 Carrier
[0049] 152, 152a, 252 Third magnet
[0050] 153, 253 Second cover
[0051] 154 Groove structure
[0052] 221, 321 Carrier
[0053] 222, 322 Housing
[0054] 223, 323 Guide groove
[0055] 224, 324 Accommodation space
[0056] 254, 354 Adjusting member
[0057] 325 Card slot
[0058] 326 Adjusting structure
[0059] 327 Connecting member
[0060] 10 Carrying structure
[0061] 11 Surface
[0062] 12 Surface
[0063] 20 Electronic device
[0064] D Component gap Detailed implementation manners
[0065] The following will discuss each implementation manner of the present invention in more detail. However, this implementation manner can be an application of various inventive concepts and can be specifically implemented within various different specific scopes. The specific implementation manner is for illustrative purposes only and is not limited to the disclosed scope. In addition, for the purpose of simplifying the drawings, some well-known and commonly used structures and elements will be shown in a simple schematic manner in the drawings, and repeated or identical elements may be represented by the same reference numerals.
[0066] Please refer to Figure 1 and Figure 2 , Figure 1 which shows a schematic diagram of a bracket device 100 according to an embodiment of the present invention, Figure 2 shows Figure 1 another schematic diagram of the bracket device 100. The bracket device 100 is positioned on a carrying structure 10 (marked in Figure 7) thereon, so as to fix the electronic device 20 (marked in Figure 7 ) and other objects to be carried on the carrying structure 10 through the bracket device 100. The carrying structure 10 can be a structure with open spaces on both sides, such as a plate, a wall surface, a window, a column, etc., and the bracket device 100 includes a first device body 110 and a second device body 120. In addition, the bracket device 100 can be an installation bracket for customer-premises equipment (CPE) to meet the increasing demand for customer-premises equipment.
[0067] The first device body 110 includes a first magnetic component 130. The second device body 120 is detachably magnetically connected to the first device body 110, and the second device body 120 includes a second magnetic component 140 and a third magnetic component 150. The second magnetic component 140 is detachably magnetically connected to the first magnetic component 130, and the third magnetic component 150 is pivotally provided on the second magnetic component 140, wherein the second magnetic component 140 and the third magnetic component 150 abut against each other, and the second magnetic component 140 is located between the first device body 110 and the third magnetic component 150. Specifically, the first device body 110 and the second device body 120 will attract or repel each other due to different magnetic force states between the first magnetic component 130, the second magnetic component 140, and the third magnetic component 150, so that the first device body 110 and the second device body 120 are detachably magnetically connected.
[0068] Please also refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 , wherein Figure 3 shows Figure 1 the exploded view of the first device body 110 of the bracket device 100, Figure 4 shows Figure 1 the exploded view of the second device body 120 of the bracket device 100, and Figure 5 shows Figure 4 the exploded view of the second magnetic component 140 and the third magnetic component 150 of the second device body 120.
[0069] As shown in Figure 3As shown, the first magnetic component 130 of the first device body 110 includes a housing 131 and at least two first magnets 132. The housing 131 has an inner housing space 133, and at least two first magnets 132 are disposed in the inner housing space 133. Specifically, the housing 131 may include a first housing member 134 and a second housing member 135. The first housing member 134 and the second housing member 135 are coupled to each other and define the inner housing space 133, and the first magnets 132 disposed in the inner housing space 133 are separated from each other and are disposed around a center point (not shown in the figure) of the first device body 110. Furthermore, in the bracket device 100, the housing 131 is a disk-shaped housing. One of the first magnets 132 is disposed in the housing 131 with one of its magnetic poles (N pole or S pole) facing outward, and another first magnet 132 adjacent to the first magnet 132 is also disposed in the housing 131 with one of its magnetic poles facing outward. However, when viewed from the disk surface direction of the housing 131, any two adjacent first magnets 132 are arranged in the housing 131 with opposite magnetic pole polarities. For example, when one of the first magnets 132 is disposed on the first housing member 134 with the N pole facing outward, the two first magnets 132 adjacent to the two sides of the first magnet 132 will be disposed on the first housing member 134 with the S pole facing outward, so that at least two first magnets 132 of the first magnetic component 130 are arranged in Figure 3 the manner of alternating N poles and S poles as presented.
[0070] In Figure 3 , six first magnets 132 are configured, but the present invention is not limited thereto. In other words, as long as the magnetic poles of the first magnets 132 can correspond to the magnetic poles of the second magnetic component 140, the corresponding effects can be achieved.
[0071] As Figure 4 and Figure 5 shown, the second magnetic component 140 and the third magnetic component 150 of the second device body 120 are connected by a pivot member 121, so that the third magnetic component 150 can pivot relative to the second magnetic component 140.
[0072] The second magnetic component 140 includes at least two second magnets 141. The at least two second magnets 141 are disposed in an inner space 142 of the second magnetic component 140, and the at least two second magnets 141 are separated from each other and surround a center point (not shown in the figure) of the second device body 120. Specifically, the second magnetic component 140 may include a mounting disk member 143 and a first cover member 144. The mounting disk member 143 and the first cover member 144 are coupled to each other and define the inner space 142, and at least two second magnets 141 are fixedly disposed on the mounting disk member 143 and are located in the inner space 142. Again, as Figure 5As shown, a second magnet 141 is disposed in the mounting disc member 143 with one of its magnetic poles (N pole or S pole) facing outward, and another second magnet 141 adjacent to the second magnet 141 is also disposed in the mounting disc member 143 with one of its magnetic poles facing outward. However, when any two adjacent second magnets 141 are observed from the disc surface direction of the mounting disc member 143, they are arranged with opposite magnetic polarities, so that at least two second magnets 141 of the second magnetic assembly 140 are Figure 5 configured in an alternating manner of N pole and S pole as presented.
[0073] Furthermore, in the bracket device 100, the number of the second magnets 141 can be at least two, or can be an even number configuration such as four or six. And in Figure 5 it, six second magnets 141 are configured, but the present invention is not limited thereto.
[0074] The third magnetic assembly 150 pivots relative to the second magnetic assembly 140 to adjust the intensity of the magnetic attraction force between the first magnetic assembly 130 and the second magnetic assembly 140. The third magnetic assembly 150 includes a carrier plate 151 and at least one third magnet 152, and at least one third magnet 152 is disposed in the carrier plate 151. Specifically, the third magnetic assembly 150 may further include a second cover member 153. The carrier plate 151 and the second cover member 153 are coupled to each other, and at least one third magnet 152 is fixedly disposed on the carrier plate 151 with one of its magnetic poles (N pole or S pole) facing outward, so that one magnetic pole of at least one third magnet 152 is close to the second magnetic assembly 140, and the other magnetic pole of at least one third magnet 152 is far from the second magnetic assembly 140.
[0075] Furthermore, in the bracket device 100, the number of the third magnets 152 can be configured as at least one or at least two, and can be Figure 5 the six as shown, but the present invention is not limited thereto. For example, when the number of the third magnets 152 is more than two and is Figure 5 the six, and the third magnetic assembly 150 pivots relative to the second magnetic assembly 140, the relative positions of the third magnet 152 and at least two second magnets 141 can be adjusted. When the magnetism of one third magnet 152 attracts the corresponding second magnet 141, the magnetic attraction force between the first magnetic assembly 130 and the second magnetic assembly 140 will be enhanced.
[0076] Furthermore, when the number of the third magnets 152 is at least two, the third magnets 152 can be arranged with the N pole close to the second magnetic assembly 140, with the S pole close to the second magnetic assembly 140, or in an alternating configuration of N pole and S pole, but the present invention is not limited thereto.
[0077] Furthermore, the first magnet 132, the second magnet 141, and the third magnet 152 can be permanent magnets, and in addition to the rectangular shape shown as Figure 3 and Figure 5 shown, they can also be configured as circular, oval, triangular, etc. according to requirements, but the present invention is not limited thereto.
[0078] In the bracket device 100, the second device body 120 may further include at least one slider 123 and at least one limiting groove 124. At least one slider 123 is disposed on one of the second magnetic assembly 140 and the third magnetic assembly 150, and at least one limiting groove 124 is disposed on the other of the second magnetic assembly 140 and the third magnetic assembly 150. For example, as Figure 4 and Figure 5 shown, at least one slider 123 can be disposed on the second magnetic assembly 140 and located on the surface of the first cover 144 facing the carrier 151 (not shown in the figure), and at least one limiting groove 124 can be disposed on the third magnetic assembly 150 and located on the surface of the carrier 151 facing the first cover 144 (not shown in the figure). When the third magnetic assembly 150 is pivotally mounted on the second magnetic assembly 140, the slider 123 will be limited in the limiting groove 124, and when the third magnetic assembly 150 pivots relative to the second magnetic assembly 140, the slider 123 will slide in the limiting groove 124 to limit the relative pivoting degree between the second magnetic assembly 140 and the third magnetic assembly 150. Thereby, it is beneficial to adjust the magnetic attraction force between the first device body 110 and the second device body 120, and helps to switch and fix the states of strong magnetic force and weak magnetic force.
[0079] In addition, although not shown in the figure, the slider can also be disposed on the surface of the carrier facing the first cover, the limiting groove can be disposed on the surface of the first cover facing the carrier, and the number of the slider and the limiting groove can also be adjusted according to requirements, and the present invention is not limited to the content disclosed in the drawings.
[0080] Please refer to Figure 1 , Figure 3 , Figure 5 , Figure 6A , Figure 6B and Figure 6C simultaneously, wherein Figure 6A shows Figure 1 a schematic diagram of the magnetic pole arrangement in the weak magnetic state of the magnetic attraction force between the first device body 110 and the second device body 120 of the bracket device 100 shown in Figure 6B shows Figure 1 a schematic diagram of the magnetic pole arrangement in the strong magnetic state of the magnetic attraction force between the first device body 110 and the second device body 120 of the bracket device 100 shown in Figure 6C shows Figure 1Schematic diagram of the arrangement of magnetic poles when the magnetic attraction between the first device body 110 and the second device body 120 of the bracket device 100 is released.
[0081] To simplify the explanation, Figure 6A Only a first magnet 132 of the first magnetic component 130, a second magnet 141 of the second magnetic component 140 and a third magnet 152 of the third magnetic component 150 are presented, and Figure 1 , Figure 3 and Figure 5 The element structure is used to illustrate the change of magnetic attraction when the first device body 110 and the second device body 120 are installed on the supporting structure 10. When the second magnetic component 140 and the third magnetic component 150 are relatively pivoted, Figure 6A The second magnet 141 and the third magnet 152 in Figure 6B and Figure 6C The second magnet 141a and the third magnet 152a are used for illustration to emphasize the corresponding arrangement of the different magnets after pivoting, which is specifically explained first.
[0082] Specifically, in the bracket device 100, the first device body 110 faces a surface 11 of the supporting structure 10 with the first magnetic component 130, and the second device body 120 faces another surface 12 of the supporting structure 10 opposite to the surface 11 with the second magnetic component 140. At this time, a magnetic attraction force will be generated between the first magnetic component 130 and the second magnetic component 140, so that the first device body 110 and the second device body 120 are automatically aligned and magnetically connected, so that the first device body 110 and the second device body 120 are respectively positioned on two sides of the supporting structure 10, thereby positioning the bracket device 100 on the supporting structure 10.
[0083] like Figure 1 and Figure 6A As shown, when the first device body 110 and the second device body 120 are automatically aligned and magnetically connected, the first magnet 132, the second magnet 141 and the third magnet 152 will correspond to each other along the central axis direction of the bracket device 100. At this time, the S pole of the first magnet 132 will be close to the surface 11 of the support structure 10, and the N pole of the first magnet 132 will be away from the surface 11 of the support structure 10. At the same time, the N pole of the second magnet 141 will be close to the surface 12 of the support structure 10, the S pole of the second magnet 141 will be away from the surface 12 of the support structure 10, and the S pole of the third magnet 152 will be close to the second magnet 141, and the N pole of the third magnet 152 will be away from the second magnet 141. When the first magnet 132, the second magnet 141 and the third magnet 152 are present Figure 6A When the magnetic poles are arranged in the same manner, the magnetism of the second magnet 141 and the third magnet 152 repel each other, so that the magnetic attraction between the first device body 110 and the second device body 120 is in a weak magnetic state.
[0084] For another example Figure 1 As shown in Figure 6B when the third magnetic component 150 pivots relative to the second magnetic component 140, Figure 6A the third magnet 152 will move away from the second magnet 141, and the third magnet 152a adjacent to the third magnet 152 will be further displaced to correspond to the second magnet 141 along the central axis direction of the bracket device 100. At the same time, the N pole of the third magnet 152a will approach the S pole of the second magnet 141, and the S pole of the third magnet 152a will move away from the second magnet 141. In this way, the second magnet 141 will be magnetically attracted to the third magnet 152a, so that the magnetic attraction between the first magnetic component 130 and the second magnetic component 140 is enhanced and a strong magnetic state is presented.
[0085] For another example Figure 1 As shown in Figure 6C when the bracket device 100 is to be disassembled from the carrying structure 10, the second magnetic component 140 will pivot relative to the first device body 110. At this time, Figure 6B the second magnet 141 will move away from the first magnet 132, and the second magnet 141a adjacent to the second magnet 141 will be further displaced to correspond to the first magnet 132 along the central axis direction of the bracket device 100. At this time, the S pole of the second magnet 141a will approach the surface 12 of the carrying structure 10, and the N pole of the second magnet 141a will move away from the surface 12 of the carrying structure 10. At the same time, the third magnet 152a and the second magnet 141a will correspond to each other along the central axis direction of the bracket device 100, so that the N pole of the third magnet 152a is opposite to the N pole of the second magnet 141a. At this time, the magnetic attraction between the first magnetic component 130 and the second magnetic component 140 will weaken and turn into magnetic repulsion, so that the second magnetic component 140 is separated from the surface 12 of the carrying structure 10 to complete the disassembly of the bracket device 100.
[0086] Furthermore, as shown in Figure 1 , Figure 6A , Figure 6B As shown in Figure 6C when the bracket device 100 is to be disassembled from the carrying structure 10, the third magnetic component 150 can also be pivoted relative to the second magnetic component 140 first, so that the magnetic pole arrangement changes from Figure 6B the strong magnetic state arrangement presented to Figure 6A the weak magnetic state arrangement presented. Then, the second device body 120 is rotated as a whole relative to the first device body 110 along the central axis of the bracket device 100, so that the second magnet 141 of the second magnetic component 140 and the third magnet 152 of the third magnetic component 150 are simultaneously displaced relative to the first magnetic component 130, and further, the second magnetic component 140 and the third magnetic component 150 of the second device body 120 are separated fromFigure 6A The magnetic pole configuration of Figure 6C is directly converted to the magnetic pole configuration of
[0087] such that the magnetic force between the first magnetic component 130 and the second magnetic component 140 is repulsive, thereby causing the second device body 120 to separate from the surface 12 of the carrying structure 10 to complete the disassembly of the bracket device 100. Figure 6B In other embodiments, when it is desired to disassemble the bracket device 100 in the
[0088] state from the carrying structure 10, the second device body 120 can also be rotated as a whole relative to the first device body 110 along the central axis of the bracket device 100. That is, the second magnet 141 and the third magnet 152a pivot relative to the first magnet 132 simultaneously, and the second magnet 141a and the third magnet 152 are displaced to correspond to the first magnet 132, thereby causing the first device body 110 and the second device body 120 to separate due to repulsive magnetic force as a whole. However, the present invention does not limit the disassembly method of the bracket device 100.
[0089] Please also refer to Figure 1 , Figure 2 and Figure 7 , Figure 7 which shows Figure 1 a schematic diagram of the bracket device 100 applied to the carrying structure 10. As shown in Figure 1 and Figure 2 and as shown, the bracket device 100 may further include a mounting bracket 101 for mounting an electronic device 20. In the bracket device 100, the mounting bracket 101 is disposed on the first device body 110, and the mounting bracket 101 is away from the carrying structure 10. However, it should be noted that the mounting bracket 101 may also be disposed on the side of the second device body 120 away from the carrying structure 10, and the present invention is not limited to the content disclosed in the drawings.
[0090] As shown in Figure 7As shown, when the first device body 110 faces the surface 11 of the carrying structure 10 and the second device body 120 faces the surface 12 of the carrying structure 10, the first device body 110 and the second device body 120 will be magnetically connected correspondingly to position the bracket device 100 on the carrying structure 10. At this time, the electronic device 20 can be stably installed on the carrying structure 10 through the bracket device 100. Thus, the bracket device 100 of the present invention is detachably magnetically connected through the first device body 110 and the second device body 120, so that the first device body 110 and the second device body 120 are respectively positioned on two sides of the carrying structure 10 to position the bracket device 100 on the carrying structure 10. This can eliminate the process of installing the known bracket device with parts such as screws and nails with the assistance of manual or electric tools, making the installation and disassembly of the bracket device 100 of the present invention simpler and more convenient, and can also avoid the situation that the user is accidentally injured by parts or tools during the installation and disassembly process.
[0091] Furthermore, by the first device body 110 including the first magnetic component 130 and the second device body 120 including the second magnetic component 140 and the third magnetic component 150, and the third magnetic component 150 can pivot relative to the second magnetic component 140 to adjust the strength of the magnetic attraction between the first magnetic component 130 and the second magnetic component 140. In this way, the bracket device 100 of the present invention can easily adjust the strength of the magnetic attraction between the first device body 110 and the second device body 120 to meet the requirements of positioning, installation and disassembly. Furthermore, the use of the bracket device 100 of the present invention is more convenient and is conducive to repeated disassembly and assembly. Moreover, the structure of the bracket device 100 of the present invention is simple and easy to mass-produce, and can effectively reduce the defective rate of products, and can also reduce the safety problems caused by structural failure due to factors such as aging. In addition, the bracket device 100 of the present invention does not need to fix the device on the carrying structure 10 with parts such as screws and nails, which can not only avoid damaging the carrying structure 10, but also does not affect the overall appearance of the bracket device 100, and has excellent market application potential.
[0092] Again, such as Figure 1 And Figure 3As shown, the first device body 110 may further include at least one cushion 111. The cushion 111 is disposed on the surface of the first device body 110 facing the carrying structure 10 (not shown in the figure), and the cushion 111 is used to adhere to the surface 11 of the carrying structure 10. Specifically, the cushion 111 can be made of materials with functions such as increasing friction or adsorption force, such as geckotape, rubber, etc., or other materials with sucker characteristics can also be selected, so that the first device body 110 can be pre-positioned on the carrying structure 10 before the second device body 120 is correspondingly positioned on the carrying structure 10, which is beneficial for subsequent installation. Furthermore, the cushion 111 can also fill the gap between the first device body 110 and the carrying structure 10, making the installation of the bracket device 100 more stable. In addition, the number and shape of the cushion 111 can be adjusted according to requirements, and the present invention is not limited to the content disclosed in the drawings.
[0093] For another example Figure 2 and Figure 4 As shown, the second device body 120 may further include at least one buffer cushion 122. The buffer cushion 122 is disposed on the surface of the second device body 120 facing the carrying structure 10 (not shown in the figure). Specifically, the buffer cushion 122 can be made of vibration-absorbing materials with reduced friction, such as rubber, foam, etc., to buffer the force exerted on the carrying structure 10 when the second device body 120 is installed or operated, and the buffer cushion 122 can fill the gap between the second device body 120 and the carrying structure 10, making the installation of the bracket device 100 of the present invention more stable.
[0094] For another example Figure 1 and Figure 2 As shown, the third magnetic component 150 may further include a plurality of groove structures 154. The groove structures 154 are recessed on an outer diameter surface of the third magnetic component 150 separately from each other (not shown in the figure). The setting of the groove structures 154 is beneficial for operating the third magnetic component 150 to pivot it relative to the second magnetic component 140, making the operation of the bracket device 100 of the present invention more convenient. In addition, the second magnetic component 140 may also include groove structures (not shown in the figure) disposed on the outer diameter surface to further improve the operation convenience of the second device body 120, but the present invention is not limited thereto.
[0095] Please refer to Figure 8 、 Figure 9 and Figure 10 , Figure 8 which shows a schematic diagram of a bracket device 200 according to another embodiment of the present invention, Figure 9 shows Figure 8 an exploded view of the second device body 220 of the bracket device 200, and Figure 10 shows Figure 9Exploded view of the second magnetic component 240 and the third magnetic component 250 of the second device body 220. The bracket device 200 is positioned on a carrying structure (not shown) to fix other carried objects such as an electronic device (not shown) to the carrying structure through the bracket device 200, and the bracket device 200 includes a first device body 210 and a second device body 220.
[0096] As Figure 8 , Figure 9 and Figure 10 shown, the first device body 210 is detachably magnetically connected to the second device body 220. The first device body 210 includes a first magnetic component 230, and the second device body 220 includes a carrier 221, a housing 222, a second magnetic component 240, a third magnetic component 250, and an adjustment member 254. In addition, the first device body 210 and the first magnetic component 230 are structurally similar to the first device body 110 and the first magnetic component 130 of the bracket device 100. Therefore, for the structures and details of the same components, please refer to the description of the bracket device 100 and will not be elaborated here.
[0097] The carrier 221 includes a guiding groove 223. The housing 222 is coupled to the carrier 221. The housing 222 and the carrier 221 define an accommodating space 224, and the second magnetic component 240 and the third magnetic component 250 are accommodated in the accommodating space 224.
[0098] The second magnetic component 240 includes at least two second magnets 241. The at least two second magnets 241 are disposed in an internal space 242 of the second magnetic component 240. Furthermore, the second magnetic component 240 may include a mounting disc member 243 and a first cover member 244. The mounting disc member 243 and the first cover member 244 are coupled to each other and define the internal space 242. The second magnet 241 is fixedly disposed on the mounting disc member 243 and is located in the internal space 242.
[0099] The third magnetic component 250 abuts against the second magnetic component 240, and the third magnetic component 250 includes a carrier 251 and at least one third magnet 252, and at least one third magnet 252 is disposed in the carrier 251. Furthermore, the third magnetic component 250 may further include a second cover 253, the carrier 251 and the second cover 253 are coupled to each other, and the third magnet 252 is fixedly disposed on the carrier 251. Furthermore, the adjusting member 254 is fixed on the third magnetic component 250 and protrudes out of the accommodating space 224, and the adjusting member 254 is displaceably engaged in the guiding groove 223. When it is desired to adjust the third magnetic component 250 to pivot it relative to the second magnetic component 240, only the adjusting member 254 needs to be moved to displace the adjusting member 254 in the guiding groove 223. At this time, the adjusting member 254 will drive the third magnetic component 250 to pivot, so as to adjust the intensity of the magnetic attraction force between the first magnetic component 230 and the second magnetic component 240 through the change of the magnetic poles of the third magnetic component 250 relative to the second magnetic component 240.
[0100] Thereby, by the second device body 220 including the carrier 221 and the housing 222, and the adjusting member 254 being displaceable in the guiding groove 223 of the carrier 221, the adjustment of the magnetic attraction force of the bracket device 200 of the present invention is made simpler, and the corresponding setting of the guiding groove 223 and the adjusting member 254 can also limit the pivoting degree of the third magnetic component 250 relative to the second magnetic component 240, making the operation of the bracket device 200 of the present invention more effective and convenient.
[0101] In addition, the adjustment method of the magnitude of the magnetic attraction force of the bracket device 200 is the same as that of the bracket device 100, and the arrangement states of the magnetic poles of the first magnet (not shown in the figure) of the first magnetic component 230, the second magnet 241, and the third magnet 252 when the magnetic attraction force between the first device body 210 and the second device body 220 is in a strong magnetic state, a weak magnetic state, or the magnetic attraction force is released are also the same as those of the bracket device 100. Therefore, for the details of the same components and their structural configurations, please refer to the description of the bracket device 100, and will not be elaborated here.
[0102] Please refer to Figure 11 and Figure 12 , Figure 11 FIG. showing a schematic diagram of a bracket device 300 according to another embodiment of the present invention, Figure 12 showing Figure 11 an exploded view of the second device body 320 of the bracket device 300. The bracket device 300 is positioned on a carrying structure 10 (labeled in Figures 13A to 13C ), so as to pass the bracket device 300 to hold the electronic device 20 (labeled in Figures 13A to 13C)Other objects to be carried, etc. are fixed to the carrying structure 10. The carrying structure 10 can be a structure with open spaces on both sides, such as a plate, a wall surface, a window, a column, etc., and the bracket device 300 includes a first device body 310 and a second device body 320.
[0103] The first device body 310 is detachably magnetically connected to the second device body 320. The first device body 310 includes a first magnetic component 330, and the second device body 320 includes a carrier 321, a housing 322, a second magnetic component 340, a third magnetic component 350, and an adjusting member 354. In addition, the first device body 310 and the first magnetic component 330 are structurally similar to the first device body 110 and the first magnetic component 130 of the bracket device 100. Therefore, for the structure and details of the same components, please refer to the description of the bracket device 100 and will not be repeated here.
[0104] The carrier 321 includes a guiding groove 323. The housing 322 is coupled to the carrier 321 and includes a clamping groove 325. The housing 322 and the carrier 321 define an accommodating space 324, and the guiding groove 323 communicates with the clamping groove 325 to form an adjusting structure 326.
[0105] The second magnetic component 340 is disposed on the carrier 321 and is located in the accommodating space 324, and the second magnetic component 340 is detachably magnetically connected to the first magnetic component 330. In addition, the second magnetic component 340 is structurally similar to the second magnetic component 140 of the bracket device 100. Therefore, for the structure and details of the same components, please refer to the description of the bracket device 100 and will not be repeated here.
[0106] The third magnetic component 350 is pivotally provided on the second magnetic component 340 and is located in the accommodating space 324. The second magnetic component 340 is located between the first device body 310 and the third magnetic component 350, and there is a component gap D between the second magnetic component 340 and the third magnetic component 350 (marked in Figure 14 ). The adjusting member 354 is fixed to the third magnetic component 350, and the adjusting member 354 protrudes out of the accommodating space 324 and is displaceably clamped in the adjusting structure 326. In addition, the third magnetic component 350 is structurally similar to the third magnetic component 150 of the bracket device 100. Therefore, for the structure and details of the same components, please refer to the description of the bracket device 100 and will not be repeated here.
[0107] Specifically, the carrier 321, the second magnetic component 340, the third magnetic component 350, and the housing 322 are installed by the connecting member 327, so that the second magnetic component 340 and the third magnetic component 350 are disposed in the accommodating space 324 formed by the housing 322 and the carrier 321. Since the adjusting member 354 is fixed on the third magnetic component 350 and the adjusting member 354 is clamped in the adjusting structure 326, the third magnetic component 350 and the second magnetic component 340 will not abut against each other to form a component gap D. In this way, friction generated when the third magnetic component 350 pivots relative to the second magnetic component 340 can be avoided, and the use of the bracket device 300 of the present invention is made more convenient.
[0108] Please refer again to Figure 12 , Figure 13A , Figure 13B , Figure 13C and Figure 14 , Figure 13A showing Figure 11 a schematic operation diagram of the bracket device 300 shown in Figure 13B when applied to the carrying structure 10, Figure 11 a schematic operation diagram of the bracket device 300 shown in Figure 13C when applied to the carrying structure 10, Figure 11 a schematic operation diagram of the bracket device 300 shown in Figure 14 when applied to the carrying structure 10, and Figure 13C a cross-sectional view of the second device body 320 of the bracket device 300 shown in
[0109] As Figure 13A shown, when the adjusting member 354 is located in the guiding groove 323, the component gap D between the second magnetic component 340 and the third magnetic component 350 is the smallest. At this time, the adjusting member 354 can be moved and displaced in the guiding groove 323, and the adjusting member 354 fixed on the third magnetic component 350 will drive the third magnetic component 350 to pivot relative to the second magnetic component 340 to adjust the magnetic attraction force between the first device body 310 and the second device body 320, so as to position the bracket device 300 on the carrying structure 10 and install the electronic device 20 thereon. When the adjusting member 354 is located at Figure 13A the dotted line position shown, the magnetic attraction force between the first device body 310 and the second device body 320 is in a strong magnetic state, and when the adjusting member 354 is located at one end of the guiding groove 323 close to the card slot 325, the magnetic attraction force between the first device body 310 and the second device body 320 will change to a weak magnetic state.
[0110] As Figure 13B shown, when the bracket device 300 is to be disassembled from the carrying structure 10, the adjusting member 354 will first be displaced to the position as shown in Figure 13AAt the position shown, the adjusting member 354 is located at one end of the guiding groove 323 close to the clamping groove 325. At this time, the magnetic attraction force between the first device body 310 and the second device body 320 is in a weak magnetic state, and the third magnetic assembly 350 will automatically move away from the second magnetic assembly 340 due to the repulsive force from the second magnetic assembly 340 (refer to Figure 6C for the magnetic pole arrangement configuration. At this time, the component gap D will increase), thereby driving the adjusting member 354 into the clamping groove 325.
[0111] Next, as shown in Figure 13C and Figure 14 , after the adjusting member 354 enters the clamping groove 325, it can further displace in the clamping groove 325, thereby driving the third magnetic assembly 350 to pivot relative to the second magnetic assembly 340 and be clamped at the end of the clamping groove 325, preventing the adjusting member 354 from changing its position due to external force or magnetic force. At this time, the magnetic attraction force between the first magnetic assembly 330 and the second magnetic assembly 340 will remain in a weak magnetic state, which is beneficial for the second magnetic assembly 340 to disengage from the bearing structure 10 to complete the disassembly of the bracket device 300.
[0112] Furthermore, the adjusting structure 326 can be in a C-shaped structure in appearance to facilitate the displacement of the adjusting member 354 in the guiding groove 323 and the clamping groove 325, but the present invention is not limited to the content disclosed in the drawings. In addition, the magnetic pole arrangements of the first magnet (not shown in the figure), the second magnet (not shown in the figure), and the third magnet (not shown in the figure) when the magnetic attraction force between the first device body 310 and the second device body 320 is in a strong magnetic state, a weak magnetic state, or the magnetic attraction force is released are also the same as those of the bracket device 100. Therefore, for the details of the same components and their structural configurations, please refer to the description of the bracket device 100 and will not be elaborated here.
[0113] In summary, the bracket device of the present invention has excellent use safety, use convenience, and versatility, is beneficial for production and manufacturing, and can also eliminate the process of installing the known bracket device with parts such as screws and nails with the assistance of manual or electric tools, and thus has excellent market application potential.
[0114] Although the present invention has been disclosed as above in an embodiment, it is not intended to limit the present invention. Any person skilled in the art should be able to make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the protection scope of the present invention should be defined by the scope of the appended claims.
Claims
1. A bracket device, the bracket device comprises: a first device body, the first device body comprising; a first magnetic component; and a second device body, the second device body being detachably magnetically connected to the first device body, the second device body comprising: a second magnetic component, the second magnetic component being detachably magnetically connected to the first magnetic component; and a third magnetic component, the third magnetic component being pivotally provided on the second magnetic component, wherein the second magnetic component and the third magnetic component abut against each other, and the second magnetic component is located between the first device body and the third magnetic component; wherein, the first device body faces a surface of a carrying structure with the first magnetic component, and the second device body faces another surface of the carrying structure relative to the surface with the second magnetic component, so that the first device body and the second device body are respectively positioned on two sides of the carrying structure. At this time, a magnetic attraction force is generated between the first magnetic component and the second magnetic component, and the first device body and the second device body are correspondingly magnetically connected to position the bracket device on the carrying structure; wherein, the third magnetic component pivots relative to the second magnetic component to adjust the intensity of the magnetic attraction force between the first magnetic component and the second magnetic component.
2. The bracket device according to claim 1, wherein the first magnetic component comprises: a housing having an inner space; and at least two first magnets, the at least two first magnets being arranged in the inner space, and the at least two first magnets being separated from each other and surrounding a center point of the first device body; wherein, one magnetic pole of each of the first magnets is close to the surface of the carrying structure, and the other magnetic pole of each of the first magnets is far from the surface of the carrying structure, and the at least two first magnets are arranged alternately with N poles and S poles.
3. The bracket device according to claim 1, wherein: the second magnetic component comprises at least two second magnets, the at least two second magnets being arranged in an inner space of the second magnetic component, and the at least two second magnets being separated from each other and surrounding a center point of the second device body; and one magnetic pole of each of the second magnets is close to the other surface of the carrying structure, and the other magnetic pole of each of the second magnets is far from the other surface of the carrying structure, and the at least two second magnets are arranged alternately with N poles and S poles.
4. The bracket device according to claim 3, wherein the third magnetic component comprises: a carrier plate; and at least one third magnet, the at least one third magnet being arranged in the carrier plate; wherein, one magnetic pole of the at least one third magnet is close to the second magnetic component, and the other magnetic pole of the at least one third magnet is far from the second magnetic component.
5. The bracket device according to claim 4, wherein: the number of the at least one third magnet is at least two, and the at least two third magnets are arranged with N poles close to the second magnetic component, S poles close to the second magnetic component or alternately with N poles and S poles; and The third magnetic component pivots relative to the second magnetic component to adjust the relative positions of the at least two third magnets and the at least two second magnets. When the magnetism of one of the third magnets attracts the second magnet, the magnetic attraction force between the first magnetic component and the second magnetic component is enhanced.
6. The bracket device according to claim 1, wherein the first device body further comprises: At least one cushion body, the at least one cushion body is disposed on a surface of the first device body facing the carrying structure for adhering to the surface of the carrying structure.
7. The bracket device according to claim 1, wherein the second device body further comprises: At least one buffer cushion body, the at least one buffer cushion body is disposed on a surface of the second device body facing the carrying structure.
8. The bracket device according to claim 1, the bracket device further comprises: A mounting bracket for mounting an electronic device, wherein the mounting bracket is disposed on at least one of the first device body or the second device body, and the mounting bracket is away from the carrying structure.
9. The bracket device according to claim 1, wherein the second device body further comprises: At least one slider, the at least one slider is disposed on one of the second magnetic component and the third magnetic component; and At least one limiting groove, the at least one limiting groove is disposed on the other of the second magnetic component and the third magnetic component, and the at least one slider is correspondingly disposed in the at least one limiting groove.
10. The bracket device according to claim 1, wherein the second device body further comprises: A carrier including a guiding groove; A housing coupled to the carrier, wherein the housing and the carrier define an accommodating space, and the second magnetic component and the third magnetic component are accommodated in the accommodating space; and An adjusting member fixedly disposed on the third magnetic component, wherein the adjusting member protrudes out of the accommodating space and is displaceably engaged in the guiding groove; wherein when the adjusting member is displaced in the guiding groove, the third magnetic component pivots relative to the second magnetic component.
11. A bracket device, the bracket device comprises: A first device body, the first device body includes; A first magnetic component; and A second device body detachably magnetically connected to the first device body, the second device body includes: A carrier including a guiding groove; A housing coupled to the carrier and including a card slot, wherein the housing and the carrier define an accommodating space, and the guiding groove communicates with the card slot to form an adjusting structure; A second magnetic component disposed on the carrier and located in the accommodating space, and the second magnetic component is detachably magnetically connected to the first magnetic component; A third magnetic component pivotally disposed on the second magnetic component and located in the accommodating space, wherein the second magnetic component is located between the first device body and the third magnetic component, and there is a component gap between the second magnetic component and the third magnetic component; and An adjusting member fixedly disposed on the third magnetic component, wherein the adjusting member protrudes out of the accommodating space and is displaceably engaged in the adjusting structure; Wherein, the first device body faces a surface of a bearing structure with the first magnetic component, and the second device body faces the other surface of the bearing structure relative to the surface with the second magnetic component, so that the first device body and the second device body are respectively positioned on two sides of the bearing structure. At this time, a magnetic attraction force is generated between the first magnetic component and the second magnetic component, so that the first device body and the second device body are magnetically attracted and connected correspondingly, so as to position the bracket device on the bearing structure; Wherein, when the adjusting member displaces in the adjusting structure, the third magnetic component displaces relative to the second magnetic component to adjust the intensity of the magnetic attraction force between the first magnetic component and the second magnetic component.
12. The bracket device according to claim 11, wherein the first magnetic component comprises: a housing having an inner space; and at least two first magnets disposed in the inner space of the housing, and the at least two first magnets are separated from each other and surround a center point of the first device body; Wherein, one magnetic pole of each of the first magnets is close to the surface of the bearing structure, and the other magnetic pole of each of the first magnets is far from the surface of the bearing structure, and the at least two first magnets are arranged alternately with N poles and S poles.
13. The bracket device according to claim 11, wherein: The second magnetic component includes at least two second magnets disposed in an inner space of the second magnetic component, and the at least two second magnets are separated from each other and surround a center point of the second device body; and One magnetic pole of each of the second magnets is close to the other surface of the bearing structure, and the other magnetic pole of each of the second magnets is far from the other surface of the bearing structure, and the at least two second magnets are arranged alternately with N poles and S poles.
14. The bracket device according to claim 13, wherein the third magnetic component comprises: a carrier plate; and at least one third magnet disposed in the carrier plate; Wherein, one magnetic pole of the at least one third magnet is close to the second magnetic component, and the other magnetic pole of the at least one third magnet is far from the second magnetic component.
15. The bracket device according to claim 14, wherein: The number of the at least one third magnet is at least two, and the at least two third magnets are arranged with N poles close to the second magnetic component, S poles close to the second magnetic component or alternately with N poles and S poles; and The third magnetic component pivots relative to the second magnetic component to adjust the relative positions of the at least two third magnets and the at least two second magnets. When the magnetism of one of the third magnets attracts one of the second magnets, the magnetic attraction force between the first magnetic component and the second magnetic component is enhanced.
16. The bracket device according to claim 14, wherein: The adjusting member displaces in the adjusting structure and enters the guiding groove or the clamping groove, so that the third magnetic component presents a first position or a second position relative to the second magnetic component; When the adjusting member enters the guiding groove, the third magnetic component presents the first position relative to the second magnetic component; and When the adjusting member enters the clamping groove from the guiding groove, the third magnetic assembly is displaced into the housing. At this time, the third magnetic assembly presents the second position relative to the second magnetic assembly, so that the third magnetic assembly is away from the second magnetic assembly.
17. The bracket device according to claim 11, wherein the first device body further comprises: at least one cushion body, the at least one cushion body is arranged on a surface of the first device body facing the bearing structure for correspondingly attaching to the surface of the bearing structure.
18. The bracket device according to claim 11, wherein the second device body further comprises: at least one buffer cushion body, the at least one buffer cushion body is arranged on at least one of a surface of the second magnetic assembly facing the bearing structure and a surface of the third magnetic assembly facing the bearing structure.
19. The bracket device according to claim 11, the bracket device further comprises: a mounting bracket for mounting an electronic device, wherein the mounting bracket is arranged on at least one of the first device body or the second device body, and the mounting bracket is away from the bearing structure.
20. The bracket device according to claim 11, wherein the second device body further comprises: at least one slider, the at least one slider is arranged on one of the second magnetic assembly and the third magnetic assembly; and at least one limiting groove, the at least one limiting groove is arranged on the other of the second magnetic assembly and the third magnetic assembly, and the at least one slider is correspondingly arranged in the at least one limiting groove.