Accessory support and electronic equipment support
By designing an accessory bracket with limiting parts, the problem of easy falloff of thermal imaging modules in the prior art is solved, and higher installation reliability and module safety are achieved.
Patent Information
- Application Number
- CN202422004060.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The accessories brackets in existing electronic equipment brackets are prone to loosening when clamping the thermal imaging module, causing the thermal imaging module to fall off from the brackets, damage, and have poor reliability.
An accessory bracket is designed, including a bracket body and a limiting member, with a receiving cavity and a mounting port in the bracket body. The limiting member is used to restrict movement of the thermal imaging module along the mounting port direction, thereby providing a stable installation space and preventing falling off.
By providing stable installation space and limiting functions, the installation reliability of the thermal imaging module is significantly improved, the risk of module drop and damage is avoided, and the overall reliability of the accessory bracket is improved.
Smart Images

Figure CN223040042U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of brackets, in particular to a fitting bracket and an electronic device bracket. Background Art
[0002] Electronic devices such as mobile phones, tablet computers, and cameras have developed by leaps and bounds. As a powerful tool, electronic devices have greatly facilitated users' lives and work. To facilitate users' better use of electronic devices, electronic devices can usually be installed on electronic device brackets, and the electronic device brackets can fix the electronic devices, so that users can obtain a better use experience.
[0003] In related technologies, in order to expand the thermal imaging function of an electronic device, the electronic device can be externally connected to a thermal imaging module, so that the electronic device expands the thermal imaging detection function. Correspondingly, a corresponding structure also needs to be provided on the electronic device bracket to clamp the thermal imaging module. In related technologies, the electronic device bracket includes a connecting member and a fitting bracket. The connecting member is connected to the fitting bracket. The connecting member is used to clamp the electronic device, and the fitting bracket is used to clamp the thermal imaging module. Specifically, the fitting bracket includes a first clamping plate and a second clamping plate which are oppositely arranged. The first clamping plate and the second clamping plate can respectively abut against the surfaces on the opposite sides of the thermal imaging module, so as to realize the clamping of the thermal imaging module.
[0004] However, it is easy for the first clamping plate and the second clamping plate to become loose, so that the thermal imaging module is easily detached from the fitting bracket, and further the thermal imaging module is easily damaged. Therefore, the reliability of the fitting bracket in related technologies is poor. Summary of the Utility Model
[0005] The utility model discloses a fitting bracket and an electronic device bracket to solve the problem of poor reliability of the fitting bracket.
[0006] To solve the above problems, the utility model adopts the following technical solutions:
[0007] A fitting bracket is applied to an electronic device bracket and is used to install a thermal imaging module for communication connection with a mobile terminal. The fitting bracket includes a bracket body and a limiting member;
[0008] The bracket body is provided with a receiving cavity which has a viewing window and an installation opening arranged at intervals. The receiving cavity is used to receive the thermal imaging module. The thermal imaging module can be put into the receiving cavity through the installation opening, and the viewing window can be opposite to the lens of the thermal imaging module. The limiting member is used to limit the thermal imaging module from moving in the direction towards the installation opening.
[0009] An electronic device bracket includes a connecting member, a handle, and the above-mentioned accessory bracket. The connecting member is used to connect a mobile terminal, and the accessory bracket is used to mount a thermal imaging module for communicating with the mobile terminal. The accessory bracket is connected to at least one of the connecting member and the handle.
[0010] The technical solution adopted by the present utility model can achieve the following beneficial effects:
[0011] In the accessory bracket disclosed in the present utility model, the thermal imaging module can be installed in the accommodation cavity, and the movement of the thermal imaging module along the direction towards the installation opening is restricted by the limiting member. In this solution, the accommodation cavity provides a stable installation space for the thermal imaging module. Compared with the clamping solution in the related art, the accommodation cavity in the present application will not become loose, so it is not easy to cause the risk of the thermal imaging module falling off the accessory bracket. At the same time, the limiting member can also restrict the movement of the thermal imaging module along the direction towards the installation opening, so that the limiting member can limit the thermal imaging module, further avoiding the risk of the thermal imaging module falling off the accessory bracket. Therefore, the technical solution disclosed in the present application has higher reliability compared with the technical solution in the related art. Description of the Drawings
[0012] The drawings described herein are used to provide a further understanding of the present utility model and form a part of the present utility model. The schematic embodiments of the present utility model and their descriptions are used to explain the present utility model and do not constitute an improper limitation to the present utility model. In the drawings:
[0013] Figure 1 is an exploded view of the accessory bracket disclosed in the embodiment of the present utility model;
[0014] Figure 2 is a schematic structural view of the accessory bracket disclosed in the embodiment of the present utility model;
[0015] Figure 3 is a schematic structural view of the bracket main body of the accessory bracket disclosed in the embodiment of the present utility model;
[0016] Figure 4 and Figure 5 is a schematic structural view of the electronic device bracket disclosed in the embodiment of the present utility model.
[0017] Description of the Reference Numerals:
[0018] 100 - Accessory Bracket, 110 - Bracket Body, 1101 - Accommodation Chamber, 1102 - Installation Opening, 111 - Cylinder Body, 111a - First Port, 111b - Second Port, 1111 - First Plate Body, 1112 - Second Plate Body, 1113 - Third Plate Body, 1114 - Fourth Plate Body, 112 - End Plate, 1121 - Visual Window, 113 - Protrusion Portion, 1131 - Threaded Hole, 114 - Avoidance Notch, 120 - Limiting Member, 121 - Cover Body, 1211 - Connection Hole, 122 - Locking Member, 140 - Buffer Portion, 141 - Accommodation Groove, 150 - Elastic Compression Portion, 160 - Rotating Shaft, 170 - First Connection Structure, 180 - Second Connection Structure
[0019] 200 - Connecting Member
[0020] 300 - Handle
[0021] 400 - Thermal Imaging Module, 410 - Electrical Connection Interface
[0022] 500 - Mobile Terminal Detailed Embodiment
[0023] To make the objectives, technical solutions and advantages of the present utility model clearer, the technical solutions of the present utility model will be clearly and completely described below in conjunction with specific embodiments of the present utility model and the corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present utility model.
[0024] The following will detail the technical solutions disclosed in each embodiment of the present utility model with reference to the drawings.
[0025] As Figures 1 to 5 shown, an embodiment of the present utility model discloses an accessory bracket 100. The accessory bracket 100 is applied to an electronic device bracket and is used to install a thermal imaging module 400 for communication connection with a mobile terminal 500. Here, it means that in order to expand the functions of the mobile terminal 500, the mobile terminal 500 can be externally connected with a thermal imaging module 400, so that the mobile terminal 500 has the thermal imaging detection function of the externally connected thermal imaging module 400. The mobile terminal 500 disclosed in the embodiments of the present application may be a smart phone, a tablet computer, an e - book reader, a wearable device (such as a smart watch), an electronic game console, etc. The embodiments of the present application do not limit the specific types of the mobile terminal 500. The disclosed accessory bracket 100 includes a bracket body 110 and a limiting member 120.
[0026] The bracket main body 110 is the main component of the accessory bracket 100. The bracket main body 110 is provided with a receiving cavity 1101 for receiving the thermal imaging module 400.
[0027] The receiving cavity 1101 has a viewing window 1121 and an installation opening 1102 which are spaced apart. The installation opening 1102 is used to communicate the receiving cavity 1101 with the external space. At this time, the thermal imaging module 400 can be placed into the receiving cavity 1101 through the installation opening 1102. Or, the thermal imaging module 400 can be taken out of the receiving cavity 1101 through the installation opening 1102. That is to say, the thermal imaging module 400 can only be installed into the receiving cavity 1101 or detached from the bracket main body 110 through the installation opening 1102.
[0028] The viewing window 1121 can be opposite to the lens of the thermal imaging module 400. The viewing window 1121 is used for information transmission between the thermal imaging module 400 and external objects or information reception from the outside. The viewing window 1121 is used to expose the lens of the thermal imaging module 400 so that the thermal imaging module 400 can work properly. Here, the viewing window 1121 can be a through hole. At this time, at least part of the lens of the thermal imaging module 400 can extend out of the receiving cavity 1101 through the through hole. Or, the lens of the thermal imaging module 400 can be located inside the receiving cavity 1101, but the lens can be arranged opposite to the through hole. Or, the viewing window 1121 can be a transparent area, which can be understood as a solid area capable of transmitting light. At this time, a glass or light-transmitting resin can be covered on the through hole opened on the bracket main body 110 to form the viewing window 1121. Of course, the viewing window 1121 can also be other structures, and the specific structure of the viewing window is not limited in this article.
[0029] The limiting member 120 is used to limit the movement of the thermal imaging module 400 in the direction towards the installation opening 1102. At this time, when the thermal imaging module 400 is placed in the receiving cavity, the limiting member 120 can limit the movement of the thermal imaging module 400 in the direction of the installation opening 1102, thereby limiting the thermal imaging module 400 in the receiving cavity 1101, thus avoiding the risk of the thermal imaging module 400 falling out of the receiving cavity 1101 through the installation opening 1102. Here, it can also be understood that when the thermal imaging module 400 is placed in the receiving cavity 1101, the limiting member 120 can interfere with the thermal imaging module 400.
[0030] At this time, the limit member 120 can have two states. When the limit member 120 is in the first state, the limit member 120 is used to limit the movement of the thermal imaging module 400 in the direction toward the installation port 1102; at this time, when the thermal imaging module 400 is located in the accommodating cavity 1101, the limit member 120 is in a position to interfere with the thermal imaging module 400, so that the thermal imaging module 400 cannot be taken out of the accommodating cavity 1101 through the installation port 1102, and therefore the thermal imaging module is confined in the accommodating cavity 1101.
[0031] When the stopper 120 is in the second state, the stopper 120 releases the restriction on the thermal imaging module 400 moving in the direction toward the installation opening 1102. At this time, the stopper 120 is in a position where it does not interfere with the thermal imaging module 400, and the stopper 120 does not affect the thermal imaging module 400 from normally entering and exiting the accommodating cavity 1101 through the installation opening 1102.
[0032] During the specific assembly process, the limiting member 120 is first in the second state, and then the thermal imaging module 400 is placed into the accommodating cavity 1101 through the installation opening 1102 . Finally, the limiting member 120 is switched to the first state to confine the thermal imaging module 400 in the accommodating cavity 1101 .
[0033] Optionally, the stopper 120 here can be a block, which is slidably connected to the bracket body 110. When the stopper 120 is in the first state, the block slides to the position where the installation port 1102 is located to cover at least a part of the installation port 1102. When the stopper 120 is in the second state, the block slides to a position staggered from the installation port 1102, and the block does not cover the installation port 1102. In addition, the stopper 120 can be a top screw, which is arranged on the bracket body 110. When the stopper 120 is in the first state, the top screw is screwed so that the top screw is pressed against the thermal imaging module 400, thereby limiting the thermal imaging module. When the stopper 120 is in the second state, the top screw is screwed so that the top screw is separated from the thermal imaging module 400, so that the thermal imaging module 400 has a tendency to move.
[0034] In the embodiments disclosed in the present application, the accommodation cavity 1101 provides a stable installation space for the thermal imaging module 400. Compared with the clamping solutions in the related art, the accommodation cavity 1101 in the present application will not become loose, so it is not easy to cause the risk of the thermal imaging module 400 falling off the accessory bracket 100. At the same time, the limiting member 120 can also limit the movement of the thermal imaging module 400 in the direction towards the installation opening 1102, so that the limiting member 120 can limit the thermal imaging module 400, further avoiding the risk of the thermal imaging module 400 falling off the accessory bracket 100. Therefore, the technical solution disclosed in the present application has higher reliability compared with the technical solutions in the related art.
[0035] In addition, in the related art, the first clamping plate and the second clamping plate only clamp on the surfaces of the two opposite sides of the thermal imaging module 400, and most of the area of the thermal imaging module 400 is still outside the clamping space formed by the first clamping plate and the second clamping plate. Therefore, when the accessory bracket and the thermal imaging module 400 accidentally fall together, it is easy to cause damage to the thermal imaging module 400. In the embodiments disclosed in the present application, the thermal imaging module 400 can be wrapped in the accommodation cavity 1101, so that the exposed volume of the thermal imaging module 400 is small. Therefore, when the accessory bracket 100 and the thermal imaging module 400 accidentally fall together, the accessory bracket 100 is equivalent to a protective cover, which can install and protect the thermal imaging module 400, thus avoiding the risk of damage to the thermal imaging module 400, and therefore improving the safety of the thermal imaging module 400.
[0036] In the above embodiments, the thermal imaging module 400 is prone to shaking in the accommodation cavity 1101, so that the stability of the thermal imaging module 400 is poor and it is easy to cause the risk of wear of the thermal imaging module 400.
[0037] Based on this, in another alternative embodiment, the accessory bracket 100 may further include a buffer portion 140, and the buffer portion 140 may be located in the accommodation cavity 1101. The buffer portion 140 may be provided with a receiving groove 141, and the opening of the receiving groove 141 is disposed opposite to the installation opening 1102, and at least a part of the thermal imaging module 400 can be carried in the receiving groove 141. At this time, the thermal imaging module 400 is installed in the receiving groove 141 through the installation opening 1102 and the opening of the receiving groove 141, or taken out from the receiving groove 141. It can also be understood here that a layer of buffer portion 140 is filled in the accommodation cavity 1101, and the buffer portion 140 makes the thermal imaging module 400 have an interference fit with the accommodation cavity 1101.
[0038] In this solution, the buffer part 140 can enable the thermal imaging module 400 to have an interference fit with the accommodation cavity 1101, thereby effectively avoiding the risk of the thermal imaging module 400 shaking in the accommodation cavity 1101. Furthermore, the stability of the thermal imaging module 400 is improved and the risk of wear of the thermal imaging module 400 is avoided, thus increasing the service life of the thermal imaging module 400.
[0039] Optionally, the buffer part 140 can be made of materials such as silica gel and foam. Of course, the buffer part 140 can also be made of other materials with buffering properties.
[0040] In addition, the buffer part 140 can be detachably connected to the bracket main body 110. In this case, when different thermal imaging modules 400 are used, only the corresponding buffer part 140 can be replaced, so that the accessory bracket 100 can be compatible with more different types of thermal imaging modules 400.
[0041] For example, the outer shapes of the first thermal imaging module and the second thermal imaging module are different. In this case, the accessory bracket 100 is equipped with two buffer parts 140. The accommodation groove 141 of one buffer part 140 matches the first thermal imaging module, and the accommodation groove 141 of the other buffer part 140 matches the second thermal imaging module. Therefore, when the first thermal imaging module is used, the buffer part 140 matching the first thermal imaging module is installed in the accommodation cavity 1101. When the second thermal imaging module is used, the buffer part 140 matching the second thermal imaging module is installed in the accommodation cavity 1101.
[0042] In another alternative embodiment, the limiting part 120 can include a cover body 121 and a locking part 122. The cover body 121 can be rotatably connected to the bracket main body 110. Optionally, the cover body 121 and the bracket main body 110 can be rotatably connected through rotating components such as a rotating shaft 160, a hinge, and a hinge. The cover body 121 can be rotated and switched between a first position and a second position.
[0043] When the limiting part 120 is in the first state, the cover body 121 rotates to the first position, and the cover body 121 blocks the installation opening 1102 to close the accommodation cavity 1101. At this time, the cover body 121 blocks the installation opening 1102, so that the cover body 121 can interfere with the thermal imaging module 400 installed in the accommodation cavity 1101, thereby limiting the thermal imaging module 400 in the direction outside the accommodation cavity 1101, and further preventing the thermal imaging module 400 from falling out of the accommodation cavity 1101.
[0044] When the limiting member 120 is in the second state, the cover body 121 rotates to the second position, and the cover body 121 is misaligned with the mounting opening 1102 to open the accommodation cavity 1101. The misalignment between the cover body 121 and the mounting opening 1102 here means that the cover body 121 flips to a position where it does not interfere with the thermal imaging module 400. Therefore, the thermal imaging module 400 can normally enter and exit the accommodation cavity 1101 through the mounting opening 1102.
[0045] Optionally, when the cover body 121 is in the first position, the included angle between the cover body 121 and the plane where the mounting opening 1102 is located can be 0°. At this time, the cover body 121 covers the mounting opening 1102; when the cover body 121 is in the second position, the included angle between the cover body 121 and the plane where the mounting opening 1102 is located can be 90°. At this time, the mounting opening 1102 is exposed. Of course, when the cover body 121 closes or opens the accommodation cavity 1101, the included angle between the plane where the mounting opening 1102 is located and the cover body 121 is not limited to the angles described in this article, and can also be other angles. This article is only for explaining the rotation position of the cover body 121 and does not limit the specific rotation angle of the cover body 121.
[0046] In addition, when the cover body 121 is in the first position, the bracket main body 110 and the cover body 121 can be locked by the locking member 122. At this time, the locking member 122 locks the bracket main body 110 and the cover body 121, so that the cover body 121 is difficult to rotate relative to the bracket main body 110, thereby avoiding accidental rotation of the cover body 121, and thus avoiding the risk of accidental opening of the accommodation cavity 1101.
[0047] In a specific operation, when the thermal imaging module 400 needs to be installed on the accessory bracket 100, first confirm whether the cover body 121 rotates to the second position to open the accommodation cavity 1101. Then place the thermal imaging module 400 in the accommodation cavity 1101. Rotate the cover body 121 from the second position to the first position. Finally, lock the cover body 121 and the bracket main body 110 through the locking member 122. When the thermal imaging module 400 needs to be disassembled from the accessory bracket 100, first unlock the locking member 122 for the cover body 121 and the bracket main body 110 so that the cover body 121 can rotate relative to the bracket main body 110. Then rotate the cover body 121 from the first position to the second position to open the accommodation cavity 1101. Finally, take out the thermal imaging module 400 from the accommodation cavity 1101.
[0048] In the embodiment disclosed in the present application, the thermal imaging module 400 can be installed in the accommodating cavity 1101, and the accommodating cavity 1101 can be closed by the cover 121. At the same time, the locking member 122 can also lock the cover 121 and the bracket body 110, thereby avoiding the risk of accidental opening of the cover 121, and further avoiding the risk of accidental separation of the thermal imaging module 400 from the accessory bracket 100. Therefore, this solution can further improve the reliability of the accessory bracket 100.
[0049] In addition, the cover 121 can seal the accommodating cavity 1101, so that the thermal imaging module 400 can be wrapped in a closed space, thereby making the exposed volume of the thermal imaging module 400 smaller or not exposed. Therefore, when the accessory bracket 100 and the thermal imaging module 400 accidentally fall, the accessory bracket 100 can provide better protection for the thermal imaging module 400, thereby further improving the safety of the thermal imaging module 400.
[0050] In another optional solution, an elastic pressing portion 150 may be provided on a side surface of the cover body 121 facing the accommodating cavity 1101. When the cover body 121 is in the first position, the end of the elastic pressing portion 150 facing away from the cover body 121 may abut against the thermal imaging module 400, and the elastic pressing portion 150 may be used to press the thermal imaging module 400 in the accommodating cavity 1101. At this time, the elastic pressing portion 150 can press the thermal imaging module 400 against a side wall of the accommodating cavity 1101 opposite to the cover body 121, so that the thermal imaging module 400 is elastically clamped by the cover body 121 and a side wall of the accommodating cavity 1101.
[0051] In this solution, when the accommodating cavity 1101 is closed, the elastic pressing portion 150 can press the thermal imaging module 400, thereby effectively avoiding the risk of the thermal imaging module 400 shaking in the accommodating cavity 1101, thereby improving the stability of the thermal imaging module 400 and avoiding the risk of wear of the thermal imaging module 400, thereby increasing the service life of the thermal imaging module 400.
[0052] Optionally, the elastic pressing portion 150 may be an elastic structure such as a spring, a spring sheet, an elastic foam, etc. Of course, the elastic pressing portion 150 may also be other elastic structures, which is not limited herein.
[0053] When the accessory bracket 100 includes the above-mentioned buffer portion 140, one side of the thermal imaging module 400 can abut against the bottom of the accommodating groove 141, and the other side can abut against the elastic pressing portion 150, so that the thermal imaging module 400 is clamped by the cover body 121 and the bottom of the accommodating groove 141.
[0054] In another alternative embodiment, a protruding portion 113 is provided in the accommodation cavity 1101, and a threaded hole 1131 may be provided on the protruding portion 113. The cover body 121 is provided with a connection hole 1211, and the locking member 122 can be threadedly connected to the threaded hole 1131 through the connection hole 1211. At this time, the locking member 122 is a threaded member. For example, the locking member 122 can be a threaded member such as a bolt or a stud.
[0055] Specifically, when it is necessary to lock the bracket body 110 and the cover body 121, one end of the locking member 122 is screwed into the threaded hole 1131 and threadedly connected to the threaded hole 1131. When the cover body 121 needs to be opened, the locking member 122 is screwed out of the threaded hole 1131, so that the cover body 121 can rotate relative to the bracket body 110.
[0056] In this solution, the protruding portion 113 is located in the accommodation cavity 1101, so the protruding portion 113 is not easily damaged, thereby improving the locking reliability between the cover body 121 and the bracket body 110, and further avoiding the risk of accidental rotation of the cover body 121.
[0057] Optionally, the locking member 122 is not limited to a threaded member, and can also be a structure such as a buckle or a magnet. Of course, the locking member 122 can also be other structures, which are not limited in this article.
[0058] In the above embodiment, the thermal imaging module 400 is electrically connected to the mobile terminal 500 through a data cable, and the data cable can extend into the accommodation cavity 1101 from the installation port 1102. However, when the cover body 121 is in the closed position, the cover body 121 is likely to press on the data cable, so the data cable is likely to affect the normal closing of the cover body 121. In addition, the cover body 121 pressing on the data cable for a long time is also likely to cause the risk of breakage of the data cable.
[0059] Based on this, in another alternative embodiment, the bracket body 110 may be provided with an avoidance notch 114, the avoidance notch 114 may communicate with the accommodation cavity 1101, and the avoidance notch 114 may be used to expose the electrical connection interface 410 of the thermal imaging module 400. The electrical connection interface 410 of the thermal imaging module 400 here refers to a structure that is inserted and matched with the interface of the data cable.
[0060] In this solution, the avoidance notch 114 can expose the electrical connection interface 410 of the thermal imaging module 400, so that the data cable does not need to extend into the accommodation cavity 1101 through the installation port 1102. Therefore, the risk of the cover body 121 pressing on the data cable is avoided, so that the cover body 121 can be normally closed, and at the same time, the risk of breakage and damage of the data cable is also avoided.
[0061] In the case where the accessory bracket 100 includes the above-mentioned buffer portion 140, part of the thermal imaging module 400 is located in the accommodating groove 141, and the electrical connection interface 410 of the thermal imaging module 400 is located outside the accommodating groove 141, so that the electrical connection interface 410 can be exposed through the avoidance notch 114. Alternatively, the buffer portion 140 is provided with a notch opposite to the avoidance notch 114, in which case the notch on the buffer portion 140 is opposite to the electrical connection interface 410 of the thermal imaging module 400, so that the electrical connection interface 410 can be exposed.
[0062] In another embodiment, the support body 110 includes a cylinder 111 and an end plate 112. The cylinder 111 has a first port 111a and a second port 111b. The end plate 112 covers the first port 111a. In this case, the inner cavity of the cylinder 111 is the accommodating cavity 1101 mentioned above. The viewing window 1121 mentioned above can be provided on the end plate 112. The stopper 120 is rotatably connected to the cylinder 111 and is located on the side where the second port 111b is located. In this case, the second port 111b is the installation port 1102 mentioned above.
[0063] In this solution, the support body 110 has a simple structure and is easy to process and manufacture.
[0064] In the above embodiment, the viewing window 1121 may be opened on the end plate 112 . At this time, the optical lens of the thermal imaging module 400 faces the side of the viewing window 1121 , and the side of the thermal imaging module 400 away from the optical lens faces the installation port 1102 .
[0065] When the accessory bracket 100 includes the elastic pressing portion 150 , one side of the optical lens of the thermal imaging module 400 abuts against the end plate 112 , and the side of the thermal imaging module 400 facing away from the optical lens can abut against the elastic pressing portion 150 .
[0066] In another optional solution, the barrel 111 may include a first plate 1111, a second plate 1112, a third plate 1113 and a fourth plate 1114 connected end to end, and the first plate 1111 and the third plate 1113 may be arranged relative to each other. The second plate 1112 and the fourth plate 1114 may be arranged relative to each other. The cover 121 may be rotatably connected to the first plate 1111. In this solution, the barrel 111 is a rectangular structure, so that the accommodating cavity 1101 is a rectangular cavity, and the rectangular cavity can be compatible with thermal imaging modules 400 with more external structures, thereby further improving the compatibility of the accessory bracket 100.
[0067] Of course, the cylinder 111 is not limited to the above-mentioned rectangular structure, and can also be in a circular, trapezoidal or other structures, which are not restricted in this article. The above-mentioned avoidance notch 114 can be formed on at least one of the first plate body 1111, the second plate body 1112, the third plate body 1113 and the fourth plate body 1114.
[0068] In another alternative solution, the locking member 122 can be arranged at the edge of the side of the rotating shaft 160 away from the cover body 121. In this solution, the locking member 122 and the rotating shaft 160 can be located at the opposite ends of the cover body 121. Therefore, when the cover body 121 is locked, the opposite ends of the cover body 121 are connected to the bracket main body 110. Therefore, the cover body 121 is more evenly stressed and is not prone to the situation of unilateral lifting. Therefore, the stability and reliability of the locking of the cover body 121 are improved.
[0069] In order to further improve the expansion performance of the electronic device bracket or the mobile terminal 500, in another alternative embodiment, the electronic device bracket further includes a handle 300 and a connecting member 200 for connecting the mobile terminal 500. Here, the connecting member is used to fix the mobile terminal 500 in the electronic device bracket. The handle is used to realize the handheld operation of the electronic device bracket. The accessory bracket 100 is used to connect to at least one of the handle 300 and the connecting member 200. At this time, the accessory bracket 100 can be connected to the handle 300 and the connecting member 200 respectively. That is to say, both the handle 300 and the connecting member 200 are fixedly connected to the accessory bracket 100. Or, the accessory bracket 100 is only connected to one of the handle 300 and the connecting member 200. For example, the accessory bracket 100 is connected to the handle 300, and the handle 300 is connected to the connecting member 200.
[0070] This solution further improves the expansion performance of the electronic device bracket and the mobile terminal 500.
[0071] In another alternative solution, a first connection structure 170 can be provided on the outer surface of the bracket main body 110, and the first connection structure 170 can be used to connect the handle 300. In this solution, the first connection structure 170 is provided on the bracket main body 110. Therefore, no other components are required when connecting to the handle 300, thereby simplifying the assembly method.
[0072] In another alternative embodiment, the limiting member 120 is provided with a second connection structure 180, and the second connection structure 180 is used to connect to the connecting member 200. In the case where the limiting member 120 includes the cover body 121, the second connection structure 180 can be provided on the surface of the cover body 121 on the side away from the accommodating cavity 1101. The effect of this solution is the same as that of the above solution, and will not be elaborated in this article.
[0073] Optionally, the above-mentioned first connection structure 170 and second connection structure 180 can be snap connection, riveting, shaft connection and other structures. Of course, the first connection structure 170 and the second connection structure 180 can also be other structures, which are not limited in this article.
[0074] Based on the accessory bracket 100 disclosed in the embodiments of the present application, the embodiments of the present application also disclose an electronic device bracket, and the disclosed electronic device bracket includes the accessory bracket 100 described in any of the above embodiments.
[0075] The electronic device bracket disclosed in the present application further includes a connector 200 and a handle 300. The connector 200 is connected to the accessory bracket 100, and the connector 200 is used to install the mobile terminal 500. The accessory bracket 100 is connected to at least one of the connector 200 and the handle 300. At this time, the connector 200, the handle 300 and the accessory bracket 100 can be a split independent structure. The accessory bracket 100 can be connected to both the handle 300 and the connector 200, or the accessory bracket 100 can be connected to the handle 300, and the handle 300 is connected to the connector 200. Or, the accessory bracket 100 can be connected to the connector 200, and the connector 200 is connected to the handle 300.
[0076] At least two of the connector 200, the handle 300 and the accessory bracket 100 are integrally formed. For example, the accessory bracket 100 can be integrally formed with the handle 300 and the connector 200. Or, the accessory bracket 100 and the handle 300 are integrally formed, and the handle 300 is snap-connected or thread-connected to the connector 200. Of course, other connection methods can also be adopted for the connector 200, the handle 300 and the accessory bracket 100, which are not limited in this article.
[0077] In a specific solution, two first connection structures 170 can be provided on the outer side of the bracket body 110, and a second connection structure 180 is provided on the cover body 121. The outer surfaces of the first plate body 1111 and the third plate body 1113 of the bracket body 110 are both provided with the first connection structure 170. At this time, the handle 300 of the electronic device bracket is connected to the first connection structure 170 provided on the third plate body 1113. Another accessory of the mobile terminal 500 or the electronic device bracket is connected to the first connection structure 170 on the first plate body 1111. The connector 200 is connected to the second connection structure 180. Of course, there are also other connection methods for the accessory bracket 100, the connector 200, the handle 300 and other accessories, which are not limited in this article.
[0078] In the above embodiments of the present utility model, the differences between the various embodiments are mainly described. As long as the different optimized features between the various embodiments are not contradictory, they can be combined to form a better embodiment. Considering the simplicity of the text, it will not be elaborated here.
[0079] The above are only embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, various modifications and variations can be made to the present utility model. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the scope of the claims of the present utility model.
Claims
1. An accessory bracket, the accessory bracket (100) being applied to an electronic device bracket, the accessory bracket (100) being used to install a thermal imaging module (400) for communication connection with a mobile terminal (500), characterized in that: The accessory bracket (100) comprises a bracket body (110) and a limiting member (120); The support body (110) is provided with a housing cavity (1101), the housing cavity (1101) having a viewing window (1121) and a mounting opening (1102) arranged at intervals, the housing cavity (1101) being used to accommodate the thermal imaging module (400); the thermal imaging module (400) can be placed in the housing cavity (1101) through the mounting opening (1102), the viewing window (1121) can be opposite to a lens of the thermal imaging module (400); the limiting member (120) is used to limit the thermal imaging module (400) from moving in a direction toward the mounting opening (1102).
2. The accessory bracket according to claim 1, characterized in that: The accessory bracket (100) further includes a buffer portion (140), wherein the buffer portion (140) is located in the accommodating cavity (1101), and the buffer portion (140) is provided with an accommodating groove (141), wherein the notch of the accommodating groove (141) is arranged opposite to the mounting opening (1102), and at least a portion of the thermal imaging module (400) can be carried in the accommodating groove (141).
3. The accessory bracket according to claim 1, characterized in that: The limiting member (120) comprises a cover body (121) and a locking member (122); the cover body (121) is rotatably connected to the bracket body (110), and the cover body (121) can be rotatably switched between a first position and a second position; When the limiting member (120) is in the first state, the cover body (121) rotates to the first position, the cover body (121) blocks the installation opening (1102) to close the accommodating cavity (1101), and the bracket body (110) and the cover body (121) can be locked by the locking member (122); When the limiting member (120) is in the second state, the locking member (122) is separated from at least one of the cover body (121) and the bracket body (110), and the cover body (121) can be rotated to the second position, and the cover body (121) is misaligned with the installation opening (1102) to open the accommodating cavity (1101).
4. The accessory bracket according to claim 3, characterized in that: An elastic pressing portion (150) is provided on a surface of one side of the cover body (121) facing the accommodating cavity (1101); when the cover body (121) is in the first position, an end of the elastic pressing portion (150) facing away from the cover body (121) can abut against the thermal imaging module (400); the elastic pressing portion (150) is used to press the thermal imaging module (400) into the accommodating cavity (1101).
5. The accessory bracket according to claim 3, characterized in that: A protrusion (113) is provided in the accommodating cavity (1101), a threaded hole (1131) is provided on the protrusion (113), a connecting hole (1211) is provided on the cover body (121), and the locking member (122) can be threadedly connected to the threaded hole (1131) through the connecting hole (1211).
6. The accessory bracket according to claim 3, characterized in that: The bracket body (110) and the cover body (121) are rotatably connected via a rotating shaft (160), and the locking member (122) is arranged on an edge of a side of the rotating shaft (160) away from the cover body (121).
7. The accessory bracket according to claim 1, characterized in that: The bracket body (110) is provided with a clearance notch (114), the clearance notch (114) is in communication with the accommodating cavity (1101), and the clearance notch (114) is used to expose the electrical connection interface (410) of the thermal imaging module (400).
8. The accessory bracket according to claim 1, characterized in that: The support body (110) comprises a cylinder (111) and an end plate (112); the cylinder (111) has a first port (111a) and a second port (111b); the end plate (112) covers the first port (111a); the viewing window (1121) is arranged on the end plate (112); the stopper (120) is connected to the cylinder (111) and is located on the side where the second port (111b) is located; the second port (111b) is the installation port (1102).
9. The accessory bracket according to claim 8, characterized in that: The cylinder (111) comprises a first plate (1111), a second plate (1112), a third plate (1113) and a fourth plate (1114) connected end to end; the first plate (1111) and the third plate (1113) are arranged opposite to each other, and the second plate (1112) and the fourth plate (1114) are arranged opposite to each other.
10. The accessory bracket according to claim 1, characterized in that: The electronic device bracket further comprises a handle (300) and a connector (200) for connecting to a mobile terminal (500), and the accessory bracket (100) is used to connect to at least one of the handle (300) and the connector (200).
11. The accessory bracket according to claim 10, characterized in that: The outer surface of the bracket body (110) is provided with a first connection structure (170), and the first connection structure (170) is used to connect the handle (300).
12. The accessory bracket according to claim 10, characterized in that: The limiting member (120) is provided with a second connection structure (180), and the second connection structure (180) is used to connect the connecting member (200).
13. An electronic equipment bracket, characterized in that: The invention comprises a connecting member (200), a handle (300) and an accessory bracket (100) according to any one of claims 1 to 12, wherein the connecting member (200) is used to connect to a mobile terminal (500), the accessory bracket (100) is used to install a thermal imaging module (400) for communicating with the mobile terminal (500), and the accessory bracket (100) is connected to at least one of the connecting member (200) and the handle (300).