Camera mounting structure

By setting a heat dissipation component on the camera mounting frame, including a cooling fan and a control board, the heating effect caused by the heat dissipation problem of the camera is solved, the shooting performance and time are improved, and the interference of the structure on the shooting is reduced.

CN223428496UActive Publication Date: 2025-10-10SHENZHEN TILTA TECH CO LTD
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Patent Information

Application Number
CN202422160266.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-09-01
Filing Date
2024-09-03
Publication Date
2025-10-10
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

In the prior art, digital cameras or sports cameras have a heat dissipation problem. It is difficult to effectively solve the problem that the heat generated by the heat dissipation during use of the camera affects the shooting performance.

Method used

A camera mounting frame and a heat dissipation component are designed. The heat dissipation component is arranged on the camera mounting frame and a heat dissipation fan and a control board are used to achieve an effective heat dissipation effect.

Benefits of technology

It effectively solves the heating effect caused by heat dissipation problems of the camera, improves shooting performance and duration, and reduces the interference of the structure on shooting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a camera mounting structure, which comprises a camera mounting frame and a heat dissipation assembly, and is characterized in that the camera mounting frame is used for mounting a camera; and the heat dissipation assembly is arranged on the camera mounting frame and is used for dissipating heat of the camera. According to the invention, the heat dissipation assembly is arranged on the camera mounting frame, the camera mounting frame can sleeve the camera in a relatively attached manner, and the heat dissipation assembly is arranged on the camera mounting frame, so that the heat dissipation assembly can conveniently dissipate heat of the camera, the camera is effectively prevented from being overheated, and a user can conveniently shoot.
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Description

Technical Field

[0001] The utility model relates to the technical field of photographic accessories, in particular to a camera mounting structure Background Art

[0002] At present, most digital cameras or sports cameras emit heat from various components during use, causing the camera to heat up during use, which can easily affect the performance of the digital camera or sports camera and affect the user's shooting. Utility Model Content

[0003] The main purpose of this application is to provide a camera mounting structure that can be relatively snugly mounted on the outside of a camera, allowing the heat dissipation component to dissipate heat from the camera.

[0004] In order to solve the above technical problems, the technical solutions provided in this article are as follows:

[0005] A camera mounting structure, comprising:

[0006] Camera mounting frame, used for mounting the camera;

[0007] A heat dissipation component is arranged on the camera mounting frame and is used to dissipate heat for the camera.

[0008] In one aspect, the camera mounting frame includes a full camera cage or a half camera cage for mounting a camera.

[0009] In one aspect, the heat dissipation assembly is disposed at the base of the full camera cage or the base of the half camera cage.

[0010] In one aspect, the camera mounting frame is a full camera cage, comprising a base, a first frame arm, a second frame arm, and a third frame arm, wherein the base, the first frame arm, the second frame arm, and the third frame arm are sequentially connected to form an installation space for installing a camera, the heat dissipation assembly is provided on the base, the base is located at the bottom of the camera, and the base is mounted with the camera via a first connector; or

[0011] The camera mounting frame is a camera half cage, which includes side arms and a base. The side arms are connected to the base, and the base is located at the bottom of the camera. The heat dissipation assembly is arranged on the base, and the base is used to mount the camera via a first connector.

[0012] On the one hand, the base of the full camera cage or the base of the half camera cage has an installation cavity, the heat dissipation assembly is arranged in the installation cavity, and the base is provided with an air inlet and an air outlet, and the air inlet and the air outlet are connected to the installation cavity.

[0013] On the one hand, the base of the full camera cage or the base of the half camera cage has a first side and a second side, the air inlet is arranged on the first side, the air outlet is arranged on the second side, and the air outlet can be connected to the camera air inlet.

[0014] On the one hand, a cushion layer is provided on the second side, and a through hole is opened in the cushion layer. The through hole can be aligned and connected to the air outlet so that the air outlet can be connected to the camera air inlet.

[0015] In one aspect, the heat dissipation assembly includes a heat dissipation fan and a control board, wherein the control board and the heat dissipation fan are both disposed in the installation cavity, and the control board and the heat dissipation fan are electrically connected.

[0016] In one aspect, the air outlet comprises a plurality of air outlets, and the cavity wall of the installation cavity is provided with a plurality of diverter plates, each of the diverter plates is located between two adjacent air outlets to form a plurality of air guide channels.

[0017] In one aspect, the control panel is provided with a switch and a power supply interface, the base is provided with a first opening and a second opening, and the power supply interface and the switch are exposed in the first opening and the second opening respectively.

[0018] On the one hand, the cooling fans include multiple ones, and the installation cavity includes a first cavity, a second cavity and a control board accommodating cavity, wherein two cooling fans are respectively arranged in the first cavity and the second cavity, and the control board is arranged in the control board accommodating cavity.

[0019] On the one hand, a boss is provided in the installation cavity, and the boss is provided between the first cavity and the second cavity. The first connecting member is provided on the boss, and one end of the boss has a wire passage. The air outlet and the air inlet include multiple air outlets, some of which are connected to the first cavity, and the other part of the air inlet and outlet are connected to the second cavity.

[0020] On the one hand, the cavity wall of the first cavity is provided with multiple diverter plates, and the diverter plates are located between two adjacent air outlets in the first cavity to form multiple first air guide channels; the cavity wall of the second cavity is inclinedly provided with an air guide surface to form a second air guide channel.

[0021] In one aspect, the inner wall of the first air guiding channel is further provided with a first air guiding slope facing the air outlet, the first air guiding slope being used to guide the airflow of the first air guiding channel to the air outlet; and / or,

[0022] The boss has an avoiding passage at one end, so that part of the second air guide passage extends to the first cavity, and the inner wall of the second air guide passage is provided with a second air guide slope extending from the second cavity to the shunt plate closest to the second cavity of the first cavity, for guiding the air flow of the second air guide passage to the air outlet.

[0023] In one aspect, the height of the mounting cavity is 10-20mm.

[0024] In one aspect, the camera mounting frame is a camera full cage, the connection between the first frame arm and the second frame arm, and the connection between the second frame arm and the third frame arm have protrusions protruding towards the camera lens side, the opposite sides of the two protrusions are provided with limiting posts, and a screw is further arranged on each protrusion, which can lock the limiting posts, so that the two limiting posts can be clamped on both sides of the camera.

[0025] In one aspect, the camera mounting frame is replaced by a camera bottom plate, the heat dissipation assembly is arranged on the camera bottom plate, and a first connecting piece for connecting to the camera is further arranged on the camera bottom plate.

[0026] Advantages:

[0027] In this paper, the heat dissipation assembly is arranged on the camera mounting frame, the camera mounting frame can be more closely fitted on the camera, the heat dissipation assembly is arranged on the camera mounting frame, so that the heat dissipation assembly can dissipate heat for the camera, so as to effectively avoid overheating of the camera, thereby facilitating the user to take pictures. BRIEF DESCRIPTION OF DRAWINGS

[0028] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed in the description of the embodiments or the prior art will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings shown.

[0029] Figure 1 The schematic diagram of the camera mounting structure in this paper is mounted on the camera.

[0030] Figure 2 The schematic diagram of the camera provided in this paper is provided.

[0031] Figure 3 Another schematic diagram of the camera provided in this paper is provided.

[0032] Figure 4 The schematic diagram of the camera mounting structure in this paper is provided.

[0033] Figure 5This is a schematic diagram of another camera installation structure in this article.

[0034] Figure 6 Schematic diagram of the exploded structure of the camera installation structure in this article.

[0035] Figure 7 This is a schematic diagram of the exploded structure from another perspective of the camera installation structure in this article.

[0036] Figure 8 This is a diagram of the camera mounting frame used in this article.

[0037] Figure 9 Schematic diagram of a camera mounting structure in another embodiment provided herein.

[0038] Figure 10 Schematic diagram of a camera mounting structure in another embodiment provided herein.

[0039] Figure 11 This is a schematic diagram of a camera installation structure in another embodiment provided herein.

[0040] Figure 12 A schematic diagram of a camera installation structure in another embodiment is provided for this article.

[0041] Figure 13 This article provides a cross-sectional schematic diagram of a camera mounting structure in another embodiment.

[0042] Icon Description:

[0043] 100, camera; 101, camera air inlet; 102, camera air outlet; 103, camera limiter;

[0044] 10. Camera mounting structure; 20. Installation space;

[0045] 1. Camera mounting frame; 11. Camera cage; 111. Base; 1111. Mounting cavity; 1112. Air inlet; 1113. Air outlet; 1114. First opening; 1115. First side; 1116. Second side; 1117. Air guide channel; 11171. First air guide channel; 11172. Second air guide channel; 11173. First air guide slope; 11174. Second air guide slope; 11175. Sidewall; 1118. First cavity; 1119. Second cavity; 11191. Baffle; 1 1192, control panel housing cavity; 11193, air guide surface; 112, first frame arm; 113, second frame arm; 114, third frame arm; 115, protrusion; 1151, screw; 116, limit column; 12, camera half cage; 121, side arm; 13, first connector; 14, cold shoe interface; 15, hanging hole; 16, cushion layer; 161, through hole; 17, manifold; 18, boss; 181, wire passage; 182, threaded hole interface; 183, through hole; 184, avoidance passage; 19, second opening;

[0046] 2. Heat dissipation assembly; 21. Cooling fan; 22. Control panel; 221. Switch; 222. Power supply interface;

[0047] 3. Camera base plate.

[0048] The purpose, features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0049] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0050] It should be noted that all directional indications in the embodiments of the present application (such as up, down, left, right, front, back, etc.) are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0051] In addition, the descriptions of "first", "second", etc. in this application are for descriptive purposes only and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, "and / or" in the full text includes three solutions. Taking A and / or B as an example, it includes technical solution A, technical solution B, and technical solution that satisfies both A and B. In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the ability of ordinary technicians in this field to implement them. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by this application.

[0052] Please refer to 1-9. This document provides a camera mounting structure 10, including a camera mounting frame 1 and a heat dissipation assembly 2. The camera mounting frame 1 is used to be detachably mounted on the camera 100; the heat dissipation assembly 2 is disposed on the camera mounting frame 1. In this document, the camera mounting frame 1 can be relatively snugly mounted around the camera 100, while the heat dissipation assembly 2 is disposed on the camera mounting frame 1. This arrangement facilitates the heat dissipation assembly 2 to dissipate heat from the camera 100, thereby facilitating the user's shooting process, for example, increasing the shooting time. On the other hand, it can be seen that the camera mounting frame 1 with the heat dissipation assembly 2 installed is relatively snugly mounted on the camera 100, occupying a relatively small amount of space, thereby greatly avoiding interference with the shooting structure.

[0053] Specifically, see Figure 1 or Figure 9The camera mounting frame 1 may include a full camera cage 11 or a half camera cage 12. The full camera cage 11 is a wrapping expansion accessory added around the camera 100, and the half camera cage 12 is a camera cage that half wraps the camera 100. The full camera cage 11 and the half camera cage 12 can protect the camera 100 and have different types and numbers of expansion interfaces, such as a 1 / 4 thread interface, a 3 / 8 thread interface, a cold shoe interface 14, a NOTO slider, an Aka slider, a Manfrotto slider, etc., which are indispensable photographic accessories for most photography users. In this article, a heat dissipation component 2 is provided on the full camera cage 11 or the half camera cage 12. On the basis of realizing the above functions, the heat dissipation function of the half camera cage 12 or the full camera cage 11 is added. In addition, the heat dissipation component 2 is integrated into the full camera cage 11 or the half camera cage 12, which occupies a relatively small space for shooting, greatly considering the user's shooting space. For example, some cooling fans 21 are currently available on the market, primarily for cooling the camera 100. These fans are shaped like a heat sink. During use, after the user opens the screen, the heat sink can be installed in the original location where the camera 100 screen is located. This occupies a relatively large space, as the screen typically needs to be open when using the heat sink. Here, the heat sink assembly 2 is integrated into the camera cage 11 or half cage 12. This improves the user experience, effectively taking into account the user's shooting space.

[0054] Specifically, see Figures 4-8 If the camera mounting frame 1 is a full camera cage 11, the full camera cage 11 includes a base 111, a first frame arm 112, a second frame arm 113, and a third frame arm 114. The base 111, the first frame arm 112, the second frame arm 113, and the third frame arm 114 are sequentially connected to form an installation space 20 for installing the camera 100. The heat dissipation assembly 2 is provided on the base 111. The base 111 is located at the bottom of the camera 100. The base 111 is fixedly mounted on the camera 100 via the first connecting member 13. In this arrangement, the base 111 is fixedly mounted on the camera 100 via the first connecting member 13, the second frame arm 113 is located at the top of the camera 100, and the first frame arm 112 and the third frame arm 114 are respectively located on both sides of the camera 100. For details, please refer to Figure 1 、 Figure 3 The camera mounting frame 1 is a full camera cage 11. The connection between the first frame arm 112 and the second frame arm 113, as well as the connection between the second frame arm 113 and the third frame arm 114, has a protrusion 115 protruding toward the lens side of the camera 100. A limiting column 116 is provided at the opposite position of the two protrusions 115. It is worth noting that the opposite position is the side of the two protrusions 115 facing the camera 100. Please refer to Figures 4-5The limiting post 116 can be fixed or removed from the protrusion 115 via screws 1151. Specifically, the limiting post 116 is elastically mounted on the protrusion, that is, a spring (not shown) is disposed between the limiting post 116 and the protrusion 115. The spring allows the limiting post 116 to be released under the action of the spring force after removal. On the other hand, the spring allows the limiting post 116 to be locked to the protrusion 115 by the screws 1151. The spring force can support the limiting post 116, thereby reducing the installation gap between the limiting post 116 and the camera 100. In summary, this facilitates the removal and installation of the limiting post 116. The limiting post 116 can be clamped in the camera limiting openings 103 on both sides of the camera 100, so that the camera 100 can be more stably installed in a three-point positioning manner on the camera cage 11. The arrangement of the two protrusions 115 allows the camera mounting frame 1 to be more closely arranged around the camera 100. The protrusions 115 can also be provided with some expansion interfaces, such as a cold shoe interface 14 or a hanging hole 15 for hanging a hexagram rope.

[0055] See also Figure 9 If the camera mounting frame 1 is a camera half-cage 12, the camera half-cage 12 includes a side arm 121 and a base 111. The side arm 121 is connected to the base 111. The base 111 is located at the bottom of the camera 100. The heat dissipation assembly 2 is disposed on the base 111. The base 111 is fixedly mounted to the camera 100 via the first connecting member 13. It is worth noting that the side arm 121 can include one side arm 121 or two side arms 121.

[0056] Specifically, see Figures 4-8The base 111 of both the camera half cage 12 and the camera full cage 11 is provided with a heat dissipation assembly 2 disposed in the mounting cavity 1111. The base 111 is provided with an air inlet 1112 and an air outlet 1113. The air inlet 1112 and the air outlet 1113 are connected to the mounting cavity 1111. When the heat dissipation assembly 2 is activated, air can enter through the air inlet 1112 and be blown out through the air outlet 1113. The heat dissipation assembly 2 can be a semiconductor cooler, or specifically, the heat dissipation assembly 2 includes a heat dissipation fan 21 and a control board 22. The control board 22 and the heat dissipation fan 21 are both disposed in the mounting cavity 1111, and the control board 22 and the heat dissipation fan 21 are electrically connected. The control board 22 can control the heat dissipation fan 21 to start working, so that air flows, thereby reducing the heat of the camera 100. It is worth noting that the control board 22 may be provided with a switch 221 and a power supply interface 222. The power supply interface 222 can be exposed at the first opening 1114 on the base 111, that is, the power supply interface can be seen through the first opening 1114, which is convenient for the user to plug in the power cord. The control board 22 can be powered on through the power supply interface 222. For example, the camera 100 and the base 111 can be connected via the power cord so that the camera 100 can power on the control board 22. The switch 221 is electrically connected to the control board 22 and exposed at the second opening 19 on the base 111. The switch 221 can be provided with three gears, such as off, first gear, second gear, etc. After the user powers on the control board 22 through the power supply interface 222, the control board 22 can control the cooling fan 21 to work according to the switch 221 signal by toggling the switch 221 to different gears, thereby cooling the camera 100. Specifically, the cooling fan 21 can be electrically connected to the control board 22 by welding wires or through a port. For details, please refer to Figure 1 and Figure 5 The power supply interface 222 and the switch 221 may be located on the same side of the base 11 or on different sides of the base 111 .

[0057] Specifically, see Figure 2 The camera 100 generally has a camera air inlet 101 and a camera air outlet 102. The base 111 of the camera full cage 11 or the base 111 of the camera half cage 12 has a first side 1115 and a second side 1116. The air inlet 1112 is provided on the first side 1115, and the air outlet 1113 is provided on the second side 1116. The air outlet 1113 can be connected to the camera air inlet 101. The air outlet 1113 of the camera mounting frame 1 herein can be aligned with and connected to the camera air inlet 101, allowing the wind blown by the cooling fan 21 to flow through the camera 100 and be blown out through the camera air outlet 102. Compared to the surface cooling of cameras 100 currently on the market, the camera mounting structure 10 herein allows the blown wind to flow from the camera air inlet 101 through the interior of the camera 100 and be blown out through the camera air outlet 102, thereby effectively cooling the camera 100.

[0058] In one embodiment, see Figures 6-7 The base 111 of the full camera cage 11 or the second side 1116 of the base 111 of the half camera cage 12 may also be provided with a cushioning layer 16. The cushioning layer 16 is provided on the second side 1116. After the cushioning layer 16 is installed, it is located between the bottom of the camera 100 and the second side 1116 of the base 111. This prevents loosening and provides a buffering effect to protect the camera 100. Furthermore, the cushioning layer 16 between the bottom of the camera 100 and the second side 1116 can reduce leakage, allowing air blown by the cooling fan 21 to effectively flow into the camera air inlet 101. It is worth noting that the cushioning layer 16 is provided with a through hole 161, which can be aligned with the air outlet 1113 to facilitate communication between the air outlet 1113 and the camera air inlet 101.

[0059] See also Figures 6-7 In one aspect, the air outlet 1113 includes multiple, and the cavity wall of the installation cavity 1111 is provided with multiple diverter plates 17, each diverter plate 17 is located between two adjacent air outlets 1113 to form multiple air guide channels 1117. Specifically, you can refer to Figures 6-7 The bottom wall of the installation cavity 1111 is provided with a plurality of air outlets 1113. A diverter plate 17 can be placed between two adjacent air outlets 1113 to disperse the air flow of the cooling fan 21 to flow out through a plurality of air guide channels 1117, thereby facilitating the uniformity of the air flow from the air outlet 1113. Figures 6-7In some embodiments, the cooling fan 21 includes multiple fans, and the installation cavity 1111 includes a first cavity 1118 and a second cavity 1119, wherein two cooling fans 21 are respectively arranged in the first cavity 1118 and the second cavity 1119, and the control board 22 is arranged in the second cavity 1119. Such an arrangement can effectively facilitate heat dissipation. Specifically, herein, a boss 18 is provided in the installation cavity 1111 to separate the installation cavity 1111 into the first cavity 1118 and the second cavity 1119, and the boss 18 is provided with a first connecting member 13, and the air outlet 1113 and the air inlet 1112 include multiple fans, wherein some of the air inlets 1112 and the air outlet 1113 are connected to the first cavity 1118, and another part of the air inlet 1112 and the air outlet 1113 are connected to the second cavity 1119. In this embodiment, the base 111 generally needs to fix the camera 100. Therefore, a boss 18 can be provided in the installation cavity 1111 in this article for connecting the first connecting member 13 to fix the camera 100. The provision of the boss 18 can increase the connection stability. On the other hand, the cavity walls of the first cavity 1118 and the second cavity 1119 in this article are provided with an air outlet 1113 and an air inlet 1112 connecting the first cavity 1118 and the second cavity 1119. When the cooling fan 21 starts working, the airflow can flow through the first cavity 1118 and the second cavity 1119 through the air inlet 1112, and then blow to the camera air inlet 101 through the air outlet 1113 of the first cavity 1118 and the second cavity 1119. Specifically, the control board 22 is housed in the second cavity 1119. A wire channel 181 is provided between one end of the boss 18 and the wall of the mounting cavity 1111, facilitating the connection of the wires from the cooling fan 21 in the first cavity 1118 to the control board 22 through the channel 181. Specifically, the first connector 13 may be a screw interface, such as a 3 / 8" or 1 / 4" screw. The boss 18 also includes a threaded hole 182, which may be a 1 / 4" or 3 / 8" threaded interface, facilitating the expansion and connection of the camera mounting frame 1 to photographic accessories such as stabilizers and tripod heads.A plurality of through holes 183 are formed on the first side 1115 of the base 111 so that the first connecting member 13 can pass through the through holes 183 to connect to the boss 18 and the camera 100. With this arrangement, the user puts the camera mounting frame 1 over the camera 100 and then screws the first connecting member 13 into the through holes 183 of the base 111 so that the camera is fixedly mounted on the base 111. The camera can then be fixed to the camera limit opening 103 through the limiting post 116 on the protrusion 115 to complete the installation of the camera 100 and the camera mounting frame 1. During disassembly, the user can use a screwdriver to unscrew the first connecting member 13 so that the camera can be removed from the base 111, and remove the screws 1151 on the limiting post 116 to remove the limiting post 116, so that the camera mounting frame 1 can be removed from the camera 100. On the other hand, the through holes 183 also make it easier for screws on photographic accessories such as stabilizers and tripod heads to be connected to the threaded hole interface 182 of the boss 18.

[0060] Specifically, a baffle 11191 is also provided in the second cavity 1119 to form a control board accommodating cavity 11192 in the second cavity 1119. The control board 22 is accommodated in the control board accommodating cavity 11192. One end of the baffle 11191 also has a wire passing channel 181 to facilitate the wires of multiple cooling fans 21 to pass through the wire passing channel 181 and be connected to the control board 22.

[0061] More specifically, see Figure 8 and Figures 12-13There may be a situation where, after the camera 100 is installed on the camera mounting frame, the camera air inlet 101 is relatively closer to the first cavity 1118. In this case, the present invention can be provided with multiple diverter plates 17 on the wall of the first cavity 1118. The diverter plates 17 are located between two air outlets 1113 in adjacent first cavities 1118 to form multiple first air guide channels 11171. This allows the airflow in the first cavity 1118 to flow out through the multiple first air guide channels 11171, thereby improving the uniformity of the airflow. The wall of the second cavity 1119 is provided with an inclined air guide surface 11193 to form a second air guide channel 11172. This allows the airflow in the second cavity 1119 to flow out from the air outlet 1113 through the second air guide channel 11172, thereby effectively dissipating heat for the camera 100. Specifically, the air guide surface 11193 can be an inclined surface or a slightly curved surface. On the other hand, the inner wall of the first air guiding channel 11171 is further provided with a first air guiding slope 11173 facing the air outlet 1113. The first air guiding slope 11173 can be a protrusion of the annular side wall 11175 of the installation cavity 1111 toward the cooling fan 21, and the inclined surface is facing the inclined surface of the air outlet 1113, and the inclined surface is directed toward the air outlet 1113, so that the wind flow is guided to the air outlet 1113. The first air guiding slope 11173 is used to guide the wind flow of the first air guiding channel 11171 out Air outlet 1113; It can be seen that when the wind from the cooling fan 21 blows toward the first air guide channel 11171, part of the wind flow will flow toward the air outlet 1113, and another part of the wind flow may flow in the direction away from the air outlet 1113. This part of the wind flow is easily lost. Therefore, a first air guide slope 11173 is provided in this embodiment, so that the wind flow of the first air guide channel 11171 can be guided to the air outlet 1113, so that the wind flow can be blown out from the air outlet 1113 to a greater extent.

[0062] In another embodiment, one end of the boss 18 has an avoidance channel 184, so that part of the second air guide channel 11172 can extend to the first cavity 1118, and the inner wall of the second air guide channel 11172 is provided with a second air guide slope 11174. The second air guide slope 11174 extends from the second cavity 1119 to the diverter plate 17 of the first cavity 1118 closest to the second cavity 1119, and is inclined to guide the airflow of the second air guide channel 11172 to the air outlet 1113.

[0063] The height of the mounting cavity 1111 in this article can be set to 10mm-20mm. This setting facilitates the installation of the cooling fan 21, and the base 111 of the camera mounting structure 10 in this article can also have a relatively suitable height. Normally, the mounting cavity 1111 of the camera mounting frame 1 is relatively small, and the air outlet effect at the bottom of the camera mounting frame 1 is relatively poor; the mounting cavity 1111 of the base 111 of the camera mounting frame 1 is relatively large, which makes the base 111 of the camera mounting structure 10 of the camera 100 thicker, and the design of the camera mounting frame 1 is usually lightweight and convenient. The thick base 111 of the camera mounting structure 10 will make the design of the camera mounting frame 1 more cumbersome. The height of the mounting cavity 1111 in this article can be set to 10mm-20mm, so that the thickness of the base 111 of the camera mounting frame 1 is relatively moderate.

[0064] In another embodiment, see Figure 10 The camera mounting structure 10 may include a camera base plate 3 and a heat sink assembly 2. The camera base plate 3 is provided with a mounting cavity 1111. The heat sink assembly 2 is disposed in the mounting cavity 1111. The base 111 is provided with an air inlet 1112 and an air outlet 1113. The air inlet 1112 and the air outlet 1113 communicate with the mounting cavity 1111. The structure within the mounting cavity 1111 may be consistent with the structure within the mounting cavity 1111 of the base 111 in the aforementioned camera full cage 11 or camera half cage 12, and will not be discussed further here.

[0065] The above description is only a preferred embodiment of the present application and does not limit the patent scope of the present application. All equivalent structural transformations made by using the contents of the present application specification and drawings under the concept of the present application, or directly / indirectly applied in other related technical fields are included in the patent protection scope of the present application.

Claims

1. A camera mounting structure, characterized in that: include: A camera mounting frame (1), used for mounting a camera; A heat dissipation component (2), arranged on the camera mounting frame (1), for dissipating heat for the camera; The camera mounting frame (1) comprises a full camera cage (11) or a half camera cage (12), wherein the full camera cage (11) or the half camera cage (12) is used to mount a camera, and the heat dissipation assembly (2) is arranged in a mounting cavity of a base (111) of the full camera cage (11) or the base (111) of the half camera cage (12), wherein the base (111) is provided with an air inlet (1112) and an air outlet (1113), wherein the air inlet (1112) and the air outlet (1113) are provided. The opening (1113) is connected to the installation cavity (1111), the base (111) of the camera full cage (11) or the base (111) of the camera half cage (12) has a first side (1115) and a second side (1116), the air inlet (1112) is arranged on the first side (1115), the air outlet (1113) is arranged on the second side (1116), and the air outlet (1113) can be connected to the camera air inlet (101).

2. The camera mounting structure according to claim 1, wherein: The camera mounting frame (1) is a camera full cage (11), the camera full cage (11) comprising a base (111), a first frame arm (112), a second frame arm (113) and a third frame arm (114), the base (111), the first frame arm (112), the second frame arm (113) and the third frame arm (114) being sequentially connected to form an installation space (20) for installing a camera, the heat dissipation assembly (2) being arranged on the base (111), and the base (111) being provided with a camera via a first connecting member (13); or, The camera mounting frame (1) is a camera half cage (12), the camera half cage (12) comprises a side arm (121) and a base (111), the side arm (121) is connected to the base (111), the heat dissipation assembly (2) is arranged on the base (111), and the base (111) is used to mount a camera via a first connecting member (13).

3. The camera mounting structure according to claim 1, wherein: The second side (1116) is provided with a cushion layer (16), and the cushion layer (16) is provided with a through hole (161), and the through hole (161) can be aligned and connected to the air outlet (1113), so that the air outlet (1113) can be connected to the camera air inlet (101).

4. The camera mounting structure according to claim 1 or 3, wherein: The heat dissipation assembly (2) comprises a heat dissipation fan (21) and a control board (22); the control board (22) and the heat dissipation fan (21) are both arranged in the installation cavity (1111); and the control board (22) and the heat dissipation fan (21) are electrically connected.

5. The camera mounting structure according to claim 4, wherein: The air outlets (1113) include a plurality of air outlets, and the cavity wall of the installation cavity (1111) is provided with a plurality of diverter plates (17), and each of the diverter plates (17) is located between two adjacent air outlets (1113) to form a plurality of air guide channels (1117).

6. The camera mounting structure according to claim 4, wherein: The control panel (22) is provided with a switch (221) and a power supply interface (222); the base (111) is provided with a first opening (1114) and a second opening (19); the power supply interface (222) and the switch (221) are respectively exposed at the first opening (1114) and the second opening (19).

7. The camera mounting structure according to claim 4, wherein: The cooling fans (21) include multiple ones, and the installation cavity (1111) includes a first cavity (1118), a second cavity (1119) and a control board accommodating cavity (11192), wherein two cooling fans (21) are respectively arranged in the first cavity (1118) and the second cavity (1119), and the control board (22) is arranged in the control board accommodating cavity (11192).

8. The camera mounting structure according to claim 7, wherein: A boss (18) is provided in the installation cavity (1111), and the boss (18) is provided between the first cavity (1118) and the second cavity (1119). The boss (18) can pass through a first connecting member (13), and the camera is installed on the base (111) through the first connecting member (13). The air outlet (1113) and the air inlet (1112) include a plurality of air outlets (1113) and air inlets (1112), wherein some of the air inlets (1112) and air outlets (1113) are connected to the first cavity (1118), and another part of the air inlet (1112) and air outlet (1113) are connected to the second cavity (1119).

9. The camera mounting structure according to claim 8, wherein: The cavity wall of the first cavity (1118) is provided with a plurality of diverter plates (17), and the diverter plates (17) are located between two adjacent air outlets (1113) in the first cavity (1118) to form a plurality of first air guide channels (11171); the cavity wall of the second cavity (1119) is provided with an inclined air guide surface (11193) to form a second air guide channel (11172).

10. The camera mounting structure according to claim 9, wherein: The inner wall of the first air guiding channel (11171) is further provided with a first air guiding slope (11173) facing the air outlet (1113), and the first air guiding slope (11173) is used to guide the air flow of the first air guiding channel (11171) to the air outlet (1113); and / or, One end of the boss (18) has an avoidance channel (184) so ​​that the second air guide channel (11172) extends to the first cavity (1118), and the inner wall of the second air guide channel (11172) is provided with a second air guide slope (11174), and the second air guide slope (11174) extends from the second cavity (1119) to the diverter plate (17) of the first cavity (1118) closest to the second cavity (1119), and is used to guide the airflow of the second air guide channel (11172) to the air outlet (1113).

11. The camera mounting structure according to claim 1 or 3, wherein: The height of the installation cavity (1111) is 10 mm to 20 mm.

12. The camera mounting structure according to claim 2, wherein: The camera mounting frame (1) is a full camera cage (11); the connection between the first frame arm (112) and the second frame arm (113), and the connection between the second frame arm (113) and the third frame arm (114) are provided with a protrusion (115) protruding toward the camera lens side; limiting columns (116) are provided at opposite positions of the two protrusions (115); each of the protrusions is further provided with a screw (1151); the screw (1151) can lock the limiting columns (116) so that the two limiting columns (116) can be clamped on both sides of the camera.

13. The camera mounting structure according to claim 1, wherein: The camera mounting frame (1) is replaced with a camera base plate (3), the heat dissipation assembly (2) is arranged on the camera base plate (3), and the camera base plate (3) is also provided with a first connecting member (13) for connecting to a camera.