Camera damping structure
By designing buffer components and camera components on the camera, convenient adjustment of vibration buffering and angle is achieved, solving the problem of complex imaging and angle adjustment of cameras when vibration affects vibration, and improving user experience and operation convenience.
Patent Information
- Application Number
- CN202422424556.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-10-09
AI Technical Summary
Existing cameras are used outdoors due to vibrations to affect imaging quality, and the angle adjustment operation is complicated, especially when installed in difficult-to-direct contact positions.
A camera shock absorbing structure including a buffer assembly and a camera assembly is designed. The buffer assembly realizes vibration buffering by supporting a connecting rod, a buffer seat and a buffer spring pad, and the camera assembly realizes angle adjustment through a rotating member and an up and down moving member.
Improves the camera's vibration resistance and environmental adaptability, simplifies angle adjustment operations, and improves user experience and device manipulation.
Smart Images

Figure CN223121085U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of cameras, and specifically relates to a camera shock absorption structure. Background Art
[0002] When the existing cameras are used outdoors, the use of security cameras is often affected by external vibrations and other factors. The vibration causes a great interference to the imaging quality of the cameras, which cannot meet the needs of people.
[0003] Chinese Patent with application number CN202021966723.4 discloses a security camera with a shock absorption structure, including a mounting base, a shock absorption base and a camera body. In the utility model, by providing a pressing block, a limiting column and a shock absorption spring, pressing blocks are arranged at the bottom and the left and right sides of the camera body. A limiting column is arranged outside the pressing block, and a shock absorption spring is nested outside the limiting column. When the camera body is vibrated, it drives the pressing block to move. Among them, the limiting column moves inside the through hole. At this time, the shock absorption spring is squeezed by the pressing block, so as to buffer the vibration force of the camera body through the deformation of the shock absorption spring, reduce the vibration of the camera body, and thus achieve the shock absorption effect. The cooperation of the pressing blocks, the limiting columns and the shock absorption springs on the left and right sides and the bottom of the camera body can effectively reduce the vibration from the horizontal direction and the vertical direction, and make the shock absorption effect of the shock absorption base better.
[0004] However, when the above device is actually used for angle adjustment, it often requires manual operation, which not only increases the operation difficulty of users, but also becomes extremely inconvenient in some special occasions; although some shock absorption solutions have been proposed in the current market, there are still certain limitations in actual applications.
[0005] In view of this, the present utility model is specifically proposed. Content of the Utility Model
[0006] The technical problem to be solved by the present utility model is to overcome the deficiencies of the prior art and provide a camera shock absorption structure.
[0007] To solve the above technical problem, the basic concept of the technical solution adopted by the present utility model is:
[0008] A camera shock absorption structure includes a buffer assembly and a camera assembly;
[0009] The buffer assembly includes a support connecting rod, on one side of which there is a support rod. The support rod is connected to the buffer seat. Inside the buffer seat, there is a connecting block, and between the connecting block and the buffer seat, there is a buffer spring pad. On the top of the buffer seat, there is a support plate, and symmetrically arranged on the top of the support plate are control rods. At the top of the two control rods, there is a top rod rotatably arranged.
[0010] The camera assembly includes a connecting housing, which is connected to the top rod. On one side of the connecting housing, there is a camera support member, and at the other end of the camera support member, there is a camera.
[0011] Optionally, on one side of the support connecting rod, there is a side side plate, and on the outside of the side side plate, there are uniformly arranged no less than four fixing holes.
[0012] Optionally, on one side of the support connecting rod, there is a through hole, the support rod penetrates into the inside of the through hole, and on the top of the support connecting rod, there is a fixing wire, which contacts the support rod.
[0013] Optionally, on one side of the buffer seat, there is a buffer cavity, inside which a connecting block is slidably connected. On one side of the connecting block, there is a moving plate, and between the connecting block and one side of the buffer seat, there is a buffer spring pad.
[0014] Optionally, on the top of the support plate, there is a buffer rod, and symmetrically arranged on the outside of the buffer rod are two limiting springs. At the bottom of the control rod, there is a moving sliding rod that is slidably connected to the buffer rod, and the moving sliding rod contacts the limiting springs.
[0015] Optionally, the camera support member includes a rotating member, inside which there is a rotating disk, and on the other side of the rotating member, there is a vertical moving member.
[0016] After adopting the above technical solution, compared with the prior art, the present utility model has the following beneficial effects. Of course, any product implementing the present utility model does not necessarily need to achieve all the advantages described below simultaneously:
[0017] By arranging an improved shock absorption structure on one side of the camera, the present utility model not only improves the camera's resistance to vibration but also further optimizes its adaptability in different environments. In addition, this application also sets the functions of rotating and adjusting the vertical angle of the camera, enabling users to more conveniently adjust the angle of the camera, greatly improving the user experience. This design not only simplifies the operation steps but also facilitates the installation of the camera in positions that are difficult to directly access, thereby improving the controllability and practicality of the device.
[0018] The following further describes in detail the specific implementation manners of the present utility model in conjunction with the accompanying drawings. Description of the Drawings
[0019] The following drawings in the description are only some embodiments. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings. In the drawings:
[0020] Figure 1 is a schematic structural diagram of a camera shock absorption structure;
[0021] Figure 2 is an exploded structural view of the camera shock absorption structure from another perspective;
[0022] Figure 3 is a schematic partial structural diagram of a camera assembly;
[0023] In the drawings, the list of components represented by each reference numeral is as follows:
[0024] 1. Buffer assembly; 101. Support connecting rod; 1011. Side plate; 1012. Fixing hole; 1013. Fixing wire; 102. Support rod; 103. Buffer seat; 1031. Buffer cavity; 104. Connecting block; 1041. Moving plate; 105. Buffer spring pad; 106. Support plate; 1061. Buffer rod; 107. Limiting spring; 108. Control rod; 1081. Moving slide bar; 109. Top rod; 2. Camera assembly; 201. Connecting housing; 202. Camera support member; 2021. Rotating member; 2022. Up and down moving member; 203. Camera.
[0025] It should be noted that these drawings and text descriptions are not intended to limit the scope of the concept of the present utility model in any way, but to illustrate the concept of the present utility model to those skilled in the art by referring to specific embodiments. Specific Embodiments
[0026] Now, the present utility model will be further described in detail in conjunction with the accompanying drawings.
[0027] Please refer to Figures 1-3 As shown, in this embodiment, a camera shock absorption structure is provided, including a buffer assembly 1 and a camera assembly 2;
[0028] The buffer assembly 1 includes a support connecting rod 101. On one side of the support connecting rod 101, there is a support rod 102. The support rod 102 is connected to a buffer seat 103. Inside the buffer seat 103, there is a connecting block 104. Between the connecting block 104 and the buffer seat 103, there is a buffer spring pad 105. On the top of the buffer seat 103, there is a support plate 106. On the top of the support plate 106, control rods 108 are symmetrically arranged. At the top of the two control rods 108, a top rod 109 is rotatably arranged.
[0029] The camera assembly 2 includes a connecting housing 201. The connecting housing 201 is connected to the top rod 109. On one side of the connecting housing 201, there is a camera support member 202. At the other end of the camera support member 202, there is a camera 203.
[0030] In this utility model, by setting an improved shock-absorbing structure on one side of the camera 203, not only the shock resistance of the camera 203 is improved, but also its adaptability in different environments is further optimized. In addition, this application also sets the rotation and up-and-down angle adjustment functions of the camera 203, enabling users to more conveniently adjust the angle of the camera 203, greatly improving the user experience. This design not only simplifies the operation steps, but also provides convenience for installing the camera 203 at positions that are difficult to directly access, thereby improving the controllability and practicality of the device.
[0031] Usage method: By setting the support connecting rod 101 to connect one side, and by setting the support connecting rod 101, the buffer seat 103 on the other side can be connected. With the cooperation of the buffer spring seat, the effect of left and right buffering is achieved. By setting the support plate 106 in cooperation with the control rod 108, the effect of up and down buffering is achieved, facilitating subsequent buffering.
[0032] In this embodiment, on one side of the support connecting rod 101, there is a side side plate 1011. On the outside of the side side plate 1011, there are evenly arranged no less than four fixing holes 1012. During use, the side side plate 1011 can be conveniently fixed with connecting screws by using the fixing holes 1012, facilitating subsequent stable installation.
[0033] In this embodiment, on one side of the support connecting rod 101, there is a through hole. The support rod 102 penetrates into the inside of the through hole. On the top of the support connecting rod 101, there is a fixing wire 1013. The fixing wire 1013 contacts the support rod 102, thereby fixing the positions of the support connecting rod 101 and the support rod 102, facilitating subsequent position adjustment.
[0034] In this embodiment, a buffer cavity 1031 is formed on one side of the buffer seat 103. A connecting block 104 is slidably connected inside the buffer cavity 1031. A moving plate 1041 is arranged on one side of the connecting block 104. A buffer spring pad 105 is arranged between the connecting block 104 and one side of the buffer seat 103. The buffer spring pad 105 can enable the connecting block 104 to achieve a buffering effect, facilitating subsequent stable connection and subsequent control.
[0035] In this embodiment, a buffer rod 1061 is arranged on the top of the support plate 106. Two limiting springs 107 are symmetrically arranged outside the buffer rod 1061. A moving sliding rod 1081 that is slidably connected to the buffer rod 1061 is arranged at the bottom of the control rod 108. The moving sliding rod 1081 contacts the limiting springs 107. Through the connection of the limiting springs 107, stable connection of the device is achieved, facilitating subsequent stable buffering.
[0036] In this embodiment, the camera support member 202 includes a rotating member 2021. A rotating disc is arranged inside the rotating member 2021. An up-and-down moving member 2022 is arranged on the other side of the rotating member 2021, thereby realizing the imaging of the camera 203 and facilitating subsequent angle adjustment.
[0037] In summary, the comparative document has described a structure that can reduce vibration. The present application improves it. The provided shock-absorbing structure is on one side of the camera 203. At the same time, a structure for rotating and adjusting the up-and-down angle of the camera 203 is provided, making the device easier to adjust and facilitating subsequent control.
[0038] The present utility model is not limited to the above embodiments. Anyone should know that structural changes made under the inspiration of the present utility model, as long as they have the same or similar technical solutions as the present utility model, all fall within the protection scope of the present utility model. The technologies, shapes, and structures not described in detail in the present utility model are all well-known technologies.
Claims
1. A camera shock-absorbing structure, characterized in that, It includes a buffer component (1) and a camera component (2); The buffer component (1) includes a support connecting rod (101). On one side of the support connecting rod (101), there is a support rod (102). The support rod (102) is connected to a buffer seat (103). Inside the buffer seat (103), there is a connecting block (104). Between the connecting block (104) and the buffer seat (103), there is a buffer spring pad (105). On the top of the buffer seat (103), there is a support plate (106). On the top of the support plate (106), control rods (108) are symmetrically arranged. At the tops of the two control rods (108), a top rod (109) is rotatably arranged; The camera component (2) includes a connection housing (201). The connection housing (201) is connected to the top rod (109). On one side of the connection housing (201), there is a camera support (202). At the other end of the camera support (202), there is a camera (203).
2. The camera shock-absorbing structure according to claim 1, characterized in that, On one side of the support connecting rod (101), there is a side plate (1011). On the outside of the side plate (1011), there are uniformly arranged no less than four fixing holes (1012).
3. The camera shock absorption structure according to claim 1, characterized in that, On one side of the support connecting rod (101), there is a through hole. The support rod (102) penetrates into the inside of the through hole. On the top of the support connecting rod (101), there is a fixing wire (1013). The fixing wire (1013) contacts the support rod (102).
4. A camera shock-absorbing structure according to claim 1, characterized in that, On one side of the buffer seat (103), there is a buffer cavity (1031). Inside the buffer cavity (1031), the connecting block (104) is slidably connected. On one side of the connecting block (104), there is a moving plate (1041). Between the connecting block (104) and one side of the buffer seat (103), there is a buffer spring pad (105).
5. The camera shock-absorbing structure according to claim 1, characterized in that, On the top of the support plate (106), there is a buffer rod (1061). On the outside of the buffer rod (1061), two limit springs (107) are symmetrically arranged. At the bottom of the control rod (108), there is a moving slide rod (1081) that is slidably connected to the buffer rod (1061). The moving slide rod (1081) contacts the limit spring (107).
6. The camera shock-absorbing structure according to claim 1, characterized in that, The camera support (202) includes a rotating part (2021). Inside the rotating part (2021), there is a rotating disc. On the other side of the rotating part (2021), there is an up-and-down moving part (2022).
Citation Information
Patent Citations
Security camera with damping structure
CN213686118U