Full-automatic intelligent camera equipment
Through the lifting, rotating and rotational components of the fully automatic intelligent camera device, combined with clamping and cleaning functions, the problem that existing equipment cannot meet personal shooting needs is solved, and all-round shooting and cleaning is achieved, and satisfactory travel photos are taken.
Patent Information
- Application Number
- CN202510649710.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2025-07-25
AI Technical Summary
Existing photography equipment such as cameras and mobile phones require outsiders to take photos, but the viewing angle is not satisfactory, the selfie stick is limited and the shooting range is narrow, making it difficult to take satisfactory travel photos.
Design a fully automatic intelligent camera device, including lifting, rotating and rotating components, combining clamping and cleaning components to achieve all-round adjustment and cleaning of the camera.
It realizes all-round automatic shooting of the camera, meets personal needs, takes satisfactory travel photos, and cleans the camera to improve the shooting effect.
Smart Images

Figure CN120378747A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of scenic area equipment, and particularly to a fully automatic intelligent camera device. Background Art
[0002] With the improvement of people's living standards, the tourism industry has developed rapidly. More and more people like to travel in their free time to enjoy the beautiful scenery. Therefore, photo-taking devices are inevitably used.
[0003] Most of the existing photo-taking devices are cameras and mobile phones, and the auxiliary device is a selfie stick. However, most of these existing devices have limitations. Firstly, cameras and mobile phones need to be operated by others for taking pictures, and the perspectives selected by others mostly cannot satisfy the person being photographed, and the desired effects are always not achieved. Using a selfie stick with a mobile phone can indeed achieve the effect of self-taking, but the pictures taken are always incomplete. At the same time, due to the limitation of the length of the selfie stick itself, the shooting range is not wide. Especially on the bridges in the water towns, it is very difficult to take pictures of people in the beautiful southern scenery, and tourists will inevitably have regrets during the journey.
[0004] Therefore, a fully automatic intelligent camera device is proposed. Summary of the Invention
[0005] The purpose of the present invention is to provide a fully automatic intelligent camera device, which can achieve all-round automatic shooting, greatly facilitating tourists to take pictures, and at the same time allowing tourists to record beautiful scenery according to personal needs, enabling tourists to take the most satisfactory tourist photos.
[0006] To achieve the above purpose, the present invention provides the following technical solutions: A fully automatic intelligent camera device includes a base, a lifting platform slidably connected to the base through a lifting component, a rotating platform rotatably connected to the lifting platform through a rotating component, a camera rotatably connected to the lifting platform through a self-rotating component, a fixing claw arranged between the rotating platform and the camera, a clamping component arranged on the fixing claw, and a cleaning component arranged on the base. The lifting component is arranged inside the base, the rotating component is arranged inside the lifting platform, the self-rotating component is arranged inside the rotating platform. The clamping component is used to clamp the shooting device after the lifting platform rises, and the cleaning component is used to loosen the shooting device after the lifting platform descends and cooperate with the base to clean the camera.
[0007] Preferably, the lifting component includes a lifting motor, a lifting gear, a lifting rack, a limiting groove, and a limiting block, namely, a lifting motor fixed inside the base, a lifting gear connected to the output end of the motor, a lifting rack fixed to the left lower end of the lifting platform, a limiting groove opened inside the base, and a limiting block arranged at the lower end of the lifting platform. The lifting gear meshes with the lifting rack, and the limiting block is slidably connected to the limiting groove.
[0008] Preferably, the rotating member includes a rotating motor fixed in the lifting table, a rotating column rotatably connected to the rotating motor, and a rotating bearing disposed between the rotating column and the inner wall of the lifting table, and the rotating table is connected to the upper side of the rotating column.
[0009] Preferably, the self-rotating member includes a self-rotating motor fixed in the rotating table and a self-rotating column rotatably connected to the lower end of the self-rotating motor.
[0010] Preferably, the clamping member includes a clamping groove opened at the lower end of the lifting table, a clamping column slidably connected in the clamping groove, a clamping ring disposed at the upper end of the clamping column, a clamping elastic member disposed on the clamping column, a pressing ring slidably connected to the rotating column, a tightening groove opened in the pressing ring, a clamping table disposed at the lower end of the rotating column, a clamping groove opened in the fixed claw, and a spring disposed on the inner side of the fixed claw. An abutting block is disposed directly below the lifting table in the base, and the abutting block cooperates with the lower end of the clamping column. The upper end of the clamping elastic member abuts against the inner wall of the lifting table. The lower end of the clamping ring fits against the upper end of the pressing ring. A sliding block is disposed at the upper end of the fixed claw, and the sliding block cooperates with the tightening groove. The clamping groove is used to clamp the photographing and fixing device, and both ends of the spring are fixedly connected to the sliding block and the rotating column respectively.
[0011] Preferably, the cleaning member is a cleaning cylinder disposed on the base, and the cleaning cylinder cooperates with the camera.
[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: By providing a lifting member, a rotating member, and a self-rotating member, the present invention can achieve all-round adjustment of the camera, and the camera can stop at any height and angle required by tourists. Since the camera may have low pixels or no beauty function, by providing a clamping member, tourists can place their mobile phones in the clamping groove and then take pictures through the lifting member, the rotating member, and the self-rotating member. Thus, satisfactory photos can be taken. By providing a cleaning member, the camera can be wiped, thereby achieving cleaning of the camera. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is an overall schematic diagram of the present invention; Figure 2 is a cross-sectional schematic diagram of the lifting member of the present invention; Figure 3 is Figure 2 an enlarged view of part A of Figure 4 is a cross-sectional schematic diagram of the clamping member of the present invention; Figure 5 is Figure 4 an enlarged view of part B of Figure 6 is an overall schematic diagram of the cleaning member of the present invention; In the figure: 101, base; 101a, lifting component; 101a-1, lifting motor; 101a-2, lifting gear; 101a-3, lifting rack; 101a-4, limit groove; 101a-5, limit block; 102, lifting platform; 102a, rotating component; 102a-1, rotating motor; 102a-2, rotating column; 102a-3, rotating bearing; 103, rotating table; 103a, self-rotating component; 103a-1, self-rotating motor; 103a-2, self-rotating column; 104, camera; 105, fixing claw; 105a, clamping component; 105a-1, clamping groove; 105a-2, clamping column; 105a-3, clamping ring; 105a-4, clamping elastic member; 105a-5, pressing ring; 105a-6, tightening groove; 105a-7, clamping table; 105a-8, clamping slot; 105a-9, spring; 105a-10, abutting block; 105a-11, sliding block; 105b, cleaning component; 105b-1, cleaning cylinder. Detailed implementation mode
[0014] In order to clearly and completely describe the technical solutions in the embodiments of the present invention, and make the features and advantages more obvious and understandable, the following will make a detailed description of the specific implementation modes of the present invention in conjunction with the drawings of the specification. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the scope of protection of the present invention. Embodiment 1
[0015] Please refer to Figures 1 to 3 , the present invention provides a fully automatic intelligent imaging device, including a base 101, a lifting platform 102 slidably connected to the base 101 through a lifting component 101a, a rotating table 103 rotatably connected to the lifting platform 102 through a rotating component 102a, a camera 104 rotatably connected to the lifting platform 102 through a self-rotating component 103a, a fixing claw 105 arranged between the rotating table 103 and the camera 104, a clamping component 105a arranged on the fixing claw 105, and a cleaning component 105b arranged on the base 101. The lifting component 101a is arranged inside the base 101, the rotating component 102a is arranged inside the lifting platform 102, the self-rotating component 103a is arranged inside the rotating table 103. The clamping component 105a is used to clamp the imaging device after the lifting platform 102 rises, and the cleaning component 105b is used to loosen the imaging device after the lifting platform 102 descends and cooperate with the base 101 to clean the camera 104.
[0016] Specifically, the lifting component 101a includes a lifting motor 101a-1, a lifting gear 101a-2, a lifting rack 101a-3, a limiting groove 101a-4, and a limiting block 101a-5. The lifting motor 101a-1 fixed within the base 101, the lifting gear 101a-2 connected to the motor output end, the lifting rack 101a-3 fixed to the lower left side of the lifting platform 102, the limiting groove 101a-4 opened within the base 101, and the limiting block 101a-5 provided at the lower end of the lifting platform 102. The lifting gear 101a-2 meshes with the lifting rack 101a-3, and the limiting block 101a-5 is slidably connected to the limiting groove 101a-4.
[0017] Working principle: When the device is in use, first start the lifting motor 101a-1. The lifting motor 101a-1 operates to drive the rotation of the lifting gear 101a-2. Since the lifting gear 101a-2 meshes with the lifting rack 101a-3 and the lifting rack 101a-3 is fixed to the lower left side of the lifting platform 102, during the rotation of the lifting gear 101a-2, it will drive the lifting rack 101a-3 to reciprocate up and down, thereby driving the lifting platform 102 to reciprocate up and down. The lifting platform 102 can stop at any position where the tourist wants to stop, which solves the problem that tourists cannot take pictures with the scenery integrated into their photos to a certain extent. Embodiment 2
[0018] Please refer to Figures 1 to 3 The rotating component 102a includes a rotating motor 102a-1 fixed within the lifting platform 102, a rotating column 102a-2 rotatably connected to the rotating motor 102a-1, and a rotating bearing 102a-3 provided between the rotating column 102a-2 and the inner wall of the lifting platform 102. The rotating table 103 is connected to the upper side of the rotating column 102a-2. The self-rotating component 103a includes a self-rotating motor 103a-1 fixed within the rotating table 103 and a self-rotating column 103a-2 rotatably connected to the lower end of the self-rotating motor 103a-1. The cleaning component 105b is a cleaning cylinder 105b-1 provided on the base 101, and the cleaning cylinder 105b-1 cooperates with the camera 104.
[0019] The remaining structure is the same as that of Embodiment 1.
[0020] Working principle: When the lifting platform 102 is adjusted to the position desired by the tourists and further adjustment of the position is required, the rotation motor 102a-1 inside the lifting platform 102 can be started. Since the rotating column 102a-2 is rotationally connected to the rotation motor 102a-1 and a rotary bearing 102a-3 is provided between the rotating column 102a-2 and the inner wall of the lifting platform 102, the operation of the rotation motor 102a-1 will drive the rotating column 102a-2 to rotate 360 degrees. Additionally, after starting the self-rotation motor 103a-1 inside the rotating platform 103, it will drive the self-rotating column 103a-2 to rotate, and then drive the camera 104 at the lower end of the self-rotating column 103a-2 to rotate.
[0021] Since the camera 104 is exposed to the air for a long time, it is prone to dust accumulation, resulting in unclear shooting. When the camera 104 is covered with dust, start the lifting motor 101a-1, use the lifting gear 101a-2 and the lifting rack 101a-3 to adjust the camera 104 into the cleaning cylinder 105b-1, and then start the self-rotation motor 103a-1 to drive the camera 104 to rotate. Since a wiping cloth is provided inside the cleaning cylinder 105b-1, during the movement of the camera 104, the wiping cloth wipes the camera 104, thereby achieving the cleaning of the camera 104. Embodiment 3
[0022] Please refer to Figures 1 to 3 The clamping member 105a includes a clamping groove 105a-1 opened at the lower end of the lifting platform 102, a clamping column 105a-2 slidably connected in the clamping groove 105a-1, a clamping ring 105a-3 provided at the upper end of the clamping column 105a-2, a clamping elastic member 105a-4 provided on the clamping column 105a-2, a pressing ring 105a-5 slidably connected to the rotating column 102a-2, a tightening groove 105a-6 opened in the pressing ring 105a-5, a clamping table 105a-7 provided at the lower end of the rotating column 102a-2, a clamping groove 105a-8 opened in the fixed claw 105, and a spring 105a-9 provided on the inner side of the fixed claw 105. An abutting block 105a-10 is provided directly below the lifting platform 102 in the base 101, the abutting block 105a-10 cooperates with the lower end of the clamping column 105a-2, the upper end of the clamping elastic member 105a-4 abuts against the inner wall of the lifting platform 102, the lower end of the clamping ring 105a-3 fits against the upper end of the pressing ring 105a-5, a sliding block 105a-11 is provided at the upper end of the fixed claw 105, the sliding block 105a-11 cooperates with the tightening groove 105a-6, the clamping groove 105a-8 is used to clamp the shooting fixing device, and both ends of the spring 105a-9 are fixedly connected to the sliding block 105a-11 and the rotating column 102a-2 respectively.
[0023] The remaining structures are the same as those in Embodiment 2.
[0024] Working principle: When the lifting platform 102 is close to the base 101, the abutting block 105a-10 arranged directly below the lifting platform 102 in the base 101 and the clamping column 105a-2 slidably connected in the clamping groove 105a-1 are in an abutting state. At this time, the clamping elastic member 105a-4 is in a compressed state; when the lifting motor 101a-1 is started, since the lifting gear 101a-2 and the lifting rack 101a-3 are engaged, therefore, under the movement of the lifting gear 101a-2 and the lifting rack 101a-3, the lifting platform 102 will move upward, that is, move away from the base 101. When the lifting platform 102 moves upward to a certain distance, the abutting block 105a-10 and the clamping column 105a-2 are disengaged. At this time, since the clamping elastic member 105a-4 has a strong elasticity and the clamping column 105a-2 and the clamping ring 105a-3 are fixedly connected, the clamping column 105a-2 will move downward, that is, move toward the end close to the base 101 under the action of the clamping elastic member 105a-4, thereby driving the clamping ring 105a-3 to move downward; the lower end of the clamping ring 105a-3 is in contact with the upper end of the pressing ring 105a-5. During the downward movement of the clamping ring 105a-3, it will drive the pressing ring 105a-5 to move downward as well; a tightening groove 105a-6 is formed in the pressing ring 105a-5, the tightening groove 105a-6 cooperates with the sliding block 105a-11, a clamping groove 105a-8 is formed in the fixed claw 105, both ends of the spring 105a-9 are fixedly connected to the sliding block 105a-11 and the rotating column 102a-2 respectively, and the tightening groove 105a-6 is a bevel surface. A chamfer is provided above the sliding block 105a-11. Therefore, during the downward movement of the pressing ring 105a-5, it will squeeze the sliding block 105a-11, thereby driving the sliding block 105a-11 to move toward the direction close to the rotating column 102a-2. At this time, the spring 105a-9 is in a compressed state. Therefore, when the lifting platform 102 is at the lowest point, the gap in the clamping groove 105a-8 is the largest. At this time, the tourist can place the mobile phone with the camera turned on in the clamping groove 105a-8. Similarly, when it rises to the highest point, the squeezing is maximized, and the mobile phone can be fixed better; in addition, this bevel surface is made of an elastic material and can match mobile phones of various models.
[0025] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.
Claims
1. A fully automatic intelligent camera device, characterized in that: It includes a base (101), a lifting platform (102) slidably connected to the base (101) through a lifting component (101a), a rotating platform (103) rotatably connected to the lifting platform (102) through a rotating component (102a), a camera (104) rotatably connected to the lifting platform (102) through a self-rotating component (103a), a fixed claw (105) arranged between the rotating platform (103) and the camera (104), a clamping component (105a) arranged on the fixed claw (105), and a cleaning component (105b) arranged on the base (101). The lifting component (101a) is arranged inside the base (101), the rotating component (102a) is arranged inside the lifting platform (102), the self-rotating component (103a) is arranged inside the rotating platform (103). The clamping component (105a) is used to clamp the photographing device after the lifting platform (102) rises. The cleaning component (105b) is used to loosen the photographing device after the lifting platform (102) descends and cooperate with the base (101) to clean the camera (104).
2. The fully automatic intelligent imaging device according to claim 1, wherein: The lifting component (101a) includes a lifting motor (101a-1), a lifting gear (101a-2), a lifting rack (101a-3), a limiting groove (101a-4), and a limiting block (101a-5), including the lifting motor (101a-1) fixed inside the base (101), the lifting gear (101a-2) connected to the motor output end, the lifting rack (101a-3) fixed on the left lower end of the lifting platform (102), the limiting groove (101a-4) opened inside the base (101), and the limiting block (101a-5) arranged at the lower end of the lifting platform (102). The lifting gear (101a-2) meshes with the lifting rack (101a-3), and the limiting block (101a-5) is slidably connected to the limiting groove (101a-4).
3. The fully automatic intelligent imaging device according to claim 2, characterized in that: The rotating component (102a) includes a rotating motor (102a-1) fixed inside the lifting platform (102), a rotating column (102a-2) rotatably connected to the rotating motor (102a-1), and a rotating bearing (102a-3) arranged between the rotating column (102a-2) and the inner wall of the lifting platform (102). The rotating platform (103) is connected to the upper end side of the rotating column (102a-2).
4. The fully automatic intelligent imaging device according to claim 3, characterized in that: The self-rotating component (103a) includes a self-rotating motor (103a-1) fixed inside the rotating platform (103) and a self-rotating column (103a-2) rotatably connected to the lower end of the self-rotating motor (103a-1).
5. The fully automatic intelligent imaging device according to claim 4, characterized in that: The clamping component (105a) includes a clamping groove (105a-1) opened at the lower end of the lifting table (102), a clamping column (105a-2) slidably connected in the clamping groove (105a-1), a clamping ring (105a-3) arranged at the upper end of the clamping column (105a-2), a clamping elastic member (105a-4) arranged on the clamping column (105a-2), a downward pressing ring (105a-5) slidably connected to the rotating column (102a-2), a tightening groove (105a-6) opened in the downward pressing ring (105a-5), a clamping table (105a-7) arranged at the lower end of the rotating column (102a-2), a clamping groove (105a-8) opened in the fixed claw (105), and a spring (105a-9) arranged on the inner side of the fixed claw (105). A butting block (105a-10) is arranged directly below the lifting table (102) in the base (101). The butting block (105a-10) cooperates with the lower end of the clamping column (105a-2). The upper end of the clamping elastic member (105a-4) abuts against the inner wall of the lifting table (102). The lower end of the clamping ring (105a-3) fits with the upper end of the downward pressing ring (105a-5). A sliding block (105a-11) is arranged at the upper end of the fixed claw (105). The sliding block (105a-11) cooperates with the tightening groove (105a-6). The clamping groove (105a-8) is used for clamping the photographing and fixing device. Both ends of the spring (105a-9) are fixedly connected to the sliding block (105a-11) and the rotating column (102a-2) respectively.
6. The fully automatic intelligent imaging device according to claim 5, wherein: The cleaning component (105b) is a cleaning cylinder (105b-1) arranged on the base (101). The cleaning cylinder (105b-1) cooperates with the camera (104).