CN219623691U - Network spherical camera capable of rotating in all directions - Google Patents
Network spherical camera capable of rotating in all directions Download PDFInfo
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- CN219623691U CN219623691U CN202320811636.9U CN202320811636U CN219623691U CN 219623691 U CN219623691 U CN 219623691U CN 202320811636 U CN202320811636 U CN 202320811636U CN 219623691 U CN219623691 U CN 219623691U
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Abstract
The utility model relates to the technical field of network spherical cameras, in particular to a network spherical camera capable of rotating in all directions, which comprises a connecting plate and a vertical plate, wherein a first cross rod is rotationally connected below the inner side of the vertical plate, a first shell is fixedly connected to the inner side of the first cross rod, a rotating device is arranged above the inner side of the vertical plate, and a monitoring device is arranged below the first shell. The output shaft of the first motor can drive the first bevel gear to rotate through the second bevel gear, the first bevel gear drives the second cross rod to rotate, the second cross rod can drive the first belt pulley to rotate, the first belt pulley drives the second belt pulley to rotate through the belt, the second belt pulley drives the first shell to rotate through the first cross rod, the first shell can drive the network spherical camera body to rotate through the disc and the like, the longitudinal monitoring angle of the network spherical camera body is adjusted, and therefore the practical use effect of the device is improved.
Description
Technical Field
The utility model relates to the technical field of network spherical cameras, in particular to a network spherical camera capable of rotating in all directions.
Background
With the current growth of open kids and ageing, more and more young people cannot have excessive time to leave for the care of families while bearing working pressure, the demands of people on cameras are also increasing increasingly, and according to the data feedback of the household monitoring camera market, the demands of people on hardware are higher, and the management on families is completed without time and space limitation, so that the network spherical camera capable of rotating in all directions is more popular.
An omni-directional rotatable webcam, such as the grant bulletin number CN 218236887U, includes a spherical camera. Through the micro motor in the start-up electromechanical case, drive the rotation of bearing, thereby drive spherical camera and carry out 360 degrees omnidirectional rotations, still can insert in proper order in second jack through the bolt, the fourth jack, in the third jack, make spherical camera can vertically carry out the regulation of angle, realize multi-angle regulation, the use visual angle that enlarges, more be convenient for people's use, above-mentioned spherical camera in is in proper order insert the second jack through the bolt, the fourth jack, in the third jack, realize spherical camera longitudinal degree's regulation, but, this kind of longitudinal angle regulation's mode still adopts manual operation, the bolt is located the jack after, spherical camera is unable in vertical automatic angle regulation, if the user need observe the display content to spherical camera's vertical different directions, still need go manual regulation, but go manual regulation when can adopt the people's eye to watch the scene content completely, consequently, adopt the bolt to observe the scheme actual use effect of spherical camera longitudinal angle regulation is not good.
Disclosure of Invention
The utility model aims to solve the problem that the spherical camera in the patent is not good in practical use effect due to the fact that the longitudinal angle of the spherical camera is adjusted manually, and provides the network spherical camera capable of rotating in all directions.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
the utility model provides a but all-round pivoted network spherical camera, includes connecting plate and riser, control the below rigid coupling of connecting plate has the riser, controls the inboard below rotation of riser is connected with first horizontal pole, the inboard rigid coupling of first horizontal pole has first casing, rotating device is installed to the inboard top of riser, monitoring device is installed to the below of first casing.
Preferably, the rotating device comprises a second cross rod, the outer walls of the left side and the right side of the second cross rod are rotationally connected with the vertical plate, the outer walls of the two ends of the second cross rod are fixedly connected with a first belt pulley, the lower part of the first belt pulley is rotationally connected with a second belt pulley through a belt, the inner part of the second belt pulley is fixedly connected with the outer wall of the first cross rod, and the right side of the second cross rod is fixedly connected with a first bevel gear.
Preferably, the lower part of the first bevel gear is connected with a second bevel gear in a meshed manner, and the lower part of the second bevel gear is fixedly connected with a first motor.
Preferably, a transverse plate is fixedly connected to the middle outer wall of the first motor.
Preferably, the monitoring device comprises a first cover plate, the first cover plate is connected with the first shell through a plurality of bolts in a threaded manner, an H-shaped plate is arranged on the rear end face of the first cover plate, the upper portion of the H-shaped plate is fixedly connected with the first shell, a second motor is fixedly connected in the middle of the H-shaped plate, a network spherical camera body is fixedly connected with an output shaft of the second motor, the upper outer wall of the network spherical camera body is in clearance fit with the inner wall of the opening of the first shell, a disc is rotationally connected with the upper outer wall of the network spherical camera body, and the disc is rotationally connected with the first shell through a plurality of bolts.
The network spherical camera capable of rotating in all directions has the beneficial effects that: the device can be fixed to a designated place through the connecting plate, then an external power supply of an electrical appliance structure is connected, when the longitudinal angle of the network spherical camera body needs to be adjusted, the first motor can be started, the output shaft of the first motor drives the first bevel gear to rotate through the second bevel gear, the first bevel gear drives the second cross rod to rotate, the second cross rod can drive the first belt pulley to rotate, the first belt pulley drives the second belt pulley to rotate through the belt, the second belt pulley drives the first shell to rotate through the first cross rod, the first shell can drive the network spherical camera body to rotate through the disc and the like, the longitudinal monitoring angle of the network spherical camera body is adjusted, the practical use effect of the device is improved, the second motor is started, the output shaft of the second motor drives the network spherical camera body to rotate through the disc and the like, so that the transverse monitoring angle of the network spherical camera body can be adjusted, the full-direction rotation is realized, the multi-angle adjustment is realized, the use angle of the network spherical camera body is enlarged, and the network spherical camera body is more convenient for people to use.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a plan cross-sectional view of FIG. 1;
FIG. 3 is a schematic view of the structure of the web, first pulley and first bevel gear of FIG. 2;
FIG. 4 is a schematic view of the second motor, belt and first rail of FIG. 2;
fig. 5 is a schematic view of the structure of the second motor, the H-plate and the disc of fig. 1.
In the figure: 1. connection plate, 2, riser, 3, turning device, 301, second horizontal pole, 302, first belt pulley, 303, belt, 304, second belt pulley, 305, first bevel gear, 3A1, second casing, 3A2, second apron, 4, monitoring device, 401, first apron, 402, H-plate, 403, second motor, 404, network spherical camera body, 405, disc, 5, first horizontal pole, 6, first casing, 7, second bevel gear, 8, first motor, 9, diaphragm.
The specific embodiment is as follows:
the utility model is further described below with reference to the accompanying drawings:
example 1:
referring to fig. 1-5, in this embodiment, an omni-directional rotatable network spherical camera includes a connecting plate 1 and a vertical plate 2, wherein 4 threaded holes are machined in the connecting plate 1, so that the connecting plate 1 can be conveniently fixed through bolts, the vertical plate 2 is fixedly connected below the left and right connecting plates 1, a first cross rod 5 is rotatably connected below the inner sides of the left and right vertical plates 2, a first shell 6 is fixedly connected inside the first cross rod 5, the first shell 6 can be driven to rotate through the first cross rod 5, an opening is machined below the first shell 6, a rotating device 3 is installed above the inner sides of the vertical plates 2, and a monitoring device 4 is installed below the first shell 6.
Referring to fig. 1-3, the rotating device 3 comprises a second cross rod 301, a first belt pulley 302, a belt 303, a second belt pulley 304 and a first bevel gear 305, wherein the outer walls of the left side and the right side of the second cross rod 301 are rotationally connected with a vertical plate 2, the outer walls of the two ends of the second cross rod 301 are fixedly connected with the first belt pulley 302, the first belt pulley 302 can be driven to rotate through the second cross rod 301, the second belt pulley 304 is rotationally connected with the lower part of the first belt pulley 302 through the belt 303, the inside of the second belt pulley 304 is fixedly connected with the outer wall of the first cross rod 5, the second belt pulley 304 can drive the first cross rod 5 to rotate, the right side of the second cross rod 301 is fixedly connected with the first bevel gear 305, the lower part of the first bevel gear 305 is meshed with the second bevel gear 7, the second bevel gear 7 can drive the second cross rod 301 to rotate through the first bevel gear 305, the lower part of the second bevel gear 7 is fixedly connected with a first motor 8, the model of the first motor 8 can be selected according to the user requirement, and the middle outer wall of the first motor 8 is fixedly connected with a transverse plate 9;
the device can be fixed to a designated place through the connecting plate 1, then an external power supply of an electrical appliance structure is connected, when the longitudinal angle of the network spherical camera body 404 needs to be adjusted, the first motor 8 can be started, the output shaft of the first motor 8 drives the first bevel gear 305 to rotate through the second bevel gear 7, the first bevel gear 305 drives the second transverse rod 301 to rotate, the second transverse rod 301 can drive the first belt pulley 302 to rotate, the first belt pulley 302 drives the second belt pulley 304 to rotate through the belt 303, the second belt pulley 304 drives the first shell 6 to rotate through the first transverse rod 5, the first shell 6 can drive the network spherical camera body 404 to rotate through the disc 405 and the like, so that the longitudinal monitoring angle of the network spherical camera body 404 is adjusted, and the practical use effect of the device is improved.
Referring to fig. 1, 2, 4 and 5, the monitoring device 4 includes a first cover plate 401, an H-shaped plate 402, a second motor 403, a network spherical camera body 404 and a disc 405, the first cover plate 401 is connected with the first shell 6 by 4 bolts in a threaded manner, the rear end surface of the first cover plate 401 is provided with the H-shaped plate 402, the upper part of the H-shaped plate 402 is fixedly connected with the first shell 6, the second motor 403 is fixedly connected in the middle of the H-shaped plate 402, the model of the second motor 403 can be selected according to the requirement of a user, the output shaft of the second motor 403 is fixedly connected with the network spherical camera body 404, the model of the network spherical camera body 404 can be selected according to the requirement of a user, the network spherical camera body 404 can be driven to rotate by the output shaft of the second motor 403, the upper outer wall of the network spherical camera body 404 is in clearance fit with the inner wall of the opening of the first shell 6, the disc 405 is rotationally connected with the upper outer wall of the network spherical camera body 404 by 2 bolts, and the disc 405 is rotationally connected with the first shell 6;
the second motor 403 can be started, so that the output shaft of the second motor 403 is matched with the disc 405 and the like to drive the network spherical camera body 404 to rotate, and thus the transverse monitoring angle of the network spherical camera body 404 can be adjusted, the omnidirectional rotation and the multi-angle adjustment can be realized, the use viewing angle of the network spherical camera body 404 can be enlarged, and the use of people is more convenient.
In this embodiment, when an operator needs to use the network spherical camera capable of rotating in all directions, firstly, the operator can fix the device to a designated place through the connecting plate 1, then an external power supply of an electrical appliance structure is connected, when the longitudinal angle of the network spherical camera body 404 needs to be adjusted, the first motor 8 can be started, the output shaft of the first motor 8 drives the first bevel gear 305 to rotate through the second bevel gear 7, the first bevel gear 305 drives the second cross rod 301 to rotate, so that the second cross rod 301 can drive the first belt pulley 302 to rotate, the first belt pulley 302 drives the second belt pulley 304 to rotate through the leather 303, the second belt pulley 304 drives the first shell 6 to rotate through the first cross rod 5, so that the first shell 6 can drive the network spherical camera body 404 to rotate through the disc 405 and the like, the longitudinal monitoring angle of the network spherical camera body 404 is adjusted, the actual use effect of the device is improved, then the output shaft of the second motor 403 drives the network spherical camera body 404 to rotate through the disc 405 and the like, thus the network spherical camera body 404 can be adjusted in all directions, and the network spherical camera 404 can be adjusted more conveniently.
Example 2:
referring to fig. 1-5, in this embodiment, the present utility model provides a technical solution: the rotating device 3 can also comprise a second shell 3A1 and a second cover plate 3A2, wherein the inner wall and the left outer wall of the second shell 3A1 are respectively fixedly connected with a transverse plate 9 and an adjacent vertical plate 2, and the front end surface of the second shell 3A1 is connected with the second cover plate 3A2 through 4 bolts and threads;
the second shell 3A1 can be arranged at the riser 2 on the right side, so that the inner structure can be protected through the second shell 3A1, and meanwhile, the second cover plate 3A2 is fixed on the front end face of the second shell 3A1 through bolts, so that after the second cover plate 3A2 is disassembled, the structure in the second shell 3A1 can be maintained conveniently.
In this embodiment, when the operator needs to use the network spherical camera capable of rotating in all directions, the second housing 3A1 can be arranged at the riser 2 on the right side, so that the internal structure can be protected through the second housing 3A1, and meanwhile, the second cover plate 3A2 is fixed on the front end surface of the second housing 3A1 through bolts, so that after the second cover plate 3A2 is detached, the structure in the second housing 3A1 is convenient to maintain.
While the utility model has been shown and described with reference to a preferred embodiment, it will be understood by those of ordinary skill in the art that various changes in form and details may be made therein without departing from the scope of the utility model.
Claims (5)
1. The utility model provides a network spherical camera that can all-round pivoted, includes connecting plate (1) and riser (2), control the below rigid coupling of connecting plate (1) has riser (2), its characterized in that: the left and right vertical plates (2) are rotationally connected with a first cross rod (5), a first shell (6) is fixedly connected to the inner side of the first cross rod (5), a rotating device (3) is arranged above the inner side of the vertical plate (2), and a monitoring device (4) is arranged below the first shell (6);
the rotating device (3) can further comprise a second shell (3A 1) and a second cover plate (3A 2), the inner wall and the left outer wall of the second shell (3A 1) are fixedly connected with the transverse plate (9) and the adjacent vertical plate (2) respectively, and the front end face of the second shell (3A 1) is connected with the second cover plate (3A 2) through a plurality of bolt threads.
2. The omni-directional rotatable webcam of claim 1, wherein: the rotating device (3) comprises a second cross rod (301), the outer walls of the left side and the right side of the second cross rod (301) are rotationally connected with a vertical plate (2), the outer walls of the two ends of the second cross rod (301) are fixedly connected with a first belt pulley (302), the lower side of the first belt pulley (302) is rotationally connected with a second belt pulley (304) through a belt (303), the inner part of the second belt pulley (304) is fixedly connected with the outer wall of the first cross rod (5), and the right side of the second cross rod (301) is fixedly connected with a first bevel gear (305).
3. An omni-directional rotatable webcam as in claim 2, wherein: the lower part of the first bevel gear (305) is connected with a second bevel gear (7) in a meshed manner, and a first motor (8) is fixedly connected below the second bevel gear (7).
4. A network spherical camera capable of omnibearing rotation according to claim 3, wherein: the middle outer wall of the first motor (8) is fixedly connected with a transverse plate (9).
5. The omni-directional rotatable webcam of claim 1, wherein: the monitoring device (4) comprises a first cover plate (401), the first cover plate (401) is connected with a first shell (6) through a plurality of bolts, an H-shaped plate (402) is arranged on the rear end face of the first cover plate (401), the upper portion of the H-shaped plate (402) is fixedly connected with the first shell (6), a second motor (403) is fixedly connected in the middle of the H-shaped plate (402), a network spherical camera body (404) is fixedly connected to an output shaft of the second motor (403), the upper outer wall of the network spherical camera body (404) is in clearance fit with the inner wall of an opening of the first shell (6), a disc (405) is rotationally connected to the upper outer wall of the network spherical camera body (404), and the disc (405) is rotationally connected with the first shell (6) through a plurality of bolts.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320811636.9U CN219623691U (en) | 2023-04-12 | 2023-04-12 | Network spherical camera capable of rotating in all directions |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202320811636.9U CN219623691U (en) | 2023-04-12 | 2023-04-12 | Network spherical camera capable of rotating in all directions |
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Publication Number | Publication Date |
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CN219623691U true CN219623691U (en) | 2023-09-01 |
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Application Number | Title | Priority Date | Filing Date |
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CN202320811636.9U Active CN219623691U (en) | 2023-04-12 | 2023-04-12 | Network spherical camera capable of rotating in all directions |
Country Status (1)
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CN (1) | CN219623691U (en) |
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2023
- 2023-04-12 CN CN202320811636.9U patent/CN219623691U/en active Active
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