Outdoor anti-interference mounting seat based on optical lens
By designing a structure such as a transparent cover, drive motor and cleaning head for anti-interference mount, the damage problem of outdoor optical lenses under rainwater and man-made damage is solved, and the waterproof, impact-proof and cleaning functions of the camera are realized to ensure monitoring effect.
Patent Information
- Application Number
- CN202510645710.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2025-07-11
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Outdoor optical lenses are prone to short circuits and damage to circuits under rain and artificial damage, affecting the monitoring effect.
An anti-interference mount is designed including a transparent cover, a drive motor, a rotating rod, a transmission wheel and a cleaning head. The camera is moved to the transparent cover by driving the motor to avoid contact with rainwater. The transmission wheel winds up the connection line, the cleaning head blows the lens, and the protective plate protects the camera.
Effectively prevent circuit short circuits caused by rainwater penetration, enhance the camera's impact resistance, keep it clean, avoid human damage, and ensure stable and clear monitoring images.
Smart Images

Figure CN120302137A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of optical lenses, and specifically to an outdoor anti-interference mounting base based on an optical lens. Background Art
[0002] An optical lens is an optical instrument composed of multiple lenses. As a key component for imaging and observation, optical lenses are widely used in many fields such as security monitoring and environmental monitoring. An optical lens can focus light onto an image sensor, form a clear image, capture and record the image, and can monitor the surrounding environment in real time.
[0003] When using an optical lens for monitoring outdoors, rainwater is likely to directly drip into the interior of the optical lens, causing a short circuit in the circuit inside the monitoring device, thereby leading to equipment failure and damage. Moreover, when the optical lens is used outdoors, it is easily damaged by humans, making the optical lens unable to provide a clear monitoring image and reducing the monitoring effect.
[0004] Therefore, the present invention proposes an outdoor anti-interference mounting base based on an optical lens to make up for and improve the deficiencies of the existing technology. Summary of the Invention
[0005] Aiming at the defects existing in the prior art, the present invention provides an outdoor anti-interference mounting base based on an optical lens, which can effectively solve the above technical problems.
[0006] The technical implementation solution of the present invention is as follows: An outdoor anti-interference mounting base based on an optical lens includes a mounting frame. A transparent cover is fixedly connected to the bottom of one side of the mounting frame. A connecting member is slidably connected to the inside of the transparent cover. A camera is detachably connected to the center of the bottom of the connecting member. The top of the camera is electrically connected to a slider, and the outer surface of the top of the slider is fixedly connected to the inside of the top of the transparent cover. A protective cover is slidably connected to the outer surface of the bottom of the transparent cover, and the inside of the protective cover is slidably connected to the outer surface of the bottom of the transparent cover. A transmission strip is fixedly connected to the outer surface of the protective cover, and one end of the transmission strip penetrates and is slidably connected to the top of the mounting frame. A driving motor is fixedly connected to the upper surface of the transparent cover. The inside of the camera is electrically connected to the inside of the driving motor. The output shaft of the driving motor penetrates and is connected to the upper surface of the transparent cover. The output shaft of the driving motor is fixedly connected to a rotating rod. The outer surface of the bottom of the rotating rod is threadedly connected to the inside of one side of the connecting member. A connecting block is fixedly connected to one side of the connecting member. A fixing wire is fixedly connected to the lower surface of the connecting block. A protective plate is rotatably connected to the outer surface of the bottom of the transparent cover. A square groove is opened on one side of the protective plate. A slider is slidably connected to the inside of the square groove of the protective plate. The bottom end of the fixing wire is fixedly connected to the upper surface of the slider.
[0007] More preferably, a spring is fixedly connected to the upper surface of the transparent cover, and the top end of the spring is fixedly connected to the lower surface of the top of the transmission bar.
[0008] More preferably, the upper surface of the connecting member is in pressing fit with one end of the transmission bar.
[0009] More preferably, a plurality of fixing blocks are fixedly connected to the inner side of the top of the transparent cover. A transmission wheel is rotatably connected to the side of the fixing blocks close to each other. The outer surface of the transmission wheel is wound around the outer surface of the top of the connecting line. A bevel gear set is fixedly connected to one side of the transmission wheel.
[0010] More preferably, the bevel gear set is composed of two meshing bevel gears. One of the bevel gears is fixedly connected to one end of the transmission wheel, and the other bevel gear is fixedly connected to the outer surface of the output shaft of the driving motor.
[0011] More preferably, an air storage cylinder is fixedly connected to the upper surface of the transparent cover. The outer surface of the air storage cylinder penetrates through the top of the transparent cover. A piston rod is slidably connected to the inner side of the air storage cylinder. The bottom of the piston rod is fixedly connected to a transmission rod. One end of the transmission rod is fixedly connected to one side of the transmission bar. An air delivery pipe penetrates through the top of the air storage cylinder. The bottom of the air delivery pipe penetrates through and is connected to a cleaning head. The outer surface of the cleaning head is fixedly connected to the inner side of the bottom of the transparent cover.
[0012] More preferably, a plurality of air jet holes are annularly formed at the bottom of the cleaning head
[0013] More preferably, a fixing member is fixedly connected to one side of the protective plate. A connecting cover is fixedly connected to the top of the protective cover. The inner side of the connecting cover is slidably connected to the outer surface of the transparent cover. A fixing rod is fixedly connected to the bottom of the connecting cover. The outer surface of the fixing rod is clamped inside the fixing member.
[0014] More preferably, a torsion spring is fixedly connected to one side of the top of the protective plate. The other end of the torsion spring is fixedly sleeved on the outer surface of one end of the protective cover.
[0015] More preferably, the outer surface of the connecting cover is in a shape that is narrower at the top and wider at the bottom.
[0016] Compared with the prior art, the present invention has the following advantages:
[0017] 1. When the output shaft of the driving motor rotates, the camera can be moved into the transparent cover, effectively avoiding direct contact between the camera and rainwater, reducing the short circuit of the circuit caused by water penetration. And when the camera is moved into the transparent cover, the camera has a certain anti-impact ability, avoiding damage to the camera, and can also avoid human damage, prolonging the service life of the camera.
[0018] 2. When the output shaft of the driving motor rotates, it can drive the transmission wheel to rotate simultaneously, so that when the camera rises, the connecting wire can be wound around the outer surface of the transmission wheel, thereby avoiding the camera being blocked by the connecting wire when rising, enabling the camera to smoothly enter the inside of the transparent cover, and protecting the connecting wire when the transmission wheel is wound up, preventing the connecting wire from being scratched and squeezed due to its excessive length, and enabling the connecting wire to stably transmit the signal of the camera.
[0019] 3. When the connecting rod drives the transmission rod to move upward, the cleaning head can blow air to clean the camera, removing the tiny particles on the camera, keeping the camera clean, avoiding image blurring caused by dust or dirt, improving the imaging quality and clarity of the camera, and also preventing the tiny particles from accelerating the wear and scratching of the camera.
[0020] 4. When the outer surface of the fixing rod is clamped inside the fixing part, it can avoid the protective plate driving the camera to shake in bad weather, keeping the monitoring screen clear and stable all the time, and also effectively preventing the protective plate from directly hitting the camera, avoiding physical damage to the camera caused by the impact. Brief Description of the Drawings
[0021] Figure 1 It is a three-dimensional structure schematic diagram of the present invention.
[0022] Figure 2 It is a three-dimensional structure schematic diagram of components such as the mounting bracket, transparent cover and camera of the present invention.
[0023] Figure 3 It is a three-dimensional structure sectional view of components such as the rotating rod, protective plate and connecting block of the present invention.
[0024] Figure 4 It is a three-dimensional structure sectional view of components such as the connecting piece, protective plate and fixed wire of the present invention.
[0025] Figure 5 It is a three-dimensional structure sectional view of components such as the fixed block, bevel gear set and transmission wheel of the present invention.
[0026] Figure 6 It is a three-dimensional structure sectional view of components such as the air storage cylinder, piston rod and transmission rod of the present invention.
[0027] Figure 7 It is a three-dimensional structure sectional view of components such as the air storage cylinder, air delivery pipe and piston rod of the present invention.
[0028] Figure 8 It is a three-dimensional structure schematic diagram of components such as the fixing part, fixing rod and connecting cover of the present invention.
[0029] Figure 9Schematic diagram of the three-dimensional structure of components such as the fixing rod, connecting cover and torsion spring of the present invention.
[0030] The markings of each component in the attached drawings are as follows: 1 - mounting bracket, 11 - transparent cover, 12 - camera, 13 - protective cover, 131 - transmission strip, 14 - spring, 15 - drive motor, 16 - connecting piece, 17 - rotating rod, 18 - protective plate, 19 - connecting block, 110 - fixing wire, 111 - slider, 112 - connecting wire, 2 - fixing block, 21 - bevel gear set, 22 - transmission wheel, 3 - air storage cylinder, 31 - air delivery pipe, 32 - piston rod, 33 - transmission rod, 34 - cleaning head, 4 - fixing piece, 41 - fixing rod, 42 - connecting cover, 43 - torsion spring. Detailed implementation manners
[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0032] The present invention will be further described below in conjunction with the embodiments.
[0033] Embodiments of the present invention
[0034] Reference Figures 1 to 4As shown in the figure, an outdoor anti-interference mounting base based on an optical lens includes a mounting frame 1. At the bottom of the front side of the mounting frame 1, a transparent cover 11 is fixedly connected. Inside the transparent cover 11, a connecting piece 16 is slidably connected. The transparent cover 11 is used to limit the sliding of the connecting piece 16 inside the mounting frame 1. At the center of the bottom of the connecting piece 16, a camera 12 is detachably connected. The connecting piece 16 is used to drive the camera 12 to slide up and down. The transparent cover 11 is used to protect the camera 12. At the top of the camera 12, a connecting wire 112 is electrically connected. The outer surface of the top of the connecting wire 112 is fixedly connected to the inside of the top of the transparent cover 11. The connecting wire 112 is used to connect power to the camera 12. The outer surface of the bottom of the transparent cover 11 is slidably connected to a protective cover 13. The inside of the protective cover 13 is slidably connected to the outer surface of the bottom of the transparent cover 11. The protective cover 13 is used to protect the outer surface of the transparent cover 11. A transmission bar 131 is fixedly connected to the outer surface of the protective cover 13. The upper surface of the connecting piece 16 is in pressing fit with the left end of the transmission bar 131. The connecting piece 16 is used to drive the transmission bar 131 to move up and down. The transmission bar 131 is used to drive the protective cover 13 to slide simultaneously. A spring 14 is fixedly connected to the upper surface of the transparent cover 11. The top of the spring 14 is fixedly connected to the lower surface of the top of the transmission bar 131. The spring 14 is used to drive the transmission bar 131 to move back to its original position. A driving motor 15 is fixedly connected to the upper surface of the transparent cover 11. The inside of the camera 12 is electrically connected to the inside of the driving motor 15. The camera 12 is used to trigger the rotation of the output shaft of the driving motor 15. The output shaft of the driving motor 15 passes through and is connected to the upper surface of the transparent cover 11. A rotating rod 17 is fixedly connected to the output shaft of the driving motor 15. The output end of the driving motor 15 is used to drive the rotating rod 17 to rotate simultaneously. The outer surface of the bottom of the rotating rod 17 is threadedly connected to the inside of the left side of the connecting piece 16. When the rotating rod 17 rotates, it is used to drive the connecting piece 16 to move up and down. A connecting block 19 is fixedly connected to the rear side of the connecting piece 16. The connecting piece 16 is used to drive the connecting block 19 to move simultaneously. A fixed wire 110 is fixedly connected to the lower surface of the connecting block 19. The connecting block 19 is used to drive the fixed wire 110 to move simultaneously. The outer surface of the bottom of the transparent cover 11 is rotatably connected to a protective plate 18. The front side of the protective plate 18 is used to fit against the bottom of the transparent cover 11. A square groove is provided on the front side of the protective plate 18. Inside the square groove of the protective plate 18, a slider 111 is slidably connected. The bottom end of the fixed wire 110 is fixedly connected to the upper surface of the slider 111. The fixed wire 110 is used to drive the slider 111 to move simultaneously. When the driving motor 15 rotates, it can cause the camera 12 to move upward into the transparent cover 11, thus effectively preventing rainwater from directly contacting the optical lens, reducing the circuit short circuit caused by moisture penetration, and also enabling the camera 12 to have a certain impact resistance to prevent the camera 12 from being damaged.
[0035] Reference Figure 5As shown in the figure, an outdoor anti-interference mounting base based on an optical lens. Two fixing blocks 2 are fixedly connected to the inner side of the top of the transparent cover 11. A transmission wheel 22 is rotatably connected between the sides of the fixing blocks 2 that are close to each other. The fixing blocks 2 are used to limit the rotation of the transmission wheel 22 between the fixing blocks 2. The outer surface of the top of the connecting line 112 is wound around the outer surface of the transmission wheel 22. The transmission wheel 22 is used to tighten and loosen the outer surface of the top of the connecting line 112. A bevel gear set 21 is fixedly connected to the left side of the transmission wheel 22. The bevel gear set 21 is composed of two meshing bevel gears. One of the bevel gears is fixedly connected to the left end of the transmission wheel 22, and the other bevel gear is fixedly connected to the outer surface of the output shaft of the driving motor 15. The output end of the driving motor 15 is used to drive the bevel gear set 21 to rotate simultaneously. When the output shaft of the driving motor 15 rotates, it can drive the transmission wheel 22 to rotate simultaneously, so that when the camera 12 rises, the connecting line 112 can be wound around the outer surface of the transmission wheel 22, thereby avoiding the camera 12 being blocked by the connecting line 112 when it rises, enabling the camera 12 to smoothly enter the inside of the transparent cover 11, and protecting the connecting line 112 when the transmission wheel 22 is wound up.
[0036] Reference Figures 6 to 7 As shown in the figure, an outdoor anti-interference mounting base based on an optical lens. An air storage cylinder 3 is fixedly connected to the top of the transparent cover 11. The outer surface of the air storage cylinder 3 slidably penetrates the upper surface of the transparent cover 11. A piston rod 32 is slidably connected to the inside of the air storage cylinder 3. The piston rod 32 is used to inflate and deflate the inside of the air storage cylinder 3. A transmission rod 33 is fixedly connected to the bottom of the piston rod 32. The rear end of the transmission rod 33 is fixedly connected to the front side of the transmission strip 131. The transmission strip 131 is used to drive the transmission rod 33 to move simultaneously. An air delivery pipe 31 is connected to the top of the air storage cylinder 3 in a penetrating manner. The air storage cylinder 3 is used to deliver gas into the inside of the air delivery pipe 31. The bottom of the air delivery pipe 31 is connected to a cleaning head 34 in a penetrating manner. The air delivery pipe 31 is used to deliver gas into the inside of the cleaning head 34. The outer surface of the cleaning head 34 is fixedly connected to the inner side of the bottom of the transparent cover 11. A plurality of air spray holes are annularly formed at the bottom of the cleaning head 34. The cleaning head 34 is used to spray gas from the air spray holes to blow and clean the camera 12, removing tiny particles on the camera 12, enabling the camera 12 to remain clean, avoiding image blurring caused by dust or dirt, and improving the imaging quality and clarity of the camera 12.
[0037] Reference Figures 8 to 9As shown in the figure, an outdoor anti-interference mounting base based on an optical lens. One side of a protective plate 18 is fixedly connected to a fixing member 4. The protective plate 18 is used to drive the fixing member 4 to flip simultaneously. The top of a protective cover 13 is fixedly connected to a connecting cover 42. The inner side of the connecting cover 42 is slidably connected to the outer surface of a transparent cover 11. The protective cover 13 is used to drive the connecting cover 42 to move simultaneously. The connecting cover 42 is used to scrape the outer surface of the transparent cover 11. The outer surface of the connecting cover 42 is narrow at the top and wide at the bottom, so that dust can slide better. The bottom of the connecting cover 42 is fixedly connected to a fixing rod 41. The connecting cover 42 is used to drive the fixing rod 41 to move simultaneously. The outer surface of the fixing rod 41 is clamped inside the fixing member 4. The fixing rod 41 is used to limit the fixing member 4. The right side of the top of the protective plate 18 is fixedly connected to a torsion spring 43. The right end of the torsion spring 43 is fixedly sleeved on the outer surface of the rear end of the protective cover 13. The torsion spring 43 is used to drive the protective plate 18 to move in a reset manner. When the outer surface of the fixing rod 41 is clamped inside the fixing member 4, it can avoid the protective plate 18 driving the camera 12 to shake simultaneously in bad weather, so that the monitoring picture always remains clear and stable, and can also effectively prevent the protective plate 18 from directly hitting the camera 12.
[0038] The complete working principle and steps of the above embodiments are as follows:
[0039] Refer to Figures 1 to 4 As shown in the figure, when the optical lens is in the initial state, the camera 12 is in the unfolding device. The inner side of the protective cover 13 is slidably connected to the outer surface of the bottom of the transparent cover 11. The spring 14 is in a natural and relaxed state. The drive motor 15 is in the off state. The connecting member 16 is threadedly connected to the bottom of the outer surface of the rotating rod 17.
[0040] When using this optical lens for monitoring, first fix the mounting bracket 1 to the place where monitoring is required. At this time, the camera 12 can monitor the surrounding area. When it rains or someone approaches the camera 12 nearby, the camera 12 can prompt the driving motor 15 to start. The output end of the driving motor 15 can drive the rotating rod 17 to rotate. As the rotating rod 17 rotates, the connecting piece 16 can move upward on the outer surface of the rotating rod 17, and the right end of the connecting piece 16 will also move upward inside the transparent cover 11. When the connecting piece 16 moves upward, it can drive the camera 12 to move simultaneously, prompting the camera 12 to move inside the transparent cover 11, so that the transparent cover 11 can protect the outer surface of the camera 12. And when the connecting piece 16 moves upward, the upper surface of the connecting piece 16 can touch the bottom of one end of the transmission bar 131 and push the transmission bar 131 upward. When the transmission bar 131 moves upward, it will prompt the spring 14 to be moved to a stretched state, and when the transmission bar 131 moves upward, it will also drive the protective cover 13 to slide upward on the outer surface of the transparent cover 11. Since the protective cover 13 is attached to the outer surface of the bottom of the transparent cover 11 before moving, it can make the outer surface of the bottom of the transparent cover 11 transparent and clean. As the protective cover 13 slides upward, the camera 12 can monitor the outside world through the transparent cover 11. As the connecting piece 16 moves upward, it can also drive the connecting block 19 to move simultaneously. When the connecting block 19 moves upward, it can pull the fixed wire 110 upward. When the fixed wire 110 moves upward, it will drive the slider 111 to slide upward in the square groove of the protective plate 18. When the slider 111 slides to the top of the square groove of the protective plate 18, when the fixed wire 110 then slides upward, the slider 111 will drive the protective plate 18 to rotate clockwise. When the protective plate 18 rotates clockwise, the front side of the protective plate 18 can fit against the bottom of the transparent cover 11, so that the camera 12 can be completely enclosed inside the transparent cover 11, effectively preventing rainwater from directly contacting the camera 12, reducing the short circuit of the circuit caused by moisture penetration, and the camera 12 moves inside the transparent cover 11, making the camera 12 have a certain impact resistance, preventing the camera 12 from being damaged, and also being able to prevent human damage, extending the service life of the camera 12.
[0041] As the rain stops or the people nearby move away, the camera 12 will prompt the output shaft of the driving motor 15 to drive the rotating rod 17 to rotate in the opposite direction. When the rotating rod 17 rotates in the opposite direction, it will prompt the connecting piece 16 to move downward. When the connecting piece 16 moves downward, it can drive the camera 12 to move simultaneously, and when the connecting piece 16 moves, it can also drive the connecting block 19 to move simultaneously. When the connecting block 19 moves downward, it will prompt the fixed wire 110 to move to a slack state. At this time, the protective plate 18 will drive the slider 111 to rotate counterclockwise, and the front side of the protective plate 18 will separate from the bottom of the transparent cover 11. As the camera 12 then slides downward, it can completely slide out from the inside of the transparent cover 11.
[0042] Reference Figure 5 As shown, when the output shaft of the drive motor 15 rotates to drive the camera 12 to rise, the output shaft of the drive motor 15 can also drive the bevel gear set 21 to rotate simultaneously. When the bevel gear set 21 rotates, it can drive the transmission wheel 22 to rotate simultaneously. When the transmission wheel 22 rotates, it can wind the connection line 112 around the outer surface of the transmission wheel 22, so as to avoid the camera 12 being blocked by the connection line 112 when rising, enabling the camera 12 to smoothly enter the inside of the transparent cover 11. And when the transmission wheel 22 is wound up, it can protect the connection line 112, avoiding the connection line 112 from being scratched and squeezed due to being too long, so that the connection line 112 can stably transmit the signal of the camera 12.
[0043] When the camera 12 slides out from the inside of the transparent cover 11, the output shaft of the drive motor 15 can drive the bevel gear set 21 to rotate counterclockwise. When the bevel gear set 21 rotates counterclockwise, it can drive the transmission wheel 22 to rotate simultaneously. When the transmission wheel 22 rotates, it can rotate the connection line 112 to a slack state. At this time, when the camera 12 slides down, it can drive the connection line 112 to slide simultaneously, avoiding excessive pulling of the connection line 112.
[0044] Reference Figure 6 and Figure 7 As shown, when the transmission bar 131 moves upward, it will drive the transmission rod 33 to move simultaneously. When the transmission rod 33 moves upward, it can drive the piston rod 32 to move simultaneously. When the piston rod 32 moves upward inside the air storage cylinder 3, it can transport the air inside the air storage cylinder 3 to the inside of the air delivery pipe 31. The gas inside the air delivery pipe 31 can be transported to the inside of the cleaning head 34. The inside of the cleaning head 34 is annularly provided with a plurality of spray holes. At this time, the gas inside the cleaning head 34 can be ejected from the spray holes to clean the camera 12, thereby removing the fine particles on the camera 12, enabling the camera 12 to remain clean, avoiding image blurring caused by dust or dirt, improving the imaging quality and clarity of the camera 12, and also being able to avoid the fine particles from accelerating the wear and scratching of the camera 12.
[0045] When the transmission bar 131 drives the transmission rod 33 to move downward, the transmission rod 33 can drive the piston rod 32 to move simultaneously. When the piston rod 32 moves downward inside the air storage cylinder 3, it can draw in the outside air from the top of the air storage cylinder 3, thus facilitating the next cleaning of the camera 12.
[0046] Reference Figure 8 and Figure 9As shown, when the protective cover 13 moves upward, it will drive the fixed rod 41 to move simultaneously. When the fixed rod 41 moves upward, the outer surface of the bottom of the fixed rod 41 will be disengaged from the inner side of the fixing member 4. And when the protective cover 13 moves upward, it will drive the connecting cover 42 to move simultaneously. When the connecting cover 42 slides upward on the outer surface of the camera 12, it can clean the impurities on the outer surface of the connecting cover 42. And because the outer surface of the connecting cover 42 is narrow at the top and wide at the bottom, the impurities cleaned by the connecting cover 42 can slide off from the outer surface of the connecting cover 42. When the protective cover 13 moves upward, the protection plate 18 will also rotate clockwise to close. When the protection plate 18 rotates clockwise, it can drive the fixing member 4 to rotate simultaneously, and rotate the torsion spring 43 to the energy storage state.
[0047] When the protective cover 13 moves downward, the torsion spring 43 in the energy storage state can drive the protection plate 18 to flip counterclockwise. When the protection plate 18 flips, it can drive the fixing member 4 to flip simultaneously. At this time, when the protective cover 13 drives the fixed rod 41 to move downward, the outer surface of the fixed rod 41 can be clamped inside the fixing member 4, so as to avoid the protection plate 18 driving the camera 12 to shake in bad weather, keep the monitoring picture clear and stable all the time, and can also effectively prevent the protection plate 18 from directly hitting the camera 12, avoiding physical damage to the camera 12 caused by the impact.
[0048] Although the present disclosure has been shown and described with reference to specific exemplary embodiments thereof, those skilled in the art should understand that various changes in form and detail may be made therein without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above embodiments, but should be determined not only by the appended claims but also by the equivalents of the appended claims.
Claims
1. An outdoor anti-interference mounting base based on an optical lens, comprising a mounting frame (1), a transparent cover (11) is fixedly connected to the bottom of one side of the mounting frame (1), a connecting member (16) is slidably connected to the inside of the transparent cover (11), a camera (12) is detachably connected to the center of the bottom of the connecting member (16), the top of the camera (12) is electrically connected to a slider (111), and the outer surface of the top of the slider (111) is fixedly connected to the inside of the top of the transparent cover (11), characterized in that: A protective cover (13) is slidably connected to the outer surface of the bottom of the transparent cover (11). The inner side of the protective cover (13) is slidably connected to the outer surface of the bottom of the transparent cover (11). A transmission bar (131) is fixedly connected to the outer surface of the protective cover (13). One end of the transmission bar (131) penetrates and is slidably connected to the top of the mounting bracket (1). A driving motor (15) is fixedly connected to the upper surface of the transparent cover (11). The inside of the camera (12) is electrically connected to the inside of the driving motor (15). The output shaft of the driving motor (15) penetrates and is connected to the upper surface of the transparent cover (11). A rotating rod (17) is fixedly connected to the output shaft of the driving motor (15). The outer surface of the bottom of the rotating rod (17) is threadedly connected to the inside of one side of the connecting member (16). A connecting block (19) is fixedly connected to one side of the connecting member (16). A fixed wire (110) is fixedly connected to the lower surface of the connecting block (19). A protective plate (18) is rotatably connected to the outer surface of the bottom of the transparent cover (11). A square groove is formed in one side of the protective plate (18). A slider (111) is slidably connected to the inside of the square groove of the protective plate (18). The bottom end of the fixed wire (110) is fixedly connected to the upper surface of the slider (111).
2. The outdoor anti-interference mounting base based on an optical lens according to claim 1, characterized in that: A spring (14) is fixedly connected to the upper surface of the transparent cover (11). The top end of the spring (14) is fixedly connected to the lower surface of the top of the transmission bar (131).
3. The outdoor anti-interference mounting base based on an optical lens according to claim 2, characterized in that: The upper surface of the connecting member (16) is in pressing fit with one end of the transmission bar (131).
4. The outdoor anti-interference mounting base based on an optical lens according to claim 3, characterized in that: A plurality of fixed blocks (2) are fixedly connected to the inner side of the top of the transparent cover (11). A transmission wheel (22) is rotatably connected to the side of the fixed blocks (2) close to each other. The outer surface of the transmission wheel (22) is wound around the outer surface of the top of the connecting wire (112). A bevel gear set (21) is fixedly connected to one side of the transmission wheel (22).
5. The outdoor anti-interference mounting base based on an optical lens according to claim 4, characterized in that: The bevel gear set (21) is composed of two meshing bevel gears. One of the bevel gears is fixedly connected to one end of the transmission wheel (22), and the other bevel gear is fixedly connected to the outer surface of the output shaft of the driving motor (15).
6. The outdoor anti-interference mounting base based on an optical lens according to claim 5, wherein: An air storage cylinder (3) is fixedly connected to the upper surface of the transparent cover (11). The outer surface of the air storage cylinder (3) penetrates and is connected to the top of the transparent cover (11). A piston rod (32) is slidably connected to the inside of the air storage cylinder (3). The bottom of the piston rod (32) is fixedly connected to a transmission rod (33). One end of the transmission rod (33) is fixedly connected to one side of the transmission bar (131). An air delivery pipe (31) is connected to the top of the air storage cylinder (3) in a through manner. The bottom of the air delivery pipe (31) is connected to a cleaning head (34) in a through manner. The outer surface of the cleaning head (34) is fixedly connected to the inner side of the bottom of the transparent cover (11).
7. An outdoor anti-interference mounting base based on an optical lens according to claim 6, characterized in that: A plurality of air spray holes are formed in a ring shape at the bottom of the cleaning head (34).
8. An outdoor anti-interference mounting base based on an optical lens according to claim 7, characterized in that: One side of the protection plate (18) is fixedly connected with a fixing member (4). The top of the protective cover (13) is fixedly connected with a connecting cover (42). The inner side of the connecting cover (42) is slidably connected to the outer surface of the transparent cover (11). The bottom of the connecting cover (42) is fixedly connected with a fixing rod (41). The outer surface of the fixing rod (41) is clamped inside the fixing member (4).
9. An outdoor anti-interference mounting base based on an optical lens according to claim 8, characterized in that: One side of the top of the protection plate (18) is fixedly connected with a torsion spring (43). The other end of the torsion spring (43) is fixedly sleeved on the outer surface of one end of the protective cover (13).
10. The outdoor anti-interference mounting base based on an optical lens according to claim 9, characterized in that: The outer surface of the connecting cover (42) is narrow at the top and wide at the bottom.