Household monitoring intelligent mobile tracking camera
Through the design of screws, threaded rings and drive motors, the precise adjustment and automatic cleaning of protective glasses are achieved, solving the problems of inconvenient installation and low cleaning efficiency of existing cameras, and improving the service life of the equipment and monitoring coverage effect.
Patent Information
- Application Number
- CN202510757788.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-09
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2045-06-09
AI Technical Summary
The existing intelligent mobile tracking cameras have difficulty in precise adjustment in the protective glass installation method, which is easy to scratch, low cleaning efficiency and inconvenient operation, which increases the cost of use and safety risks.
It adopts screws, threaded rings, drive motors and automated cleaning mechanisms to achieve accurate adjustment and automatic cleaning of protective glasses, and combines the control panel to achieve comprehensive monitoring and light management.
It improves the service life and installation efficiency of the equipment, reduces maintenance costs, improves cleaning convenience and safety, and achieves all-round monitoring coverage and light management without blind spots.
Smart Images

Figure CN120282007A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of cameras, and more specifically, particularly relates to a household monitoring intelligent mobile tracking camera. Background Art
[0002] With the increasing demand for smart home security, household monitoring intelligent mobile tracking cameras have gradually become important devices for guarding family safety. With intelligent mobile tracking technology, such cameras can automatically identify and track moving objects in the picture, and capture abnormal dynamics in real time. At the same time, they support remote control, and users can flexibly adjust the monitoring angle through their mobile phones to achieve full-range and dead-angle-free monitoring coverage. However, the existing intelligent mobile tracking cameras still have the following deficiencies in use: 1. The installation method of the protective lens of traditional cameras is relatively rough, mostly using a single fixed structure, making it difficult to accurately adjust the installation position between the protective lens and the lens. During long-term use, the protective lens is prone to scratching and displacement due to external force collision and friction, resulting in blurred imaging and a decline in the quality of the monitoring picture. Moreover, replacing the protective lens is not only cumbersome but also increases the user's usage cost. 2. The existing cleaning method of the protective lens is inefficient, mostly relying on manual disassembly and manual wiping. For cameras installed at high places or in complex environments, manual cleaning has problems such as inconvenient operation and high safety risks. Summary of the Invention
[0003] In order to solve the above technical problems, the present invention provides a household monitoring intelligent mobile tracking camera to solve the above problems.
[0004] A household monitoring intelligent mobile tracking camera includes a placement base. A threaded groove is provided at the lower end of the placement base. A control panel is fixedly installed on the side wall of the placement base. A placement groove is provided at the upper end of the placement base. An installation base is placed inside the placement groove. Brackets are symmetrically and fixedly installed at the upper end of the installation base. A storage seat is fixedly installed at the center of the upper end of the installation base. A camera cover is rotatably installed between the two brackets. A circular groove is provided on the side wall of the camera cover. An installation cavity is provided in the inner wall of the circular groove. Lenses are symmetrically arranged inside the installation cavity. Screws are fixedly installed equidistantly on the side wall of the circular groove. Second threaded rings are threadedly installed on all three screws. First annular grooves are provided inside all three second threaded rings. Connecting rings are slidably installed inside all three first annular grooves. Second springs are fixedly installed equidistantly on all three connecting rings. One end of each group of second springs away from each connecting ring is fixedly connected to the inner wall of each first annular groove respectively. Balls are installed equidistantly on the ends of all three connecting rings away from the second springs. A protective lens is sleeved on all three screws. A second annular groove is provided on the side wall of the protective lens. All three second threaded rings are slidably installed in the second annular groove. An arc-shaped groove is provided in the inner wall of the second annular groove. All three screws are slidably installed in the arc-shaped groove.
[0005] Preferably, a first threaded ring is threadedly installed on the placement seat. A fixing ring is fixedly installed at the upper end of the first threaded ring. A threaded bracket is threadedly installed in the inner wall of the threaded groove.
[0006] Preferably, a first driving motor is fixedly installed inside the threaded bracket. A rotating shaft is installed at the output end of the first driving motor. A cross-shaped block is detachably installed at the free end of the rotating shaft.
[0007] Preferably, arc-shaped strips are symmetrically and fixedly installed at the upper end of the placement seat. Inner grooves are provided through both of the two arc-shaped strips. Wedge-shaped blocks are slidably installed inside both of the two inner grooves.
[0008] Preferably, side blocks are fixedly installed on both side walls of both of the two wedge-shaped blocks. First springs are fixedly installed on both groups of side blocks. One end of each group of first springs of both groups of side blocks is fixedly connected to the two arc-shaped strips respectively.
[0009] Preferably, a cross-shaped groove is fixedly installed at the lower end of the installation seat. The cross-shaped block is inserted into the cross-shaped groove. A second driving motor is fixedly installed on the side wall of the bracket on the right side. The output shaft of the second driving motor is fixedly connected to the camera cover. Protective caps are clamped on both of the two brackets.
[0010] Preferably, fixing strips are fixedly installed on both of the two brackets. A first cleaning strip is fixedly installed in the inner wall of the fixing strip. The first cleaning strip is in contact with the camera cover.
[0011] Preferably, a side plate is fixedly installed on the side wall of the fixing strip. A strip-shaped groove is provided on the side plate. A sliding column is slidably installed inside the strip-shaped groove.
[0012] Preferably, a second cleaning strip is fixedly installed at the lower end of the sliding column. The second cleaning strip is attached to the inner wall of the side plate. A chute is formed inside the sliding column, and a pressing strip is slidably installed inside the chute.
[0013] Preferably, a third spring is fixedly installed at the lower end of the pressing strip. One end of the third spring away from the pressing strip is fixedly connected to the inner wall of the chute. A third threaded ring is threadedly installed on the sliding column.
[0014] Compared with the prior art, the present invention has the following beneficial effects: In the present invention, by providing a lens, a screw rod, a second threaded ring, a protective lens, and a second annular groove, when installing the protective lens, the protective lens can be inserted onto the three screw rods, and then the three second threaded rings can be rotated on the three screw rods. At this time, the three second threaded rings will first slide into the second annular groove for positioning. At this time, the protective lens can be rotated, thereby adjusting the relative installation positions of the two lenses and the protective lens, thus avoiding the problem that the display effect deteriorates due to the scratching of the protective lens after long-term use. This not only ensures the display quality of the device during long-term use but also reduces the frequent replacement due to component damage, reduces the maintenance cost of the device, and extends the overall service life of the device. In the present invention, by providing a first drive motor, a rotating shaft, a cross block, a mounting seat, a camera cover, a protective lens, and a first cleaning strip, when the protective lens needs to be cleaned, the camera cover is driven by the second drive motor to rotate vertically, thereby rotating the protective lens upward. At this time, the protective lens will contact the first cleaning strip. Then, the first drive motor drives the rotating shaft and the cross block to rotate. The rotating shaft and the cross block will drive the mounting seat and the camera cover to rotate horizontally. At this time, the first cleaning strip will clean the protective lens. This automatic cleaning method greatly reduces the cleaning operation difficulty, saves labor costs, and improves the convenience and safety of device maintenance. In the present invention, by providing a control panel, a camera cover, a lens, and a side plate, the vertical rotation of the camera cover can be controlled through the control panel. When the lens inside the camera cover rotates below the side plate, the side plate will block the direct light source. This automatic operation method completely changes the cumbersome mode of manually adjusting the sunshade and protective cover of traditional devices, especially suitable for devices with high installation positions, difficult to reach, or dangerous areas, reducing the operation difficulty and labor costs, and making the device more intelligent and efficient in light management. In the present invention, by providing a placement seat, a first threaded ring, a fixing ring, an inner groove, a wedge block, and a mounting seat, the first threaded ring can be rotated on the placement seat. Under the action of the first threaded ring, the fixing ring will be driven to move upward. Under the movement of the fixing ring, the wedge block will be pushed. When the wedge block is stressed, it will slide towards the middle in the inner groove. At this time, after the wedge block slides out of the inner groove, it will block the mounting seat, completing the snap connection and installation. Compared with traditional equipment that requires cumbersome operations such as using screwdrivers, wrenches and other tools for tightening and fixing, the installation time is significantly shortened, the operation threshold is reduced, and even non-professionals can quickly get started, significantly improving the equipment installation efficiency; In the present invention, by providing a control panel, a first driving motor, a rotating shaft, a cross block, a mounting seat, a bracket, a camera cover, and a second driving motor, it can be started by controlling the control panel through a mobile phone. By starting the control panel, the first driving motor and the second driving motor are started. Under the action of the first driving motor, the rotating shaft and the cross block will be driven to rotate accordingly, and the cross block will drive the mounting seat and the camera cover to rotate horizontally accordingly. Under the action of the second driving motor, the camera cover will be driven to rotate vertically between the two brackets. Through the cooperation of the two, the equipment can achieve 360° horizontal rotation and large-angle vertical pitching of the screw, realizing all-round and non-blind-spot monitoring coverage. Compared with traditional equipment with single-angle or limited-range adjustment, this design can quickly adjust the monitoring angle according to actual needs and capture picture information from all directions, effectively improving the effectiveness and integrity of monitoring; In the present invention, by providing a side plate, a strip-shaped groove, a sliding column, a second cleaning strip, a fixing strip, a third spring, and a third threaded ring, the sliding column can be slid inside the strip-shaped groove. Under the movement of the sliding column, the second cleaning strip will be driven to slide on the inner wall of the side plate, thereby cleaning the side plate. After cleaning, the third threaded ring can be rotated on the sliding column. The third threaded ring squeezes the pressing strip downward, causing the third spring to deform. When the pressing strip is stressed and contacts the side plate, it will be fixed. Whether it is dust, stains or other attachments, they can all be effectively removed through this precise sliding cleaning method, maintaining the good light-shielding performance of the side plate, avoiding the influence of light-shielding effect due to dirt accumulation, and ensuring that the equipment always maintains stable protection ability in a direct sunlight environment. Description of the Drawings
[0015] Figure 1 is the three-dimensional structure schematic diagram of the present invention; Figure 2 is the three-dimensional exploded structure schematic diagram of the present invention; Figure 3 is the exploded structure schematic diagram of the cross block connection of the present invention; Figure 4 is the exploded structure schematic diagram of the wedge block connection of the present invention; Figure 5 is the exploded structure schematic diagram of the protective cap connection of the present invention; Figure 6It is a schematic diagram of the explosion structure of the connection of the second cleaning strip of the present invention; Figure 7 It is a schematic diagram of the explosion structure of the connection of the protective goggles of the present invention; Figure 8 It is a schematic diagram of the explosion structure of the connection of the connecting ring of the present invention; Figure 9 It is a schematic diagram of the structure of the protective goggles of the present invention; Figure 10 It is the present invention Figure 6 The enlarged structure diagram at position B in; Figure 11 It is the present invention Figure 7 The enlarged structure diagram at position A in.
[0016] In the figure, the corresponding relationship between the component names and the drawing numbers is: 11, placement seat; 12, thread groove; 13, control panel; 14, first thread ring; 15, fixing ring; 16, thread holder; 17, first driving motor; 18, rotating shaft; 19, cross block; 21, arc bar; 22, inner groove; 23, wedge block; 24, side block; 25, first spring; 26, mounting seat; 27, cross groove; 28, storage seat; 29, bracket; 31, camera cover; 32, second driving motor; 33, protective cap; 34, installation cavity; 35, lens; 36, screw; 37, second thread ring; 38, first annular groove; 39, connecting ring; 41, second spring; 42, rolling ball; 43, protective goggles; 44, second annular groove; 45, arc groove; 51, fixing bar; 52, first cleaning strip; 53, side plate; 54, strip groove; 55, sliding column; 56, second cleaning strip; 57, sliding groove; 58, pressing strip; 59, third spring; 61, third thread ring; 62, placement groove; 63, round groove. Specific embodiments
[0017] The following further describes in detail the embodiments of the present invention in conjunction with the drawings and examples. The following examples are used to illustrate the present invention, but cannot be used to limit the scope of the present invention.
[0018] Please refer to Figures 1-11 , the present invention provides a household monitoring intelligent mobile tracking camera, including a placement seat 11, a thread groove 12 is opened at the lower end of the placement seat 11, a control panel 13 is fixedly installed on the side wall of the placement seat 11, a placement groove 62 is opened at the upper end of the placement seat 11, a mounting seat 26 is placed inside the placement groove 62, brackets 29 are symmetrically and fixedly installed at the upper end of the mounting seat 26, a camera cover 31 is rotatably installed between the two brackets 29, and an image sensor is integrated inside the camera cover 31; A circular groove 63 is formed in the side wall of the camera cover 31, an installation cavity 34 is formed in the inner wall of the circular groove 63, lenses 35 are symmetrically arranged inside the installation cavity 34, screw rods 36 are fixedly installed at equal intervals on the side wall of the circular groove 63, and the three screw rods 36 are distributed on the camera cover 31 in an isosceles triangle. Second threaded rings 37 are threadedly installed on the three screw rods 36. First annular grooves 38 are formed inside the three second threaded rings 37. Connecting rings 39 are slidably installed inside the three first annular grooves 38. Second springs 41 are fixedly installed at equal intervals on the three connecting rings 39. One end of each group of second springs 41 away from each connecting ring 39 is fixedly connected to the inner wall of each first annular groove 38. Balls 42 are installed at equal intervals on the ends of the three connecting rings 39 away from the second springs 41. A protective lens 43 is sleeved on the three screw rods 36. A second annular groove 44 is formed in the side wall of the protective lens 43. The three second threaded rings 37 are all slidably installed in the second annular groove 44. When installing the protective lens 43, the protective lens 43 can be inserted onto the three screw rods 36, and then the three second threaded rings 37 can be rotated on the three screw rods 36. At this time, the three second threaded rings 37 will first slide into the second annular groove 44 for positioning. At this time, the protective lens 43 can be rotated, thereby adjusting the relative installation positions of the two lenses 35 and the protective lens 43, avoiding the problem that the display effect deteriorates due to the protective lens 43 being scratched after long-term use. This not only ensures the display quality of the device during long-term use, but also reduces the situation of frequent replacement due to component damage, reduces the maintenance cost of the device, and extends the overall service life of the device; before the device pauses use, the camera cover 31 can be controlled to rotate vertically through the control panel 13. At this time, the protective lens 43 together with the lens 35 can be rotated into the storage seat 28, and the two are protected by the storage seat 28. During the period when the device pauses use, it is avoided that the surface of the lens 35 is contaminated with dust, affecting the imaging quality, and preventing the protective lens 43 from being scratched or damaged by collision, protecting the core components in all aspects, extending their service life, and reducing the device maintenance and replacement costs.
[0019] An arc-shaped groove 45 is formed in the inner wall of the second annular groove 44. The three screw rods 36 are all slidably installed in the arc-shaped groove 45. A first threaded ring 14 is threadedly installed on the placing seat 11. A fixing ring 15 is fixedly installed at the upper end of the first threaded ring 14. A threaded bracket 16 is threadedly installed in the inner wall of the threaded groove 12. A first driving motor 17 is fixedly installed inside the threaded bracket 16. A rotating shaft 18 is installed at the output end of the first driving motor 17. A cross-shaped block 19 is detachably installed at the free end of the rotating shaft 18. Arc-shaped strips 21 are symmetrically and fixedly installed at the upper end of the placing seat 11. Inner grooves 22 are formed through the two arc-shaped strips 21. Wedge-shaped blocks 23 are slidably installed in the two inner grooves 22. Side blocks 24 are fixedly installed on both side walls of the two wedge-shaped blocks 23. First springs 25 are fixedly installed on the two groups of side blocks 24. One ends of the two groups of first springs 25 and the two groups of side blocks 24 are respectively fixedly connected to the two arc-shaped strips 21. A cross-shaped groove 27 is fixedly installed at the lower end of the mounting seat 26. The cross-shaped block 19 is inserted into the cross-shaped groove 27. During use, the threaded bracket 16 can be first threadedly installed in the threaded groove 12. At this time, the rotating shaft 18 will be inserted into the placing seat 11 accordingly. At this time, the cross-shaped block 19 can be installed on the rotating shaft 18. Then, the mounting seat 26 is placed in the placing groove 62. At this time, the cross-shaped block 19 will be inserted into the cross-shaped groove 27 accordingly. At this time, the first threaded ring 14 can be rotated on the placing seat 11. Under the action of the first threaded ring 14, the fixing ring 15 will be driven to move upward. Under the movement of the fixing ring 15, the wedge-shaped block 23 will be pushed. When the wedge-shaped block 23 is stressed, it will slide towards the middle in the inner groove 22. At this time, after the wedge-shaped block 23 slides out of the inner groove 22, it will block the mounting seat 26, completing the clamping installation. Compared with traditional equipment, this equipment requires cumbersome operations such as tightening and fixing with tools such as screwdrivers and wrenches. It greatly shortens the installation time, reduces the operation threshold, and even non-professional personnel can quickly get started, significantly improving the equipment installation efficiency; A second drive motor 32 is fixedly installed on the side wall of the bracket 29 on the right side. The output shaft of the second drive motor 32 is fixedly connected to the camera cover 31. Both the second drive motor 32 and the first drive motor 17 are electrically connected to the control panel 13. When it is necessary to adjust the monitoring angle of the device, the control panel 13 can be started by mobile phone at this time. The first drive motor 17 and the second drive motor 32 are started through the control panel 13. Under the action of the first drive motor 17, the rotating shaft 18 and the cross block 19 will be driven to rotate accordingly. The cross block 19 will drive the mounting seat 26 and the camera cover 31 to rotate horizontally. Under the action of the second drive motor 32, the camera cover 31 will be driven to rotate vertically between the two brackets 29. Through the cooperation of the two, the device can realize 360° horizontal rotation and large-angle vertical pitching of the screw, achieving full-range and dead-angle-free monitoring coverage. Compared with traditional devices with single-angle or limited-range adjustment, this design can quickly adjust the monitoring perspective according to actual needs, capture picture information from all directions, and effectively improve the effectiveness and integrity of monitoring; the image sensor inside the camera cover 31 is responsible for collecting the monitoring picture, converting the optical image into an electrical signal or a digital signal, comparing the pixel values of the current frame and the previous frame of the image. If the change of some pixels exceeds the set threshold, it is considered that there is movement. Artificial intelligence and machine learning algorithms are used to identify and classify the detected moving objects. Once a meaningful moving object is detected, the target tracking algorithm will come into play. These algorithms calculate the position, speed and movement trajectory of the object in consecutive frames, predict the next position of the object, and thus drive the motor of the camera to rotate, so that the lens always follows the moving object to ensure that it remains in the center of the picture and achieve precise tracking. Using deep learning technology, the camera can learn and understand different behavior patterns. When an abnormal behavior is detected, the camera will immediately activate the alarm mechanism, send a notification to the user's mobile phone, and save the relevant video clip. When the target object moves in the picture, the control panel 13 will send a control signal to the device according to the position information of the target, driving the lens to aim at the target object and realizing the tracking shooting of the moving object. The control panel 13 analyzes the image data collected by the camera and the results after various algorithm processes to achieve intelligent moving tracking.
[0020] Protective caps 33 are snap-fitted onto both brackets 29. A fixing strip 51 is fixedly installed on the two brackets 29. A first cleaning strip 52 is fixedly installed inside the inner wall of the fixing strip 51. The first cleaning strip 52 is in contact with the camera cover 31. When it is necessary to clean the protective mirror 43, at this time, the second drive motor 32 drives the camera cover 31 to rotate vertically, and then rotates the protective mirror 43 upward. At this time, the protective mirror 43 will contact the first cleaning strip 52. Then, the first drive motor 17 drives the rotating shaft 18 and the cross block 19 to rotate. The rotating shaft 18 and the cross block 19 will drive the mounting seat 26 and the camera cover 31 to rotate horizontally. At this time, the first cleaning strip 52 will clean the protective mirror 43. This automatic cleaning method greatly reduces the difficulty of cleaning operations, saves labor costs, and improves the convenience and safety of equipment maintenance; A side plate 53 is fixedly installed on the side wall of the fixing strip 51. When the device is in a direct sunlight area, at this time, the control panel 13 can be used to control the vertical rotation of the camera cover 31. When the lens 35 inside the camera cover 31 rotates below the side plate 53, at this time, the side plate 53 will block the direct light source. This automatic operation method completely changes the cumbersome mode of traditional equipment that requires manual on-site adjustment of sunshades and protective covers. It is especially suitable for equipment with a high installation position, difficult to reach, or dangerous areas, reducing the operation difficulty and labor costs, and making the equipment more intelligent and efficient in light management; A strip-shaped groove 54 is formed in the side plate 53. A sliding column 55 is slidably installed inside the strip-shaped groove 54. A second cleaning strip 56 is fixedly installed at the lower end of the sliding column 55. The second cleaning strip 56 is in contact with the inner wall of the side plate 53. A sliding groove 57 is formed inside the sliding column 55. A pressing strip 58 is slidably installed inside the sliding groove 57. A third spring 59 is fixedly installed at the lower end of the pressing strip 58. One end of the third spring 59 away from the pressing strip 58 is fixedly connected to the inner wall of the sliding groove 57. A third threaded ring 61 is threadedly installed on the sliding column 55. When the side plate 53 needs to be cleaned after long-term use, at this time, the sliding column 55 can be slid inside the strip-shaped groove 54. The movement of the sliding column 55 will drive the second cleaning strip 56 to slide inside the inner wall of the side plate 53, thereby cleaning the side plate 53. After cleaning, the third threaded ring 61 can be rotated on the sliding column 55. The third threaded ring 61 squeezes the pressing strip 58 downward to drive the third spring 59 to deform. When the pressing strip 58 is in contact with the side plate 53 under force, it will be fixed. Whether it is dust, stains or other attachments, they can all be effectively removed through this precise sliding cleaning method, maintaining the good light-shielding performance of the side plate 53, avoiding the influence of light-shielding effect due to dirt accumulation, and ensuring that the equipment always maintains a stable protective ability in a direct sunlight environment.
[0021] Working principle: First step, when in use, the threaded frame 16 can be first threadedly installed in the threaded groove 12. At this time, the rotating shaft 18 will be inserted into the placing seat 11 accordingly. Then, the cross-shaped block 19 can be installed on the rotating shaft 18, and the mounting seat 26 can be placed in the placing groove 62. At this time, the cross-shaped block 19 will be inserted into the cross-shaped groove 27 accordingly. Then, the first threaded ring 14 can be rotated on the placing seat 11. Under the action of the first threaded ring 14, the fixed ring 15 will be driven to move upward. Under the movement of the fixed ring 15, the wedge-shaped block 23 will be pushed. When the wedge-shaped block 23 is stressed, it will slide towards the middle in the inner groove 22. When the wedge-shaped block 23 slides out of the inner groove 22, it will block the mounting seat 26, completing the clamping installation. Compared with traditional equipment that requires tedious operations such as using screwdrivers, wrenches and other tools for tightening and fixing, the installation time of this equipment is greatly shortened, the operation threshold is reduced, and even non-professionals can quickly get started, significantly improving the equipment installation efficiency; Second step, when the monitoring angle of the equipment needs to be adjusted, the control panel 13 can be started by the mobile phone at this time. The first driving motor 17 and the second driving motor 32 are started through the control panel 13. Under the action of the first driving motor 17, the rotating shaft 18 and the cross-shaped block 19 will be driven to rotate accordingly. The cross-shaped block 19 will drive the mounting seat 26 and the camera cover 31 to rotate horizontally. Under the action of the second driving motor 32, the camera cover 31 will be driven to rotate vertically between the two brackets 29. Through the cooperation of the two, the equipment can realize 360° horizontal rotation of the screw and large-angle vertical pitching, achieving full-range and dead-angle-free monitoring coverage. Compared with traditional equipment with single-angle or limited-range adjustment, this design can quickly adjust the monitoring perspective according to actual needs, capture picture information in all directions, and effectively improve the effectiveness and integrity of monitoring; Third step, when installing the protective mirror 43, the protective mirror 43 can be inserted on the three screws 36. Then, the three second threaded rings 37 can be rotated on the three screws 36. At this time, the three second threaded rings 37 will first slide into the second annular groove 44 for positioning. Then, the protective mirror 43 can be rotated, thereby adjusting the relative installation position between the two lenses 35 and the protective mirror 43, avoiding the problem that the display effect deteriorates due to the protective mirror 43 being scratched after long-term use. This not only ensures the display quality of the equipment during long-term use, but also reduces the situation of frequent replacement due to component damage, reduces the maintenance cost of the equipment, and extends the overall service life of the equipment; Fourthly, when the protective mirror 43 needs to be cleaned, the second drive motor 32 drives the camera cover 31 to rotate vertically at this time, and then rotates the protective mirror 43 upward. At this time, the protective mirror 43 will contact the first cleaning strip 52. Then, the first drive motor 17 drives the rotating shaft 18 and the cross block 19 to rotate. The rotating shaft 18 and the cross block 19 will drive the mounting seat 26 and the camera cover 31 to rotate horizontally. At this time, the first cleaning strip 52 will clean the protective mirror 43. This automated cleaning method greatly reduces the difficulty of cleaning operations, saves labor costs, and improves the convenience and safety of equipment maintenance; Fifthly, when the equipment is in a direct sunlight area, the camera cover 31 can be controlled to rotate vertically through the control panel 13 at this time. When the lens 35 inside the camera cover 31 rotates below the side plate 53, the side plate 53 will block the direct light source at this time. This automated operation method completely changes the cumbersome mode of traditional equipment that requires manual on-site adjustment of sun visors and protective covers. It is especially suitable for equipment with high installation positions, difficult to reach or in dangerous areas, reduces the operation difficulty and labor costs, and makes the equipment more intelligent and efficient in light management; Sixthly, when the side plate 53 needs to be cleaned after long-term use, the sliding column 55 can be slid inside the strip-shaped groove 54 at this time. The movement of the sliding column 55 will drive the second cleaning strip 56 to slide on the inner wall of the side plate 53, and then clean the side plate 53. After cleaning, the third threaded ring 61 can be rotated on the sliding column 55. The third threaded ring 61 squeezes the pressing strip 58 downward to drive the third spring 59 to deform. When the pressing strip 58 contacts the side plate 53 under force, it will be fixed. Whether it is dust, stains or other attachments, they can all be effectively removed through this precise sliding cleaning method, maintaining the good light-shielding performance of the side plate 53, avoiding the influence of light-shielding effect due to dirt accumulation, and ensuring that the equipment always maintains a stable protective ability in a direct sunlight environment.
[0022] The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to better explain the principles of the invention and its practical application, and to enable those of ordinary skill in the art to understand the invention and design various embodiments with various modifications suitable for specific purposes.
Claims
1. A household monitoring intelligent mobile tracking camera, comprising a placement base (11), a threaded groove (12) is opened at the lower end of the placement base (11), and a control panel (13) is fixedly installed on the side wall of the placement base (11), characterized in that: The upper end of the placement seat (11) is provided with a placement groove (62), and an installation seat (26) is placed inside the placement groove (62). Symmetrically fixed brackets (29) are installed at the upper end of the installation seat (26), and a camera cover (31) is rotatably installed between the two brackets (29). A circular groove (63) is formed in the side wall of the camera cover (31), an installation cavity (34) is formed in the inner wall of the circular groove (63), lenses (35) are symmetrically arranged inside the installation cavity (34), screw rods (36) are equidistantly and fixedly installed on the side wall of the circular groove (63), a second thread ring (37) is threadedly installed on the screw rods (36), a first annular groove (38) is formed inside the second thread ring (37), a connection ring (39) is slidably installed inside the first annular groove (38), second springs (41) are equidistantly and fixedly installed on the connection ring (39), and one end of the second spring (41) away from the connection ring (39) is fixedly connected to the inner wall of the first annular groove (38). A protective lens (43) is sleeved on the screw rod (36), a second annular groove (44) is formed in the side wall of the protective lens (43), the second thread ring (37) is slidably installed in the second annular groove (44), an arc-shaped groove (45) is formed in the inner wall of the second annular groove (44), and the screw rod (36) is slidably installed in the arc-shaped groove (45).
2. The household monitoring intelligent mobile tracking camera according to claim 1, wherein A first thread ring (14) is threadedly installed on the placement seat (11). Among them, a fixed ring (15) is fixedly installed at the upper end of the first thread ring (14), and a threaded bracket (16) is threadedly installed in the inner wall of the thread groove (12).
3. The home monitoring intelligent mobile tracking camera according to claim 2, wherein A first driving motor (17) is fixedly installed inside the threaded bracket (16). Among them, a rotating shaft (18) is installed at the output end of the first driving motor (17), and a cross-shaped block (19) is detachably installed at the free end of the rotating shaft (18).
4. The home monitoring intelligent mobile tracking camera according to claim 2, characterized in that, Arc-shaped strips (21) are symmetrically and fixedly installed at the upper end of the placement seat (11). Among them, inner grooves (22) are formed through the two arc-shaped strips (21), and wedge-shaped blocks (23) are slidably installed inside the two inner grooves (22).
5. The household monitoring intelligent mobile tracking camera according to claim 4, wherein Side blocks (24) are fixedly installed on both side walls of the two wedge-shaped blocks (23). Among them, first springs (25) are fixedly installed on the two groups of side blocks (24), and one end of the two groups of first springs (25) of the two groups of side blocks (24) is respectively fixedly connected to the two arc-shaped strips (21).
6. The home monitoring intelligent mobile tracking camera according to claim 3, characterized in that, A cross-shaped groove (27) is fixedly installed at the lower end of the installation seat (26), the cross-shaped block (19) is inserted into the cross-shaped groove (27), and a storage seat (28) is fixedly installed at the center of the upper end of the installation seat (26). Among them, a second driving motor (32) is fixedly installed on the side wall of the bracket (29) on the right side, the output shaft of the second driving motor (32) is fixedly connected to the camera cover (31), and protective caps (33) are clamped on the two brackets (29).
7. The household monitoring intelligent mobile tracking camera according to claim 6, characterized in that, Balls (42) are equidistantly installed at one end of the connection ring (39) away from the second spring (41). Among them, a fixing strip (51) is fixedly installed on the two brackets (29), a first cleaning strip (52) is fixedly installed in the inner wall of the fixing strip (51), and the first cleaning strip (52) is attached to the camera cover (31).
8. The household monitoring intelligent mobile tracking camera according to claim 7, wherein, A side plate (53) is fixedly installed on the side wall of the fixing strip (51); Among them, a strip-shaped groove (54) is formed in the side plate (53), and a sliding column (55) is slidably installed inside the strip-shaped groove (54).
9. The intelligent mobile tracking camera for home monitoring according to claim 8, characterized in that, A second cleaning strip (56) is fixedly installed at the lower end of the sliding column (55), and the second cleaning strip (56) is attached to the inner wall of the side plate (53); Among them, a sliding groove (57) is formed inside the sliding column (55), and a pressing strip (58) is slidably installed inside the sliding groove (57).
10. The household monitoring intelligent mobile tracking camera according to claim 9, characterized in that, A third spring (59) is fixedly installed at the lower end of the pressing strip (58), and one end of the third spring (59) away from the pressing strip (58) is fixedly connected to the inner wall of the sliding groove (57); Among them, a third threaded ring (61) is threadedly installed on the sliding column (55).
Citation Information
Patent Citations
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