Organic tea garden environment meteorological automatic monitor
Through the design of lifting components and range adjustment components, the fixed installation problem of automatic tea garden environmental meteorological monitor is solved, flexible height monitoring and multi-directional shooting are achieved, and the accuracy and shooting effect of tea garden environmental monitoring are improved.
Patent Information
- Application Number
- CN202510875101.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-27
- Publication Date
- 2025-07-29
AI Technical Summary
The installation height of the existing tea garden environmental meteorological automatic monitor is fixed, resulting in data monitoring deviations and the camera installation angle is fixed, resulting in insufficient comprehensive shooting of the tea garden environment.
The adjustable device is adopted, including lifting components and range adjustment components. The cam lifting roller is driven by the motor to drive the lifting frame to unfold, and the flexible adjustment of the camera is achieved to achieve flexible adjustment of the monitoring height and shooting range.
It realizes flexible monitoring height and multi-directional shooting of the tea garden environment, reduces data monitoring deviations and shooting blind spots, and improves the accuracy and shooting effect of monitoring data.
Smart Images

Figure CN120386046A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of tea garden environmental meteorological monitoring, and specifically to an organic tea garden environmental meteorological automatic monitor. Background Technique
[0002] Most of the tea-growing areas in China are in humid and semi-humid regions, and are mostly planted in hilly and mountainous areas. Under natural conditions, they mainly rely on precipitation. However, climate change has caused great differences in rainfall in different regions. In the same month, the rainfall distribution is also unpredictable, sometimes more and sometimes less. In the case of less rainfall, drought will occur in the tea garden. At present, general tea garden management is carried out by manual on-site observation. However, directly observing the humidity environment of the tea garden through human senses will produce errors due to human subjective judgment, and it is impossible to accurately judge the occurrence of environmental emergencies, which is not conducive to taking corresponding measures in a timely manner. Moreover, a large amount of manpower is required to conduct real-time inspections in the tea garden to ensure real-time monitoring of the tea garden environment, resulting in high labor costs. In addition, wind direction, light, and wind speed are also environmental conditions that tea farmers need to master, and it is difficult to judge such data through human senses.
[0003] Therefore, at present, an automatic meteorological monitor is generally used, which is generally equipped with corresponding equipment, to automatically monitor the environmental conditions such as rainfall, wind direction, light, and wind speed in the tea garden.
[0004] The currently commonly used automatic meteorological monitor for tea garden environment has a relatively fixed overall installation height, and the environmental monitoring data at different heights is relatively low, resulting in data monitoring deviation problems. At the same time, in order to be able to monitor the tea garden environment in real time, a camera generally needs to be equipped to record in real time. However, the installation and use of the camera generally have a relatively fixed angle, and the shooting and recording of the tea garden environment are not comprehensive enough, resulting in a certain problem of blocked view. Summary of the Invention
[0005] The purpose of the present invention is to provide an organic tea garden environmental meteorological automatic monitor to solve the problems raised in the above background technique.
[0006] To achieve the above object, the present invention adopts the following technical solutions: An organic tea garden environmental meteorological automatic monitor, including a column, an equipment box is installed outside the upper end of the column, a soil temperature and humidity monitor is connected to the lower end of the equipment box through wiring, a first cross bar is bolted to the upper end of the column, a solar panel and a rain gauge are respectively installed on the left and right sides of the upper end of the first cross bar, a second cross bar is bolted to the top of the column, a temperature and humidity detector is installed in the middle of the second cross bar, and a light intensity meter is installed above the temperature and humidity detector. Wind direction sensors and wind speed sensors are respectively arranged on the left and right sides of the upper end of the second cross bar. It also includes an adjustable device, the adjustable device includes a chassis, the chassis is arranged at the bottom and is in contact with the ground, anchor rods are fixedly arranged on both sides of the bottom of the chassis, a lifting component is arranged above the chassis, support plates are installed on both sides of the upper end of the lifting component, a range adjustment component is connected to the upper ends of the two support plates, and the upper end of the range adjustment component is connected to the lower end of the column.
[0007] Preferably, the lifting component includes a fixing plate, the fixing plate is fixedly arranged on the upper end of the chassis, a first motor is installed on the front side of the upper end of the fixing plate, the output end of the first motor is connected to the inside of the cam, a roller is abutted against the upper end of the cam, the middle of the roller is rotatably connected to the lifting frame, the rear side of the lifting frame is rotatably connected to the limiting block, and the limiting block is slidably inserted into the upper part of the inside of the guide plate. The bottom of the guide plate is connected to the chassis, the upper end of the lifting frame is connected to the receiving frame, and the lower end of the lifting frame is rotatably connected to the guide plate. The upper end of the receiving frame is locked to the bottom of the column.
[0008] Preferably, the range adjustment component includes a driving box, the driving box is installed on the upper end of the receiving frame, a second motor is installed on the left side of the upper end of the driving box, the right side of the upper end of the driving box is rotatably connected to a connecting pipe, the upper end of the connecting pipe is inserted into the middle of a turntable, and the top of the connecting pipe is locked to the turntable. A receiving disc is arranged at the lower end of the turntable, and both sides of the receiving disc are fixedly connected to the support plates. A connecting arm is rotatably connected to the outside of the turntable, and the side of the connecting arm away from the turntable is connected to a slider. The slider is slidably inserted into the inside of the receiving disc, and a shooting component is arranged at the top of the slider.
[0009] Preferably, the shooting component includes a protective shell, the protective shell is connected and locked to the slider, a connecting frame is installed inside the protective shell, a third motor is arranged in the middle of one side of the connecting frame, and the output end of the third motor is connected to a runner. A connecting block is movably inserted outside the runner, and the middle of the connecting block is inserted into a docking rod. Both sides of the docking rod are connected to swing frames respectively, and both sides of the swing frames are rotatably connected to the connecting frame. The upper end of the front side of the swing frame is connected to a camera, and the camera is located outside the upper end of the protective shell.
[0010] Preferably, a circle of concave portions is formed on the outside of the cam, and the cam is abutted against the outside of the roller through the concave portions formed on the outside.
[0011] Preferably, the lifting frame is composed of a combination of connecting rods connected at no less than six locations, and the limit block connected at the rear side of the lifting frame is connected to the upper end of the front side of the guide plate in a limited sliding manner.
[0012] Preferably, the middle portion of the connecting pipe is hollow, and the hollow portion inside the connecting pipe is connected to the column.
[0013] Preferably, the turntables are arranged in an upper and lower relative position, and connecting arms are rotatably connected between the four sides of the turntables on both sides.
[0014] Preferably, linear grooves are integrally formed on all four sides of the receiving plate, and the receiving plate is slidably docked with the slider through the linear groove on one side.
[0015] Preferably, the swing frame is arranged in an inverted door-shaped frame as a whole, and the upper and lower sides of the swing frame away from the docking rod are respectively rotatably connected to the connecting frame.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] The present invention is provided with an adjustable device, that is, a lifting component placed at the bottom, which can realize the lifting effect of the cam on the roller under the drive of the first motor. As the roller moves upward, the lifting frame connected to the lower end of the front side of the guide plate can be lifted and expanded accordingly, so as to meet the flexible adjustment of the monitoring height of the automatic meteorological monitor to meet the use requirements of different monitoring situations. The range adjustment component connected to the upper end of the lifting component can meet the multi-directional real-time shooting of the tea garden environment. When the turntable rotates, the connecting arms connected to the four sides of the turntable can realize the pushing and pulling of the slider connected at the outer end, so as to meet the flexible adjustment of the shooting range of the camera, so as to realize clear, large-scale and no-dead-angle shooting and recording of the tea garden environment.
[0018] The setting of the lifting assembly, that is, the cam runs with the first motor, and when it rotates, it can realize the lifting of the externally connected roller. As the roller moves upward, it can drive the lifting frame connected to the front side of the guide plate to unfold. In this way, the unfolded lifting frame can drive the receiving frame connected to the upper end to rise along the top of the base frame to meet the adaptive adjustment of the monitoring height of the meteorological monitoring equipment. At the same time, when the lifting frame is unfolded, it can synchronously drive the limit block installed at the upper end of the front side of the guide plate to move upward to meet the unfolding guide of the lifting frame, improve the operating stability of the lifting frame, and make the lifting and adjustment process of the monitoring equipment stable.
[0019] The setting of the range adjustment component, that is, when the second motor installed at the upper left end of the drive box operates, it can drive the double-gear meshing structure inside the drive box to meet the rotation of the connecting pipe connected to the upper right end of the drive box. When the connecting pipe is in a rotating state, the bolt butt-jointed to the turntable at the top of the connecting pipe can rotate synchronously to drive the connecting arms connected to the four outer sides at the same time, so that the four connecting arms can reciprocally push and pull the four sliders under the guiding cooperation of the linear grooves on the four sides of the receiving plate. In this way, the horizontal movement adjustment of the shooting positions of the four shooting components can be conveniently realized, making the shooting range larger and the shooting of the picture clearer, and greatly enhancing the real-time shooting and recording effect of the internal situation of the tea garden environment.
[0020] The setting of the shooting component, that is, the camera installed at the upper end of the protective shell can realize the real-time shooting and recording of the tea garden environment. When the third motor installed on one side of the connecting frame operates, it can drive the rotating wheel connected to the output end, so that the connecting block movably connected to the outside of the rotating wheel can move inwards and outwards under the cooperation of the rotating effect and the docking rod connected to the middle part. In this way, to meet the left and right reciprocating movement of the docking rod, and with the reciprocating movement of the docking rod, the swing frame connected to the outside of the docking rod can cooperate with the connection effect of the connecting frame to realize the reciprocating swing of the overall camera, so as to achieve the flexible swing adjustment of the shooting angle of the camera, making its shooting perspective larger and the shooting picture more sufficient. Brief Description of the Drawings
[0021] Figure 1 is a structural schematic diagram of the present invention;
[0022] Figure 2 is a structural schematic diagram of the adjustable device of the present invention;
[0023] Figure 3 is a structural schematic diagram of the lifting component of the present invention;
[0024] Figure 4 is a partial structural schematic diagram of the front view expansion of the lifting component of the present invention;
[0025] Figure 5 is a structural schematic diagram of the range adjustment component of the present invention;
[0026] Figure 6 is a disassembled structural schematic diagram of the range adjustment component of the present invention;
[0027] Figure 7 is a structural schematic diagram of the shooting component of the present invention;
[0028] Figure 8 is a structural schematic diagram of the internal structure of the shooting component of the present invention.
[0029] In the figure: vertical column - 1, equipment box - 2, soil temperature and humidity monitor - 3, first cross bar - 4, solar panel - 5, rain gauge - 6, second cross bar - 7, temperature and humidity detector - 8, light intensity meter - 9, wind direction sensor - 10, wind speed sensor - 11, adjustable device - 12, chassis - 121, anchor rod - 122, lifting assembly - 123, fixed plate - 1231, first motor - 1232, cam - 1233, roller - 1234, lifting frame - 1235, limit block - 1236, guide plate - 1237, receiving frame - 1238, support plate - 124, range adjustment assembly - 125, drive box - 1251, second motor - 1252, connecting pipe - 1253, turntable - 1254, receiving disk - 1255, connecting arm - 1256, slider - 1257, shooting assembly - 1258, protective shell - 12581, connecting frame - 12582, third motor - 12583, runner - 12584, connecting block - 12585, docking rod - 12586, swing frame - 12587, camera - 12588. Detailed implementation mode
[0030] In order to further explain the technical solution of the present invention, the following will be elaborated in detail through specific embodiments.
[0031] Please refer to Figure 1 , the present invention provides an organic tea garden environmental meteorological automatic monitor, including a vertical column 1, an equipment box 2 is installed outside the upper end of the vertical column 1, and the equipment box 2 is wirelessly or wiredly connected to an external monitoring or display location. The lower end of the equipment box 2 is connected to a soil temperature and humidity monitor 3 through wiring. The upper end of the vertical column 1 is bolt - fixed with a first cross bar 4. On the upper end of the first cross bar 4, a solar panel 5 and a rain gauge 6 are respectively installed on the left and right sides. The top of the vertical column 1 is bolt - fixed with a second cross bar 7. A temperature and humidity detector 8 is installed in the middle of the second cross bar 7, and a light intensity meter 9 is installed above the temperature and humidity detector 8. A wind direction sensor 10 and a wind speed sensor 11 are respectively arranged on the left and right sides of the upper end of the second cross bar 7.
[0032] Specifically, after the organic tea garden environmental meteorological automatic monitor of the present application is installed inside the tea garden through the column 1, the cooperation of the solar panels 5 and the rain gauge 6 respectively arranged on the left and right sides of the upper end of the first cross bar 4 can realize the absorption and power supply of solar energy, while the rain gauge 6 can realize the real-time monitoring of the rainfall amount on rainy days. The temperature and humidity detector 8 arranged on the upper end of the second cross bar 7 can realize the real-time monitoring of the temperature and humidity in the atmospheric environment, and the light intensity meter 9 installed on the upper end of the temperature and humidity detector 8 can realize the monitoring of the light intensity. The wind direction sensor 10 and the wind speed sensor 11 arranged on the left and right sides of the upper end of the second cross bar 7 can realize the real-time monitoring of the wind direction and wind speed in the tea garden environment. The collected data can be transmitted to the inside of the equipment box 2 and wirelessly transmitted to the external monitoring location or the display screen through the equipment box 2 to realize the real-time monitoring of the environmental data of the organic tea garden, and corresponding measures can be adjusted according to different data. At the same time, the soil temperature and humidity monitor 3 docked at the bottom of the equipment box 2 can be inserted into the tea garden ground to monitor the pH value of the tea garden soil, and the corresponding drugs can be adjusted through the detected pH value to greatly improve the quality of tea cultivation.
[0033] Please refer to Figures 2 - 4 , the adjustable device 12 in this embodiment, the adjustable device 12 includes a chassis 121, the chassis 121 is arranged at the bottom and connected to the ground. On the left and right sides of the bottom of the chassis 121, anchor rods 122 are fixedly arranged in pairs. Through the arrangement of the anchor rods 122, the bottom support stability can be improved. An elevating assembly 123 is arranged at the upper end of the chassis 121. On the left and right sides of the upper end of the elevating assembly 123, support plates 124 are installed. A range adjusting assembly 125 is docked at the upper ends of the two support plates 124, and the upper end of the range adjusting assembly 125 is connected to the lower end of the column 1.
[0034] Among them, the elevating assembly 123 includes a fixing plate 1231, the fixing plate 1231 is vertically and fixedly connected to the front side of the upper end of the chassis 121. A first motor 1232 is installed on the front side of the upper end of the fixing plate 1231. The output end of the first motor 1232 is connected to the inside of the cam 1233. A roller 1234 abuts against the upper end of the cam 1233. Through the rotation of the cam 1233, the lifting drive of the roller 1234 can be realized. The middle of the roller 1234 is rotatably connected to the lifting frame 1235. The rear side of the lifting frame 1235 is rotatably connected to the limiting block 1236, and the limiting block 1236 is slidably embedded inside the upper end of the guide plate 1237. The bottom of the guide plate 1237 is connected to the chassis 121. The upper end of the lifting frame 1235 is connected to the receiving frame 1238, and the two sides of the bottom of the receiving frame 1238 are inserted and combined with the chassis 121 to meet the subsequent lifting guidance and support. The lower end of the lifting frame 1235 is rotatably connected to the guide plate 1237. The upper end of the receiving frame 1238 is locked to the bottom of the column 1.
[0035] Among them, the cam 1233 is provided with a circle of concave part on the outside, and the cam 1233 is offset against the outer limit of the roller 1234 through the concave part on the outside, so as to ensure that when the cam 1233 is rotated and lifted, the roller 1234 is not easy to slip and can be in a stable up and down movement state; the lifting frame 1235 is composed of a combination of no less than six connecting rods, and the limit block 1236 connected to the rear side of the lifting frame 1235 is slidably connected to the upper end of the front side of the guide plate 1237. In this way, the lifting frame 1235 can be easily unfolded through the lifting transmission effect of the cam 1233 and the roller 1234, so as to realize flexible lifting and lowering adjustment of the monitoring height.
[0036] Specifically, when conducting meteorological monitoring activities in the tea garden environment, in order to be able to adjust the monitoring height according to different situations, the first motor 1232 connected to the upper end of the front side of the fixed plate 1231 can be operated to rotate the cam 1233 connected to the output end of the first motor 1232. As the cam 1233 rotates, the roller 1234 connected to the concave part provided on the outer side of the cam 1233 will realize the upward movement through the rotation lifting effect of the cam 1233. When the roller 1234 moves upward, it will contact the lower end of the guide plate 1237. The lifting frame 1235 connected to the front side will achieve an unfolding and lifting effect through the jacking effect. As a result, the receiving frame 1238 connected to the upper end of the lifting frame 1235 will move vertically outward along the upper end of the base frame 121. In this way, the top connection range adjustment component 125 can be driven and the column 1 can be moved upward accordingly, so as to meet the flexible adjustment of the height of the monitoring equipment installed on the outside of the column 1, and efficiently realize the rapid detection and acquisition of environmental data at different heights, so as to meet the adaptability of the monitoring equipment under different monitoring conditions.
[0037] At the same time, when the lifting frame 1235 is driven by the roller 1234 to move upward and perform the jacking activity, in order to ensure the stability of its movement, a limit block 1236 is docked on the rear side of the lifting frame 1235 to limit the sliding docking with the front side of the upper end of the guide plate 1237 to meet the vertical movement guide cooperation, so that the overall lifting and adjusting process is stable.
[0038] See also Figures 5 - 8, in this embodiment, the range adjustment component 125 includes a drive box 1251. The drive box 1251 is installed at the upper end of the receiving frame 1238. A second motor 1252 is installed on the left side of the upper end of the drive box 1251. A connecting pipe 1253 is provided on the upper right side of the upper end of the drive box 1251, and the bottom of the connecting pipe 1253 is connected to the inside of the drive box 1251 to meet the stable rotational transmission activity. The upper end of the connecting pipe 1253 is vertically inserted into the middle of the turntable 1254, and the top of the connecting pipe 1253 is bolt-locked to the turntable 1254. A receiving plate 1255 is provided at the lower end of the turntable 1254, and the left and right sides of the bottom of the receiving plate 1255 are fixedly connected to the upper ends of the two support plates 124. In this way, the stability of the receiving and guiding state is ensured. A connecting arm 1256 is rotatably connected to the outside of the turntable 1254, and the side of the connecting arm 1256 away from the turntable 1254 is connected to the slider 1257. In this way, a stable composition of the pushing and pulling state can be achieved. The slider 1257 is slidably inserted into the inside of the receiving plate 1255, and a photographing component 1258 is provided at the top of the slider 1257.
[0039] Among them, the inside of the drive box 1251 has a structure of two meshing gears, and the structure of two meshing gears is prior art. Therefore, it is not necessary to elaborate in detail in this application.
[0040] Among them, the photographing component 1258 includes a protective shell 12581. The protective shell 1258 is docked and locked to the slider 1257. A connecting frame 12582 is installed inside the protective shell 12581. A third motor 12583 is provided in the middle of one side of the connecting frame 12582, and a runner 12584 is docked to the output end of the third motor 12583. A connecting block 12585 is movably inserted outside the runner 12584, and the middle of the connecting block 12585 is inserted into the docking rod 12586. That is, when the runner 12584 is in a rotating state, the connecting block 12585 movably docked outside the runner 12584 can perform self-sliding activities through the docking effect of the docking rod 12586 to ensure the stable progress of the subsequent reciprocating swinging process. Both sides of the docking rod 12586 are docked with the swinging frame 12587, and both sides of the swinging frame 12587 are rotatably connected to the connecting frame 12582. The upper end of the front side of the swinging frame 12587 is connected to the camera 12588, and the camera 12588 is located outside the upper end of the protective shell 12581.
[0041] Among them, the middle part of the connecting pipe 1253 is hollow, and the hollow part inside the connecting pipe 1253 is connected to the column 1; the turntables 1254 are arranged in an up-and-down opposite manner, and connecting arms 1256 are rotatably connected between the four sides of the two turntables 1254 on both sides. In this way, the four connecting arms 1256 can synchronously drive the corresponding connecting sliders 1257 at the outer ends to push and pull, so that the four shooting components 1258 can be synchronously moved outwards or inwards for adjustment; linear grooves are integrally formed on the four sides of the receiving plate 1255, and the receiving plate 1255 is slidably connected to the slider 1257 through a linear groove on one side. Through the four linear grooves, the stable movement of the slider 1257 during the outward and inward sliding processes can be ensured.
[0042] Among them, the swing frame 12587 is integrally arranged in an inverted door-shaped frame, and the upper and lower sides of the end of the swing frame 12587 away from the docking rod 12586 are respectively rotatably connected to the connecting frame 12582. In this way, the swing frame 12587 can be in a stable swinging state to flexibly adjust the shooting and recording orientation of the camera 12588.
[0043] Specifically, to better achieve real-time shooting and recording of the tea garden environment, shooting components 1258 are installed at the upper ends of the sliders 1257 provided at the four linear grooves of the receiving plate 1255. That is, the cameras 12588 installed at the tops of the four shooting components 1258 can achieve multi-directional shooting and recording of the tea garden environment, reducing the problem of limited shooting.
[0044] Under the operation of the third motor 12583 provided in the middle of one side of the connecting frame 12582, the rotation of the runner 12584 connected to the output end of the third motor 12583 can be driven. As the runner 12584 rotates, the connecting block 12585 movably inserted outside the runner 12584 can be rotated to cooperate with the docking rod 12586 inserted in the middle for inward or outward movement. In this way, the left and right reciprocating movement of the docking rod 12586 can be correspondingly realized. Thus, under the reciprocating movement of the docking rod 12586, the swing frame 12587 docked to the outside of the docking rod 12586 can, under the docking cooperation of the connecting frame 12582, realize the reciprocating swing of the camera 12588 docked at the top, that is, flexibly adjust the shooting orientation of the camera 12588, making its shooting range larger and the shooting and recording effect better.
[0045] To further adjust the shooting record range, the second motor 1252 provided at the upper left end of the drive box 1251 can also be operated to drive the double-gear meshing structure inside the drive box 1251 by the second motor 1252. In this way, the rotation of the connecting pipe 1253 installed at the upper right end of the drive box 1251 can be realized. When the connecting pipe 1253 rotates, the synchronous rotation drive of the top bolt docking turntable 1254 can be realized. That is, when the turntable 1254 rotates clockwise, the connecting arms 1256 docked on the four sides of the turntable 1254 can realize synchronous outward pushing activities. In this way, the slider 1257 docked on the side of the connecting arm 1256 away from the turntable 1254 can be guided along the linear grooves opened on the four sides of the receiving plate 1255 for outward movement. In this way, the shooting component 1258 correspondingly provided on the top of the slider 1257 can move outward to be closer to the tea garden, making the shooting clearer and meeting the requirements of efficient, clear and large-range shooting records in the tea garden environment.
[0046] The above are only the preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An organic tea garden environmental meteorological automatic monitor, comprising a column (1). An equipment box (2) is installed outside the upper end of the column (1). A soil temperature and humidity monitor (3) is connected by wiring to the lower end of the equipment box (2). A first cross bar (4) is bolted to the upper end of the column (1). A solar panel (5) and a rain gauge (6) are respectively installed on the left and right sides of the upper end of the first cross bar (4). A second cross bar (7) is bolted to the top of the column (1). A temperature and humidity detector (8) is installed in the middle of the second cross bar (7), and a light intensity meter (9) is installed above the temperature and humidity detector (8). A wind direction sensor (10) and a wind speed sensor (11) are respectively arranged on the left and right sides of the upper end of the second cross bar (7); It is characterized in that: It further includes an adjustable device (12). The adjustable device (12) includes a chassis (121). The chassis (121) is arranged at the bottom and is in contact with the ground. Anchor bolts (122) are fixedly provided on both sides of the bottom of the chassis (121). A lifting assembly (123) is provided at the upper end of the chassis (121). Support plates (124) are installed on both sides of the upper end of the lifting assembly (123). A range adjustment assembly (125) is connected to the upper ends of the two support plates (124), and the upper end of the range adjustment assembly (125) is connected to the lower end of the column (1).
2. The automatic meteorological monitor for the organic tea garden environment according to claim 1, wherein: The lifting assembly (123) includes a fixed plate (1231). The fixed plate (1231) is fixedly arranged at the upper end of the chassis (121). A first motor (1232) is installed on the front side of the upper end of the fixed plate (1231). The output end of the first motor (1232) is connected to the inside of a cam (1233). A roller (1234) is abutted against the upper end of the cam (1233). The middle of the roller (1234) is rotatably connected to a lifting frame (1235). The rear side of the lifting frame (1235) is rotatably connected to a limit block (1236), and the limit block (1236) is slidably inserted into the upper end inside a guide plate (1237). The bottom of the guide plate (1237) is connected to the chassis (121). The upper end of the lifting frame (1235) is connected to a receiving frame (1238), and the lower end of the lifting frame (1235) is rotatably connected to the guide plate (1237). The upper end of the receiving frame (1238) is locked to the bottom of the column (1).
3. The organic tea garden environmental meteorological automatic monitor according to claim 2, characterized in that: The range adjustment component (125) includes a driving box (1251). The driving box (1251) is installed at the upper end of the receiving frame (1238). A second motor (1252) is installed on the left side of the upper end of the driving box (1251). The right side of the upper end of the driving box (1251) is rotatably connected to a connecting pipe (1253). The upper end of the connecting pipe (1253) is inserted into the middle of a turntable (1254), and the top of the connecting pipe (1253) is locked with the turntable (1254). A receiving plate (1255) is provided at the lower end of the turntable (1254), and both sides of the receiving plate (1255) are fixedly connected to a support plate (124). A connecting arm (1256) is rotatably connected to the outside of the turntable (1254), and the side of the connecting arm (1256) away from the turntable (1254) is connected to a slider (1257). The slider (1257) is slidably inserted into the inside of the receiving plate (1255), and a shooting component (1258) is provided at the top of the slider (1257).
4. The organic tea garden environmental meteorological automatic monitor according to claim 3, wherein: The shooting component (1258) includes a protective shell (12581). The protective shell (12581) is butted and locked with the slider (1257). A connecting frame (12582) is installed inside the protective shell (12581). A third motor (12583) is provided in the middle of one side of the connecting frame (12582), and a runner (12584) is butted at the output end of the third motor (12583). A connecting block (12585) is movably inserted outside the runner (12584), and a docking rod (12586) is inserted into the middle of the connecting block (12585). Both sides of the docking rod (12586) are docked with a swing frame (12587), and both sides of the swing frame (12587) are rotatably connected to the connecting frame (12582). The upper end of the front side of the swing frame (12587) is connected to a camera (12588), and the camera (12588) is located outside the upper end of the protective shell (12581).
5. The organic tea garden environmental meteorological automatic monitor according to claim 2, characterized in that: A circle of concave portions is formed on the outside of the cam (1233), and the outside of the cam (1233) abuts against the outside of the roller (1234) through the concave portions formed on the outside thereof.
6. The automatic meteorological monitor for the organic tea garden environment according to claim 2, characterized in that: The lifting frame (1235) is formed by docking and combining no less than six connecting rods, and the limiting block (1236) docked at the rear side of the lifting frame (1235) is in limiting sliding docking with the upper end of the front side of the guide plate (1237).
7. The automatic meteorological monitor for the organic tea garden environment according to claim 3, wherein: The middle of the connecting pipe (1253) is provided in a hollow shape, and the hollow part inside the connecting pipe (1253) is docked with the column (1).
8. The automatic meteorological monitor for the organic tea garden environment according to claim 3, wherein: The turntables (1254) are arranged in an up-and-down opposite manner, and connecting arms (1256) are rotatably connected between the four sides of the two turntables (1254).
9. The automatic meteorological monitor for the organic tea garden environment according to claim 3, wherein: Linear grooves are integrally formed on the four sides of the receiving plate (1255), and the receiving plate (1255) is slidably docked with the slider (1257) through one of the linear grooves.
10. The organic tea garden environmental meteorological automatic monitor according to claim 4, characterized in that: The swing frame (12587) is integrally arranged in an inverted door-shaped frame, and the upper and lower sides of the end of the swing frame (12587) away from the docking rod (12586) are respectively rotatably connected to the connecting frame (12582).
Citation Information
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