Outdoor photovoltaic power supply monitoring device
By using photovoltaic panels for power supply and photovoltaic modules for energy storage, the power supply problem of surveillance cameras in remote areas or environments with poor power supply has been solved, achieving self-sufficient energy supply and stable monitoring, and improving the durability and monitoring efficiency of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-03-27
AI Technical Summary
Existing surveillance cameras face power limitations in remote areas or environments with poor power conditions, making it difficult to operate reliably for extended periods.
The design employs photovoltaic panels for power supply and photovoltaic modules for energy storage. It achieves self-sufficient energy supply through mounting poles and wiring channels. Combined with angle adjustment mechanisms and installation mechanisms, it ensures that the photovoltaic panels receive maximum sunlight and provide stable power supply.
It achieves long-term stable power supply in environments without power grids, improves the durability and security of monitoring devices, ensures uninterrupted 24-hour monitoring function, adapts to different lighting environments, and reduces wiring and maintenance costs.
Smart Images

Figure CN224054183U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to monitoring technical field especially relates to an outdoor photovoltaic power supply monitoring device. BACKGROUND
[0002] The monitoring camera is an advanced semiconductor imaging device, which has many remarkable advantages. These advantages include high sensitivity, resistance to strong light interference, small distortion, small size, long service life and resistance to harsh dynamic environment. In modern security and protection systems, image generation mainly relies on CCD cameras. CCD, the abbreviation of Charge Coupled Device, can convert received light into electric charge and store and transfer these electric charges. In addition, it can also take out the stored electric charges to change the voltage, so CCD becomes an ideal camera element. The camera based on CCD technology is widely used in various occasions due to its small size, light weight, no magnetic field effect, anti-vibration and impact characteristics.
[0003] Outdoor monitoring cameras are usually equipped with hemispherical protective devices. Such design makes them waterproof and resistant to high temperature, and can effectively suppress strong light interference and have infrared night vision function. These characteristics enable outdoor monitoring cameras to adapt to various harsh outdoor environments and support additional functions such as wireless routing. As for indoor monitoring cameras, their design is simpler. They only need to insert the network camera into the network cable to transmit images through the network to the other end of the earth and record the monitoring picture. Installing a network camera in a company, warehouse, shop or home can realize remote monitoring function as long as it can be connected to the Internet. However, when it comes to power supply, the monitoring cameras on the market usually adopt the working mode of wiring along the building or intermittent charging combined with wireless use, which limits their use to a certain extent. Therefore, they are not suitable for environments with poor power supply conditions. For example, on some remote highways or national roads, the power supply is unstable. In order to strengthen the management of the road, monitoring equipment needs to be installed, but traditional monitoring cameras are difficult to deploy due to power supply limitations.
[0004] In the patent "a kind of adjustable angle building equipment outdoor monitor" (patent authorized announcement number CN220930630U, hereinafter referred to as prior art 1) discloses an outdoor monitor, the main technical principle in prior art 1 is by setting up stand, threaded rod, moving block and adjusting column and other components, so that building equipment outdoor monitor can be adjusted at random to the angle of monitoring, and can be supported by supporting column and adjusting column to monitoring, while the up and down angle and horizontal angle of monitoring are adjusted by adjusting column and gear box.In addition, by the meshing movement of gear box and driven gear, the angle of the shaft to the monitor can be adjusted, and the camera body is protected by the protective cover.However, the monitoring device in prior art 1 has certain flexibility in angle adjustment, but still relies on traditional wired power supply in power supply mode, which limits its application in outdoor environment without power supply or unstable power supply.Especially in remote areas or field environment, laying wire not only has high cost, but also is difficult to maintain. Utility model content
[0005] Therefore, the utility model embodiment provides an outdoor photovoltaic power supply monitoring device to solve the problem of limited power supply of monitoring equipment in remote areas or poor power supply environment.
[0006] The utility model embodiment provides an outdoor photovoltaic power supply monitoring device, which comprises a mounting rod and a monitoring device arranged on the mounting rod, an installation part is further arranged on the mounting rod, and a photovoltaic panel is installed on the mounting rod through the installation part, the inside of the mounting rod is hollow and provided with a wiring channel, the installation part comprises a plurality of installation stations, each installation station is communicated with the wiring channel through a wiring hole, a photovoltaic assembly is further arranged on the mounting rod, the photovoltaic assembly is used for storing electric quantity and supplying power to electric components, and the photovoltaic panel and the monitoring device are connected with the photovoltaic assembly and supply power to the monitoring device.
[0007] Preferably, the photovoltaic panel is further provided with a connecting part connected with the installation part, the connecting part is connected with the installation station of the installation part, and the connecting part is installed at a preset angle with the photovoltaic panel to increase the irradiation time of the photovoltaic panel.
[0008] Preferably, the photovoltaic panel and the connecting part are at least provided with a pair, and the pair of photovoltaic panels and connecting parts are arranged on the mounting rod in a spaced manner through the installation part.
[0009] Preferably, the monitoring device is arranged on one side of one of the photovoltaic panels through the installation part, the monitoring device comprises a mounting arm and a monitor connected with the mounting arm, and the monitor covers different angle monitoring ranges by adjusting the installation angle between the monitor and the mounting arm.
[0010] Preferably, the installation station comprises a first connecting hole and a second connecting hole and a wiring hole arranged between the first connecting hole and the second connecting hole.
[0011] Preferably, the installation station is closed to the outside communication of the wiring hole by the photovoltaic panel and the monitoring device arranged; the installation station is further provided with a sealing plate detachably connected through the first connecting hole and the second connecting hole.
[0012] Preferably, the photovoltaic assembly comprises a box body and a controller and a storage battery arranged in the box body; the photovoltaic panel is connected with the controller, the controller is connected with the storage battery and the monitoring device respectively, and the storage battery is connected with the monitoring device.
[0013] Preferably, the box body is further provided with a heat dissipation member.
[0014] Preferably, the connecting part is a cantilever, and the cantilever is installed at a preset angle on the photovoltaic panel.
[0015] Preferably, the connecting part is an angle adjusting mechanism, and the photovoltaic panel is arranged on the angle adjusting mechanism and can be adjusted in the installation angle through the angle adjusting mechanism.
[0016] The outdoor photovoltaic power supply monitoring device has the following beneficial effects:
[0017] In the utility model, through photovoltaic panel power generation and photovoltaic assembly energy storage, the monitoring device can be long-term operated in the environment without power grid, and is suitable for remote areas or temporary monitoring demand places to adopt hollow installation pole design. The inside is equipped with wiring channel, makes the wiring between photovoltaic panel, photovoltaic assembly and monitoring device more safe and hidden, reduces the risk of line damage, improves the durability of equipment. And can be flexibly adjusted to adopt several installation stations, can adjust the installation angle and position of photovoltaic panel according to the demand, to adapt to different light environment, improve solar energy utilization efficiency. Through photovoltaic assembly energy storage, still can continuously power supply at night or rainy weather, guarantees the uninterrupted work of monitoring system for 24 hours, improves the safety protection effect. BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will be to the utility model embodiment needed to use the drawing briefly introduced, for the ordinary skilled person in the art comes, under the premise of not paying the creative labor, still can obtain other drawings according to these drawings, these are within the protection scope of the utility model.
[0019] Figure 1 It is a kind of outdoor photovoltaic power supply monitoring device structure schematic diagram;
[0020] Figure 2 is a partial structure diagram of an outdoor photovoltaic power supply monitoring device;
[0021] Figure 3 is a structure diagram of an angle adjusting mechanism;
[0022] Figure 4 is a structure diagram of a photovoltaic module;
[0023] Figure 5 is a structure diagram in example 3.
[0024] Parts and numbers in the figure:
[0025] 100-mounting rod, 110-mounting part, 111-mounting station, 112-first connecting hole, 113-second connecting hole, 114-wiring hole, 115-sealing plate;
[0026] 210-mounting arm, 220-monitor;
[0027] 300-photovoltaic module, 310-photovoltaic panel, 320-box, 321-controller, 322-battery, 323-radiator;
[0028] 400-connection part, 410-cantilever, 420-angle adjusting mechanism, 421-rack, 422-mounting rack, 423-motor, 424-driving wheel, 425-adjusting shaft, 426-driven wheel, 427-connecting rod;
[0029] 500-mounting mechanism, 510-accepting part, 520-assistant mounting part, 521-first clamping part, 522-second clamping part, 523-mounting groove, 524-accepting plate, 530-clamping cavity, 540-bolt;
[0030] 600-steel structure. DETAILED DESCRIPTION
[0031] For the purpose, technical scheme and advantages of the embodiments of the utility model, the technical scheme in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model. It should be noted that in this paper, relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between the entities or operations. In the description of the utility model, it should be understood that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model. Moreover, the terms "include", "contain" or any other variant thereof are intended to cover non-exclusive inclusion, so that the process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or device. Without more limitations, the elements defined by the statement "include" do not exclude the presence of other identical elements in the process, method, article or device including the elements. If there is no conflict, the embodiments of the utility model and various features in the embodiments can be combined with each other, and are all within the protection scope of the utility model.
[0032] Embodiment 1
[0033] Please refer to Figure 1 The utility model embodiment provides an outdoor photovoltaic power supply monitoring device, mainly solves the problem that the remote area or the power supply condition is not good under the environment monitoring equipment power supply is limited. The traditional monitoring camera usually relies on building wiring or intermittent charging, and in the scene far away from the power grid such as highway, national road, border outpost, field construction area, the wiring cost is high and the power supply is unstable, which leads to that the monitoring system is difficult to long-term reliable operation. The device realizes self-sufficient energy supply by the power supply of photovoltaic board 310, so that the monitoring equipment can work stably without external power grid support.
[0034] In the embodiment, the outdoor photovoltaic power supply monitoring device comprises a mounting rod 100 and a monitoring device arranged on the mounting rod 100, and the mounting rod 100 has a certain installation height for fixing the monitoring device at a suitable position for monitoring.
[0035] Further, the mounting rod 100 is further provided with a mounting portion 110 and a photovoltaic panel 310 mounted on the mounting rod 100 through the mounting portion 110; the mounting rod 100 is internally hollow and provided with a wiring channel 150, and the mounting portion 110 comprises a plurality of mounting stations 111, each of which is in communication with the wiring channel 150 through a wiring hole 114. The photovoltaic panel 310 is used to convert solar energy into electric energy and provide stable and continuous power supply for the monitoring device. By mounting the photovoltaic panel 310 on the mounting rod 100 and flexibly arranging the photovoltaic panel 310 through the plurality of mounting stations 111 of the mounting portion 110, it can be ensured that the photovoltaic panel 310 can receive sunlight to the maximum extent and improve the photoelectric conversion efficiency. Meanwhile, the design of the wiring channel 150 and the wiring hole 114 enables the wires between the photovoltaic panel 310 and the monitoring device to be arranged in the mounting rod 100 in an orderly and safe manner, avoiding the exposure and disorder of the wires.
[0036] The mounting rod 100 is further provided with a photovoltaic assembly 300, which is used to store electric energy and supply power to the electrical components, wherein the photovoltaic panel 310 and the monitoring device are connected with the photovoltaic assembly 300 and supply power to the monitoring device. The arrangement of the photovoltaic assembly 300 further enhances the energy self-sufficiency of the entire monitoring device. When the photovoltaic panel 310 converts solar energy into electric energy during the day, the excess electric energy can be stored in the photovoltaic assembly 300. In this way, in the case of insufficient light such as at night or on cloudy days, the photovoltaic assembly 300 can release the stored electric energy to continuously supply power to the monitoring device, ensuring the continuity and stability of the monitoring work. In addition, the connection mode of the photovoltaic assembly 300 with the photovoltaic panel 310 and the monitoring device is designed to be efficient and safe, ensuring stable transmission of electric energy and normal operation of the monitoring device.
[0037] Further, please refer to Figure 2 The photovoltaic panel 310 is further provided with a connecting portion 400 connected with the mounting portion 110; the connecting portion 400 is connected with the mounting station 111 of the mounting portion 110, and the connecting portion 400 is installed at a preset angle with the photovoltaic panel 310 to increase the irradiation time of the photovoltaic panel 310.
[0038] Further, please refer to Figure 1The photovoltaic panel 310 and the connecting part 400 are provided at least in pairs, and each pair of the photovoltaic panel 310 and the connecting part 400 is arranged on the mounting rod 100 in a spaced manner through the mounting part 110. In this way, the light resource can be maximized. Specifically, the spaced arrangement of one or more pairs of the photovoltaic panel 310 and the connecting part 400 on the mounting rod 100 can avoid mutual shielding and ensure that each photovoltaic panel 310 can fully receive sunlight. At the same time, the spaced arrangement is also conducive to air circulation, reducing the heat accumulation of the photovoltaic panel 310 due to long-time work, thereby improving the power generation efficiency and service life of the photovoltaic panel 310. In addition, through the flexible design of the mounting part 110, the angle and position of the photovoltaic panel 310 and the connecting part 400 can be easily adjusted to adapt to different environmental and lighting conditions, realizing more efficient and stable photovoltaic power supply.
[0039] Further, referring to Figure 1 The monitoring device is arranged on one side of one of the photovoltaic panels 310 through the mounting part 110. The monitoring device includes a mounting arm 210 and a monitor 220 connected with the mounting arm 210. The monitor 220 covers different angles of monitoring range by adjusting the mounting angle with the mounting arm 210. In this way, the monitoring device can monitor the running state of the outdoor photovoltaic power supply system in all directions and without dead angle. Specifically, the monitoring device is flexibly arranged on one side of one of the photovoltaic panels 310 through the mounting part 110, which not only saves space but also avoids the need for additional monitoring support, thereby reducing costs. At the same time, the mounting angle between the monitor 220 and the mounting arm 210 is adjustable, so that the monitor 220 can be adjusted to the best monitoring angle according to actual needs, covering the key components such as the photovoltaic panel 310, the connecting part 400 and the mounting rod 100, and monitoring their working state and abnormal conditions in real time. This design not only improves the monitoring efficiency, but also ensures the safety and stability of the outdoor photovoltaic power supply system.
[0040] Further, the mounting station 111 includes a first connecting hole 112 and a second connecting hole 113, and a wiring hole 114 arranged between the first connecting hole 112 and the second connecting hole 113.
[0041] The mounting station 111 closes the communication between the wiring hole 114 and the outside through the arranged photovoltaic panel 310 and the monitoring device.
[0042] The mounting station 111 is also provided with a sealing plate 115 which is detachably connected through the first connecting hole 112 and the second connecting hole 113.
[0043] In this embodiment, by closing the wiring hole 114, it can effectively prevent external factors such as dust, moisture, etc. from eroding the internal circuit and components of the monitoring device, ensuring the stable operation of the monitoring device. At the same time, through the detachable connection of the first connecting hole 112 and the second connecting hole 113, the sealing plate 115 design not only facilitates installation and maintenance, but also can flexibly adjust the position and number of the sealing plate 115 according to the actual situation, to adapt to different environments and monitoring needs. In addition, the close combination of the installation station 111 and the photovoltaic panel 310 further enhances the stability and durability of the entire monitoring device, ensuring its excellent monitoring effect in the complex outdoor environment.
[0044] Further, please refer to Figure 1 and Figure 4 , the photovoltaic module 300 includes a box 320 and a controller 321 and a battery 322 arranged in the box 320. This component is the core part of the entire solar power supply system, which effectively manages and distributes the electrical energy generated by the solar panel.
[0045] The photovoltaic panel 310, also widely known as a solar panel, can convert the received sunlight energy into direct current (DC) through the photovoltaic effect. The generated direct current is then transmitted to the solar controller 321, which is the key component responsible for electrical energy conversion and management in the entire system.
[0046] The controller 321, also known as the charge and discharge controller 321, its main function is to regulate the voltage and current of the photovoltaic panel 310, to ensure the safety and efficiency of the entire system. It can prevent the battery 322 from overcharging or overdischarging, which is crucial to prolong the service life of the battery 322. In addition, the controller 321 optimizes the management of electrical energy, ensuring that electrical energy can be efficiently transmitted from the input-connected photovoltaic panel 310 to the output-connected battery 322 and load. The battery 322 as an energy storage device can store the excess electrical energy generated by the photovoltaic panel 310 during the day, and provide power at night or on cloudy days, ensuring the continuous operation of the entire system. The controller 321 is also responsible for connecting the battery 322, accepting charging, and providing power for the monitor 220 and other load devices when needed.
[0047] The monitor 220, also known as the load device, its main function is to perform video monitoring tasks. It consumes the electrical energy provided by the system to ensure the normal operation of the monitoring function. The monitor 220 can be various forms of electronic devices, such as cameras, sensors, etc., which can perform the predetermined monitoring task after receiving the power provided by the controller 321.
[0048] The monitor 220 can be designed to be directly connected to the solar controller 321, so as to simplify the connection structure of the system, reduce the intermediate links, and improve the response speed and reliability of the system. Of course, the monitor 220 can also be powered by the battery 322, so as to ensure that the monitor 220 can still work normally in the absence of sunlight, thereby ensuring all-weather operation of the monitoring system.
[0049] Further, the box 320 is further provided with a heat dissipation member 323 for effectively dissipating heat generated during system operation, ensuring the normal working temperature of each component, and avoiding performance degradation or damage due to overheating.
[0050] Further, the connecting part 400 is a cantilever 410, and the cantilever 410 is installed at a preset angle to the photovoltaic panel 310. This design enables the photovoltaic panel 310 to receive sunlight at the optimal angle, thereby improving the photoelectric conversion efficiency and increasing the power generation of the system. At the same time, the installation mode of the cantilever 410 also facilitates angle adjustment of the photovoltaic panel 310 to adapt to changes in the position of the sun in different seasons and time periods, further optimizing the power generation effect.
[0051] Further, the mounting rod 100 is further provided with an illuminating lamp powered by the photovoltaic assembly 300, for providing illumination for the monitoring area at night or in insufficient light. This design not only improves the practicability of the monitoring system, but also maintains the clarity of the monitoring picture at night or in relatively dark light, ensuring the all-weather monitoring capability of the monitoring system. In addition, the illuminating lamp powered by the photovoltaic assembly 300 does not require additional power supply access, achieving energy self-sufficiency, and further improving the energy-saving and environmental protection performance of the entire monitoring device.
[0052] Embodiment 2
[0053] See Figure 1 and Figure 3 , the utility model embodiment provides a kind of angle adjusting mechanism 420 of outdoor photovoltaic power supply monitoring device, for adjusting the angle of the photovoltaic panel 310 by the sun angle illumination;And the connecting part 400 in embodiment 1 is cantilever 410, the installation angle of the cantilever 410 is fixed and cannot be adjusted, so that the angle of the sunlight illumination obtained can not be optimal all the time.The angle adjusting mechanism 420 of this embodiment, by adding adjusting assembly, realizes the flexible adjustment to the angle of the photovoltaic panel 310 by the sunlight illumination, to ensure that the photovoltaic panel 310 can always receive sunlight illumination at the optimal angle, further improve photoelectric conversion efficiency and the power generation of system.The angle adjusting mechanism 420 structure is simple, and operation is convenient, effectively improves the practicability and performance of outdoor photovoltaic power supply monitoring device.
[0054] Further, the connecting part 400 is an angle adjusting mechanism 420, and the photovoltaic panel 310 is arranged on the angle adjusting mechanism 420 and can be adjusted in installation angle through the angle adjusting mechanism 420.
[0055] The angle adjusting mechanism 420 comprises a rack 421 connected with the mounting part 110 and a mounting rack 422 for mounting the photovoltaic panel 310.
[0056] The rack 421 is provided with a motor 423 and an adjusting shaft 425 driven by the motor 423, the adjusting shaft 425 can rotate based on the rack 421, and a driven wheel 426 is fixedly arranged on the adjusting shaft 425; a driving wheel 424 is fixedly arranged on an output shaft of the motor 423, and the driving wheel 424 is in transmission connection with the driven wheel 426; the mounting rack 422 is fixedly connected with the adjusting shaft 425 through a pair of connecting rods 427. The angle adjusting mechanism 420 is mounted on the mounting part 110 through the rack 421.
[0057] In use, the motor 423 is started to rotate forward or reverse, thereby driving the adjusting shaft 425 to rotate forward or reverse, so that the connecting rod 427 drives the mounting rack 422 to rotate, so as to adjust the angle of the photovoltaic panel 310, and ensure that the photovoltaic panel 310 can be adjusted at an optimal angle according to different sunlight angles, thereby improving the power generation efficiency of the photovoltaic assembly 300. In the adjusting process, the transmission cooperation of the driving wheel 424 and the driven wheel 426 ensures the stability and accuracy of the adjusting process. At the same time, the design of the connecting rod 427 also enhances the connection stability between the mounting rack 422 and the adjusting shaft 425, so that the photovoltaic panel 310 is not easy to shake or deviate during the adjusting process. In addition, the angle adjusting mechanism 420 has simple structure and convenient operation, and can greatly reduce the installation and maintenance cost of the photovoltaic assembly 300.
[0058] Embodiment 3
[0059] Please see Figure 1 and Figure 4 The utility model embodiment provides a kind of installation mechanism of outdoor photovoltaic power supply monitoring device;Outdoor photovoltaic power supply monitoring device can also be installed on the top layer where photovoltaic panel is arranged, and the top layer where photovoltaic panel is arranged is generally installed by steel structure 600, so it is not convenient to install the outdoor photovoltaic power supply monitoring device.
[0060] Therefore, an installation mechanism 500 is provided in the embodiment to assist in installing the outdoor photovoltaic power supply monitoring device;The installation mechanism includes a receiving part 510, and the outdoor photovoltaic power supply monitoring device is installed by at least one pair of receiving parts 510;The receiving part 510 is arranged on the steel structure 600 by an auxiliary mounting part 520.
[0061] The auxiliary mounting part 520 comprises a first clamping part 521 and a second clamping part 522, the first clamping part 521 is further provided with a receiving plate 524; the first clamping part 521 is further provided with a mounting groove 523 and a screw hole which are detachably mounted with the second clamping part 522; a clamping cavity 530 is formed between the first clamping part 521 and the second clamping part 522 for clamping the steel structure 600.
[0062] In use, the first clamping part 521 and the second clamping part 522 are relatively moved, the steel structure 600 is located in the clamping cavity 530, and the relative position of the first clamping part 521 and the second clamping part 522 is fixed through the mounting groove 523; then the first clamping part 521 and the second clamping part 522 are clamped through the bolt 540 passing through the screw hole, so that the receiving part 510 can be stably mounted on the steel structure 600. The receiving part 510 is mounted through the receiving plate 524, and the receiving part 510 is provided at least through a pair of receiving plates 524; in this way, the outdoor photovoltaic power supply monitoring device can be mounted on the steel structure through the receiving part, and the problem that the monitoring device is inconvenient to install due to the installation of the photovoltaic panel on the steel structure is solved. In addition, the installation mechanism is simple in design and convenient to install, greatly improves the installation efficiency, and is stable in structure, thereby ensuring the safe use of the monitoring device.
[0063] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. An outdoor photovoltaic power supply monitoring device, comprising a mounting rod (100) and a monitoring device arranged on the mounting rod (100); characterized in that: the mounting rod (100) is further provided with a mounting portion (110) and a photovoltaic panel (310) mounted on the mounting rod (100) through the mounting portion (110); the mounting rod (100) is internally hollow and provided with a wiring channel, and the mounting portion (110) comprises a plurality of mounting stations (111), each of which is in communication with the wiring channel through a wiring hole (114); the mounting rod (100) is further provided with a photovoltaic assembly (300) for storing electricity and supplying power to electrical components; wherein the photovoltaic panel (310) and the monitoring device are connected with the photovoltaic assembly (300) and supply power to the monitoring device. the photovoltaic panel (310) is further provided with a connecting portion (400) connected with the mounting portion (110); 2. The outdoor photovoltaic powered monitoring device of claim 1, wherein, the connecting portion (400) is connected with the mounting station (111) of the mounting portion (110), and the connecting portion (400) is installed at a preset angle with the photovoltaic panel (310) to increase the irradiation time of the photovoltaic panel (310). the photovoltaic panel (310) and the connecting portion (400) are at least provided with a pair; 3. The outdoor photovoltaic powered monitoring device of claim 2, wherein, a pair of photovoltaic panels (310) and connecting portions (400) are arranged on the mounting rod (100) in a spaced manner through the mounting portion (110). the monitoring device is arranged on one side of one of the photovoltaic panels (310) through the mounting portion (110); 4. The outdoor photovoltaic powered monitoring device of claim 1, wherein, the monitoring device comprises a mounting arm (210) and a monitor (220) connected with the mounting arm (210); the monitor (220) covers different angles of monitoring range by adjusting the mounting angle between the monitor (220) and the mounting arm (210). the mounting station (111) comprises a first connecting hole (112) and a second connecting hole (113), and the wiring hole (114) is arranged in the first connecting hole (112) and the second connecting hole (113).
5. The outdoor photovoltaic powered monitoring device of claim 1, wherein, the wiring hole (114) is closed in communication with the outside by the photovoltaic panel (310) and the monitoring device arranged on the mounting station (111); 6. The outdoor photovoltaic powered monitoring device of claim 5, wherein, the mounting station (111) is further provided with a sealing plate (115) detachably connected through the first connecting hole (112) and the second connecting hole (113). the photovoltaic assembly (300) comprises a box body (320), a controller (321) and a storage battery (322) arranged in the box body (320); 7. The outdoor photovoltaic powered monitoring device of claim 1, wherein, the photovoltaic panel (310) is connected with the controller (321), the controller (321) is connected with the storage battery (322) and the monitoring device respectively, and the storage battery (322) is connected with the monitoring device. the box body (320) is further provided with a heat dissipation member (323).
8. The outdoor photovoltaic powered monitoring device of claim 7, wherein, 9. The outdoor photovoltaic powered monitoring device of claim 3, wherein, The connecting part (400) is a cantilever (410), and the cantilever (410) is installed at a preset angle with the photovoltaic panel (310).
10. The outdoor photovoltaic powered monitoring device of claim 3, wherein, The connecting part (400) is an angle adjusting mechanism, and the photovoltaic panel (310) is arranged on the angle adjusting mechanism and can be adjusted in the installation angle through the angle adjusting mechanism.
Citation Information
Patent Citations
Angle-adjustable outdoor monitor for building equipment
CN220930630U