Electronic boundary post
Through the rotatably symmetrical support column and camera components design, the existing boundary piles are solved inconvenient installation and maintenance difficulties, and fast and convenient installation and maintenance are achieved, reducing the difficulty of installation and maintenance.
Patent Information
- Application Number
- CN202422280341.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-18
AI Technical Summary
Existing boundary piles require concrete to be poured, which is inconvenient to install and difficult to maintain.
The electronic boundary pile design includes a base, camera assembly and support column. The installation parts of the support column and camera assembly are rotated symmetrically. The base does not need to be poured into concrete, is fixed by screws, and does not need to be deliberately aligned during installation. The orientation of the camera assembly is adjusted in accordance with its own monitoring needs.
It realizes fast and convenient installation and maintenance, reduces installation and maintenance difficulty, improves operational efficiency, and does not require deep burial and pouring.
Smart Images

Figure CN223135016U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of boundary markers, and in particular to an electronic boundary marker. Background Art
[0002] A boundary marker refers to a stake used to identify and demarcate the boundaries of different regions, such as water areas, transportation, ecological protection areas, and power lines of transportation pipe networks, etc. The main functions of boundary markers include but are not limited to ecological protection, geological disaster monitoring, land ownership protection, and administrative boundary protection. Existing boundary markers are inconvenient to install because they require pouring concrete. Utility Model Content
[0003] This application provides an electronic boundary marker that is convenient and fast to install.
[0004] An embodiment of this application provides an electronic boundary marker, including: a base, a camera assembly, and a support column. The support column includes an opposite top end and bottom end. The area of the bottom end is smaller than the area of the base. One of the base and the bottom end includes a first installation part, and the other is provided with a first installation hole. The first installation part is assembled in the first installation hole. One of the camera assembly and the top end includes a second installation part, and the other is provided with a second installation hole. The second installation part is assembled in the second installation hole. The outer contours of the first installation part and the second installation part are rotationally symmetric.
[0005] Further, the support column is in a hollow tubular shape. The first installation part of the base is inserted into the first installation hole of the support column, and the second installation part of the camera assembly is inserted into the second installation hole of the support column. Multiple first through holes are provided at the bottom of the tube wall of the support column, and multiple second through holes are provided at the top of the tube wall of the support column. The electronic boundary marker includes multiple first screws and multiple second screws. The multiple first screws respectively pass through the multiple first through holes and are fixed to the first installation part, and the multiple second screws respectively pass through the multiple second through holes and are fixed to the second installation part.
[0006] Further, the support column is made of a fiber-reinforced composite material.
[0007] Further, the base is made of plastic and includes multiple reinforcing ribs located in the space surrounded by the first installation part.
[0008] Further, the base is provided with a drain hole, and the drain hole is located in the area surrounded by the first installation part.
[0009] Further, the base is provided with multiple through holes for expansion bolts to pass through respectively, and the expansion bolts are fixed to the ground to fix the base.
[0010] Further, the electronic boundary post includes a solar panel, a pair of first support members, and a pair of second support members. The pair of first support members are respectively located on opposite sides of the support column and are both fixed to the support column. The pair of second support members are respectively rotatably connected to the pair of first support members. The solar panel is fixed to the pair of second support members. The camera assembly is connected to the solar panel through a connecting wire. The support column is provided with a through hole for the connecting wire to pass through.
[0011] Further, the camera assembly includes a housing, a lens located in the space enclosed by the housing, a battery holder fixed to the housing, and a battery located in the battery holder. The second mounting portion is provided on the battery holder.
[0012] Further, the camera assembly includes a top cover fixed to the housing, a front cover, a GPS module fixed to the top cover, and a button assembly fixed to the front cover. The top cover and the battery holder are located on opposite sides of the housing. The front cover is located between the top cover and the battery holder. The button assembly includes a cover plate, a seal, a button, and a pressing plate. The seal is injection molded with the button. The pressing plate is fixed to the cover plate to fix the seal. The cover plate is provided with a through hole for the button to be exposed. The seal is attached to and seals the front cover.
[0013] Further, the camera assembly includes an attitude monitoring and sensing module, and / or an intrusion detection module, and / or a supplementary light, and / or an environment sensing module, and / or a speaker, and / or a microphone, and / or a temperature and humidity sensor.
[0014] The electronic boundary post according to the embodiment of the present application includes a base, a camera assembly, and a support column. The base and the support column are assembled in a first mounting hole through a first mounting portion. The camera assembly and the support column are assembled in a second mounting hole through a second mounting portion. The outer contours of the first mounting portion and the second mounting portion are rotationally symmetric. There is no need to deliberately align the direction during installation, realizing the rapid assembly of the base and the support column and the camera assembly and the support column. The installation is convenient and fast, improving the ease of installation. At the same time, the orientation of the camera assembly can be adjusted at intervals according to its own monitoring needs to align with the required monitoring area. The setting of the base eliminates the need for pouring concrete, the installation is convenient and fast, and there is no need to demolish and damage the main body and break the foundation during daily maintenance. After maintenance, there is no need for deep burial and pouring, greatly improving the efficiency of operations such as installation, update, maintenance, and upgrade. Description of the Drawings
[0015] Figure 1 is a perspective view of the electronic boundary post according to the embodiment of the present application;
[0016] Figure 2 is Figure 1Schematic diagram of the base and the support column before assembly, where only a part of the support column is shown;
[0017] Figure 3 is Figure 1 Schematic diagram of the camera assembly and the support column before assembly;
[0018] Figure 4 is Figure 1 Three-dimensional view of the support column shown;
[0019] Figure 5 is Figure 4 Top view of the support column shown;
[0020] Figure 6 is Figure 1 Cross-sectional schematic diagram of the base and the support column after assembly, where only a part of the support column is shown;
[0021] Figure 7 is Figure 1 Cross-sectional schematic diagram of the camera assembly and the support column after assembly, where only a part of the support column is shown;
[0022] Figure 8 is Figure 7 Enlarged view of the circled part at A in the cross-sectional schematic diagram shown;
[0023] Figure 9 is Figure 1 Schematic diagram of the base of the electronic boundary post before being fixed to the ground;
[0024] Figure 10 is Figure 1 Exploded view of the camera assembly shown;
[0025] Figure 11 is Figure 10 Schematic diagram of the battery holder and the battery before assembly;
[0026] Figure 12 is Figure 10 Schematic diagram of the top cover and the GPS module before assembly;
[0027] Figure 13 is Figure 10 Schematic diagram of some components of the camera assembly before assembly;
[0028] Figure 14 is Figure 10 Schematic diagram of the front cover, intrusion detection module, fill light and lens of the camera assembly before assembly;
[0029] Figure 15 is Figure 10 Schematic diagram of the button and the seal;
[0030] Figure 16 is Figure 10 an exploded view of the button assembly shown;
[0031] Figure 17 is Figure 16 a schematic cross-sectional view of the assembled button assembly shown;
[0032] Figure 18 is Figure 1 a schematic view of the bracket and the solar panel before assembly shown;
[0033] Figure 19 is Figure 18 a rear view of the bracket and the solar panel after assembly shown. Detailed implementation manners
[0034] Here, in combination with the accompanying drawings, the technical solutions in the embodiments (or "implementation manners") of the present application will be clearly and completely described. When the following description involves the accompanying drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements.
[0035] If there are terms related to directional indications or positional relationships in the embodiments of the present application (such as up, down, left, right, front, back, inside, outside, top, bottom, center, vertical, horizontal, longitudinal, lateral, length, width, counterclockwise, clockwise, axial, radial, circumferential, etc.), then such terms are only used to explain the relative positional relationships and movement conditions between components in a certain specific posture (as shown in the accompanying drawings); if this specific posture changes, then the directional indication or positional relationship also changes accordingly. In addition, the terms "first", "second", etc. involved in the embodiments of the present application are only for the purpose of convenient description and cannot be understood as indicating or implying relative importance.
[0036] See Figures 1 to 6 As shown, the electronic boundary post 100 of the implementation manner of the present application includes a base 1, a camera assembly 2, and a support column 3. One end of the support column 3 is connected to the base 1, and the other end is connected to the camera assembly 2, playing a role of connecting the upper and lower parts and being a key load-bearing member of the electronic boundary post 100.
[0037] The support column 3 includes an opposite top end 31 and a bottom end 32, and the area of the bottom end 32 is smaller than the area of the base 1. The bottom end 32 is provided with a first mounting hole 321, and the top end 31 is provided with a second mounting hole 311. The base 1 includes a first mounting portion 11. The camera assembly 2 includes a second mounting portion 21.
[0038] The outer contours of the first mounting portion 11 and the second mounting portion 21 are rotationally symmetric. The first mounting portion 11 is assembled in the first mounting hole 321, and the second mounting portion 21 is assembled in the second mounting hole 311. When installing, there is no need to deliberately align the direction, realizing the rapid assembly of the base 1 and the support column 3, and the camera assembly 2 and the support column 3. The installation is convenient and fast, improving the ease of installation. At the same time, it can also be adjusted at intervals of angles according to its own monitoring needs to align with the required monitoring area; the setting of the base 1 does not require pouring concrete, the installation is convenient and fast, and there is no need to demolish and damage the main body and break the foundation during daily maintenance, nor to bury and pour after maintenance is completed, greatly improving the efficiency of operations such as installation, update, maintenance, and upgrade and reducing the difficulty; furthermore, when maintaining the camera assembly 2, only the camera assembly 2 can be removed, facilitating the customer to inspect and repair the camera assembly 2.
[0039] In some embodiments, the base 1 and the support column 3 are anti-foolproof in installation. The base 1 and the support column 3 can be installed at any interval of 90°. The user does not need to deliberately align the direction, and it can be installed by sleeving downward in any direction. The installation is convenient and fast; it is also convenient for the customer to adjust at intervals of 90° according to their own monitoring needs to align with the required monitoring area.
[0040] In some embodiments, the camera assembly 2 and the support column 3 are anti-foolproof in installation. The camera assembly 2 and the support column 3 can be installed at any interval of 90°. The user does not need to deliberately align the direction, and it can be installed by sleeving downward in any direction. The installation is convenient and fast; it is also convenient for the customer to adjust at intervals of 90° according to their own monitoring needs to align with the required monitoring area.
[0041] In some embodiments, the bottom end 32 includes the first mounting portion 11, and the base 1 is provided with the first mounting hole 321.
[0042] In some embodiments, the top end 31 includes the second mounting portion 21, and the camera assembly 2 is provided with the second mounting hole 311.
[0043] In some embodiments, the support column 3 is in the shape of a hollow tube; the first mounting portion 11 of the base 1 is inserted into the first mounting hole 321 of the support column 3, and the second mounting portion 21 of the camera assembly 2 is inserted into the second mounting hole 311.
[0044] See Figures 4 to 8, a plurality of first through holes 331 are provided at the bottom of the tube wall 33 of the support column 3, and a plurality of second through holes 332 are provided at the top of the tube wall 33 of the support column 3; the electronic boundary post 100 includes a plurality of first screws 4 and a plurality of second screws 5, and the plurality of first screws 4 respectively pass through the plurality of first through holes 331 and are fixed to the first mounting portion 11, and the plurality of second screws 5 respectively pass through the plurality of second through holes 332 and are fixed to the second mounting portion 21.
[0045] The first screw 4 increases the stability between the base 1 and the support column 3, and realizes the rapid assembly and disassembly between the base 1 and the support column 3; the second screw 5 increases the stability between the camera assembly 2 and the support column 3, and realizes the rapid assembly and disassembly between the camera assembly 2 and the support column 3.
[0046] In some embodiments, the support column 3 is made of a fiber-reinforced composite material, which can greatly reduce the cost of the electronic boundary post 100 on the premise of meeting the use requirements such as structural strength.
[0047] The fiber-reinforced composite material includes but is not limited to FRP (Fiber Reinforced Plastics fiberglass). FRP pultrusion is a process for continuously producing fiberglass profiles with equal cross-sectional shape and size. The reinforcing material is impregnated with the matrix material and then passes through a die system, where it is continuously cured under high temperature and pressure to obtain fiberglass profiles with a smooth surface, stable dimensions, and extremely high strength. FRP has the advantages of light weight, high strength, convenient molding, corrosion resistance, easy installation, non-magnetization, and anti-static, etc., which are very suitable for the use scenario of the electronic boundary post 100.
[0048] In some embodiments, the cross-section of the support column 3 is square, the total height dimension is 1000 mm, the outer cross-section dimension is 150 * 150 mm, the wall thickness of the tube wall 33 is 2.5 mm, and the cross-section dimension of the space enclosed by the support column 3 is 145 * 145 mm. The present application does not limit the above values.
[0049] In some embodiments, eight first screws 4 and eight second screws 5 are respectively provided. Two first screws 4 and two second screws 5 are respectively provided on each surface of the support column 3. The present application does not limit the number of the first screws 4 and the second screws 5, nor does it limit the number of the first screws 4 and the second screws 5 on each surface of the support column 3.
[0050] In some embodiments, a sign 333 indicating the south direction is provided on the tube wall 33 to facilitate the rapid assembly of the support column 3 and the camera assembly 2.
[0051] In some embodiments, the identifier 333 is text screen-printed on the pipe wall 33. The present application does not limit the forming method of the identifier 333, nor does it limit the content of the identifier 33.
[0052] See Figure 9 , in some embodiments, the base 1 is made of plastic to save costs and be lighter in weight. The base 1 includes a plurality of reinforcing ribs 12 located within the space enclosed by the first mounting portion 11 to increase the strength of the first mounting portion 11.
[0053] In some embodiments, the base 1 is provided with a drain hole 13. The drain hole 13 is located within the area enclosed by the first mounting portion 11, and can effectively drain the rainwater flowing in from above the electronic boundary post 100 to prevent water accumulation.
[0054] In some embodiments, the base 1 is provided with a plurality of through holes 14 respectively for the expansion bolts 6 to pass through. The expansion bolts 6 are fixed to the ground to fix the base 1. After the base 1 is installed, it is located above the ground, unlike traditional boundary posts that require deep burial or pouring, reducing the installation and maintenance difficulty and being convenient for customers to use.
[0055] In some embodiments, the expansion bolts 6 are M8*110mm and the number is four. The present application does not limit the specifications and number of the expansion bolts 6.
[0056] In some embodiments, the base 1 is square, with an outer dimension of 303*303mm. The distance between the centers of two adjacent through holes 14 is 230mm. The diameter dimension of the through hole 14 is 14mm. The height of the first mounting portion 11 extending into the first mounting hole 321 is 16mm. The thread engagement depth of the first screw 4 and the second screw 5 is greater than 6mm. The present application does not limit the above dimensions.
[0057] See Figures 10 to 18 , the camera assembly 2 includes a housing 23, a lens 24 located within the space enclosed by the housing 23, a battery holder 241 fixed to the housing 23, and a battery 242 located within the battery holder 241. The second mounting portion 21 is provided on the battery holder 241.
[0058] In some embodiments, a part of the space for accommodating the battery 242 is located in the second mounting portion 21, which can save space and is beneficial to the miniaturization of the camera assembly 2.
[0059] The camera assembly 2 further includes a battery pressing plate 243, a battery buffer foam 244, and a battery control board 245. The battery pressing plate 243 is fixed to the battery seat 241 and presses the battery 242. The battery buffer foam 244 is located between the battery 242 and the battery pressing plate 243 to absorb height tolerances. The battery control board 245 is fixed to the battery pressing plate 243.
[0060] In some embodiments, the camera assembly 2 includes a top cover 251 fixed to the housing 23, a front cover 252, a GPS module 253 fixed to the top cover 251, and a button assembly 26 fixed to the front cover 252. The top cover 251 and the battery seat 241 are located on opposite sides of the housing 23, and the front cover 252 is located between the top cover 251 and the battery seat 21. The button assembly 26 includes a cover plate 261, a seal 262, a button 263, and a pressing plate 264. The seal 262 is injection-molded with the button 263. The pressing plate 264 is fixed to the cover plate 261 to fix the seal 262 and the cover plate 261. The cover plate 261 is provided with a through hole 2611 for the button 263 to be exposed, and the seal 262 is attached to and seals the front cover 252.
[0061] The GPS module 253 can implement the GPS positioning function.
[0062] The seal 262 is injection-molded with the button 263, effectively improving the feel and usability of the button 263, which is very suitable for the scenario of emergency calling. At the same time, the sealing performance between the button 263 and the seal 262 is relatively good.
[0063] In some embodiments, the pressing plate 264 and the cover plate 261 are fixed by screws, which is convenient for assembly.
[0064] In some embodiments, the spaces between the battery seat 241 and the housing 23, between the top cover 251 and the housing 23, and between the front cover 252 and the housing 23 are all sealed to prevent water ingress.
[0065] In some embodiments, the top cover 251 is provided with a cavity 2511 for receiving the GPS module 253, and the GPS module 253 is snap-fixed to the top cover 251 to facilitate the assembly of the GPS module 253 and save parts.
[0066] In some embodiments, the GPS module 253 and the top cover 251 can also be fixed by pasting or by adding fixing parts.
[0067] In some embodiments, the camera assembly 2 includes a buffer foam 2531 located between the GPS module 253 and the top cover 251 to absorb dimensional tolerances in the height direction and ensure the stability of the GPS module 253.
[0068] In some embodiments, the camera assembly 2 includes an attitude monitoring and sensing module (not shown), including but not limited to a gyroscope, to detect the angle and attitude of the camera assembly 2.
[0069] In some embodiments, the camera assembly 2 includes an intrusion detection module 272.
[0070] In some embodiments, the intrusion detection module 272 includes a PIR (Pyroelectric Infrared) lamp board and a PIR module, mainly for monitoring the infrared radiation emitted by humans or animals to monitor the entry of humans or animals into the monitoring area.
[0071] In some embodiments, the intrusion detection module 272 can also be a camera or the like.
[0072] In some embodiments, the camera assembly 2 includes a fill light 273 to provide fill light for the lens 24 to ensure the clarity of the monitoring image.
[0073] In some embodiments, the camera assembly 2 includes an environmental sensing module 274 to detect the external brightness. When the brightness is less than a set value, the fill light 273 is turned on to save power. The environmental sensing module 274 includes but is not limited to a photosensitive sensor.
[0074] In some embodiments, the camera assembly 2 includes a speaker 275 for sound broadcasting. The speaker 275 is sealed and waterproof, and can be sealed by means of a sealing ring or dispensing.
[0075] In some embodiments, the camera assembly 2 includes a microphone 276 that can pick up external audio signals. The microphone 276 and the speaker 275 can implement a voice intercom function. The microphone 276 is sealed and waterproof, and can be sealed by means of a sealing ring or dispensing.
[0076] In some embodiments, the camera assembly 2 includes a temperature and humidity sensor 277 to sense the temperature and humidity of the external environment and upload the information to the main control board 278 of the camera assembly 2 for subsequent information analysis and transmission. The temperature and humidity sensor 277 is sealed and waterproof, and can be sealed by means of a sealing ring or dispensing.
[0077] In some embodiments, the attitude monitoring and sensing module is disposed on the main control board 278.
[0078] Combined Figure 2 , a first window 254 corresponding to the lens 24, a second window 255 corresponding to the fill light 273, and a third window 256 corresponding to the intrusion detection module 272 are provided on the front cover 252. Along the height direction of the imaging assembly 2, the first window 254 is located between the button assembly 26 and the second window 255. Along the width direction of the imaging assembly 2, the third window 256, the second window 255, and the temperature and humidity sensor 277 are arranged in sequence. The first window 254, the second window 255, and the third window 256 are fixed on the front cover 252 by dispensing glue.
[0079] In some embodiments, the imaging assembly 2 further includes an antenna 2791, including but not limited to a 4G-CAT4 main antenna, a 4G-CAT4 diversity antenna, and a 4G-CAT1 antenna.
[0080] In some embodiments, the imaging assembly 2 further includes a heat dissipation sheet metal (not shown), the heat dissipation sheet metal is in contact with the main board 278 for heat dissipation, and the antenna 2791 is fixed to the heat dissipation sheet metal.
[0081] The electronic boundary post 100 has an IP66 rating, and the imaging assembly 2 adopts a fully sealed structure design with strong waterproof ability, which can adapt to some harsh waterproof scenarios outdoors.
[0082] Refer Figure 3 to Figures 18 to 19 , in some embodiments, the electronic boundary post 100 includes a solar panel 7 and a bracket 8. The bracket 8 is fixed to the support column 3, and the solar panel 7 is fixed to the bracket 8. The battery control board 245 is connected to the solar panel 7 through a connection line 71, and the solar panel 7 supplies power or charges the battery 242. The support column 3 is provided with a through hole 334 for the connection line 71 to pass through. When there is surplus power supplied by the solar panel 7, the battery 242 can be charged and stored. When the power supplied by the solar panel 7 is insufficient, the battery 242 can perform a power supply operation.
[0083] In some embodiments, the connection line 71 is detachably connected to the solar panel 7 to facilitate the customer to disconnect the connection line 71 from the solar panel 7. After disconnection, the user can remove the imaging assembly 2 and perform some maintenance and repair operations separately, which is very convenient for returning to the factory and the repair base for rework and repair.
[0084] The bracket 8 includes a pair of first support members 81 and a pair of second support members 82. The pair of first support members 81 are respectively located on opposite sides of the support column 3 and are both fixed to the support column 3. The pair of second support members 82 are respectively rotatably connected to the pair of first support members 81, and the solar panel 7 is fixed to the pair of second support members 82. By rotating the second support member 82, the angle of the solar panel 7 can be adjusted, which is convenient for customers in different regions and latitudes. They can adjust the angle of the solar panel according to their own usage scenarios to facilitate the solar panel to obtain favorable lighting conditions.
[0085] In some embodiments, the second support member 82 includes a first fixing portion 821 and a second fixing portion 822. The first fixing portion 821 is fixed to the solar panel 7, and the second fixing portion 822 is rotatably connected to the first support member 81.
[0086] In some embodiments, the first fixing portion 821 and the solar panel 7 can be fixed by screws, which is convenient for assembly and disassembly.
[0087] In some embodiments, the second fixing portion 822 is provided with a first hole 823 and a second hole 824. The second hole 824 is an arc-shaped hole. The bracket 8 includes a first fixing screw 83 and a second fixing screw 84. The first fixing screw 83 passes through the first hole 823 and is fixed to the first support member 81. The second fixing screw 84 passes through the second hole 824 and is fixed to the first support member 81. When the second support member 82 rotates relative to the first support member 81, the second fixing screw 84 moves along the second hole 824 to limit the rotation angle of the second support member 82.
[0088] When the first fixing screw 83 passes through the first hole 823 and is fixed to the first support member 81, the second support member 82 cannot rotate. After loosening the first fixing screw 83, the second support member 82 can rotate to prevent the second support member 82 from accidentally rotating under improper external force.
[0089] In some embodiments, the rotation angle of the second support member 82 can also be limited by the shaft-hole fit and damping between the second fixing portion 822 and the first support member 81.
[0090] In some embodiments, a scale is provided on the second fixing portion 822 to facilitate accurately adjusting the angle of the solar panel 7.
[0091] In some embodiments, the elevation angle of the solar panel 7 is greater than or equal to 30 degrees and less than or equal to 45 degrees, which can achieve a better power generation effect.
[0092] In some embodiments, the solar panel 7 is a monocrystalline silicon solar panel with a power of 20W. The present application does not limit the specifications of the solar panel 7.
[0093] In some embodiments, the pair of first support members 81 can be fixed to the support column 3 by bolts or screws.
[0094] In some embodiments, the bracket 8 includes a connecting rod 85 and a nut 86. The support column 3 is provided with a pair of first assembly holes 335, and the first support member 81 is provided with second assembly holes 811. After the connecting rod 85 passes through the second assembly holes 811 and the first assembly holes 335, its end is fixed to the nut 86 to fix the bracket 8.
[0095] In some embodiments, multiple connecting rods 85 can be provided to increase the stability of the bracket 8.
[0096] In some embodiments, one nut 86 can be provided. One end of the connecting rod 85 can be assembled with the nut 86, and a resisting member can be integrally provided at the other end. Two nuts 86 can also be provided. The present application does not limit the number of the nuts 86.
[0097] When assembling the solar panel 7 and the bracket 8, first fix the second support member 82 and the solar panel 7, then pre-lock the second support member 82 and the first support member 81 with the first fixing screw 83, then assemble the connecting rod 85 on the support column 3, then assemble the first support member 81 and the connecting rod 85, and finally lock the nut 86. After manually adjusting the angle of the solar panel 7 to the required position, tighten the first fixing screw 83.
[0098] It should be noted that the technical solutions or technical features described in the above embodiments can be combined or supplemented with each other without conflict. The scope of protection of the present application is not limited to the precise structures described in the above embodiments and shown in the drawings; all modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included within the scope of protection of the present application.
Claims
1. An electronic boundary marker, characterized in that, Comprising: Base; Camera assembly; Support column, including an opposite top end and bottom end, the area of the bottom end being smaller than the area of the base, one of the base and the bottom end including a first mounting portion, the other being provided with a first mounting hole, the first mounting portion being assembled in the first mounting hole, one of the camera assembly and the top end including a second mounting portion, the other being provided with a second mounting hole, the second mounting portion being assembled in the second mounting hole, and the outer contours of the first mounting portion and the second mounting portion being rotationally symmetric.
2. The electronic boundary marker according to claim 1, wherein The support column is in the shape of a hollow tube, the first mounting portion of the base is inserted into the first mounting hole of the support column, the second mounting portion of the camera assembly is inserted into the second mounting hole of the support column, a plurality of first through holes are provided at the bottom of the tube wall of the support column, a plurality of second through holes are provided at the top of the tube wall of the support column, the electronic boundary post includes a plurality of first screws and a plurality of second screws, the plurality of first screws respectively pass through the plurality of first through holes and are fixed to the first mounting portion, and the plurality of second screws respectively pass through the plurality of second through holes and are fixed to the second mounting portion.
3. The electronic boundary post according to claim 2, wherein The support column is made of fiber-reinforced composite material.
4. The electronic boundary post according to claim 1, characterized in that, The base is made of plastic and includes a plurality of reinforcing ribs located in the space surrounded by the first mounting portion.
5. The electronic boundary marker according to claim 4, characterized in that, The base is provided with a water drain hole, and the water drain hole is located in the area surrounded by the first mounting portion.
6. The electronic boundary post according to claim 4, characterized in that, The base is provided with a plurality of through holes respectively for an expansion bolt to pass through, and the expansion bolt is fixed to the ground to fix the base.
7. The electronic boundary marker according to claim 1, characterized in that, The electronic boundary post includes a solar panel, a pair of first support members and a pair of second support members, the pair of first support members are respectively located on opposite sides of the support column and are both fixed to the support column, the pair of second support members are respectively rotatably connected to the pair of first support members, the solar panel is fixed to the pair of second support members, the camera assembly is connected to the solar panel through a connecting wire, and the support column is provided with a through hole for the connecting wire to pass through.
8. The electronic boundary marker according to any one of claims 1 to 7, characterized in that, The camera assembly includes a housing, a lens located in the space surrounded by the housing, a battery holder fixed to the housing, and a battery located in the battery holder, and the second mounting portion is provided on the battery holder.
9. The electronic boundary post according to claim 8, characterized in that, The camera assembly includes a top cover fixed to the housing, a front cover, a GPS module fixed to the top cover, and a button assembly fixed to the front cover, the top cover and the battery holder are located on opposite sides of the housing, the front cover is located between the top cover and the battery holder, the button assembly includes a cover plate, a seal, a button and a pressing plate, the seal is injection molded with the button, the pressing plate is fixed to the cover plate to fix the seal, the cover plate is provided with a through hole for the button to be exposed, and the seal is attached to and sealed with the front cover.
10. The electronic boundary post according to claim 9, characterized in that, The camera assembly includes an attitude monitoring and sensing module, and / or an intrusion detection module, and / or a supplementary light, and / or an environment sensing module, and / or a speaker, and / or a microphone, and / or a temperature and humidity sensor.