Remote environment detector for farm

By improving the mounting base and shell structure of the remote environmental detector, it can be easily disassembled and installed without the need for power tools, thus solving the safety hazard of operators and improving the convenience and safety of operation.

CN223412758UActive Publication Date: 2025-10-03XUZHOU FARA ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202422060577.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-24
Publication Date
2025-10-03
Estimated Expiration
2034-08-24

AI Technical Summary

Technical Problem

Existing remote environmental detectors require frequent screw tightening when disassembling and installing when a fault occurs. Operators have difficulty tightening the screws by hand, and the noise of power tools scares cattle, increasing safety hazards.

Method used

A mounting base and housing structure is designed. By pressing the housing, the connecting ball moves against the mounting block. The cooperation of the sliding part and the rotating rod is utilized to realize easy disassembly and installation of the detector without the need for electric tools.

Benefits of technology

It avoids the noise of power tools scaring cattle, reduces the risk of operator injury, reduces safety hazards, and improves the convenience and safety of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The remote environment detector comprises an installation base and a shell, an installation piece is fixedly arranged on the front vertical face of the installation base, an installation block is clamped in a hollow cavity of the installation piece, clamping arms are hinged to the left side and the right side of the installation block respectively, and clamping grooves matched with the clamping arms are formed in the inner surfaces of the vertical walls of the two sides of the installation piece respectively. A spring is fixedly connected to the back vertical face of the mounting block, a rotating rod is rotationally connected to the top of the mounting block, a sliding part is fixedly arranged at the top of the tail end of the rotating rod, a limiting sliding groove matched with the sliding part for use is formed in the lower surface of the top of the mounting part, a connecting ball is fixedly arranged on the back of the shell, and a ball groove matched with the connecting ball is formed in the front vertical face of the mounting block. The connecting ball is aligned with the ball groove and the mounting block is pressed down, the spring is contracted due to pressure, the sliding piece is fixed by the limiting sliding groove, the mounting block is limited in the mounting piece, the clamping arm is retracted into the clamping groove, and then the connecting ball is clamped, so that the aim of quickly mounting the remote environment detector is fulfilled.
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Description

Technical Field

[0001] The utility model belongs to the technical field of remote environment detectors, in particular to a remote environment detector for aquaculture farms which can be quickly installed and disassembled. Background Art

[0002] Remote environmental monitoring instruments for farms are widely used in animal husbandry and other breeding fields, including pig houses, cattle houses and other places. They can monitor various environmental parameters in the farms in real time, such as temperature, humidity, etc., and send data to the terminal device of the manager through the remote transmission function, implement remote monitoring, and timely adjust the on-site environmental parameters, thereby improving the growth rate and health level of farmed animals, reducing the incidence of diseases, and improving breeding efficiency.

[0003] However, the remote environmental detectors currently used are all fixed to the wall of the cowshed by means of assembly screws. Once a remote environmental detector fails, it needs to be disassembled for repair. After the repair, it needs to be reinstalled. The operator has to frequently tighten the assembly screws, which is very difficult for the operator to tighten by hand. Therefore, the operator needs to use power tools to tighten the assembly screws. However, power tools make noises when working, which can easily scare the cows in the cowshed. The frightened cows may suddenly jump or run quickly and hit the operator, causing personal injury to the operator, thereby increasing safety hazards and business risks for the farm. Therefore, it is necessary to design a remote environmental detector for farms. Utility Model Content

[0004] The purpose of the present utility model is to provide a remote environmental detector for a farm, so as to solve the problem in the above-mentioned background technology that once a remote environmental detector fails, it needs to be disassembled for repair, and it needs to be installed after repair. The operator needs to frequently tighten the assembly screws, and it is very difficult for the operator to tighten the assembly screws fixed to the wall with manual force. The operator needs to use electric tools to tighten the assembly screws, and the electric tools will make noises when working, which can easily scare the cows in the cowshed. The frightened cows may suddenly jump up or run quickly and hit the operator, causing personal injury to the operator, thereby increasing safety hazards and business risks for the farm.

[0005] In order to solve the above problems, the specific technical solution of the remote environment detector for farms of the present invention is as follows:

[0006] A remote environment detector for a farm comprises a mounting base and a shell, the mounting base is provided with an assembly hole, a mounting piece is fixedly provided on the front facade of the mounting base, the mounting piece is a hollow structure with an opening at the front, a mounting block is clamped in the hollow chamber of the mounting piece, the left and right sides of the mounting block are respectively hinged with a clamping arm, the inner surfaces of the vertical walls on both sides of the mounting piece are respectively provided with a clamping groove adapted to the clamping arm, the back facade of the mounting block is fixedly connected with a spring, the top of the mounting block is rotatably connected to a rotating rod, a sliding piece is fixedly provided at the top end of the rotating rod, a limiting sliding groove adapted to the sliding piece is provided on the top lower surface of the mounting piece, a main control module is provided inside the shell, the main control module is electrically connected to a rechargeable battery and a control switch, the rechargeable battery is electrically connected to a charging interface, the main control module is communicatively connected to a temperature sensor, a humidity sensor and a wireless communication module, a connecting ball is fixedly provided on the back of the shell, and a ball groove adapted to the connecting ball is provided on the front facade of the mounting block.

[0007] Furthermore, the limiting slide groove is provided with a first protrusion and a first groove at one end close to the front of the mounting member, and the limiting slide groove is provided with a second protrusion and a second groove at one end close to the rear of the mounting member.

[0008] Furthermore, a circular limiting convex strip matched with the spring is fixedly provided on the inner vertical surface of the back of the mounting member.

[0009] Furthermore, the front end of the clamping arm is provided with an arc-shaped clamping claw adapted to the connecting ball.

[0010] Furthermore, a rotating shaft is fixedly provided at the bottom of the front end of the rotating rod, and an axial hole matched with the rotating shaft is provided at the top of the mounting block.

[0011] Furthermore, a limiting piece is fixedly provided at the bottom of the rotating shaft, and a limiting groove matched with the limiting piece is provided at the bottom of the shaft hole.

[0012] Furthermore, two connecting pieces are fixedly provided on the outer facades on both sides of the mounting block, and the connecting pieces are provided with round through holes. The rear end of the clamping arm is provided with a round rod adapted to the round through holes.

[0013] Furthermore, the main control module is communicatively connected to an LED display screen, the LED display screen is located on the front facade of the shell, the wireless communication module is a Wi-Fi module, and the charging interface is a DC interface.

[0014] Furthermore, ventilation holes are distributed in arrays on both side walls of the shell.

[0015] Furthermore, the main control module is communicatively connected to a sound and light alarm module, which includes a traffic light group and a speaker. The traffic light group and the speaker are respectively located on the top of the shell, and the traffic light group is provided with a transparent protective cover.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] When the remote environmental detector fails and needs to be disassembled for maintenance, it is only necessary to press the shell, and the shell will move backwards against the mounting block through the connecting ball, the sliding part will hit the second protrusion, the rotating rod will rotate, and under the thrust of the spring, the sliding part will slide into the first groove along the limiting sliding groove, and the mounting block will be fixed. At this time, the clamping arm will completely slide out of the clamping groove and will no longer clamp the connecting ball, and the shell will be easily disassembled. On the contrary, if the remote environmental detector is repaired and needs to be installed on the mounting base, the connecting ball will be aligned with the ball groove and pushed backwards, which will drive the mounting block to move backwards, and the sliding part will hit the first protrusion. The starting part rotates, the rotating rod rotates, the sliding part slides into the second groove along the limiting slide groove, and the mounting block is fixed. At this time, the clamping arm is restricted in the clamping groove, and the clamping arms on both sides of the mounting block clamp the connecting ball, and the shell is easily installed on the mounting base. The whole process does not require the use of power tools to tighten the assembly screws, which avoids scaring the cows in the cowshed due to the noise generated by the power tool operation, eliminates the risk of operators being injured by frightened cows during work, greatly protects the personal safety of operators, and reduces the safety hazards and operating risks of the farm in production and operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a three-dimensional schematic diagram of the front structure of the housing installed on the mounting base in an embodiment of the present utility model;

[0019] Figure 2 This is a three-dimensional schematic diagram of the rear structure of the housing installed on the mounting base in an embodiment of the present utility model;

[0020] Figure 3 This is a perspective schematic diagram of the front structure of the housing when it is removed from the mounting base in an embodiment of the present invention;

[0021] Figure 4 This is an exploded view of the assembly of the mounting base, mounting block and housing in an embodiment of the present utility model;

[0022] Figure 5 This is an exploded view of the assembly of the mounting block and the rotating rod in the embodiment of the present utility model;

[0023] Figure 6 This is a schematic diagram of the three-dimensional structure of the mounting block in the embodiment of the present utility model;

[0024] Figure 7 This is a schematic diagram of the three-dimensional structure of the clamping arm in the embodiment of the present utility model;

[0025] Figure 8 This is a schematic diagram of the internal structure of the mounting member in an embodiment of the present utility model;

[0026] Figure 9 Schematic diagram of the structure of the limiting slide in the embodiment of the present utility model;

[0027] Figure 10 for Figure 9 A partial enlarged schematic diagram of point A in the middle;

[0028] Reference numerals:

[0029] 1. Mounting base; 101. Mounting member; 102. Slot; 103. Position-limiting slide; 1031. First protrusion; 1032. First groove; 1033. Second protrusion; 1034. Second groove; 104. Annular position-limiting ridge; 105. Assembly hole;

[0030] 2. Mounting block; 201. Clamping arm; 2011. Arc-shaped clamping claw; 2012. Round rod; 202. Spring; 203. Rotating rod; 2031. Sliding member; 2032. Rotating shaft; 2033. Stopper; 204. Ball groove; 205. Shaft hole; 206. Stopper groove; 207. Connector; 2071. Round through hole;

[0031] 3. Housing; 301. Control switch; 302. Charging port; 303. Connecting ball; 304. LED display; 305. Ventilation hole; 306. Speaker; 307. Transparent protective cover. DETAILED DESCRIPTION

[0032] In order to better understand the purpose, structure and function of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.

[0033] For example, see Figures 1 to 10The present embodiment discloses a remote environment detector for a farm, comprising a mounting base 1 and a housing 3. The mounting base 1 is provided with an assembly hole 105 for fixing the mounting base 1 on a wall. A mounting member 101 is fixedly provided on the front facade of the mounting base 1. The mounting member 101 is a hollow structure with an opening at the front. A mounting block 2 is clamped in the hollow chamber of the mounting member 101. The left and right sides of the mounting block 2 are respectively hinged with a clamping arm 201. Two connecting members 207 are fixedly provided on the outer facades on both sides of the mounting block 2. The connecting member 207 is provided with a round through hole 2071. The rear end of the clamping arm 201 is provided with a round rod 2012 adapted to the round through hole 2071. The clamping arm 201 is slidably fitted with the round through hole 2071 and the round rod 2012. The mounting block 2 is hinged together with the mounting member 101, and the inner surfaces of the vertical walls on both sides are respectively provided with card grooves 102 adapted to the card arms 201. The back surface of the mounting block 2 is fixedly connected to a spring 202. The top of the mounting block 2 is rotatably connected to a rotating rod 203. The front bottom of the rotating rod 203 is fixed with a rotating shaft 2032. A shaft hole 205 matching the rotating shaft 2032 is provided at the top of the mounting block 2. A limiting member 2033 is fixed at the bottom of the rotating shaft 2032. A limiting groove 206 matching the limiting member 2033 is provided at the bottom of the shaft hole 205, so that the rotation connection between the rotating shaft 2032 and the shaft hole 205 is more stable and reliable. A sliding member 2031 is fixed at the top of the end of the rotating rod 203. The mounting member 101 The lower surface of the top is provided with a limiting slide 103 for use with the sliding member 2031. The limiting slide 103 is provided with a first protrusion 1031 and a first groove 1032 at one end close to the front of the mounting member 101, and the limiting slide 103 is provided with a second protrusion 1033 and a second groove 1034 at one end close to the rear of the mounting member 101. A connecting ball 303 is fixed to the back of the shell 3, and a ball groove 204 adapted to the connecting ball 303 is provided on the front facade of the mounting block 2. The ball groove 204 plays a positioning role for the connecting ball 303. When the remote environmental detector fails and needs to be disassembled for maintenance, it only needs to press the shell 3, and the shell 3 moves backward against the mounting block 2 through the connecting ball 303, and the sliding member 2031 pushes to the second protrusion 1033 and the second groove 1034. When the locking ball 303 is fully clamped, the housing 3 can be easily removed. On the contrary, if the remote environmental detector is repaired and needs to be installed on the mounting base 1, the connecting ball 303 is aligned with the ball groove 204 and pushed backward to drive the mounting block 2 to move backward. The sliding member 2031 hits the first protrusion 1031, the rotating rod 203 rotates, and the sliding member 2031 slides into the second groove 1034 along the limiting groove 103, and the mounting block 2 is fixed. At this time, the locking arm 201 is restricted in the locking groove 102.The clamping arms 201 on both sides of the mounting block 2 clamp the connecting ball 303, allowing the housing 3 to be easily installed on the mounting base 1. A main control module is housed within the housing 3. The main control module is electrically connected to a rechargeable battery and a control switch 301. The rechargeable battery is electrically connected to a charging port 302 for charging the rechargeable battery with an external power source. The main control module is communicatively connected to a temperature sensor, a humidity sensor, and a wireless communication module. Ventilation holes 305 are arranged in an array on the walls of the housing 3 on both sides, allowing air to circulate into the interior of the housing 3, improving the detection accuracy of the temperature and humidity sensors.

[0034] A circular limiting ridge 104 matching the spring 202 is fixedly provided on the inner facade of the back of the mounting member 101. One end of the spring 202 is fixedly connected to the mounting block 2, and the other end is located in the circular limiting ridge 104. In this way, the contact position between the spring 202 and the rear facade of the mounting member 101 is limited by the circular limiting ridge 104, and will not be displaced due to being pressed, thereby affecting the use effect.

[0035] The front end of the clamping arm 201 is provided with an arc-shaped clamping claw 2011 adapted to the connecting ball 303. The arc-shaped clamping claw 2011 can clamp the connecting ball 303 more tightly, and the connecting ball 303 can also rotate in the arc-shaped clamping claw 2011, which can adjust the use direction of the shell 3 and increase practicality.

[0036] The main control module is communicatively connected to an LED display screen 304, which is located on the front facade of the shell 3. The LED display screen 304 can display the information detected by the remote environmental detector in real time for management personnel to observe environmental information on site. The wireless communication module is a Wi-Fi module, which has the advantages of low power consumption, long communication distance and high reliability. The charging interface 302 is a DC interface, which has the advantages of large carrying power and high safety performance.

[0037] The main control module is communicatively connected to a sound and light alarm module, which includes a traffic light group and a speaker 306. The traffic light group and the speaker 306 are respectively located on the top of the shell 3. The traffic light group is provided with a transparent protective cover 307. When the data detected by the remote environment detector deviates from the set data, the traffic light group will emit red light and the speaker 306 will emit an alarm to remind the user. When the data detected by the remote environment detector is normal, the traffic light group will emit green light.

[0038] Working principle: When the remote environmental detector fails and needs to be disassembled for maintenance, just press the shell 3, and the shell 3 moves backward against the mounting block 2 through the connecting ball 303. The sliding member 2031 hits the second protrusion 1033, and the rotating rod 203 rotates. Under the thrust of the spring 202, the sliding member 2031 slides into the first groove 1032 along the limiting slide groove 103, and the mounting block 2 is fixed. At this time, the clamping arm 201 completely slides out of the clamping groove 102 and will no longer clamp the connecting ball 303. The shell 3 can be easily disassembled. If the remote environmental detector is repaired and needs to be installed on the mounting base 1, align the connecting ball 303 with the ball groove 204 and push it backward, driving the mounting block 2 to move backward, the sliding member 2031 hits the first protrusion 1031, the rotating rod 203 rotates, and the sliding member 2031 slides into the second groove 1034 along the limiting sliding groove 103, and the mounting block 2 is fixed. At this time, the clamping arm 201 is restricted in the clamping groove 102, and the clamping arms 201 on both sides of the mounting block 2 clamp the connecting ball 303, and the shell 3 is easily installed on the mounting base 1.

[0039] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A remote environmental detector for a farm, characterized by: The invention comprises a mounting base (1) and a shell (3), wherein the mounting base (1) is provided with an assembly hole (105), a mounting member (101) is fixedly provided on the front facade of the mounting base (1), the mounting member (101) is a hollow structure with an opening at the front, a mounting block (2) is clamped in the hollow chamber of the mounting member (101), the left and right sides of the mounting block (2) are respectively hinged with clamping arms (201), the inner surfaces of the vertical walls on both sides of the mounting member (101) are respectively provided with clamping grooves (102) adapted to the clamping arms (201), the back facade of the mounting block (2) is fixedly connected with a spring (202), and the top of the mounting block (2) is rotatably connected with a rotating rod (203), A sliding member (2031) is fixedly provided at the top end of the rotating rod (203), a limiting sliding groove (103) matched with the sliding member (2031) is provided on the lower surface of the top of the mounting member (101), a main control module is provided inside the housing (3), the main control module is electrically connected to a rechargeable battery and a control switch (301), the rechargeable battery is electrically connected to a charging interface (302), the main control module is communicatively connected to a temperature sensor, a humidity sensor and a wireless communication module, a connecting ball (303) is fixedly provided on the back of the housing (3), and a ball groove (204) adapted to the connecting ball (303) is provided on the front elevation of the mounting block (2).

2. The remote environment detector for farms according to claim 1, characterized in that: The limiting slide groove (103) is provided with a first protrusion (1031) and a first groove (1032) at one end close to the front of the mounting member (101), and the limiting slide groove (103) is provided with a second protrusion (1033) and a second groove (1034) at one end close to the rear of the mounting member (101).

3. The remote environment detector for farms according to claim 1, characterized in that: A circular ring-shaped limiting convex strip (104) for use with the spring (202) is fixedly provided on the inner vertical surface of the back of the mounting member (101).

4. The remote environment detector for farms according to claim 1, characterized in that: The front end of the clamping arm (201) is provided with an arc-shaped clamping claw (2011) adapted to the connecting ball (303).

5. The remote environment detector for farms according to claim 1, characterized in that: A rotating shaft (2032) is fixedly provided at the bottom of the front end of the rotating rod (203), and an axial hole (205) for use with the rotating shaft (2032) is provided at the top of the mounting block (2).

6. The remote environment detector for farms according to claim 5, characterized in that: A limiting member (2033) is fixedly provided at the bottom of the rotating shaft (2032), and a limiting groove (206) for use with the limiting member (2033) is provided at the bottom of the shaft hole (205).

7. The remote environment detector for farms according to claim 1, characterized in that: Two connecting pieces (207) are fixedly provided on the exterior facades on both sides of the mounting block (2), the connecting pieces (207) are provided with round through holes (2071), and the rear end of the clamping arm (201) is provided with a round rod (2012) adapted to the round through holes (2071).

8. The remote environment detector for farms according to claim 1, characterized in that: The main control module is communicatively connected to an LED display screen (304), the LED display screen (304) is located on the front facade of the housing (3), the wireless communication module is a Wi-Fi module, and the charging interface (302) is a DC interface.

9. The remote environment detector for farms according to claim 1, characterized in that: Ventilation holes (305) are distributed in arrays on both side walls of the shell (3).

10. The remote environment detector for farms according to claim 1, characterized in that: The main control module is communicatively connected to an audible and visual alarm module, the audible and visual alarm module comprising a traffic light group and a loudspeaker (306), the traffic light group and the loudspeaker (306) being respectively located on the top of the housing (3), and the traffic light group being provided with a transparent protective cover (307).