Water area culture parameter data monitoring device

By installing an anti-detachment device at the connection port of the aquaculture analyzer, the problem of probe slippage is solved, and the connection cable and probe are fixed and stored, ensuring the stability and reliability of water parameters monitoring.

CN224176523UActive Publication Date: 2026-04-28FANGCHENGGANG HUIZHONG MARINE TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FANGCHENGGANG HUIZHONG MARINE TECHNOLOGY CO LTD
Filing Date
2025-04-20
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

The detection probe of the aquaculture analyzer is prone to slipping off the analyzer surface when placed in water, making it impossible to monitor and affecting the detection of water parameters.

Method used

An anti-detachment device is installed at the connection port of the monitoring and analysis instrument, including components such as a fixing plate, a clamping plate, a magnetic plate, a clamping slot, and a clamping rod. The clamping slot and magnetic connection prevent the connection cable from falling off, and the probe is fixed and stored by straps and elastic clips.

Benefits of technology

It effectively prevents the connecting wires and probes from falling off, avoids equipment damage, and ensures the continuity and accuracy of the monitoring process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a water area cultivation parameter data monitoring device, which relates to the technical field of water area cultivation parameter data monitoring devices, and comprises a monitoring analyzer, a connecting port is arranged at the bottom of the monitoring analyzer, a connecting end is inserted into the connecting port, one end of the connecting end is fixedly connected with a connecting wire, and the other end of the connecting wire is fixedly connected with the water area cultivation parameter data monitoring device. One end of the connecting line is fixedly connected with a monitoring probe, an anti-falling device is arranged at the bottom of the monitoring analyzer, a storage device is fixedly connected to the side face of the monitoring analyzer, the anti-falling device comprises a fixing plate fixedly connected to the surface of a connecting port, and a clamping plate is slidably connected to the side face of the fixing plate; a clamping block is fixedly connected to one end of the clamping plate, a clamping groove is formed in the surface of the clamping plate in a clamped mode, a round strip is fixedly connected to the inner wall of the clamping groove, and the round strip is a rubber strip.
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Description

Technical Field

[0001] This utility model relates to the technical field of aquatic aquaculture parameter data monitoring devices, and in particular to an aquatic aquaculture parameter data monitoring device. Background Technology

[0002] The aquaculture analyzer is an instrument used to monitor and analyze various key water quality parameters in aquaculture environments. It employs photoelectronic colorimetric detection of ions. Dissolved oxygen, appropriate pH levels, and salinity are essential conditions in aquaculture. Ammonia nitrogen, nitrite nitrogen, and hydrogen sulfide are the main toxic substances produced by fish and shrimp metabolism. Accurate and timely measurement of the concentrations of these substances, followed by appropriate measures, can significantly improve the survival rate of fish and shrimp and reduce aquaculture costs. The output interface can print measurement data in real time or after measurement completion. A built-in low-power clock records calibration and measurement time in real time. It uses a specially designed sealed colorimetric tube and electrochemical probe to achieve convenient and rapid water quality determination.

[0003] The inventors discovered during routine use of the aquaculture analyzer that when monitoring aquaculture parameters, it is often necessary to place the detection probe into the water. Due to the probe's weight, the connection port at one end of the probe may slip off the analyzer's surface when placed in the water, making it impossible to monitor aquaculture parameters and thus causing problems. Utility Model Content

[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing a device for monitoring aquatic aquaculture parameter data.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a water aquaculture parameter data monitoring device, comprising a monitoring analyzer, a connection port provided at the bottom of the monitoring analyzer, a connection end inserted inside the connection port, a connection wire fixedly connected to one end of the connection end, a monitoring probe fixedly connected to one end of the connection wire, an anti-detachment device provided at the bottom of the monitoring analyzer, a storage device fixedly connected to the side of the monitoring analyzer, the anti-detachment device comprising a fixing plate fixedly connected to the surface of the connection port, a locking plate slidably connected to the side of the fixing plate, a locking block fixedly connected to one end of the locking plate, and a locking groove provided on the surface of the locking plate.

[0006] The effect achieved by the above components is that, under the action of the slot, the connecting cable can be locked inside the connecting port, thereby preventing the connecting cable from falling off.

[0007] Preferably, a round strip, which is a rubber strip, is fixedly connected to the inner wall of the slot.

[0008] The effect achieved by the above components is that, under the action of the round bar, the connecting wire is not obstructed by the slot, thus avoiding damage to the connecting wire.

[0009] Preferably, a magnetic plate is fixedly connected to the side of the card plate, and the magnetic plate is magnetically connected.

[0010] The effect achieved by the above components is that, under the action of the magnetic plate, the cards are attracted together, thereby preventing the connecting wires from coming loose.

[0011] Preferably, a locking rod is inserted into the side of the fixing plate, and a circular groove is provided on the side of the locking plate, with the locking rod inserted into the interior of the circular groove.

[0012] The aforementioned components achieve the following effects: under the action of the locking lever, the locking plate can be fixed, thereby achieving the function of fixation; when it is necessary to limit the connection wire, the connection wire is locked inside the slot; under the action of the round bar, the connection wire is not pressed against the slot, thus avoiding the phenomenon of connection wire damage; by moving the locking plates relative to each other, the locking plates are attracted together under the action of the magnetic plate; under the action of the locking lever, the locking plates can be fixed, thereby achieving the function of fixation and thus preventing them from falling off.

[0013] Preferably, the storage device includes an L-shaped plate fixedly connected to the side of the monitoring and analysis instrument, and the surface of the L-shaped plate is wound with connecting wires.

[0014] The effect achieved by the above components is that, under the action of the L-shaped plate, the connecting wires can be wrapped around the surface of the L-shaped plate for storage, thereby achieving the function of storage.

[0015] Preferably, a strap is fixedly connected to the side of the monitoring and analysis instrument, and the two ends of the strap are tied together.

[0016] The effect achieved by the above components is that the connecting wires wrapped around the surface of the L-shaped plate can be bound by the straps, thus preventing the connecting wires from coming loose.

[0017] Preferably, the side of the L-shaped plate is fixedly connected to an elastic clip, and a monitoring probe is installed inside the elastic clip.

[0018] The effect achieved by the above components is that, under the action of the elastic clip, the monitoring probe can be locked inside the elastic clip, thereby achieving the function of storage.

[0019] Preferably, the elastic clip has a retaining ring fixedly connected inside, and the retaining ring is a rubber ring.

[0020] The aforementioned components achieve the following effect: Under the action of the retaining ring, the monitoring probe is fixed inside the elastic clip, thus achieving a fixing function. When it is necessary to store the connecting wire and the monitoring probe, the connecting wire is wound around the surface of the L-shaped plate. After the connecting wire is wound around the surface of the L-shaped plate, it is fixed to the surface of the L-shaped plate by the binding strap, and the monitoring probe is clipped inside the elastic clip. Under the action of the retaining ring, the monitoring probe is fixed inside the elastic clip, thus achieving a fixing function, thereby achieving the storage function.

[0021] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0022] In this invention, by setting an anti-detachment device, when it is necessary to limit the connection line, the connection line is locked inside the slot. Under the action of the round bar, the connection line is not pressed against the slot, thus avoiding damage to the connection line. The relative movement of the locking plates causes them to be attracted together under the action of the magnetic plate. Under the action of the locking rod, the locking plates can be fixed, thereby achieving the fixing function and preventing detachment. This solves the problem that the monitoring probe may slip off the analyzer due to gravity when monitoring water areas. Attached Figure Description

[0023] Figure 1 This utility model provides a three-dimensional structural schematic diagram of a device for monitoring aquatic aquaculture parameter data;

[0024] Figure 2 This utility model provides a schematic diagram of an anti-shedding device for aquaculture parameter data monitoring device;

[0025] Figure 3 This utility model provides a schematic diagram of a storage device for aquaculture parameter data monitoring equipment;

[0026] Figure 4 The present invention provides a flowchart of a device for monitoring aquatic aquaculture parameter data.

[0027] Legend: 1. Monitoring and analysis instrument; 2. Anti-detachment device; 21. Fixing plate; 22. Clamping plate; 23. Magnetic plate; 24. Round bar; 25. Clamping block; 26. Clamping rod; 3. Storage device; 31. L-shaped plate; 32. Strap; 33. Elastic clamp; 34. Clamping ring; 4. Monitoring probe; 5. Connection port. Detailed Implementation

[0028] Example 1, such as Figure 1-4As shown, a water aquaculture parameter data monitoring device includes a monitoring analyzer 1. The bottom of the monitoring analyzer 1 has a connection port 5, and a connecting end is inserted inside the connection port 5. One end of the connecting end is fixedly connected to a connecting wire, and the other end of the connecting wire is fixedly connected to a monitoring probe 4. The bottom of the monitoring analyzer 1 has an anti-detachment device 2, and a storage device 3 is fixedly connected to the side of the monitoring analyzer 1. When the monitoring analyzer 1 is needed, the monitoring probe 4 is inserted into the connection port 5 through the connecting end of the connecting wire. The monitoring analyzer 1 monitors the water area using a light scattering method and a turbidity measurement method. The monitoring analyzer 1 is equipped with a laser or LED light source. When light passes through a water sample, suspended matter scatters the light. The instrument calculates the concentration of suspended matter in the water by measuring the intensity and angle of the scattered light and combining it with a specific algorithm. This method has the advantages of high sensitivity and real-time monitoring, and is suitable for the detection of various water qualities. The turbidity measurement method indirectly reflects the concentration of suspended matter by measuring the turbidity of the water sample. The unit of turbidity is usually NTU. The instrument is equipped with a light source and a detector. The light source emits light, and after passing through the water sample, some of the light is scattered by suspended particles. The detector measures the intensity of the scattered light, thereby calculating the turbidity of the water. This method is suitable for rapid detection and on-site use.

[0029] Reference Figure 2 The anti-detachment device 2 includes a fixing plate 21 fixedly connected to the surface of the connection port 5. A locking plate 22 is slidably connected to the side of the fixing plate 21. A locking block 25 is fixedly connected to one end of the locking plate 22. A locking groove is provided on the surface of the locking plate 22. Under the action of the locking groove, the connecting wire can be locked inside the connection port 5, thereby preventing the connecting wire from falling off. A round strip 24, which is a rubber strip, is fixedly connected to the inner wall of the locking groove. Under the action of the round strip 24, the connecting wire is not rubbed by the locking groove, thus preventing the connecting wire from being damaged. A magnetic plate 23 is fixedly connected to the side of the locking plate 22. The magnetic plate 23 is magnetically connected. Under the action of the magnetic plate 23, the locking plates 22 are attracted together. Furthermore, to prevent the connecting wire from detaching, a locking rod 26 is inserted into the side of the fixing plate 21, and a circular groove is inserted into the side of the locking plate 22. The locking rod 26 is inserted into the inside of the circular groove. Under the action of the locking rod 26, the locking plate 22 can be fixed, thereby achieving the function of fixation. When it is necessary to limit the connecting wire, the connecting wire is locked inside the groove. Under the action of the circular bar 24, the connecting wire will not be obstructed by the groove, avoiding the phenomenon of damage to the connecting wire. The relative movement of the locking plates 22 causes the locking plates 22 to be attracted together under the action of the magnetic plate 23. Under the action of the locking rod 26, the locking plates 22 can be fixed, thereby achieving the function of fixation and preventing detachment.

[0030] Reference Figure 3The storage device 3 includes an L-shaped plate 31 fixedly connected to the side of the monitoring analyzer 1. Connecting wires are wound around the surface of the L-shaped plate 31, allowing the connecting wires to be wound around its surface for storage. A strap 32 is fixedly connected to the side of the monitoring analyzer 1, with both ends tied together. The strap 32 secures the connecting wires wound around the L-shaped plate 31, preventing them from coming loose. An elastic clip 33 is fixedly connected to the side of the L-shaped plate 31, with a monitoring probe 4 secured inside. The monitoring probe 4 can be held in place by the elastic clip 33. The elastic clip 33 is internally connected to a retaining ring 34, which is a rubber ring. Under the action of the retaining ring 34, the monitoring probe 4 is fixed inside the elastic clip 33, thus achieving the function of fixation. When it is necessary to store the connecting wire and the monitoring probe 4, the connecting wire is wrapped around the surface of the L-shaped plate 31. After the connecting wire is wrapped around the surface of the L-shaped plate 31, it is tied and fixed to the surface of the L-shaped plate 31 by the strap 32. The monitoring probe 4 is then clipped inside the elastic clip 33. Under the action of the retaining ring 34, the monitoring probe 4 is fixed inside the elastic clip 33, thus achieving the function of fixation and storage.

[0031] Working principle: When using aquaculture parameter data monitoring devices, specifically monitoring analyzer 1, the monitoring probe 4 is inserted into the connection port 5 via a connecting cable. The monitoring analyzer 1 monitors the water using both light scattering and turbidity measurement methods. The analyzer 1 is equipped with a laser or LED light source. When light passes through the water sample, suspended matter scatters the light. The instrument measures the intensity and angle of the scattered light, combined with a specific algorithm, to calculate the concentration of suspended matter in the water. This method offers high sensitivity and real-time monitoring, making it suitable for various water quality tests. Turbidity measurement indirectly reflects the concentration of suspended matter by measuring the turbidity of the water sample. The unit of turbidity is typically NTU. The instrument contains a light source and a detector. The light source emits light, which, after passing through the water sample, is partially scattered by suspended matter. The detector measures the intensity of the scattered light, thereby calculating the turbidity in the water. This method is suitable for rapid testing and on-site use. When it is necessary to limit the connection wire, the connection wire is inserted into the slot. Under the action of the round bar 24, the connection wire is not obstructed by the slot, thus avoiding damage to the connection wire. The relative movement of the clamping plate 22 causes the clamping plate 22 to be attracted together under the action of the magnetic plate 23. Under the action of the clamping rod 26, the clamping plate 22 can be fixed, thereby achieving the function of fixation and preventing detachment. When it is necessary to store the connection wire and the monitoring probe 4, the connection wire is wrapped around the surface of the L-shaped plate 31. After the connection wire is wrapped around the surface of the L-shaped plate 31, it is tied and fixed to the surface of the L-shaped plate 31 by the strap 32. The monitoring probe 4 is inserted into the elastic clamp 33. Under the action of the clamping ring 34, the monitoring probe 4 is fixed inside the elastic clamp 33, thereby achieving the function of fixation and storage.

Claims

1. A device for monitoring aquatic aquaculture parameter data, comprising a monitoring and analysis instrument (1), characterized in that: The monitoring analyzer (1) has a connection port (5) at its bottom. A connection end is inserted inside the connection port (5). A connection wire is fixedly connected to one end of the connection end. A monitoring probe (4) is fixedly connected to one end of the connection wire. An anti-detachment device (2) is provided at the bottom of the monitoring analyzer (1). A storage device (3) is fixedly connected to the side of the monitoring analyzer (1). The anti-detachment device (2) includes a fixing plate (21) fixedly connected to the surface of the connection port (5). A card plate (22) is slidably connected to the side of the fixing plate (21). A card block (25) is fixedly connected to one end of the card plate (22). A card slot is provided on the surface of the card plate (22).

2. The aquaculture parameter data monitoring device according to claim 1, characterized in that: A round strip (24) is fixedly connected to the inner wall of the slot, and the round strip (24) is a rubber strip.

3. The aquaculture parameter data monitoring device according to claim 2, characterized in that: A magnetic plate (23) is fixedly connected to the side of the card plate (22), and the magnetic plate (23) is magnetically connected.

4. The aquaculture parameter data monitoring device according to claim 3, characterized in that: The side of the fixing plate (21) is provided with a locking rod (26), and the side of the locking plate (22) is provided with a circular groove, and the locking rod (26) is inserted into the inside of the circular groove.

5. The aquaculture parameter data monitoring device according to claim 4, characterized in that: The storage device (3) includes an L-shaped plate (31) fixedly connected to the side of the monitoring analyzer (1), and the surface of the L-shaped plate (31) is wrapped with connecting wires.

6. The aquaculture parameter data monitoring device according to claim 5, characterized in that: The monitoring analyzer (1) is fixedly connected to a strap (32) on its side, and the two ends of the strap (32) are tied together.

7. The aquaculture parameter data monitoring device according to claim 6, characterized in that: The side of the L-shaped plate (31) is fixedly connected to an elastic clip (33), and a monitoring probe (4) is installed inside the elastic clip (33).

8. The aquaculture parameter data monitoring device according to claim 7, characterized in that: The elastic clip (33) is internally fixedly connected to a retaining ring (34), which is a rubber ring.