What is the Automatic Aeration Control System?
Hardware parameters:
Indicators | Parameters |
---|---|
Power supply | ~50Hz 100V ~ 240V |
Ambient temperature | -20°C ~ 40°C |
Dissolved oxygen range | 0 ~ 20mg/L or 0 ~ 200% Saturation |
Dissolved Oxygen Sensor Accuracy | 1% |
Drift | <1% per year |
Sensor Material | PVDF |
Temperature Sensor Type | NTC |
Water temperature temperature range | 0 ~ 50°C |
Temperature Accuracy | ¹0.2°C |
Measuring distance | 25m (can be extended to 50m/100m/400m/1000m) |
Sensor cleaning cycle | Around 3 months (may vary depending on water quality) |
Max.number of sensors supported | Around 3 months (may vary depending on water quality) |
Number of controllers | 4 way (power is related to the power of the optional contactor) 4 way independent control |
Data calculation/storage | 30 years (for easy analysis of own farming big data) |
Sensor type support | Dissolved oxygen, water temperature, pH, ammonia nitrogen, turbidity, etc. |
Software function display:
1. Real-time display of measured current water quality data;
2. Real-time statistics and display of feed and electricity;
Independent control of oxygenation, baiting, and other equipment;
3. Real-time data formation curve, timely analysis of pond conditions;
4. When the system detects that the dissolved oxygen is below the danger value, the system will automatically start the oxygenation equipment to avoid the loss caused by a lack of oxygen.
5. Real-time statistics on the length of time the oxygenator has been on for the day, for the user to count the electricity bill, and a comprehensive analysis to achieve savings in electricity costs;
6. The multi-day curve can be used to analyze the overall situation of the pond and to adjust the water in time to keep the pond at a good level.
7. Combined with the multi-day data, the big data automatically detects the ponds water trend and gives farming advice.
Hardware function demonstration:
1. Real-time display of the detected water body indicators;
2. Automatic and manual switching control of the equipment at any time;
3. Can be connected to multiple sensors;
4. Can be connected to multiple control devices;
5. Can be controlled separately and independently;
6. Self-detection and protection, to ensure the safe and stable operation of the equipment.
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