Product Introduction
A solar aeration pump, also known as a solar aerator or solar oxygenator, works by connecting to solar panels, efficiently converting solar energy into electrical energy to drive a water pump or impeller, achieving continuous aeration and circulation of the water body. It is commonly used in aquaculture for oxygenation and in river maintenance.
SA IntegratedIN Integrated Controller Type
|
No. |
Pump |
Controller |
Solar Panels |
|||||||
|
WASSERMANN CODE |
Ref.# |
R. flow (m³/h) |
Motor power (HP) |
Connection (inch) |
Drive Type |
Power(KW) |
AC Voltage Range(V) |
VOC Range (V) |
MPPT Voltage Range(V) |
|
|
173 |
SA10/0.5HP-IN |
20m³/h-5m-24V-370W |
10 |
0.5 |
3" |
Integrated |
0.37 |
/ |
18-60V |
30-48V |
|
174 |
SA14/1HP-IN |
27m³/h-5m-72V-750W |
14 |
1 |
3" |
Integrated |
0.75 |
/ |
50-170V |
90-120V |
|
175 |
SA16/1.5HP-IN |
32m³/h-7m-110V-1100W |
16 |
1.5 |
3" |
Integrated |
1.1 |
/ |
60-220V |
96-150V |
|
176 |
SA22/2HP-IN |
43m³/h-7m-110V-1500W |
22 |
2 |
3" |
Integrated |
1.5 |
/ |
60-220V |
96-150V |
SA External DC Controller Type
|
No. |
Pump |
Controller |
Solar Panels |
|||||||
|
WASSERMANN CODE |
Ref.# |
R. flow (m³/h) |
Motor power (HP) |
Connection (inch) |
Drive Type |
Power(KW) |
AC Voltage Range(V) |
VOC Range (V) |
MPPT Voltage Range(V) |
|
|
177 |
SA10/0.5HP |
20m³/h-5m-24V-370W |
10 |
0.5 |
3" |
External |
0.37 |
/ |
18-60V |
30-48V |
|
178 |
SA14/1HP |
27m³/h-5m-72V-750W |
14 |
1 |
3" |
External |
0.75 |
/ |
50-170V |
90-120V |
|
179 |
SA16/1.5HP |
32m³/h-7m-110V-1100W |
16 |
1.5 |
3" |
External |
1.1 |
/ |
60-220V |
96-150V |
|
180 |
SA22/2HP |
43m³/h-7m-110V-1500W |
22 |
2 |
3" |
External |
1.5 |
/ |
60-220V |
96-150V |
|
181 |
SA22/2HP-H |
43m³/h-7m-180V-1500W |
22 |
2 |
3" |
External |
1.5 |
/ |
80-430V |
180-350V |
|
182 |
SA30/3HP |
60m³/h-5m-280V-2200W |
30 |
3 |
4" |
External |
2.2 |
/ |
80-430V |
280-350V |
SA External AC/DC Automatic Controller Type
|
No. |
Pump |
Controller |
Solar Panels |
|||||||
|
WASSERMANN CODE |
Ref.# |
R. flow (m³/h) |
Motor power (HP) |
Connection (inch) |
Drive Type |
Power(KW) |
AC Voltage Range(V) |
VOC Range (V) |
MPPT Voltage Range(V) |
|
|
183 |
SA14/1HP-A/D |
27m³/h-5m-96V-750W |
14 |
1 |
3" |
AC/DC |
0.75 |
80-280V |
80-430V |
96-350V |
|
184 |
SA16/1.5HP-A/D |
32m³/h-7m-150V-1100W |
16 |
1.5 |
3" |
AC/DC |
1.1 |
80-280V |
80-430V |
150-350V |
|
185 |
SA22/2HP-A/D |
43m³/h-7m-180V-1500W |
22 |
2 |
3" |
AC/DC |
1.5 |
80-280V |
80-430V |
180-350V |
|
186 |
SA30/3HP-A/D |
60m³/h-5m-280V-2200W |
30 |
3 |
4" |
AC/DC |
2.2 |
80-280V |
80-430V |
280-350V |
Free Accessories

Packaging

Features
- High-flow system for faster tank-fill and significant water output
- Proven motor and pump technology for long-term reliability
- Magnet brushless motor. Simple installation and reduced maintenance
- CE approved
Advantage
- Energy-efficient and environmentally friendly, with zero operating costs.
Powered by solar panels, it eliminates the need for traditional grid electricity, producing no exhaust fumes or noise pollution, making it a 100% green and clean energy device.
- Safe and reliable, low maintenance costs
Using low-voltage current drive eliminates the risk of electrical leakage in the water, ensuring the safety of aquatic organisms and operators. The simple design minimizes potential failure points.
Working Principle
Solar-powered aeration pumps convert light energy into electrical energy through solar panels. This energy is then regulated by a controller to power an air pump or water pump. The air pump forces air into the water, creating bubbles that diffuse oxygen, while the water pump increases the contact area between water and air through spraying and stirring, thereby increasing dissolved oxygen levels. Models with batteries can store excess electricity for continuous operation during cloudy days or at night.
Application Scenarios




FAQ
How to extend the lifespan of a solar aeration pump?
• During installation, ensure the air pump is positioned at least 10 centimeters above the water surface and install a check valve to prevent water from flowing back into the pump body and causing damage during power outages.
•The pump can be turned off during the day when aquatic plants produce sufficient oxygen through photosynthesis, and turned on again at night or during hot weather (>32℃).
•Regularly clean the filter screens and valve plates of the air inlet and outlet to prevent blockage by limescale, algae, or impurities, which could affect the pump's performance.








