Sunrotor Solar Pump for Wells - CE Certified, Easy Install
- Loading Port:
- Ningbo
- Payment Terms:
- TT OR LC
- Min Order Qty:
- 10 unit
- Supply Capability:
- 100000 unit/month
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Specifications
submersible solar water pump
1. CE certificated
2. easy install
3. high efficiency: over 90%
4. long life time: 8-10 years
1. Profile:
Adopt stainless steel screw and rubber stator, permanent Magnet Brushless motor. With combination of motor and controller, the max efficiency is over 85%, raises 25% than the traditional AC one.
2. Material:
1)Stainless steel casing, shaft core, coupling and pump body; copper alloy connecting, base; rubber stator of high-strength and wear-resistant.
2)Water immersion style stainless steel submersible motor; graphite bearings.
3. Product Feature:
1)Compact structure, high-lift, noiseless, pollution-free; complete electrical protecting controller device, against under-voltage, over-voltage, over-flow, overload, waterless etc;automatic recovery; controlling water height as demand.
2)Easy installation, maintenance-free, safe and reliable.
Water depth: 1 -120m Max flow: 2.3m3/h
4. Application:
1) These electric pumps series are workable within maximum head, as there are no restrictions of BDC. With the addition of high head, high efficiency
and wide high efficiency zone, they are suitable for distance water irrigation, high efficiency of increasing oxygen on aquaculture, pumping water from deep well, gardening, fountain and etc.
5. Working condition:
1) Non-corrosive water; the volume ratio of sand content no more than 1%。particle size less than 0.2mm.
2) Max medium temperature up to +40°C; PH value remains 6.5-8.5.
3) Work close to the rated head and must be immersed in water.
motor data
Model | Impeller | Voltage (V) | Power (W) | Max Flow (M3/H) | Max Head (M) | Outlet (IN) | Outer Diameter (MM) | Weight (KG) |
3SPS0.72/20-D12/80 | Screw | 12 | 45-150 | 0.72 | 20 | 0.75" | 76*400 | 6.5 |
3SPS0.76/28-D12/120 | Screw | 12 | 120 | 0.76 | 28 | 0.75" | 76*400 | 6.7 |
3SPS0.86/38-D12/150 | Screw | 12 | 150 | 0.86 | 38 | 0.75" | 76*400 | 6.8 |
3SPS1.0/30-D24/80 | Screw | 22-30 | 45-150 | 1 | 30 | 0.75" | 76*400 | 7 |
3SPS1.3/50-D24/140 | Screw | 22-30 | 80-200 | 1.3 | 50 | 0.75" | 76*400 | 7.2 |
3SPS1.5/80-D24/210 | Screw | 22-30 | 100-270 | 1.5 | 80 | 0.75" | 76*400 | 7.5 |
3SPS1.5/95-D36/270 | Screw | 32-43 | 140-350 | 1.5 | 95 | 0.75" | 76*400 | 8 |
3SPS1.5/115-D36/500 | Screw | 32-43 | 320-800 | 1.5 | 115 | 0.75" | 76*460 | 9 |
3SPS2.3/80-D48/750 | Screw | 42-63 | 480-950 | 2.3 | 80 | 0.75" | 76*460 | 9 |
3SPS2.3/95-D72/1000 | Screw | 42-88 | 600-1200 | 2.3 | 95 | 0.75" | 76*460 | 9.5 |
3SPS2.3/120-D72/1300 | Screw | 42-88 | 800-1500 | 2.3 | 120 | 0.75" | 76*460 | 9.5 |
4SPS3/60-D36/500 | Screw | 32-43 | 300-700 | 3 | 60 | 1" | 100*480 | 10 |
4SPS3.6/80-D48/750 | Screw | 42-63 | 450-1000 | 3.6 | 80 | 1" | 100*480 | 10.5 |
4SPS3.8/95-D72/1000 | Screw | 42-88 | 600-1300 | 3.8 | 95 | 1" | 100*550 | 13.5 |
4SPS4.2/100-D72/1300 | Screw | 42-88 | 800-1550 | 4.2 | 100 | 1" | 100*550 | 14 |
Product Description
Product Feature
Solar submersible pumps is the efficient equipment to extract groundwater in applications of agricultural irrigation, human and livestock water in plateau and mountain areas, etc.
1. Motor and shell made of stainless steel
2. Stainless steel shaft and coupling
3. High strength & wear resistance stainless steel impeller and diversion shell
4. Sand resistance, anti-rust, pollution-free, long life time
5. Small size, light and easy to ship
6. Easy installation and easy maintain
7. High efficient smart controller with multiple protections: over-temperature protection,
short-current protection, over-load and under-voltage protection. Safe and reliable to use.
Price includes pump with controller. Solar PV panels may be purchased separately.
CNBMSOLAR is a world-leading and Vertical integrated manufacturer of high-performance with Silicon, Wafer, Cells,
Modules, which convert sunlight into electricity for residential, commercial, and utility-scale power generation.
FAQ
Q1. When can I get the quotation?
We usually quote within 24 hours after we get your inquiry. If you are urgent to get the price, please send the message on trade manager or call us directly.
Q2. Can I buy one as sample?
Yes, of course. MOQ of solar pump is 1 piece. For the other kind of products (water pump, air compressor and welding machine), you need to pay all the fee when we make the sample.
Q3. Can you make OEM?
Yes, you can put your logo and brand on the box.
Q4. What is your main market?
Eastern Europe, Southeast Asia. Mid East, South America, Northern Europe.
- Q: How does a solar pump help in reducing the use of antibiotics?
- A solar pump indirectly helps in reducing the use of antibiotics by providing a reliable and sustainable source of clean water. With access to clean water, hygiene and sanitation conditions improve, reducing the risk of waterborne diseases and infections. By preventing the spread of diseases, the need for antibiotics to treat such illnesses decreases, resulting in a reduction in their use.
- Q: Can a solar pump be used in greenhouses?
- Yes, a solar pump can be used in greenhouses. Solar pumps are a great option for irrigation systems in greenhouses as they are powered by solar energy, which is renewable and environmentally friendly. They can be used to efficiently water plants, provide nutrients, and maintain optimal moisture levels in the greenhouse. Solar pumps eliminate the need for electricity or fuel, reducing greenhouse gas emissions and operating costs. Additionally, they can be easily integrated into existing greenhouse systems, making them a practical solution for sustainable agriculture.
- Q: How does a solar pump help in reducing the use of irrigation water?
- A solar pump helps in reducing the use of irrigation water by using solar energy to power the pump, eliminating the need for electricity or fuel. This makes it a sustainable and cost-effective solution for farmers and agricultural practices. Additionally, solar pumps can be set up in remote areas without access to electricity, enabling efficient irrigation and reducing dependence on traditional irrigation methods that consume more water.
- Q: How does a solar pump help in reducing soil erosion?
- A solar pump helps in reducing soil erosion by providing a sustainable and efficient source of water for irrigation. By utilizing solar energy to power the pump, it reduces the dependency on fossil fuels and minimizes carbon emissions. This leads to the conservation of natural resources and a healthier environment. With a reliable water supply, farmers can implement proper irrigation techniques, preventing soil erosion caused by overwatering or inadequate water supply. Additionally, the controlled and consistent water flow helps maintain soil structure, preventing runoff and sedimentation that contribute to erosion.
- Q: Can a solar pump be used for water supply in an off-grid home?
- Yes, a solar pump can definitely be used for water supply in an off-grid home. Solar pumps are an efficient and environmentally friendly solution that can harness the power of the sun to pump and supply water. They do not require electricity from the grid, making them ideal for off-grid homes. Solar pumps are capable of providing a reliable and consistent water supply, making them a great option for off-grid living.
- Q: Can a solar pump be used in conjunction with a traditional electric pump?
- Yes, a solar pump can be used in conjunction with a traditional electric pump. By using both pumps together, it is possible to optimize the water pumping system and ensure a continuous and reliable water supply. The solar pump can harness energy from the sun during the day, reducing reliance on the electric pump and saving electricity costs. Additionally, the electric pump can serve as a backup during periods of low sunlight or when additional water demand exceeds the capacity of the solar pump.
- Q: Can a solar pump be used for water supply in green buildings or eco-resorts?
- Indeed, water supply in green buildings or eco-resorts can be achieved by utilizing a solar pump. The utilization of solar energy aligns seamlessly with the principles of sustainability and eco-friendliness that these establishments strive to uphold. Solar pumps harness the power of the sun to provide a dependable and clean energy source, eliminating the requirement for traditional electricity or fossil fuels. Consequently, this not only lessens the carbon footprint of the water supply system but also contributes to the conservation of natural resources. Solar pumps prove to be particularly suitable for green buildings and eco-resorts due to their minimal maintenance needs and extended lifespan. They can be effortlessly integrated into the existing water supply infrastructure, guaranteeing a smooth transition to renewable energy. Additionally, solar pumps can be designed to operate efficiently even in remote locations where access to electricity may be scarce or unreliable. Aside from their environmental benefits, solar pumps offer financial advantages for green buildings and eco-resorts. In the long run, they provide a cost-effective solution by eliminating or significantly reducing electricity expenses. This is especially valuable for eco-resorts that rely heavily on water supply systems for a range of activities such as swimming pools, irrigation, and guest amenities. All in all, opting for solar pumps for water supply in green buildings or eco-resorts is a judicious decision that promotes sustainability, diminishes carbon emissions, and generates long-term savings. With their dependability, low maintenance requirements, and financial benefits, solar pumps emerge as an excellent choice for meeting water supply needs while remaining true to the eco-friendly vision of these establishments.
- Q: How does the size of the storage tank affect the performance of a solar pump?
- The size of the storage tank plays a crucial role in determining the performance of a solar pump. A larger storage tank allows for greater storage capacity, which in turn enables the pump to operate for longer durations. This is especially important during periods of low sunlight or at night when the solar panels may not be able to generate sufficient power to run the pump in real-time. With a larger storage tank, excess solar energy generated during peak sunlight hours can be stored and utilized later when needed. This ensures a continuous and consistent water supply, even in the absence of direct sunlight. On the other hand, a smaller storage tank may lead to frequent interruptions in water supply, as the pump may run out of stored energy quickly. Additionally, the size of the storage tank impacts the overall efficiency of the solar pump system. A larger tank allows for better optimization of the solar energy harvested, as it reduces the chances of energy wastage. It provides a buffer to store surplus energy during periods of high solar radiation, preventing overloading of the pump or electrical system. Moreover, a larger storage tank can contribute to better system dynamics, as it helps in maintaining a stable pressure and flow rate. It reduces the frequency of pump start/stop cycles, which enhances the overall efficiency and lifespan of the pump by minimizing wear and tear. In summary, the size of the storage tank has a direct influence on the performance of a solar pump. A larger tank increases the system's autonomy, ensures continuous water supply, optimizes energy utilization, and enhances system dynamics. Therefore, careful consideration of the storage tank size is crucial when designing and installing a solar pump system.
- Q: Can a solar pump be used for water supply in agricultural greenhouses?
- Yes, a solar pump can be used for water supply in agricultural greenhouses. Solar pumps are an efficient and sustainable solution for providing water to plants in greenhouses. They utilize solar energy to power the pump, eliminating the need for electricity or fuel. This makes them cost-effective and environmentally friendly. Solar pumps can be easily installed and require minimal maintenance, making them a suitable choice for agricultural greenhouse water supply.
- Q: How do I calculate the required solar panel capacity for a solar pump system?
- To calculate the required solar panel capacity for a solar pump system, you need to consider the power requirements of the pump, the average sunlight hours in your location, and any additional energy losses. Firstly, determine the power consumption of the pump in watts. Then, calculate the daily energy requirement by multiplying the pump's power consumption by the number of hours it operates daily. Next, divide this daily energy requirement by the average sunlight hours to obtain the minimum solar panel capacity needed to meet the pump's demand. Finally, account for any energy losses due to factors like inefficiencies or shading to ensure you have sufficient solar panel capacity to operate the pump efficiently.
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Sunrotor Solar Pump for Wells - CE Certified, Easy Install
- Loading Port:
- Ningbo
- Payment Terms:
- TT OR LC
- Min Order Qty:
- 10 unit
- Supply Capability:
- 100000 unit/month
OKorder Service Pledge
OKorder Financial Service
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