• Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification System 1
  • Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification System 2
  • Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification System 3
  • Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification System 4
Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification

Solar Pump Safe and Reliable Easy Install Wells Prices CE Certification

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Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification

Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification

Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification

Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification

•Profile:

Adopt stainless steel casing, shaft core, coupling, water entry base and pump body (or copper alloy water entry base,pump body), blower inlet casing, impeller with new polymer materials of high-strength and wear -resistant.New "floating style" structure of impeller avoids axial pressure to motor. With combination of motor and controller,the max efficiency is over 85%, raises 20% than the traditional AC one.

•Material:

1)Stainless steel casing, shaft core, coupling and pump body; copper alloy connecting, base;blower inlet casing, impeller with new polymer materials of high-strength and wear-resistant.

2)Water immersion style stainless steel submersible motor;graphite bearings.

•Product Feature:

1)Compact structure, high-lift, noiseless, pollution-free; complete electrical protecting controller device, against under-voltage, overvoltage, over-flow, overload, waterless etc; automatic recovery; controlling water height as demand.

2)Easy installation, maintenance-free, safe and reliable.

•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.

•Working condition:

1)Non-corrosive water; the volume ratio of sand content no more than 3%o particle size less than 0.5mm.

2)Max medium temperature up to +40°C; PH value remains 5-10.

3)Work close to the rated head and must be immersed in water.

 

•Motor Data

MODEL

Voltage 
(V)

Power 
(W)

Max.flow 
(m3/h)

Max.head (m)

Max. 
Suet 
m

GW 
(kg)

Dimension 
(mm)

SQB2.2/35-D24/250

18-29

80-450

35

32

8

7

265x135x230

SQB3.0/50-D48/450

42-63

210-700

50

50

8

10.5

320x180x290

SSGJ3.0/45-D72/750

42-88

270-1000

50

45

9

15.5

395x205x305

SCPS7.5/26-D72/750

42-88

270-1000

125

26

8

15

215x180x420

SPV750F

48-88

550-1100

300

12

0

18

360x200x540

SPV11 OOF

48-88

800-1500

360

13

0

20

420x220x560

 

 

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. 

 

 

 

 

 Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification

High Efficiency 250W Mono Solar Module ICE-3

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.

 

Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification

 

Solar Pump Safe and Reliable  Easy Install Wells Prices CE Certification

 

 

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:Can a solar pump be used for water supply in tea estates?
Yes, a solar pump can be used for water supply in tea estates. Solar pumps are an efficient and sustainable option for water supply, especially in remote areas where access to electricity may be limited. They can provide a reliable source of water for irrigation, drinking, and other needs in tea estates, helping to reduce dependence on conventional energy sources and minimize operational costs.
Q:Can a solar pump be connected to a battery for storage?
Indeed, it is possible to link a solar pump to a battery to store energy. This setup is referred to as a solar-powered pumping system with battery backup. The pump itself is fueled by electricity generated by solar panels, which convert sunlight into power. Any surplus energy generated by the panels can be stored in a battery and utilized when needed, such as during times of limited sunlight or at nighttime when the panels are inactive. This feature ensures uninterrupted pump operation, even in the absence of sunlight, rendering it a dependable and effective solution for water pumping in remote or off-grid areas.
Q:Can a solar pump be used in areas with high temperature or heat stress?
A solar pump is suitable for use in regions experiencing high temperatures or heat stress. These pumps are specifically engineered to endure harsh weather conditions, including elevated temperatures. They are constructed using robust materials capable of withstanding heat while maintaining optimal functionality. Furthermore, solar pumps operate independently of external power sources like electricity or fuel, which can be impacted by extreme temperatures or heat stress. As long as there is an ample amount of sunlight to fuel the solar panels, the pump will operate seamlessly in hot climates or areas experiencing heat stress.
Q:Can a solar pump be used in areas with high levels of nitrates in the water?
Yes, a solar pump can be used in areas with high levels of nitrates in the water. The solar pump's functionality is independent of the water quality and is primarily dependent on the availability of sunlight to generate power. However, it is important to note that the high levels of nitrates in the water may pose risks to human health, agricultural practices, and the environment, which should be addressed separately.
Q:What is the expected energy payback time of a solar pump system?
The duration for a solar pump system to generate the same amount of energy it needed for manufacturing and installation is referred to as the expected energy payback time. This timeframe is influenced by several factors, such as the efficiency of the solar panels, the size and capacity of the pump system, and the location and climate conditions of the installation. Typically, a well-designed and properly maintained solar pump system can achieve an energy payback time ranging from 2 to 5 years. However, it's important to note that this estimate can vary significantly depending on the specific circumstances. In areas with ample sunlight and high water demands, a solar pump system can achieve a faster energy payback time due to increased energy production and utilization. Conversely, regions with less sunlight or lower water requirements may experience a longer energy payback time. Furthermore, advancements in solar technology and improvements in efficiency can also contribute to reducing the energy payback time of a solar pump system. As solar panels become more efficient and manufacturing processes become more sustainable, the time required to recover the initial energy investment decreases. It is crucial to consider the long-term benefits of a solar pump system beyond the energy payback time. Once the system surpasses this duration, it continues to generate clean and renewable energy with minimal maintenance and operating costs, contributing to energy savings and environmental sustainability for many years to come.
Q:Are there any limitations to the size of particles a solar pump can handle?
Yes, there are limitations to the size of particles that a solar pump can handle. Most solar pumps are designed to handle small particles, such as sand, silt, or debris that may be present in the water source. However, if the particles are too large or dense, they can cause blockages or damage to the pump system. Additionally, larger particles may also affect the efficiency of the pump, reducing its performance and output. Therefore, it is important to consider the size and type of particles present in the water source when selecting a solar pump to ensure that it can effectively handle them without causing any issues.
Q:Can a solar pump be used in areas with limited access to water storage tanks?
Yes, a solar pump can be used in areas with limited access to water storage tanks. Solar pumps are designed to directly pump water from a source, such as a well or a river, without the need for a storage tank. This makes them suitable for areas where water storage infrastructure is limited or not available. The solar pump can draw water as needed, providing a sustainable and efficient solution for accessing water in remote locations.
Q:How does a solar pump handle water flow rate adjustments?
A solar pump handles water flow rate adjustments by utilizing a variable frequency drive (VFD) or a controller that is connected to the pump's motor. This allows the pump to adjust its speed and power consumption according to the desired flow rate, which can be controlled manually or automatically.
Q:How does the temperature affect the performance of a solar pump system?
The performance of a solar pump system is significantly impacted by temperature. When temperatures rise, the efficiency and performance of the system can be reduced. To begin with, as the temperature increases, the efficiency of the solar panels, which convert sunlight into electricity, decreases. This is because the materials used in solar panels are sensitive to temperature fluctuations. The rise in temperature leads to an increase in the resistance of these materials, resulting in a decrease in electrical output. As a result, the solar panels may not be able to generate the same amount of energy during hot weather compared to cooler temperatures, ultimately leading to a decline in the overall performance of the system. Additionally, the temperature has an impact on the performance of the pump itself. Solar pumps rely on the energy produced by the solar panels to power the motor and pump water. Higher temperatures can cause the motor to overheat, decreasing its efficiency and potentially causing it to break down. In severe cases, the motor may completely shut down as a preventive measure against damage. Moreover, the elevated temperature of the water being pumped can also reduce the pump's performance, as it requires more energy to move warmer water compared to cooler water. Lastly, the temperature affects the efficiency of the water being pumped. Higher temperatures can lead to increased evaporation of the water, resulting in a decrease in the overall water level and potentially causing the pump to run dry. Additionally, warmer water tends to contain more impurities and sediment, leading to clogging and a reduction in the pump's effectiveness. In summary, temperature plays a crucial role in the performance of a solar pump system. High temperatures can decrease the efficiency of the solar panels, cause the motor to overheat, reduce the pump's performance, and impact the quality of the water being pumped. Therefore, it is important to consider and manage temperature conditions when designing and operating a solar pump system to ensure optimal performance and longevity.
Q:Can a solar pump be used for flood control purposes?
Yes, a solar pump can be used for flood control purposes. Solar pumps are effective in draining excess water during floods, as they harness solar energy to power the pumping mechanism. These eco-friendly pumps are reliable and can be easily deployed in areas without access to electricity, helping to mitigate the effects of flooding and prevent further damage.

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