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>> Product Advantages
ENHANCED EFFICIENCY OF PERMANENT MAGNET DC BRUSHLESS SYNCHRONOUS MOTOR By applying a permanent magnet DC brushless synchronous motor, energy utilization rate can be increased by 15%-20%, resulting in significant energy savings and reduced reliance on grid power consumption. |
DURABLE CONSTRUCTION FEATURES The entire rotor shaft is made of 304 stainless steel, eliminating the risk of shaft breakage. Additionally, both the outlet and connection cylinder are made from either 304 stainless steel or copper for added durability. |
LONGER LIFESPAN COMPONENTS The motor is equipped with Japanese brand NSK bearings, ensuring a longer working life. The bottom of the rotor features a double bearing structure with angular contact bearings, capable of withstanding greater axial pressure. |
RELIABLE SEALING MECHANISM A silicon carbide impregnated graphite mechanical seal is used, providing a longer working life and high reliability for the motor. |
HIGH-QUALITY MATERIALS The enameled wire is made from 180 ℃ high temperature resistant copper wire with an insulation grade of F. The stator and rotor are constructed from cold-rolled 600 silicon steel sheets. |
TEMPERATURE RESISTANT MAGNET The magnet is applying 40SH aluminum iron boron material, offering a temperature resistance of up to 150 ℃. |
>> Main Components Of Solar Water Pump System
SOLAR PANEL
Gallium-doped Technology
Less Hot Spot Shading effects
Lower LCOE and BOS
Anti PID/Low LID protection
Lower temperature coefficient
220V AC/DC
Auto-switching controller
MPPT controller≥99% efficiency
Pure sine wave
highly Integrated, easy installation
(≤2.2KW)
380V AC/DC
Auto-switching controller
MPPT controller≥99% efficiency
Pure sine wave
highly Integrated, easy installation
(2.2KW~4KW)
380V AC/DC
Auto-switching controller
MPPT controller≥99% efficiency
Pure sine wave
highly Integrated, easy installation
(≥5.5KW)
Impellers adopt whole-stage
floating wear-resistant
and sand-resistant
Silicon carbide-impregnated
graphite mechanical seal
of Italian brand
Japanese NSK bearing,Two deep groove ball
bearings are used at the upper end, and two
angular contact bearings are used at the lower end
>> Working Environment And Electrical Property
Controller and Pump Matching Method | |||||
Controller Model | Adaptable Pump | Max.Input Current (A) | Max.Open Circuit Voltage(V) | Optimum MPPT Voltage(v) | Working Temperature(℃) |
DS-12 | Rated 12V Pump | 17 | <55 | 30-48 | -15~60 |
DS-24 | Rated 24VPump | 17 | <55 | 30-48 | -15~60 |
DS-36 | Rated 36V Pump | 17 | <55 | 30-48 | -15~60 |
DS-48 | Rated48V Pump | 17 | <105 | 60-90 | -15~60 |
DS-72 | Rated 72V Pump | 17 | <160 | 90-120 | -15-60 |
DS-110 | Rated 110V Pump | 17 | <210 | 110-150 | -15~60 |
DS-72-A/D | Rated 72V-A/D Pump | 17 | <430 | 100-190 | -15~60 |
DS-110-A/D | Rated 110V-A/D Pump | 17 | <430 | 110-190 | -15~60 |
DS-150-A/D | Rated 150V-A/D Pump | 17 | <430 | 150-220 | -15~60 |
DS-200-AD | Rated 200V-A/D Pump | 17 | <430 | 200-290 | -15~60 |
DS-300-A/D | Rated 300V-AD Pump | 17 | <430 | 300-390 | -15~60 |
DS-380-A/D | Rated 380V-A/D Pump | 17-32 | <780 | 520-750 | -15~60 |
DS-110-HV | Rated 110V-HV Pump | 17 | <430 | 110-190 | -15~60 |
DS-150-HV | Rated 150V-HV Pump | 17 | <430 | 150-220 | -15~60 |
DS-200-HV | Rated 200V-HV Pump | 17 | <430 | 200-290 | -15~60 |
DS-300-HV | Rated 300V-HV Pump | 17 | <430 | 300-390 | -15~60 |
>> Product Applications
1. Agricultural Irrigation
The Solar Water Pump system is widely applied for agricultural irrigation purposes. This using environment involves using the solar powered water pump to efficiently and sustainably water crops in fields or gardens in time. By using the power of the sun, solar pump can provide a reliable source of water for irrigation without relying on traditional grid power. Farmers can easily set up the solar pump system in their fields to ensure their crops receiving the necessary hydration for promoting optimal growth and yield. This application is ideal for remote agricultural areas where access to electricity is limited.
2. Domestic Water Supply
The solar pump is suitable for domestic water supply applications. In which, the solar powered pump can be installed in residential areas to provide a consistent source of water for daily use. Whether it's for drinking, cooking, cleaning, or bathing, the system ensures a reliable supply of water without need of reaching to grid electricity. Families can enjoy the convenient access to clean water without worrying about electricity bills or power outages. This application scenario is perfect for remote homes or areas with unreliable water sources.
3. Livestock Drinking Water
Another application scenario for the Solar Water Pump is providing drinking water for livestock. Farmers can use the solar water pump to supply fresh and clean water to their animals, ensuring their health and well-being. By installing the pump in a pasture or barn, farmers can easily provide a continuous flow of water for their livestock without the need for manual pumping or electricity. This application scenario is particularly beneficial for remote or rural areas where access to water sources may be limited. With the solar water pump, farmers can efficiently manage their livestock's hydration needs while reducing their reliance on traditional energy sources.
>> Pump Installation
Make sure the power supply is disconnected during installation. |
Pump can be installed both vertically and horizontally, but the outlet should never be below the horizontal line. Minimum head
of 10% than max pump head must be granted.
Parameters:
-Well diameter must be equal to or greater than 4"
-Submersion Depth must be less than 150m under the water
Installing the pump inside the well
To reduce noise transmission, it is advised to use plastic pipes. The pump must always be secured in the well through a special rope attached to loop on the pump head. It is recommended not to drop the pump in the well by using the electric cable, its integrity must be preserved in all steps. In this regard it is recommended to use a cable support or install over the riser pipe. During operation, the pump suction must always remain at least 1.5 meters below the dynamic water level.