Small-scale Solar Power System
The small-scale solar power system is generally used in remote village without electricity,
telecommunication, islands for frontier defense, army and field work etc.
Working Principle
Solar supply system is that the solar panel transfers the solar energy into the electric
power and store in the battery through the controller, after over-charging and discharging
protection supplies to electric appliance.
Factors should be considered
1. The power of the electrical appliance and every day working hours
2. The efficient sunshine hours in the location
3. The proportion of the rainy and cloudy days in the location
4. Obligate working hours
5. Set up the database of the local weather report, such as sunshine hours,natural disaster
and so on.
6. The area of the generating system should be wide, and make sure that there is no high
building or other things to cover the solar panels.
Model No.: ELPS-PV 150
Power of PV Panel: 150Wp
Storage Battery: 12V150Ah
Intelligent Controller: 24V10A
Inverter: 300W
Power of Load: <240W
Available Electricity:
approximate 0.5 kwh in sunny day, and a little discrepancy for different regions.
Model No.: ELPS-PV 200
Power of PV Panel: 200Wp
Storage Battery: 2*12V150Ah
Intelligent Controller: 24V8A
Inverter: 500W
Power of Load: <400W
Available Electricity:
Approximate 0.6 kwh in sunshine day, and a little discrepancy for different regions.
Model No: ELPS-PV 500
Power of PV Panel: 500Wp
Storage Battery: 4*12V150Ah
Intelligent Controller: 24V15A
Inverter: 1000VA
Power of Load: <800W
Available Electricity:
Approximate 1.6 kwh in sunshine day, and a little discrepancy for different regions.
Model No.: ELPS-PV800
Power of PV Panel: 800Wp
Storage Battery:4*12V200Ah
Intelligent Controller: 24V40A
Inverter: 2000VA
Power of Load: <1600W
Available Electricity:
Approximate 2.5 kwh in sunshine day, and a little discrepancy for different regions.
We could not list all the system configurations here. In fact, you only need to tell us the following information; we could design an optimal system for you:
1. How much is load power of the system?
2. How much is output voltage of the system? Positive current or alternating current?
3. How many hours worked the system everyday?
4. How many days supplied the system continuously in overcast and rainy days?
5. How many systems will be used? Grid-connected or not.
6. Which solar module do you prefer, Crystalline Solar Module or Amorphous Silicon Solar Module.
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