the MPPT Solar Wind Hybrid Controller is a combination of a solar charge controller and a wind turbine charge controller, it allows you charge the battery bank use both the solar energy and wind energy.
the MPPT solar and Wind Charge Controller integrate MPPT Technology which allows you track the most power from the sun and gets the greatest solar energy.
Boost Charge Function is another feature you can rely on, it boost the charge voltage and enhance the charge ability to the battery under bad sunshine and low winds condition.
the Solar Wind Hybrid Controller supports a wide range of battery type include ternary lithium battery, lithium iron phosphate battery and lead acid battery.
MPPT Solar Wind Hybrid Controller Features
- [MPPT Boost Charge] it adopts MPPT Technology and boost charging, high efficiency tracking chip can effectively improve the charging efficiency of wind turbines, solar and wind energy, while charging and using electricity at the same time.
- [Stable Performance] Automatically match wind turbines charging, using supercharged MPPT technology, at low wind speeds, wind turbines power can still be generated.
- [Multifunctional] LCD large screen digital display, selective switching between Chinese and English, universal for multiple types of batteries, lockable voltage, complete protection functions, and adjustable load output in multiple working modes.
- [PWM Stepless Unloading] The internal circuit board of the controller can be dustproof and anti static, the load output can be adjusted in various working modes, the fan PWM stepless unloading, the external unloading device, and the solar energy intelligent disconnection charging.
- [Dual Power Supply] Controller dual power supply function, battery and solar power supply, LCD display battery, fan, solar energy, load voltage and current and other information, some parameters can be set, with resistance and resistance connecting line, effectively protect battery and windy weather.
Ø Wind generator with MPPT boost charging function.
Ø Wind PWM discharge load, external discharge resistor, intelligent disconnection of solar load.
Ø Double power supply function: battery + solar power supply.
Ø LCD displays parameters of wind, sun and load voltage and current. Some parameters can be set by users.
Ø DC Output with 3 Modes.
Ø The internal circuit board is sprayed Conformal coating To prevent dust, moisture and static electricity.
LCD Screen Displayed Information:
- Battery voltage and power
- PV voltage, current and power
- Wind turbine voltage, current and power
- Cumulative power generation
- Charging and discharging data set



Battery Parameter Reference Table:
Lead acid battery (single 12V) |
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Rated System Voltage/V |
12V system (1 string) |
24V system (2 strings) |
48V system (4 strings) |
12V default |
Overvoltage (overload) / V |
13~17V |
26~34V |
52~68V |
15.5V |
Reverse overvoltage/V |
13~17V |
26~34V |
52~68V |
15V |
Increase charging voltage/V |
9~15V |
18~30V |
36~60V |
14.4V |
Float charge voltage/V |
9~15V |
18~30V |
36~60V |
13.8V |
Undervoltage/V |
7~13V |
14~26V |
28~52V |
10.8V |
Undervoltage return voltage/V |
9~15V |
18~30V |
36~60V |
13.1V |
Ternary lithium battery (single section 3.7V) |
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Rated system voltage |
12V system (3 strings by default) |
24V system (6 channels by default) |
48V system (12 channels by default) |
3 strings by default |
Overvoltage (overload) / V |
10.5~15V |
21~30V |
42~60V |
13.5V |
Reverse overvoltage/V |
10.5~15V |
21~30V |
42~60V |
12.6V |
Increase charging voltage/V |
10.5~15V |
21~30V |
42~60V |
12.4V |
Float charge voltage/V |
6~13.5V |
12~27V |
24~54V |
12.0V |
Undervoltage/V |
6~13.5V |
12~27V |
24~54V |
9.3V |
Undervoltage return voltage/V |
6~13.5V |
12~27V |
24~54V |
10.5V |
number of strings |
3~4 |
6~8 |
14~18 |
3 |
Lithium iron phosphate (single section 3.2V) |
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Rated system voltage |
12V system (3 strings by default) |
24V system (6 channels by default) |
48V system (12 channels by default) |
3 strings by default |
Overvoltage (overload) / V |
9~12V |
18~24V |
36~48V |
11.7V |
Reverse overvoltage/V |
9~12V |
18~24V |
36~48V |
11.1V |
Increase charging voltage/V |
9~12V |
18~24V |
36~48V |
10.8V |
Float charge voltage/V |
9~12V |
18~24V |
36~48V |
10.2V |
Undervoltage/V |
6~12V |
12~24V |
24~48V |
8.4V |
Undervoltage return voltage/V |
6~12V |
12~24V |
24~48V |
9.6V |
number of strings |
3~4 |
6~8 |
14~18 |
3 |
Rated system voltage |
12/24 AUTOMATIC |
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Model |
700W |
1200W |
1400W |
2000W |
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Battery |
12V |
24V |
12V |
24V |
12V |
24V |
12V |
24V |
Nominal wind | 200 | 400 | 300 | 600 | 400 | 800 | 500 | 1000 |
PV Power Rated | 150 | 300 | 300 | 600 | 300 | 600 | 500 | 1000 |
Max input voltage | Wind turbine ≤ 80V solar panel ≤ 55V | |||||||
System Voltage Rate |
24V48V Automatic matching |
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Model |
1200W |
2000W |
2200W |
2800W |
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Battery voltage |
24V |
48V |
24V |
48V |
24V |
48V |
24V |
48V |
Nominal wind |
300 |
600 |
500 |
1000 |
600 |
1200 |
800 |
1600 |
PV Power Rated |
300 |
600 |
500 |
1000 |
500 |
1000 |
600 |
1200 |
Max input voltage | Wind turbine ≤ 80V solar panel ≤ 95V | |||||||
No-load current (cc) | ≤0.05A | |||||||
power mode controller | Battery or solar | |||||||
Control method | Wind generator MPPT boost charge 、PWM discharge charge 、PWM Over current Limiting function |
How to Install the Wind and Solar Charge Controller


MPPT Solar and Wind Charge Controller Protection
- Solar reverse charging protection
- Battery reverse polarity protection
- Battery Open Circuit Protection
- Surge Protection
- Overcurrent Protection
- Voltage Overload Protection
- Lightning Protection
Package List:
- 1 x Controller
- 1 x Resistance
- 2 x Cable
- 2 x Screw
- 2 x Nuts
- 2 x Gaskets
- 4 x Washer
- 1 x Manual
Note:
- Please read this user manual carefully before installation. The process requires professional and technical personnel to operate.
- Before installation and maintenance, ensure that the controller is in a safe and de energized state!
- Please install the controller in a dust‑free, dry and ventilated place, and avoid rainwater infiltration and direct sunlight
- When installing in the cabinet, there should be enough space around the controller or reliable heat dissipation through the box
- Keep away from corrosive gas and strong electromagnetic interference
- The installation site should be convenient for personnel to carry out installation, electrical connection and later maintenance and repair
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