This wind turbine features a lightweight horizontal axis structure, resulting in a compact and simple design that allows for flexible installation without the need for large-scale infrastructure modifications. The blades are manufactured using a one-piece molding process, resulting in a robust and wind-resistant material. Combined with the horizontal axis rotation characteristics, it can capture wind energy 360°, achieving efficient power generation regardless of wind speed.
It boasts a stable structure and high power generation efficiency, specifically designed for residential, small commercial, and outdoor emergency power supply applications. The entire unit is waterproof, dustproof, and corrosion-resistant, ensuring stable operation even in high winds. Its simple structure facilitates easy installation and reduces maintenance costs.
This horizontal axis wind turbine generates electricity by utilizing wind power to rotate its blades. The blades can rotate according to wind direction, resulting in higher mechanical rotation efficiency and greater power generation under the same wind speed conditions.


| Model | WF-G3000 | WF-G5000 | WF-G7500 | WF-G10K |
| Rated Power | 3KW | 5KW | 7.5KW | 10KW |
| Rated Voltage | 120V/220V/240V/380V | |||
| Start the Wind Speed | 2.5m/s | |||
| Rated Wind Speed | 10m/s | 11m/s | ||
| Safe Wind Speed | ≤50m/s | ≤45m/s | ||
| Fan Blade Diameter | 4.8m | 5.4m | 5.8m | 6.5m |
| Number of Blades | 3 | |||
| Blade Material | Reinforced FRP | |||
| Fuselage Material | Reinforced die-cast aluminum + Steel | |||
| Magnetic Steel Material | NdFeB | |||
| Generator Type | Three-phase AC permanent magnet synchronous generator | |||
| Control Mode | Electromagnetic brakes | |||
| Wind Direction Adjustment | Automatically adjusts the windward angle | |||
| Service life | ≥20 years/ | |||
| Degree of Protection | IP54 | |||
| Net / Gross Weight | 215kg/250kg | 230kg/265kg | 245kg/280kg | 400kg/485kg |
| Packing Size | 95*52*60cm+260*30*38cm | 95*52*62cm+274*30*36cm | 95*52*62cm+285*31*39cm | 110*58*55+330*50*56cm |
This small horizontal axis wind turbine is suitable for various power supply scenarios up to 20kW. It can be installed in rural houses, villa courtyards, etc., taking up minimal space and maintaining the aesthetics of the site. It requires minimal installation work and can meet the daily lighting, appliance usage, and emergency power needs of a family, making it particularly suitable for families with unstable power grids or those pursuing a low-carbon lifestyle.
It can also be installed on farms, in scenic areas, industrial parks, etc., as a supplementary power supply device, reducing dependence on the power grid. In the long run, it can alleviate electricity consumption pressure and reduce operating costs. In areas far from the power grid, horizontal axis wind turbine can better leverage its advantages of providing flexible and stable power supply. For example, they can be quickly installed in remote base stations and mountain guesthouses, solving the power shortage problem. Furthermore, this turbine can also be used in small-scale distributed energy projects in schools and communities, contributing to the popularization of clean energy.


This horizontal axis wind turbine is easy and flexible to install. Its lightweight design eliminates the need for a complex base, resulting in low investment costs and simple, flexible installation suitable for various environments. It has a low starting wind speed and high power generation efficiency. Compared to vertical axis wind turbines, it offers better value for money.
This wind turbine operates reliably. Its optimized blade design minimizes wind resistance during rotation, significantly reducing operating noise. It has a long service life, requiring less frequent maintenance and offering long-term economic benefits.
This horizontal axis wind turbine is compatible with most wind controllers and energy storage devices on the market. It can be flexibly configured for grid-connected or off-grid systems according to customer needs. Excess energy can be stored or fed back into the grid, effectively reducing electricity bills and operating costs, balancing practicality and economy.


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