Product Description
The VT Series wind turbine features a three-phase AC permanent magnet generator combined with magnetic levitation technology, delivering low start-up wind speed and stable output for small-scale distributed energy applications.
Its vertical axis design eliminates the need for wind alignment, allowing continuous operation in turbulent and multi-directional wind environments. It is ideal for robotic end devices, outdoor monitoring units, and mobile energy nodes.
The system integrates a power generation module with basic lighting output, enabling direct supply to lighting, battery storage, and low-power devices. It can also function as a supplementary energy unit in hybrid wind-solar systems, enhancing overall system reliability and redundancy.

Key Advantages
1. Low start-up wind speed for continuous micro-power generation;
2. Compact and lightweight design for flexible deployment;
3. Vertical axis structure, no wind alignment required;
4. Stable output for distributed and terminal-level energy supply;
5. Strong environmental adaptability for outdoor and mobile use;
6. Corrosion-resistant aluminum alloy structure with protective coating;
7. Ideal as a supplementary power unit in hybrid energy systems.
Product Features
Terminal Energy Unit
The VT Series serves as a terminal-level energy unit or supplementary power module, supporting primary energy sources such as solar or main wind turbines. It provides continuous micro-power generation, enhancing system stability and redundancy.
Distributed Deployment
The VT Series can be deployed near robotic end devices, sensor nodes, and mobile energy units, enabling localized power generation and supply. This reduces transmission losses and improves reliability in complex and distributed environments.
All-Weather Energy Support
As a supplementary energy module, the VT Series continues to generate power during low solar availability, such as at night or in low-light conditions. It ensures continuous operation and improves overall system reliability, especially for low-power and unattended applications.
Structure Diagram
Product parameters
Model | VT300 | VT400 | VT500 | VT600 | VT800 | VT1000 |
Rated power | 300W | 400W | 450W | 600W | 800W | 1000W |
Max power | 350W | 350W | 500W | 650W | 850W | 1050W |
Rated voltage | 12V/24V | 12V/24V | 12V/24V | 12V/24V | 12V/24V | 12V |
Start-up wind speed | 2m/s | 2m/s | 2m/s | 2m/s | 2m/s | 1.3m/s |
Rated wind speed | 12m/s | 12m/s | 12m/s | 12m/s | 12m/s | 12m/s |
Survival wind speed | 45m/s | 45m/s | 45m/s | 45m/s | 45m/s | 45m/s |
Net weight of main engine | 12kg | 12kg | 12kg | 12kg | 12kg | 12kg |
Number of blades | 5 pieces | 5 pieces | 5 pieces | 5 pieces | 5 pieces | 3 pieces |
Blades material | nylon fiber | nylon fiber | nylon fiber | nylon fiber | nylon fiber | nylon fiber |
Body material | nylon fiber | nylon fiber | nylon fiber | nylon fiber | nylon fiber | nylon fiber |
Generator | three phase AC permanent magnet generator/maglev generator | three phase AC permanent magnet generator/maglev generator | three phase AC permanent magnet generator/maglev generator | three phase AC permanent magnet generator/maglev generator | three phase AC permanent magnet generator/maglev generator | three phase AC permanent magnet generator/maglev generator |
Control System | electromagnetic brake | electromagnetic brake | electromagnetic brake | electromagnetic brake | electromagnetic brake | electromagnetic brake |
Yaw Mode | automatic windward angle | automatic windward angle | automatic windward angle | automatic windward angle | automatic windward angle | automatic windward angle |
Lubrication mode | self lubrication | self lubrication | self lubrication | self lubrication | self lubrication | self lubrication |
Working temperature | -40℃-80℃ | -40℃-80℃ | -40℃-80℃ | -40℃-80℃ | -40℃-80℃ | -40℃-80℃ |
Product Detail
Applications
The VT Series wind turbine is suitable for powering robotic end devices, outdoor sensors and monitoring systems, mobile energy nodes, and lightweight off-grid systems. It can also serve as a supplementary power source for container houses and modular buildings. When integrated with solar panels and battery storage, it enables a flexible distributed hybrid energy system, providing continuous and stable power for low-consumption and remote applications.












