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Vigorun Tech’s Innovative Engineering
Vigorun Tech takes pride in offering the EPA approved gasoline engine adjustable mowing height crawler wireless snow brush, a marvel of engineering designed to meet diverse outdoor needs. This machine is powered by the Loncin brand, model LC2V80FD, twin-cylinder gasoline engine, boasting a rated power of 18 kW at 3600 rpm. With a robust 764cc engine, it delivers impressive performance, ensuring that users can tackle tough tasks with ease.
The advanced design includes a clutch that engages only when the engine reaches a predetermined rotation speed, enhancing operational efficiency and safety. This feature not only optimizes fuel consumption but also prolongs the engine’s lifespan, making it a reliable choice for both commercial and residential use. The combination of power and precision makes this machine a standout in its category.
Additionally, the intelligent servo controller plays a crucial role in regulating motor speed and synchronizing the left and right tracks. This allows for smooth operation without constant adjustments, significantly reducing the operator’s workload. Such thoughtful engineering ensures that even on challenging terrains, users can achieve a straight and controlled path, minimizing the risk associated with overcorrection.
Versatile Functionality for Every Need
The EPA approved gasoline engine adjustable mowing height crawler wireless snow brush is designed for versatility, equipped with electric hydraulic push rods to enable remote height adjustment of various attachments. Its innovative design supports interchangeable front attachments, such as a 1000mm-wide flail mower, hammer flail, forest mulcher, angle snow plow, or snow brush. This adaptability makes it an ideal solution for heavy-duty grass cutting, shrub clearing, vegetation management, and efficient snow removal.
Moreover, the high reduction ratio provided by the worm gear reducer multiplies the already strong servo motor torque, delivering immense output torque for climbing challenges. Even in a power-off state, the mechanical self-locking capability keeps the machine stable, ensuring that it does not slide downhill. This design consideration guarantees consistent performance, even during demanding tasks and adverse conditions.

