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Versatile Unmanned Snow Brush Features
The gasoline electric hybrid powered travel speed 4Km versatile unmanned snow brush is a groundbreaking solution for snow management, making it an essential tool for both commercial and residential use. This machine combines the power of a V-type twin-cylinder gasoline engine with advanced electric components, resulting in unparalleled performance and efficiency. With a rated power of 18 kW at 3600 rpm, the robust 764cc gasoline engine ensures strong functionality in various snowy conditions. Equipped with two 48V 1500W servo motors, this snow brush exhibits remarkable climbing capabilities. The built-in self-locking function enhances safety, ensuring that the machine only operates when both power is engaged and throttle is applied. This prevents any unintended movement, providing users with peace of mind while operating on steep or slippery surfaces.
The high reduction ratio of the worm gear reducer amplifies the already impressive torque generated by the servo motors. This feature not only facilitates effective climbing but also guarantees stability during power outages, as the mechanical self-locking mechanism prevents the machine from sliding downhill. Such innovative engineering provides consistent performance even in challenging environments.
Enhanced Operational Efficiency
The intelligent servo controller incorporated in the gasoline electric hybrid powered travel speed 4Km versatile unmanned snow brush optimizes motor speed and synchronizes both tracks. This technology allows the machine to travel in a straight line without the need for constant adjustments, significantly reducing the operator’s workload. Furthermore, it minimizes the risks associated with overcorrection, particularly on steep slopes, enhancing overall operational safety.
Unlike many competing models that utilize a 24V system, this advanced machine features a 48V power configuration. The higher voltage translates to lower current flow and reduced heat generation, allowing for longer periods of continuous operation. This design choice effectively mitigates overheating risks, ensuring stable performance even during extensive snow removal tasks.

