SEGWAY Navimow X450 AWD Robotic Mower
Stock Locations
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Toowoomba - Anzac Avenue:Out of Stock
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Toowoomba - Ruthven Street:Out of Stock
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Toowoomba - Warehouse:Out of Stock
Built for serious ground, styled for effortless living - that's the Segway Navimow X450
The Segway Navimow X450 robotic lawn mower is built for serious ground, styled for effortless living. Powered by a full-time AWD system with intellegent steering that glides, pivots and climbs through your yard, continously learning and understanding the terrain at hand. Slopes of up to 40 degrees, uneven ground and tight corners are handled with ease leaving nothing but manecured lawn stripes behind.
The innovation doesn't stop with how this robotic lawn mower cuts grass, the setup process truly sets itself apart from any other robotic lawn mower. There's no boundary wires so no digging or guesswork, it easily maps out your yard in the Segway Navimow app, then sit back and relax while you let the X450s precision positioning and AI vision do the hard work for you. With the power to maintain up to 5,000 sqm, the X450 robotic lawn mower is the intellegent answer to large scale lawncare.
Exact Fusion Location System (EFLS). It is Segway Navimow’s proprietary, wire-free navigation technology that allows their robotic mowers to achieve centimetre-level tracking accuracy without installing a physical perimeter wire around your property.
Network Real-Time Kinematics (NRTK). It is a cellular-based satellite positioning technology that allows wire-free robotic lawn mowers to locate themselves with centimetre-level accuracy without requiring you to install a physical GPS antenna base station on your property.
Visual Inertial Odometry (VIO). It is a critical navigation technology used by next-generation robot mowers—like the Segway Navimow X3 and X4 series—to calculate their exact position by tracking their own visual surroundings and physical movement simultaneously.
Time-of-Flight (ToF). It is a highly accurate method used by sensors to measure the exact distance between a robot lawn mower and an object by calculating how long it takes for a light or sound signal to travel to a target and bounce back.