Aiming at the pain points of traditional high-rise building spraying operations, such as high manual risks, low efficiency, paint waste, and failure to meet environmental standards, we integrate UAV precision control and intelligent coating technology to build a full-process solution of "Intelligent Planning – Precise Spraying – Eco-friendly Recycling – Data Tracing", achieving efficient, safe and green spraying for high-rise building facades.
✅ Rapid deployment, 24-hour operation, covering spraying blind spots inaccessible to manual work.
Power Type: Battery-powered
Unfolded Dimensions (mm): 2659 × 2659 × 730
Folded Dimensions (mm): 982 × 692 × 447
Wheelbase: 2000mm
Maximum Take-off Weight: 85kg
Maximum Payload: 40kg
Maximum Flight Speed: 20m/s
Wind Resistance Rating: Class 6
Endurance: 60min (no load) / 25min (40kg load)
Maximum Operating Altitude: 4000m
Maximum Communication Distance: 20km
Power Type: Electric
Unfolded Dimensions (mm): 3650 × 3650 × 895
Folded Dimensions (mm): 1470 × 1020 × 520
Wheelbase: 2600 mm
Maximum Take-off Weight: 176 kg
Maximum Payload: 98 kg
Maximum Flight Speed: 20 m/s
Wind Resistance Level: Grade 6
Endurance Time: 60 min (no load), 25 min (70 kg payload)
Maximum Operating Altitude: 4000 m
Maximum Communication Range: 20 km
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Working pressure: 0.8–2.5 MPa (adjustable), compatible with different water supply equipment
Jet range: Horizontal effective range ≥ 20 meters
Water flow: 15–40 L/min (gear adjustable) to meet various spraying requirements
The drone lighting module focuses on "high brightness, long endurance, stable compatibility, safety and practicality", and is suitable for nighttime operation needs in multiple scenarios.
Weight: ≤800g
Detection range: 0.5-150m
Point cloud density: ≥200 points/㎡
Data transmission: 4G/5G+WiFi dual mode
Vertical field of view: -30°~+30°
1.Confirm the high-rise building spraying area, area and coating requirements, plan layered and block-by-block flight paths based on the building structure, avoid obstacles such as windows and air conditioners, and determine the spraying overlap rate and flight height.
2.Pour the paint into the storage tank mounted on the drone, install the suitable nozzle and adjust the atomization effect and paint output, check the power, positioning and obstacle avoidance systems to ensure the equipment is suitable for stable high-altitude operations.
3.The drone lifts off according to the preset path, keeps cruising at a constant speed, sprays paint from bottom to top or in sections in an orderly manner, adjusts the flight attitude in real time to ensure uniform coating, and synchronously transmits the operation screen to the ground terminal.
4.After spraying, the drone conducts low-altitude cruising for re-inspection, marks problems such as missed spraying and sagging, and performs supplementary spraying. After confirming that the coating meets the requirements, it returns to base, recovers the equipment, and cleans components such as the storage tank and nozzle.