Size Range
From small to large, meeting the needs of various fixed-wing UAVs
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AUZ Series
Electric Fixed-Wing Propellers
Precisely matched with AT motors for both powerful performance and extended endurance. Compatible with all layouts and available in multiple sizes
High-Efficiency
Aerodynamic Design
Airfoils specifically developed for electric fixed-wing UAVs, enhancing aerodynamic efficiency while reducing noise

Dedicated Airfoil Design
Optimized airfoil profiles for electricfixed-wing UAVs
CFD Simulation Verification
Detailed flow field analysis down to individual profiles, optimizing aerodynamic performance at every section
Forward Flight Efficiency
Optimization
The entire AUZ series offers multiple pitch options with each variant optimized for a specific speed range. Select based on your flight envelope for high-efficiency output within the target speed interval, enabling more power-efficient cruising





Precision Power Matching
Optimized chord length and
angle of attack combination + AT motor RPM/
torque characteristics = Improved overall
power system efficiency
Reduces energy
consumption
Increases flight
duration
Rapid Dynamic Response
Optimized center of gravity distribution and reduced rotational inertia enhance acceleration and deceleration response, enabling more precise flight control


Optimized center of gravity for balanced mass distribution
Reduced rotational inertia for faster response
Enhanced acceleration and deceleration for quick bi-directional response
Precise flight control for an improved piloting experience
Stronger, Stiffer Structure
Layup design tailored for fixed-wing flight conditions. Adoption of prepreg + PMI core + molded one-piece forming process to achieve an optimal balance of "lightweight + high stiffness + high strength” for deformation resistance and service life extension

Bending & Torsion Resistant Layup Design
Optimized fiber orientation and ratio maximize strength and stiffness

Prepreg Compression Molding for Integrated Forming
Product porosity below 1%, ensuring stable and reliable quality

PMI Foam Core
Lightweight, high-strength core material effectively increases stiffness while controlling total weight
Multi-Environment Adaptability
Premium materials and processes ensure stable performance and extended service life in harsh environments including high/low temperatures, humidity, salt spray, and UV exposure
Wide Temperature Range Operation
Exceptional performance at all times, from extreme cold to scorching heat



Moisture & Humidity Resistance

Salt Spray Protection

UV Resistance
Multi-Layout Compatibility
Compatible with conventional layouts, flying wings, VTOLs, and other fixed-wing UAVs. One propeller adapts to multiple scenarios, covering mainstream applications like surveying, logistics and inspection

Conventional Layout

Flying Wing Layout

VTOL
Main Application Scenarios
Covers UAV needs across various industries
Surveying &
Mapping
Logistics &
Delivery
Power Line
Inspection
Agricultural Plant
Protection
Emergency
Response
Security &
Surveillance
Broad Customization Service
Sizes range from 12 to 34 inches. Supports custom pitch and speed optimization for precise matching with diverse mission requirements
Size Range
From small to large, meeting the needs of various fixed-wing UAVs





| Diameter(Inch) | 17 (431.8mm) | Material | Resin-basedCarbonFiber Composite+PMIFoamCore |
| Pitch(Inch) | 12 (304.8mm) | Surface Treatment | Matte |
| AverageSingle Blade Weight(g) | 35 | Type | CarbonFiberStraightPropellers |
| Recommended Max RPM | 9000 | Application | Fixed-WingUAVPropellers |
| Recommended Max Thrust(kg) | 9.6 | Connections & Dimensions | Ø8mm motor shaft central locking |
| Limit RPM(RPM) | 10200 | Recommendations | Recommended Solution: AT4130+AUZ17*12 |
| Limit Thrust(kg) | 12 |
| Ambient Temperature: 22℃ Altitude: 25m | RPM | Torque (N·m) | Recommended Thrust (gf) | Output Power (W) | Effciency (gf/W) | |||
![]() | 4600 | 0.67 | 2569 | 322.37 | 7.97 | |||
| 5000 | 0.79 | 3068 | 411.83 | 7.45 | ||||
| 5400 | 0.93 | 3595 | 523.41 | 6.87 | ||||
| 5800 | 1.09 | 4152 | 659.85 | 6.29 | ||||
| 6200 | 1.27 | 4737 | 823.88 | 5.75 | ||||
| 6600 | 1.47 | 5351 | 1018.23 | 5.25 | ||||
| 7000 | 1.70 | 5993 | 1245.63 | 4.81 | ||||
| 7400 | 1.95 | 6665 | 1508.82 | 4.42 | ||||
| 7800 | 2.22 | 7365 | 1810.53 | 4.07 | ||||
| 8200 | 2.51 | 8094 | 2153.48 | 3.76 | ||||
| 8600 | 2.82 | 8851 | 2540.42 | 3.48 | ||||
| 9000 | 3.16 | 9638 | 2974.08 | 3.24 | ||||
| 9400 | 3.51 | 10453 | 3457.18 | 3.02 | ||||
| 9800 | 3.89 | 11297 | 3992.46 | 2.83 | ||||
| 10200 | 4.29 | 12170 | 4582.65 | 2.66 | ||||
| Important Notes | ||||||||
| Data may vary under different testing standards due to factors such as equipment, methodology, and environment. Ensure compatibility between the propeller mounting holes and motors. Refer to the drawing above for details. | ||||||||

1.The propeller is made of robust, high-strength material. If it contacts unprotected body parts while rotating at high speed, it can cause severe injury. Operate with extreme caution.
2.The structural strength has been thoroughly tested. Use within the recommended maximum thrust limit. Exceeding this limit may damage the blades. Do not test blade strength by bending them by hand, as this does not reflect actual flight forces and may cause damage.
3.Before use, ensure screws/nuts are properly tightened and the propeller is securely mounted.
4.Before takeoff, check the tightness of all mounting screws/nuts and the integrity of the propeller. Propellers are non-repairable consumables. Discontinue use immediately if any cracks are found, as they pose a fracture risk.
5.Strictly adhere to the operating temperature range: -30°C to 60°C.
6.Storage Conditions: Store away from corrosive gases and harmful environments. Ideal storage temperature is 10°C-35°C with humidity not exceeding 65%. For long-term storage, please pay special attention to these conditions.
7.Please use this product in compliance with all local laws and regulations.
