






T-Motor FA20.2x6.6 Propeller 2pcs/pair
The T-Motor FA20.2x6.6 is a premium folding carbon fiber propeller pair, featuring one CW and one CCW prop. Designed for industrial and heavy-lift UAVs, its 20.2-inch diameter and 6.6-inch pitch deliver efficient thrust with minimal vibration. The folding design enhances portability and reduces storage space, ensuring reliable performance for demanding drone operations.
Features:
Folding design for portability.
Premium carbon fiber construction.
High strength and rigidity.
Excellent dynamic balance.
Reduces vibration and noise.
Enhances thrust efficiency.
Durable for heavy-lift UAVs.
Includes CW and CCW pair.
Special winglet design.
Precise positioning prevents sweepback.
Technical Specifications:
Model: T-Motor FA20.2x6.6 Propeller
Type: Folding Carbon Fiber Propeller (FA Series)
Propeller Diameter: 20.2 inches (approx. 513.1 mm)
Propeller Pitch: 6.6 inches (approx. 167.6 mm)
Number of Blades: 2 per blade piece (Total 4 blades when unfolded as a pair)
Material: Carbon Fiber (CF) + Epoxy
Weight (Single Blade): Approx. 57g (This implies two blades per prop, so the weight of one assembled prop would be higher, but generally it's listed per single blade piece as it's a folding design).
Thrust Limitation: Up to 10kg (per propeller, often specified with compatible T-Motor motors like MN50-60 series)
Optimum RPM: 3000-5000 RPM/min
Surface Treatment: Glossy
Compatibility: Designed for multirotor UAVs, especially heavy-lift and industrial drones. Often paired with T-Motor U series or MN series motors.
Blade Mounting: Typically uses a central hub and screws to attach the folding blades.
Operating Temperature: -40℃ to 65℃
Storage Temperature/Humidity: -10℃ to 50℃ / <85%
Additional Details:
Manufacturer: T-Motor
Brand: T-Motor
Generic Name: Folding Propeller || Carbon Fiber Prop || UAV Propeller || Drone Propeller || Multi-Rotor Propeller || Heavy Lift Prop || Industrial Drone Prop || CW CCW Prop || 2-Blade Propeller || High Efficiency Prop
Sold By: UAV Marketplace (an authorized seller of drone gear and accessories)
Ideal For: Heavy-Lift Industrial Drones || Agricultural Spraying UAVs || Surveillance & Inspection Drones || Logistics & Delivery Drones || Mapping & Surveying UAVs || Professional Cinematography Drones || Custom Large Multirotor Builds || Long Endurance Drone Missions || Coaxial Propulsion Systems || Enterprise Drone Solutions
Package Details:
Includes:
1x T-Motor FA20.2x6.6 Folding Carbon Fiber Propeller (CW)
1x T-Motor FA20.2x6.6 Folding Carbon Fiber Propeller (CCW)
Frequently Asked Questions:
Q1. What is the benefit of the "folding" design of these T-Motor FA propellers?
Ans. The "folding" design of the T-Motor FA propellers offers several significant benefits. It allows for easier and more compact storage and transportation of large drones, reducing the overall footprint. In the event of an accidental impact or hard landing, the blades can fold back, potentially reducing damage to both the propeller and the motor. This design also improves safety by minimizing the spinning propeller's exposed area when the drone is disarmed.
Q2. Are these T-Motor FA20.2x6.6 propellers suitable for everyday FPV racing drones?
Ans. No, the T-Motor FA20.2x6.6 propellers are not suitable for everyday FPV racing drones. With a diameter of 20.2 inches, these are very large propellers designed for heavy-lift and industrial multirotor UAVs that require significant thrust for carrying heavy payloads or for long endurance. FPV racing drones use much smaller, higher-RPM propellers (typically 5-7 inches) that prioritize agility and quick response over large thrust and payload capacity.
Q3. How does the "6.6-inch pitch" affect the performance of these UAV propellers?
Ans. The "6.6-inch pitch" of the T-Motor FA20.2x6.6 propeller means it is designed to move 6.6 inches forward for every full rotation. For heavy-lift and industrial UAVs, this relatively lower pitch (compared to fixed-wing props) combined with the large diameter is ideal for generating high static thrust and efficient hovering capabilities. It allows the motors to operate at an efficient RPM for lifting substantial weight, ensuring stability and control for professional drone operations.