12x3.8 Slow Flyer Pusher
In Stock
The APC 12x3.8 Slow Flyer Pusher Propeller offers reliable thrust and durability for electric RC plane enthusiasts. Molded from high-strength material, this RC airplane propeller delivers precise air displacement for slow-flying park flyers and pusher configurations. Upgrade your setup with the official APC 12x3.8 propeller for smooth, efficient flight performance.
Designed specifically for electric RC aircraft, the APC 12x3.8 Slow Flyer Pusher Propeller is built to maximize thrust while maintaining optimal motor efficiency. Constructed from high-strength long fiber composite, this lightweight slow flyer propeller resists deflection under heavy motor loads to ensure consistent flight control. Whether installed in a counter-clockwise rotating tractor setup or flipped with lettering facing forward for a pusher configuration, the APC 12x3.8 Slow Flyer Pusher Propeller provides exceptional rigidity, low vibration, and quiet operation for park flyers and 3D models alike.
Can the APC 12x3.8 Slow Flyer Pusher Propeller be used on tractor motor setups?
Yes, the APC 12x3.8 Slow Flyer Pusher Propeller is designed primarily for counter-clockwise rotating tractor applications, but it can also be used in pusher setups by mounting it with the APC lettering facing toward the front of the aircraft.
What material is the APC 12x3.8 Slow Flyer Pusher Propeller made from?
The APC 12x3.8 Slow Flyer Pusher Propeller is molded from durable long fiber composite material for high rigidity and resistance to bending under load.
What accessories are included with the APC 12x3.8 Slow Flyer Pusher Propeller?
The APC 12x3.8 Slow Flyer Pusher Propeller comes packaged with two hub inserts to help ensure a proper fit on various motor shaft sizes.
What type of RC planes are ideal for the APC 12x3.8 Slow Flyer Pusher Propeller?
The APC 12x3.8 Slow Flyer Pusher Propeller is designed for electric-powered park flyers, 3D slow flyers, and light RC aircraft that require high thrust at lower airspeed.







































