8x4.5 Multi Rotor Pusher
In Stock
The APC Multi-Rotor Propellers are custom-engineered to bridge the performance gap between Thin Electric and Slow Flyer propellers. Designed specifically for multi-rotor applications like quadcopters and drones, these propellers deliver superior thrust, stability, and throttle responsiveness. Elevate your aerial flight performance with the unmatched consistency and precision craft of genuine APC multi-rotor propellers.
Designed specifically for demanding multi-rotor applications, APC Multi-Rotor Propellers deliver the perfect balance of low rotational weight and high structural integrity. By shedding unnecessary weight compared to standard Thin Electric designs, these quadcopter propellers allow flight controllers to adjust motor speeds rapidly for maximum stability and acrobatic agility. Built to withstand higher operational speeds than traditional Slow Flyer props, APC MR series propellers feature a maximum safe RPM threshold calculated as 105,000 divided by the prop diameter in inches. Whether building a custom camera platform or a high-speed drone, these high-efficiency RC drone propellers ensure dependable power output and responsive controls.
What makes APC Multi-Rotor Propellers different from standard electric propellers?
APC Multi-Rotor Propellers are specifically optimized for multi-rotors and quadcopters. They are lighter than APC Thin Electric propellers and offer significantly higher RPM limits than Slow Flyer propellers, resulting in faster motor reaction times and improved flight stabilization.
How do I calculate the maximum safe RPM for APC Multi-Rotor Propellers?
You can calculate the maximum RPM for APC Multi-Rotor Propellers using the formula: 105,000 divided by the propeller diameter in inches. For example, an 10-inch prop has a maximum RPM limit of 10,500 RPM.
Are APC Multi-Rotor Propellers suitable for acrobatic quadcopters?
Yes, the lightweight construction and high RPM capability of APC Multi-Rotor Propellers allow multi-rotor flight controllers to make instant speed adjustments, making them ideal for agile and acrobatic drone maneuvers.







































