13x10 CAM Folding Blades
In Stock
The Aeronaut 13x10 CAM Folding Blades deliver superior aerodynamic efficiency for high-performance RC gliders and electric sailplanes. Specially optimized for a tight fold against narrow fuselages, this carbon-reinforced folding propeller set reduces drag to maximize glide ratio and battery performance.
Engineered using carbon-fiber reinforced plastic, the Aeronaut 13x10 CAM Folding Blades feature an updated profile section near the root area to deliver unmatched strength and stability during electric flight. Designed to fit standard 8mm blade root yokes, these Z-series blades fold tight against the fuselage to eliminate aerodynamic drag when soaring without power. Calculated based on a standard 42mm middle piece, the Aeronaut 13x10 CAM Folding Blades must be paired with a soft-start ESC program and kept within the maximum operating limit of 12,000 RPM for safe, efficient operation.
What is the maximum speed limit for the Aeronaut 13x10 CAM Folding Blades?
The Aeronaut 13x10 CAM Folding Blades have a maximum speed limit of 12,000 RPM. Always verify your motor and battery setup to ensure you do not exceed this limit.
What root size do the Aeronaut 13x10 CAM Folding Blades use?
The Aeronaut 13x10 CAM Folding Blades feature an 8mm blade root thickness, making them compatible with standard folding propeller yokes and CN precision spinners.
Are the Aeronaut 13x10 CAM Folding Blades sold as a pair?
Yes, every package of Aeronaut 13x10 CAM Folding Blades includes a matched pair of two precision blades.
Do I need a soft start ESC setting for the Aeronaut 13x10 CAM Folding Blades?
Yes, operating the Aeronaut 13x10 CAM Folding Blades requires a soft-start motor setting on your electronic speed controller to prevent shock loading the blade roots.
How does yoke size change the dimensions of the Aeronaut 13x10 CAM Folding Blades?
The 13x10 rating of the Aeronaut 13x10 CAM Folding Blades is based on a standard 42mm middle piece. Using a smaller or larger yoke will change the overall propeller diameter and pitch accordingly.










