DJI M400 2510F propeller

$63.00

In stock

SKU: DJIM400-04 Category: Tags: ,

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Product Description

DJI M400 2510F Propeller

M400 2510F Propeller – High Performance Propellers for DJI Matrice 400

Aerodynamic excellence at the service of performance: 25-inch propellers optimised for maximum range and professional stability

Maximise performance with the M400 2510F Propeller

The M400 2510F Propeller represents the culmination of DJI aerodynamic engineering for professional drones. Specially developed for the DJI Matrice 400, these 25-inch propellers are a critical part of the drone’s exceptional performance, directly contributing to its record-breaking 59-minute battery life and unmatched flight stability. Each propeller is the result of years of research and development, incorporating the most advanced technologies in aerodynamic design and high-performance materials.

These revolutionary propellers are not just components, but true optimised propulsion systems that convert engine energy into efficient thrust while minimising vibration, noise and energy consumption. The 2510F design incorporates advanced airfoils, high-strength composite materials, and precise manufacturing tolerances, ensuring consistent and reliable performance in all operating conditions.

Next-generation aerodynamic design

At the heart of the M400 2510F Propeller is a revolutionary aerodynamic design that optimises every aspect of thrust generation. The blade profile was developed through advanced CFD (Computational Fluid Dynamics) simulations that optimised pressure distribution, minimised turbulence losses, and maximised propulsive efficiency. This scientific approach yields a significant improvement in autonomy and a reduction in vibrations, thereby enhancing the quality of the data collected.

The blade geometry incorporates innovations such as progressive variation of the angle of attack, chord optimisation, and controlled tapering, allowing thrust generation to be adapted to the different phases of flight. This technical sophistication ensures optimal performance in both hover and translation, maximising fuel efficiency in all mission configurations.

High-performance materials and construction

The M400 2510F Propeller is made with advanced composite materials selected for their exceptional strength, lightness and durability. The composite matrix combines high-strength fibres with specialised resins that provide an optimal strength-to-weight ratio while resisting mechanical stress, thermal variations and environmental stresses.

The manufacturing process utilises investment casting techniques that ensure perfect repeatability, aerodynamic characteristics, and exceptional dynamic balancing. Each propeller undergoes rigorous quality control, including strength, balance, and performance tests, to ensure compliance with the most demanding DJI Enterprise standards.

Technical specifications and performance

Dimensional and aerodynamic characteristics

weight

Characteristic Specification
Model M400 2510F Propeller
Compatibility DJI Matrice 400 exclusively
Diameter 25 inches (635 mm)
Step 10F (optimised for efficiency)
Number of blades 2 blades per propeller
Direction of rotation CW (Hourly) and CCW (Counterclockwise)
Material High-performance composite
Unit Optimised for performance/weight

Performance and efficiency

The outstanding performance of the M400 2510F Propeller is directly reflected in the Matrice 400’s record 59-minute battery life. This remarkable efficiency is the result of the careful optimisation of each aerodynamic parameter: blade profile, chord distribution, variable angle of attack and surface finish. Propulsive efficiency reaches unprecedented levels in the heavy professional drone category.

Flight stability also benefits from the advanced propeller design. The perfect dynamic balancing and structural rigidity eliminate parasitic vibrations that could affect the accuracy of the sensors and the quality of the data collected. This stability is especially critical for high-precision mapping, detailed inspection, and extended monitoring applications.