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Propellers

High Efficiency: Gain more Thrust with less Energy

Our optimized aerodynamic design and smooth surface textureeliminate air resistance, allowing you to achieve significantlyhigher thrust levels with less energy consumption. The exceptionallightweight structure and strength of carbon fiber reduce the loadon your systems, providing much longer flight times and a widerrange distances using the same battery capacity. Our high “Gram/Watt” (g/W) electrical efficiency maps, measured in real-time onour advanced testing stands, clearly demonstrate this advancedaerodynamic performance.

Due to the high rigidity of our carbon fiber propellers, flexibility isminimized at high speeds (RPM). This allows us to provide safetyand stability at high-speed dives and aggressive maneuvers.

Foldable 18” Carbon Fiber Propeller (2-blade)

Product Name: 18 * 7.3
Type: Foldable
Weight (Single Blade): 19.7 g
Material: Carbon fiber + Epoxy
Max. Thrust: 5300 g @7000RPM
Optimum RPM: 3500-6000
Surface: Shiny

Foldable 18” Carbon Fiber Propeller (3-blade)

Product Name: 18 * 7.3
Type: Foldable
Weight (Single Blade): 19.7 g
Material: Carbon fiber + Epoxy
Surface: Shiny

Foldable 18” Carbon Fiber Propeller (4-blade)

Product Name: 18 * 7.3
Type: Foldable
Weight (Single Blade): 19.7 g
Material: Carbon fiber + Epoxy
Surface: Shiny
Propeller Hub: Aluminum

10” Carbon Fiber Propeller

Product Name: 10 * 5.2
Material: Carbon Fiber + Epoxy

10” Plastic Injection Propeller

Product Name: 10 * 5.2
Material: Glass fiber reinforced nylon

7” Plastic Injection Propeller

Product Name: 7 * 4
Material: Polycarbonate

Propeller Test Benches

Our test benches are developed to explore the limits of propulsionsystems in real-world conditions while providing detailed system analysiscapabilities. Thanks to our precise measurement capabilities, real-time datavisualization, detailed analysis, and reporting infrastructure, engine andpropeller pairs can be tested and optimized to the finest details.

Hardware and Software Infrastructure

Embedded System: ARM® Cortex®-based STM32 microcontroller. Thanks to its low latency and high processing power, it has the ability to record even in instantaneous fluctuations without missing a beat.
Data Visualization: All collected data is combined in our dedicated interface and presented to users as a transparent flight performance report.
Test Interface: Visualizes all mechanical and electrical data from the motor and propeller in real time on a single screen.
Reporting and Analysis System: Once the tests are complete, our software processes and analyzes the collected data to generate a detailed flight performance report.

System Analysis and Measurement Capabilities

Thrust Measurement: Determining the thrust force produced by the propeller using high-precision industrial load cells.
Torque Analysis: Measuring the engine’s torque to calculate aerodynamic drag and resistance data.
RPM (Revolutions Per Minute) Monitoring: Tracking the engine’s revolutions per minute using optical sensors.
Electrical Efficiency (Current & Voltage): Real-time monitoring of the current (Amperes) drawn by the system at different voltage levels and creating an efficiency map in “Gram/Watt” (g/W).
Limit Point Detection: Using highly sensitive load cells, the exact kilogram-force (kgf) at which the propeller breaks can be determined.

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