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VIDEO 13 Jan /2026

Dynamic Balancer Module Demonstration - Dynotis

Vibration is one of the biggest challenges in UAV propulsion, impacting everything from motor efficiency to payload stability. In our latest demonstration video, we walk you through the complete workflow of the Dynotis Dynamic Balancer Module, showcasing how easily you can identify and correct imbalances in a three-blade propeller configuration.

In this comprehensive tutorial, we purposefully introduce an imbalance into the system and use the Dynotis software to bring the propeller back to optimal performance. The video covers:

  • Initial Setup & Baseline: Configuring test parameters (motor, propeller diameter, and desired ISO quality grade), tearing the system with an ambient noise measurement, and capturing the propeller's natural baseline vibration at 2,500 RPM.

  • The Trial Process: Applying a known test weight to each of the three blades consecutively to measure the system's dynamic response.

  • Automated Correction Calculation: Using the Dynotis software's built-in analytics to automatically calculate the exact correction weights required for specific blades.

  • Final Validation: Applying the recommended correction weights and running a final measurement to verify the results.

In this demonstration, our initial natural measurement showed an ISO grade of 7.721. After following the software's correction prompts, we successfully reduced the vibration to an ISO grade of 5.082, proving the precision and reliability of the Dynotis balancing ecosystem. Watch the full video to see the workflow in action.

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