Services Built for Performance Decisions

Services Built for Performance Decisions

We combine high-precision field telemetry and controlled dynamic testing to produce clear evidence, so teams, brands and manufacturers can make confident technical choices when margins are minimal.

Services Built for Performance Decisions

We combine high-precision field telemetry and controlled dynamic testing to produce clear evidence, so teams, brands and manufacturers can make confident technical choices when margins are minimal.

The Empirical Loop

Field measurement + lab characterisation + analysis → decision-ready evidence.

Sport Dynamics Lab methodology: A data-driven approach integrating AI, sensor technology, and dynamic lab testing to enhance sports performance and optimize materials. Our method combines biomechanics, IoT sensors, advanced analytics, and real-world validation to improve equipment design and athlete performance.
Sport Dynamics Lab methodology: A data-driven approach integrating AI, sensor technology, and dynamic lab testing to enhance sports performance and optimize materials. Our method combines biomechanics, IoT sensors, advanced analytics, and real-world validation to improve equipment design and athlete performance.

1 – Rider Input
Capture sensations, constraints and the real question behind the request.

2 – Field Telemetry
Measure behaviour in real conditions (rider + terrain + context).

3 – Dynamic Lab Testing
Quantify stiffness, damping and transient response under controlled loads.

4 – Analysis & Correlation
Identify what drives performance and what is noise.

5 – Decision Artefact
A clear recommendation backed by the key graph(s).

The Empirical Loop

Field measurement + lab characterisation + analysis → decision-ready evidence.

Sport Dynamics Lab methodology: A data-driven approach integrating AI, sensor technology, and dynamic lab testing to enhance sports performance and optimize materials. Our method combines biomechanics, IoT sensors, advanced analytics, and real-world validation to improve equipment design and athlete performance.

1 – Rider Input
Capture sensations, constraints and the real question behind the request.

2 – Field Telemetry
Measure behaviour in real conditions (rider + terrain + context).

3 – Dynamic Lab Testing
Quantify stiffness, damping and transient response under controlled loads.

4 – Analysis & Correlation
Identify what drives performance and what is noise.

5 – Decision Artefact
A clear recommendation backed by the key graph(s).

The Empirical Loop

Field measurement + lab characterisation + analysis → decision-ready evidence.

Sport Dynamics Lab methodology: A data-driven approach integrating AI, sensor technology, and dynamic lab testing to enhance sports performance and optimize materials. Our method combines biomechanics, IoT sensors, advanced analytics, and real-world validation to improve equipment design and athlete performance.
Sport Dynamics Lab methodology: A data-driven approach integrating AI, sensor technology, and dynamic lab testing to enhance sports performance and optimize materials. Our method combines biomechanics, IoT sensors, advanced analytics, and real-world validation to improve equipment design and athlete performance.

1 – Rider Input
Capture sensations, constraints and the real question behind the request.

 

2 – Field Telemetry
Measure behaviour in real conditions (rider + terrain + context).

 

3 – Dynamic Lab Testing
Quantify stiffness, damping and transient response under controlled loads.

 

4 – Analysis & Correlation
Identify what drives performance and what is noise.

 

5 – Decision Artefact
A clear recommendation backed by the key graph(s).

We Create Value to SportsIndustryCyclingSkiing

We Create Value to SportsIndustryCyclingSkiing

Core Services That Drive Results

  • Real-time ski performance analysis using GPS and IMU sensors. Tracking speed, altitude, and impact forces on the skier’s boots to assess slope dynamics, terrain interaction, and energy absorption. Advanced sport monitoring for optimizing technique and equipment performance.

    We analyze motion, impacts, and vibration in action, capturing speed and trajectory to understand real-world dynamics. Our system helps athletes optimize technique, endurance, and strategy for better performance.

  • Dynamic testing of a carbon fiber handlebar using the patented FlexDynamics system. Evaluating damping properties, stiffness, and energy dissipation to optimize vibration control and performance in high-end cycling components.

    In our dynamic testing laboratory, we analyze the behavior of your equipment under controlled conditions to identify how shapes, materials, and construction interact. Discover what makes your product stand out.

  • Flax composite samples prepared for dynamic testing. Each sample, labeled from A0 to C3, showcases different configurations of natural fiber reinforcement, designed to evaluate mechanical properties under real-world conditions.

    We design and implement tailored solutions to address unique challenges, either by developing new technologies or adapting existing tools. We manage complete projects, offering a holistic approach from concept to results.

Core Services That Drive Results

Winners of the 2024 Scale-Up Innovation Hub Program by Andorra Business.

Winners of the 2024 Scale-Up Innovation Hub Program by Andorra Business.

Winners of the 2024 Scale-Up Innovation Hub Program by Andorra Business.

Winners of the 2024 Scale-Up Innovation Hub Program by Andorra Business.