Twintip Flex Effect Engine

Twintip Flex Effect Engine MCP Connector for Claude

A+

Physics-based engine for calculating snowboard pop and comfort.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a physics-based calculation engine to evaluate how snowboard flex properties impact performance. Using a beam deflection model, it calculates pop timing, shock absorption, and structural limits. Use get_pop_dynamics to measure explosive energy, get_comfort_profile to assess vibration damping, and get_structural_limits to find the maximum load before deformation.

snowboardphysicsflexpopsimulation

4 tools expose this connector's capabilities to your AI agent.

get_comfort_profile

Calculates shock absorption and vibration damping for the rider

get_optimized_setup_recommendation

Recommends ideal flex and length based on rider weight and desired pop

get_pop_dynamics

Calculates pop timing and intensity based on board flex, length, rider weight, and style

get_structural_limits

Calculates the flex threshold and structural integrity score

See how to talk to your AI agent using Twintip Flex Effect Engine.

How explosive will the pop be for a 75kg rider on a 155cm board with a flex rating of 7 and aggressive style?

The pop timing is 145ms with an intensity score of 8.2.

What is the maximum load for a 150cm board with a flex of 5 using a composite core?

The flex threshold is 450N with a structural integrity score of 85.

Recommend a setup for a 60kg rider who wants smooth pop.

The recommended setup is a flex rating of 3 and a board length of 158cm.

Longer boards exhibit more deflection for the same force, which typically results in a slower pop timing compared to shorter boards.

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