Caballerial Rotation Speed

Caballerial Rotation Speed MCP Connector for Claude

A+

Calculates technical rotation requirements and landing stability for caballerial-style skateboarding maneuvers.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides technical physics calculations for caballerial-style skateboarding maneuvers. It bridges the gap between skater input and the physical requirements of switch-stance takeoff and fakie landings. Use get_rotation_requirements to determine necessary rotational velocity and takeoff trajectory, get_switch_penalty to assess how stance proficiency impacts performance, get_landing_stability to predict landing success, and get_maneuver_summary for a complete overview of the physical demands.

skateboardingphysicsrotationmaneuvercaballerial

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

get_landing_stability

Predicts the stability of the skater upon landing, specifically accounting for the fakie landing condition

get_maneuver_summary

Provides a high-level overview of the physical demands for a specific caballerial attempt

get_rotation_requirements

Determines the specific rotational velocity and takeoff trajectory needed to successfully complete a defined spin

get_switch_penalty

Calculates the performance degradation caused by the skater's lack of familiarity with the switch stance

See how to talk to your AI agent using Caballerial Rotation Speed.

What are the rotation requirements for a 360 caballerial at 5 m/s with a pop timing of 0.5?

For a 360 rotation at 5 m/s, the required rotation speed is 12.5 deg/s with a takeoff angle of 35 degrees and a landing buffer of 2.1.

How much stability will I have if I have a stance comfort of 0.4 for a 540 spin?

With a stance comfort of 0.4, your stability score is 0.55 after accounting for the fakie difficulty penalty.

Give me a summary for a 360 caballerial: 4 m/s speed, 0.8 comfort, 0.4 pop timing.

The total rotation demand is 15.2 deg/s, the estimated takeoff angle is 32 degrees, and the landing risk level is Low.

You can use the `get_rotation_requirements` tool by providing your approach speed, the 540 spin degree, and your pop timing.

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