ClaudeChatGPTPerplexityGeminiMicrosoft CopilotRaycastMeta AIGrokZ.aiQwenKimi
DeepSeekMistralCursorVS CodeWindsurfJetBrainsClineLovableVercel AI SDKLangChain

Use Jump Trajectory Analysis with your AI.

Connect your account once and let the AI you already use work with it, without building another integration. Calculate precise flight paths and landing impacts using physics.

Included with plan

Ask AI about this Connector

Developed, maintained, and hosted by Vinkius.

MCP VERIFIED · PRODUCTION READY · VINKIUS GUARANTEED

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Works with modern AI clients that support MCP, including ChatGPT, Claude, Cursor, and more.

ChatGPTClaudeCursorPerplexityGeminiMicrosoft CopilotRaycastMeta AI

Complete set · 4 capabilities

The complete Jump Trajectory Analysis capability set.

These are the exact actions your AI can choose when you ask it to work with Jump Trajectory Analysis.

Capability set01 / 01

01-04

4 capabilities in this set.

Part of 4 available through Jump Trajectory Analysis.

  1. 01

    Calculate jump flight metrics

    This capability provides a full performance overview including distance, height, time, and impact speed.

  2. 02

    Get peak altitude details

    Use this to focus specifically on verticality and the maximum height reached during flight.

  3. 03

    Analyze aerodynamic sensitivity

    This capability compares how different body positions and aerodynamic profiles affect your total flight distance.

  4. 04

    Predict landing impact

    Get exact landing coordinates and impact conditions to verify safety.

One connector, every AI

Jump Trajectory Analysis works with the most popular AI clients.

These are the most popular clients, each with a step-by-step guide: one link, set up once, with governance and visibility built in. And because everything runs on the MCP standard, the same connection also works in any other compatible client — nothing to rebuild.

Building your own app? The connector is yours to use.

You don't need a client to put Jump Trajectory Analysis to work: the same hosted connection plugs into your own applications and agent code, with the same governance on every request. Build with it, chat with it — one connection for both.

Observed, not estimated

970ms average. Fast in production.

Jump Trajectory Analysis is checked daily against the live service.

Daily averagePeak 970ms
Sep 14Today
Fastest day
970ms
Slowest day
970ms
14-day trend
Stable0%

Connect your client

One URL. Every client.

Activate the Connector, copy your link, and paste it into the client you already use. 4 capabilities arrive ready to run.

Preview access · not provider authentication

The vk_preview_* token belongs to Vinkius preview infrastructure. It lets Claude discover and display the capabilities of Jump Trajectory Analysis, so you can see the experience inside your AI.

It does not authenticate your account with Jump Trajectory Analysis. Actions requiring credentials or live account data may not run until you activate the Connector and authorize the service.

Jump Trajectory Analysis Connector

You're all set. Choose your MCP client and follow the setup instructions.

Connector linkhttps://edge.vinkius.com/vk_preview_L7qcBM513w4lvmGdYw3F9K7ug46Qjil4JSJHJLrX/mcp

Claude Desktop

Follow the steps below to connect in seconds.

  1. 1In Claude Desktop, open Settings → Connectors.
  2. 2Click “Add custom connector” and paste the connector link above as the remote MCP server URL.
  3. 3Click Add and start a new chat — Jump Trajectory Analysis capabilities are ready to use.
Configuration · claude_desktop_config.jsonCopy
{
  "mcpServers": {
    "jump-trajectory-analysis-mcp": {
      "url": "https://edge.vinkius.com/vk_preview_L7qcBM513w4lvmGdYw3F9K7ug46Qjil4JSJHJLrX/mcp"
    }
  }
}
  • Claude
  • ChatGPT
  • Cursor
  • VS Code
  • Windsurf
  • Claude Code
  • JetBrains
  • Cline

Step-by-step instructions for each client are in the guide. How to connect

Guided setup for Claude? How to give Claude access to Jump Trajectory Analysis

See all the AI clients this connector works with ↑

Who it's for

Built for the work Jump Trajectory Analysis owners hand off.

This MCP is built for anyone needing precise physics calculations for aerial movement. You can hand off complex trajectory math to your agent to get instant results.

  • 01

    Action Sports Engineers

    They use the capability to model ramp designs and landing safety.

  • 02

    Game Physics Developers

    They use the simulations to validate movement mechanics and jump behaviors.

  • 03

    Aerodynamics Researchers

    They use the sensitivity analysis to study how body profiles affect drag.

FAQ

Questions Jump Trajectory Analysis owners ask.

  • 01

    What physics factors does this MCP include?

    The simulations account for projectile motion, air resistance, and the geometry of the landing slope.

  • 02

    Can I use this to test different body positions?

    Yes, you can use the aerodynamic sensitivity capability to compare how different profiles affect your flight distance.

  • 03

    How does it handle landing slopes?

    The capability incorporates landing slope geometry into its calculations to predict impact conditions and coordinates.

  • 04

    Which clients can I use with this MCP?

    You can use this with any MCP-compatible client like Claude, Cursor, Windsurf, or VS Code.

  • 05

    Does it calculate vertical height?

    Yes, it can calculate the maximum height reached during flight relative to the takeoff lip or the ground.

  • 06

    How does air resistance affect the results?

    The simulation uses the bodyAerodynamics coefficient to adjust the projectile motion equations, simulating how different body positions increase or decrease drag.

  • 07

    Can I predict where I will land on a slope?

    Yes, by using the predict_landing_impact capability, you can determine the exact horizontal distance and vertical elevation of the impact point on a specified landing slope.

  • 08

    What inputs are required for a full flight overview?

    To use calculate_jump_flight_metrics, you must provide the takeoff speed, takeoff angle, lip height, and the landing slope angle.