A Model Context Protocol server that provides desktop automation capabilities using RobotJS and screenshot capabilities
What is tanob mcp desktop automation
MCP Desktop Automation
A Model Context Protocol server that provides desktop automation capabilities using RobotJS and screenshot capabilities. This server enables LLMs to control mouse movements, keyboard inputs, and capture screenshots of the desktop environment.
Configuration to use Desktop Automation Server
Here's how to configure Claude Desktop to use the MCP Desktop Automation server:
NPX
{
"mcpServers": {
"desktop-automation": {
"command": "npx",
"args": ["-y", "mcp-desktop-automation"]
}
}
}
Permissions
This server requires system-level permissions to:
- Capture screenshots of your screen
- Control mouse movement and clicks
- Simulate keyboard input
When first running Claude Desktop with this server, you may need to grant these permissions in your operating system's security settings.
Limitations
While this server works with various MCP clients, it has been primarily tested with Claude Desktop.
Important: The current implementation has a 1MB response size limit. For screen captures, this means:
- High-resolution screenshots may exceed this limit and fail
- Testing has shown 800x600 resolution works reliably
- Consider reducing screen resolution or capturing specific screen areas if you encounter issues
Requirements
- Node.js (>=14.x)
Components
Tools
-
get_screen_size
- Gets the screen dimensions
- No input parameters required
-
screen_capture
- Captures the current screen content
- No input parameters required
-
keyboard_press
- Presses a keyboard key or key combination
- Inputs:
key
(string, required): Key to press (e.g., 'enter', 'a', 'control')modifiers
(array of strings, optional): Modifier keys to hold while pressing the key. Possible values: "control", "shift", "alt", "command"
-
keyboard_type
- Types text at the current cursor position
- Input:
text
(string, required): Text to type
-
mouse_click
- Performs a mouse click
- Inputs:
button
(string, optional, default: "left"): Mouse button to click. Possible values: "left", "right", "middle"double
(boolean, optional, default: false): Whether to perform a double click
-
mouse_move
- Moves the mouse to specified coordinates
- Inputs:
x
(number, required): X coordinatey
(number, required): Y coordinate
Resources
The server provides access to screenshots:
-
Screenshot List (
screenshot://list
)- Lists all available screenshots by name
-
Screenshot Content (
screenshot://{id}
)- PNG images of captured screenshots
- Accessible via the screenshot ID (timestamp-based naming)
Key Features
- Desktop mouse control
- Keyboard input simulation
- Screen size detection
- Screenshot capabilities
- Simple JSON response format
License
This MCP server is licensed under the MIT License. This means you are free to use, modify, and distribute the software, subject to the terms and conditions of the MIT License. For more details, please see the LICENSE file in the project repository.
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Frequently Asked Questions
What is MCP?
MCP (Model Context Protocol) is an open protocol that standardizes how applications provide context to LLMs. Think of MCP like a USB-C port for AI applications, providing a standardized way to connect AI models to different data sources and tools.
What are MCP Servers?
MCP Servers are lightweight programs that expose specific capabilities through the standardized Model Context Protocol. They act as bridges between LLMs like Claude and various data sources or services, allowing secure access to files, databases, APIs, and other resources.
How do MCP Servers work?
MCP Servers follow a client-server architecture where a host application (like Claude Desktop) connects to multiple servers. Each server provides specific functionality through standardized endpoints and protocols, enabling Claude to access data and perform actions through the standardized protocol.
Are MCP Servers secure?
Yes, MCP Servers are designed with security in mind. They run locally with explicit configuration and permissions, require user approval for actions, and include built-in security features to prevent unauthorized access and ensure data privacy.
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