Discover Awesome MCP Servers

Extend your agent with 84,516 capabilities via MCP servers.

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airdrop-checker-x402

airdrop-checker-x402

MCP server to check wallet eligibility for crypto airdrops with pay-per-call via x402 micropayments, no signup required.

StoryLenses MCP Server

StoryLenses MCP Server

AI cover letter generation for agents. 5 composable tools that analyze job postings (15+ structured fields), match candidate profiles against roles, generate story-driven cover letters using narrative archetypes, and quality-score the results. Supports English, German, Spanish, and Portuguese. The first production MCP server for job applications.

jira-attachment-mcp

jira-attachment-mcp

Fetches Jira attachments and returns them inline (for small images) or as local paths for larger files and other types, enabling AI models to access Jira attachments directly.

Neo4j Server

Neo4j Server

Este servidor permite a interação entre bancos de dados Neo4j e o Claude Desktop, permitindo que os usuários executem consultas Cypher, criem nós e estabeleçam relacionamentos no banco de dados.

Outlook Email MCP Server

Outlook Email MCP Server

An MCP server that enables reading and managing Microsoft 365 / Outlook emails through Microsoft Graph API, allowing users to list, search, send, draft, and authenticate using device code flow.

mcp-server-polarion

mcp-server-polarion

A Model Context Protocol (MCP) server for Polarion ALM. Lets AI assistants read documents, work items, and traceability links — and create, update, and reorganize work items — directly from your Polarion instance.

Perplexity Web MCP

Perplexity Web MCP

Enables AI agents and users to query Perplexity AI's premium models (GPT-5.4, Claude 4.6 Opus, Gemini 3.1 Pro, etc.) via MCP tools, CLI, or API, with support for deep research, model council, and multi-turn conversations.

Perplexity Full MCP

Perplexity Full MCP

Gives AI agents live research and image generation capabilities by automating a logged-in Perplexity Pro browser session.

kicad-mcp-pro

kicad-mcp-pro

KiCad MCP Pro is an MCP server for KiCad EDA workflows. It lets AI agents automate schematic and PCB tasks, ERC/DRC validation, DFM review, and manufacturing export.

MCP Microsoft Office

MCP Microsoft Office

Connects AI assistants to Microsoft 365 accounts to manage emails, calendars, files, and Teams messages. It offers 71 tools and supports multi-user environments through a secure, customizable server architecture.

blok-berichtsheft

blok-berichtsheft

An MCP server that automates filling out BLok Berichtsheft (training reports) via browser automation using Playwright.

Meraki MCP

Meraki MCP

Provides dynamic access to 400+ Meraki Dashboard API endpoints with intelligent discovery, plus advanced compliance auditing (PCI DSS, HIPAA, SOC2, ISO 27001, NIST), backup/restore operations, and network security analysis. Enables natural language queries to manage Meraki networks without pre-defined tools.

zipmem-mcp

zipmem-mcp

local-first long-term memory for MCP agents (no DB, no API keys)

Mcp Server

Mcp Server

Servidor MCP Python

httptoolkit-mcp

httptoolkit-mcp

MCP server for intercepting and mocking HTTP(S) traffic via a Mockttp proxy, with tools for Android emulator setup, traffic inspection, protobuf analysis, and rule-based manipulation.

mcp-stargazing

mcp-stargazing

Calculating the altitude, rise, and set times of celestial objects is a complex task that requires astronomical calculations and knowledge of the observer's location and time. I can't perform these calculations directly within this text-based interface. However, I can guide you on how to do it using available tools and resources: **1. Online Calculators and Websites:** * **Time and Date AS:** This is a very popular and reliable website. You can enter your location and the object you're interested in, and it will provide rise, set, transit, and altitude information. (timeanddate.com) * **US Naval Observatory (USNO):** The USNO provides accurate astronomical data. They have online tools for calculating rise/set times. (aa.usno.navy.mil) * **In-The-Sky.org:** This website offers a customizable sky chart and rise/set information for various celestial objects. (in-the-sky.org) * **Stellarium Web:** A web-based planetarium that shows the sky at any time and location. It can display rise/set times and altitudes. (stellarium-web.org) **2. Astronomy Software (Planetarium Software):** * **Stellarium (Desktop):** A free, open-source planetarium software for Windows, macOS, and Linux. It's highly accurate and customizable. You can set your location, time, and date, and it will show you the sky, including rise/set times and altitudes. * **Cartes du Ciel (Sky Charts):** Another free planetarium software with advanced features. * **Celestia:** A 3D space simulator that allows you to explore the solar system and beyond. **3. Mobile Apps:** * **SkyView Lite (Free):** A simple augmented reality app that identifies stars, planets, and constellations. * **Star Walk 2:** A popular stargazing app with detailed information about celestial objects. * **Stellarium Mobile:** The mobile version of the popular desktop software. * **SkySafari:** A powerful astronomy app with advanced features. **How to Use These Tools:** 1. **Choose a Tool:** Select an online calculator, software, or app from the list above. 2. **Set Your Location:** Enter your latitude and longitude. You can find these using Google Maps or a similar service. Many tools allow you to search for your city or town. 3. **Set the Date and Time:** Specify the date and time for which you want to calculate the rise/set times. 4. **Select the Celestial Object:** Choose the Sun, Moon, a specific planet, star, or deep-sky object. You may need to know the object's name or catalog number (e.g., M42 for the Orion Nebula). 5. **View the Results:** The tool will display the rise time, set time, transit time (when the object is at its highest altitude), and altitude information. **Understanding the Calculations (Simplified Explanation):** The calculations involve several factors: * **Earth's Rotation:** The primary reason celestial objects appear to rise and set is the Earth's rotation on its axis. * **Earth's Orbit:** The Earth's orbit around the Sun causes the Sun's apparent position to change throughout the year, affecting sunrise and sunset times. * **Object's Right Ascension and Declination:** These are celestial coordinates (similar to longitude and latitude on Earth) that define the object's position in the sky. * **Observer's Latitude and Longitude:** Your location on Earth determines which part of the sky you can see and at what angle. * **Time Zone and Daylight Saving Time:** These adjustments are necessary to convert from Universal Time (UT) to your local time. * **Atmospheric Refraction:** The Earth's atmosphere bends light, causing objects to appear slightly higher in the sky than they actually are. This effect is more pronounced near the horizon. * **Parallax:** For nearby objects like the Moon, the observer's position on Earth relative to the Earth's center can affect the apparent position of the object. **Example using Time and Date AS:** 1. Go to timeanddate.com. 2. Enter your city in the "Location" field. 3. Select "Sun" or "Moon" or "Planets" from the menu. 4. The website will display the rise, set, and transit times for the selected object on the current date. You can change the date to see future or past events. **Important Considerations:** * **Accuracy:** The accuracy of the calculations depends on the tool used and the precision of the input data (location, time). * **Horizon Obstructions:** The calculated rise and set times assume a clear horizon. Buildings, trees, or mountains can block your view and cause the actual rise/set to occur later/earlier. * **Twilight:** Even after sunset, there is still some light in the sky (twilight). The duration of twilight depends on your latitude and the time of year. By using the tools and resources mentioned above, you can easily calculate the altitude, rise, and set times of celestial objects for any location on Earth. Remember to consider the limitations and factors that can affect the accuracy of the results.

wechat-mcp

wechat-mcp

Enables AI agents to control WeChat through MCP protocol, including sending messages, managing contacts, and searching messages.

portuni

portuni

An MCP server that provides a shared graph of an organization's projects, processes, areas, and principles, enabling consistent context for tools and AI agents.

NPI Registry MCP Server

NPI Registry MCP Server

A Model Context Protocol (MCP) server for searching the National Provider Identifier (NPI) registry. This server provides tools to search and retrieve information about healthcare providers and organizations in the United States.

Bucket Feature Flags MCP Server

Bucket Feature Flags MCP Server

Marque funcionalidades diretamente do chat no seu editor de código, incluindo VS Code, Cursor, Windsurf, Claude Code — qualquer IDE com suporte a MCP.

yii2-mcp-server

yii2-mcp-server

Enables database schema inspection, Yii2 console command execution, and project management tools for Yii2 framework via Claude Code.

Daraja MCP

Daraja MCP

Um servidor de Protocolo de Contexto de Modelo que integra aplicações de IA com a API Daraja da Safaricom, permitindo transações financeiras e automação orientadas por IA através dos serviços M-Pesa.

Python MCP Cat Facts

Python MCP Cat Facts

A FastAPI server that implements the Model Context Protocol (MCP) using Server-Sent Events (SSE) transport to provide random cat facts on demand or as a continuous stream.

GitBook MCP Server

GitBook MCP Server

Provides programmatic access to GitBook's API, enabling AI assistants to search, retrieve, and analyze documentation content across organizations, spaces, and collections with 12 tools and 6 AI-powered prompts.

opencode-docs-mcp

opencode-docs-mcp

Enables AI models to search, browse, and retrieve full content of OpenCode documentation pages.

Obsidian MCP Local

Obsidian MCP Local

Enables AI assistants to search, read, create, and modify Markdown notes in local Obsidian vaults directly through filesystem operations. Supports tag-based discovery and frontmatter parsing without requiring Obsidian to be open, facilitating integration with VS Code Copilot via stdio transport.

@baselab-me/signals-mcp

@baselab-me/signals-mcp

Enables AI agents to create and post signal coins on the Base blockchain through tools for media uploads, transaction generation, and on-chain submission. It supports both fully headless automated execution and manual signing modes using the x402 payment protocol.

OpenTTT-MCP

OpenTTT-MCP

MCP Server for OpenTTT — Proof of Time tools for AI agents AI Agent A and Agent B both trigger a payment at the same time. Who was first? OpenTTT answers this with cryptographic Proof of Time — synthesized from multiple independent time sources, verified through GRG integrity shards, and signed with Ed25519 for non-repudiation.

avymcp

avymcp

Provides avalanche forecasts, danger ratings, and field observations for US avalanche centers, Canadian regions, and Quebec's Chic-Chocs via natural language queries.

mongodb-mcp

mongodb-mcp

MCP server for comprehensive MongoDB integration, enabling database operations, document management, schema analysis, and query tools.