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Crypto Indicators MCP Server

Community
kukapay

An MCP server providing a range of cryptocurrency technical analysis indicators and strategies.

Publisherkukapay
Repositorycrypto-indicators-mcp
LanguageJavaScript
Forks
44
Stars
123
Available tools
0
Transport typestdio
Categories
LicenseMIT
Links
  • Connect tools to AI workflows

    Crypto Indicators MCP Server exposes MCP capabilities that can be used by compatible AI clients and agents.

  • 0 available tools

    Browse the callable actions below, including names and descriptions when provided by the server.

  • Ready-to-copy setup

    Use the installation snippets to configure this server in your preferred MCP client.

  • Open source signals

    123 stars and 44 forks from the linked repository.

Crypto Indicators MCP Server

An MCP server providing a range of cryptocurrency technical analysis indicators and strategies, empowering AI trading agents to efficiently analyze market trends and develop robust quantitative strategies.

For more crypto-related MCP servers, see the Kukapay MCP servers.

License Node.js Status

Features

  • Technical Indicators: 50+ indicators across trend, momentum, volatility, and volume categories.
  • Trading Strategies: Corresponding strategies outputting signals: -1 (SELL), 0 (HOLD), 1 (BUY).
  • Flexible Data Source: Defaults to Binance, configurable to any ccxt-supported exchange.
  • Modular Design: Indicators and strategies are categorized for easy maintenance.

Installation

Prerequisites

  • Node.js (v18.x or higher)
  • npm (v8.x or higher)

Steps

  1. Clone the Repository:

    bash
    git clone https://github.com/kukapay/crypto-indicators-mcp.git
    cd crypto-indicators-mcp
  2. Install Dependencies:

    bash
    npm install
  3. Configure MCP Client: To use this server with an MCP client like Claude Desktop, add the following to your config file (or equivalent):

    json
     {
       "mcpServers": {
         "crypto-indicators-mcp": {
           "command": "node",
           "args": ["path/to/crypto-indicators-mcp/index.js"],
           "env": {
             "EXCHANGE_NAME": "binance"
           }
         }
       }
     }   

Available Tools

Trend Indicators

  • calculate_absolute_price_oscillator: Measures the difference between two EMAs to identify trend strength (APO).
  • calculate_aroon: Identifies trend changes and strength using high/low price extremes (Aroon).
  • calculate_balance_of_power: Gauges buying vs. selling pressure based on price movement (BOP).
  • calculate_chande_forecast_oscillator: Predicts future price movements relative to past trends (CFO).
  • calculate_commodity_channel_index: Detects overbought/oversold conditions and trend reversals (CCI).
  • calculate_double_exponential_moving_average: Smooths price data with reduced lag for trend detection (DEMA).
  • calculate_exponential_moving_average: Weights recent prices more heavily for trend analysis (EMA).
  • calculate_mass_index: Identifies potential reversals by measuring range expansion (MI).
  • calculate_moving_average_convergence_divergence: Tracks momentum and trend direction via EMA differences (MACD).
  • calculate_moving_max: Computes the maximum price over a rolling period (MMAX).
  • calculate_moving_min: Computes the minimum price over a rolling period (MMIN).
  • calculate_moving_sum: Calculates the sum of prices over a rolling period (MSUM).
  • calculate_parabolic_sar: Provides stop-and-reverse points for trend following (PSAR).
  • calculate_qstick: Measures buying/selling pressure based on open-close differences (Qstick).
  • calculate_kdj: Combines stochastic and momentum signals for trend analysis (KDJ).
  • calculate_rolling_moving_average: Applies a rolling EMA for smoother trend tracking (RMA).
  • calculate_simple_moving_average: Averages prices over a period to identify trends (SMA).
  • calculate_since_change: Tracks the time since the last significant price change.
  • calculate_triple_exponential_moving_average: Reduces lag further than DEMA for trend clarity (TEMA).
  • calculate_triangular_moving_average: Weights middle prices more for smoother trends (TRIMA).
  • calculate_triple_exponential_average: Measures momentum with triple smoothing (TRIX).
  • calculate_typical_price: Averages high, low, and close prices for a balanced trend view.
  • calculate_volume_weighted_moving_average: Incorporates volume into moving averages for trend strength (VWMA).
  • calculate_vortex: Identifies trend direction and strength using true range (Vortex).

Momentum Indicators

  • calculate_awesome_oscillator: Measures market momentum using midline crossovers (AO).
  • calculate_chaikin_oscillator: Tracks accumulation/distribution momentum (CMO).
  • calculate_ichimoku_cloud: Provides a comprehensive view of support, resistance, and momentum (Ichimoku).
  • calculate_percentage_price_oscillator: Normalizes MACD as a percentage for momentum (PPO).
  • calculate_percentage_volume_oscillator: Measures volume momentum via EMA differences (PVO).
  • calculate_price_rate_of_change: Tracks price momentum as a percentage change (ROC).
  • calculate_relative_strength_index: Identifies overbought/oversold conditions via momentum (RSI).
  • calculate_stochastic_oscillator: Compares closing prices to ranges for momentum signals (STOCH).
  • calculate_williams_r: Measures momentum relative to recent high-low ranges (Williams %R).

Volatility Indicators

  • calculate_acceleration_bands: Frames price action with dynamic volatility bands (AB).
  • calculate_average_true_range: Measures market volatility based on price ranges (ATR).
  • calculate_bollinger_bands: Encloses price action with volatility-based bands (BB).
  • calculate_bollinger_bands_width: Quantifies volatility via band width changes (BBW).
  • calculate_chandelier_exit: Sets trailing stop-losses based on volatility (CE).
  • calculate_donchian_channel: Tracks volatility with high/low price channels (DC).
  • calculate_keltner_channel: Combines ATR and EMA for volatility bands (KC).
  • calculate_moving_standard_deviation: Measures price deviation for volatility (MSTD).
  • calculate_projection_oscillator: Assesses volatility relative to projected prices (PO).
  • calculate_true_range: Calculates daily price range for volatility analysis (TR).
  • calculate_ulcer_index: Quantifies downside volatility and drawdowns (UI).

Volume Indicators

  • calculate_accumulation_distribution: Tracks volume flow to confirm price trends (AD).
  • calculate_chaikin_money_flow: Measures buying/selling pressure with volume (CMF).
  • calculate_ease_of_movement: Assesses how easily prices move with volume (EMV).
  • calculate_force_index: Combines price and volume for momentum strength (FI).
  • calculate_money_flow_index: Identifies overbought/oversold via price-volume (MFI).
  • calculate_negative_volume_index: Tracks price changes on lower volume days (NVI).
  • calculate_on_balance_volume: Accumulates volume to predict price movements (OBV).
  • calculate_volume_price_trend: Combines volume and price for trend confirmation (VPT).
  • calculate_volume_weighted_average_price: Averages prices weighted by volume (VWAP).

Trend Strategies

  • calculate_absolute_price_oscillator_strategy: Generates buy/sell signals from APO crossovers (APO Strategy).
  • calculate_aroon_strategy: Signals trend reversals using Aroon crossovers (Aroon Strategy).
  • calculate_balance_of_power_strategy: Issues signals based on BOP thresholds (BOP Strategy).
  • calculate_chande_forecast_oscillator_strategy: Predicts reversals with CFO signals (CFO Strategy).
  • calculate_kdj_strategy: Combines KDJ lines for trend-based signals (KDJ Strategy).
  • calculate_macd_strategy: Uses MACD crossovers for trading signals (MACD Strategy).
  • calculate_parabolic_sar_strategy: Signals trend direction with PSAR shifts (PSAR Strategy).
  • calculate_typical_price_strategy: Generates signals from typical price trends.
  • calculate_volume_weighted_moving_average_strategy: Issues signals based on VWMA crossovers (VWMA Strategy).
  • calculate_vortex_strategy: Signals trend direction with Vortex crossovers (Vortex Strategy).

Momentum Strategies

  • calculate_momentum_strategy: Issues signals based on momentum direction.
  • calculate_awesome_oscillator_strategy: Signals momentum shifts with AO crossovers (AO Strategy).
  • calculate_ichimoku_cloud_strategy: Generates signals from Ichimoku cloud positions (Ichimoku Strategy).
  • calculate_rsi2_strategy: Signals overbought/oversold with RSI thresholds (RSI Strategy).
  • calculate_stochastic_oscillator_strategy: Uses stochastic crossovers for signals (STOCH Strategy).
  • calculate_williams_r_strategy: Signals momentum reversals with Williams %R (Williams %R Strategy).

Volatility Strategies

  • calculate_acceleration_bands_strategy: Signals breakouts with acceleration bands (AB Strategy).
  • calculate_bollinger_bands_strategy: Issues signals from Bollinger Band breaches (BB Strategy).
  • calculate_projection_oscillator_strategy: Signals volatility shifts with PO (PO Strategy).

Volume Strategies

  • calculate_chaikin_money_flow_strategy: Signals volume pressure with CMF (CMF Strategy).
  • calculate_ease_of_movement_strategy: Issues signals based on EMV trends (EMV Strategy).
  • calculate_force_index_strategy: Signals momentum with force index shifts (FI Strategy).
  • calculate_money_flow_index_strategy: Signals overbought/oversold with MFI (MFI Strategy).
  • calculate_negative_volume_index_strategy: Signals trends with NVI changes (NVI Strategy).
  • calculate_volume_weighted_average_price_strategy: Issues signals from VWAP crossovers (VWAP Strategy).

Usage Examples

Example 1: Calculate MACD Indicator

Input (Natural Language Prompt):

Calculate the MACD for BTC/USDT on a 1-hour timeframe with fast period 12, slow period 26, signal period 9, and fetch 100 data points.

Output:

{"macd": [...], "signal": [...], "histogram": [...]}

Example 2: Calculate RSI Strategy

Input (Natural Language Prompt):

Give me the RSI strategy signals for ETH/USDT on a 4-hour timeframe with a period of 14 and 50 data points.

Output:

[-1, 0, 1, 0, ...]

License

This project is licensed under the MIT License - see the LICENSE file for details.

Installation

TypingMind
Prerequisites:

Node.js 18+

{
  "mcpServers": {
    "kukapay-crypto-indicators-mcp": {
      "command": "",
      "args": []
    }
  }
}

Use Crypto Indicators MCP Server MCP with multiple AI models

TypingMind connects MCP tools at the workspace level, so once Crypto Indicators MCP Server is connected, you can use it with different AI models in TypingMind instead of setting it up separately for each model. This MCP runs locally through the TypingMind MCP connector on your device.

Setup guide to use the local connector

Use this when the MCP server needs access to local files, apps, or private resources on your computer.

1

Open the MCP settings

In TypingMind, go to Settings, Advanced Settings, then Model Context Protocol and choose Setup Connector.

  1. Open TypingMind in your browser.
  2. Click the Settings icon.
  3. Go to Advanced Settings.
  4. Open the Model Context Protocol section.
  5. Click Setup Connector and choose This Device.
TypingMind MCP connector setup screen with This Device selected
2

Run the connector command

Choose This Device, copy the command from TypingMind, and run it in Terminal. Keep the process running while you use MCP.

  1. Copy the setup command shown by TypingMind.
  2. Open Terminal on macOS or Windows Terminal on Windows.
  3. Paste and run the command.
  4. Approve the package install if Terminal asks you to proceed.
  5. Keep the Terminal window running while using MCP tools.
3

Add Crypto Indicators MCP Server as a server

When the connector status is Ready, click Edit Servers and paste the MCP server configuration.

  1. Wait until the connector status shows Ready.
  2. Click Edit Servers.
  3. Paste the Crypto Indicators MCP Server MCP server configuration.
  4. Save the server list.
  5. Refresh if you want to confirm the connector is still ready.
TypingMind MCP settings showing active server and Edit Servers button
{
  "mcpServers": {
    "kukapay-crypto-indicators-mcp": {
      "command": "npx",
      "args": [
        "-y",
        "crypto-indicators-mcp"
      ]
    }
  }
}
4

Use it across models

Save the server list, open Plugins, enable the Crypto Indicators MCP Server MCP tools, then select any supported AI model in TypingMind and use the tools in chat or assign them to an AI agent.

  1. Open the Plugins page in TypingMind.
  2. Enable the Crypto Indicators MCP Server MCP tools.
  3. Start a chat and choose the AI model you want to use.
  4. Use the MCP tools in chat or assign them to an AI agent.
  5. Switch to another AI model whenever needed without reconnecting MCP.
TypingMind chat using enabled MCP tools with a selected AI model
Can you use Crypto Indicators MCP Server to help me with this task?
Crypto Indicators MCP Server
Sure. I read it.
Here is what I found using Crypto Indicators MCP Server.

Frequently asked questions

What is the Crypto Indicators MCP Server MCP server used for?

Crypto Indicators MCP Server is an MCP server that lets compatible AI clients connect to external tools and context. In TypingMind, you can add this MCP server once and make its tools available in your AI workspace.

Can I use Crypto Indicators MCP Server MCP with multiple AI models in TypingMind?

Yes. TypingMind connects MCP tools at the workspace level, so you can use Crypto Indicators MCP Server with different AI models such as Claude, ChatGPT, Gemini, or other models you have configured in TypingMind without setting up the MCP server separately for each model.

Why use Crypto Indicators MCP Server MCP with TypingMind?

TypingMind is one of the best frontends for LLM chat because it brings multiple AI models, prompts, plugins, AI agents, API keys, and MCP tools into one workspace. With Crypto Indicators MCP Server connected, you can use its MCP tools across your preferred models while keeping your chat workflow organized in TypingMind.

How do I connect Crypto Indicators MCP Server MCP to TypingMind?

Crypto Indicators MCP Server runs through the TypingMind local MCP connector. This is best when the MCP server needs access to local files, desktop apps, command-line tools, or private resources on your computer.

What tools does Crypto Indicators MCP Server MCP provide in TypingMind?

Crypto Indicators MCP Server exposes MCP capabilities that can be enabled from the TypingMind Plugins page and used in chat or assigned to AI agents.

Do I need to share my API keys with TypingMind to use Crypto Indicators MCP Server MCP?

No. TypingMind is local-first and lets you keep your model providers, API keys, prompts, and MCP configuration under your control. If Crypto Indicators MCP Server requires authentication, add the required headers, OAuth settings, or local configuration for that MCP server when you create the connection.

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