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npm a0nexus-bitcoin-mcpstdioMITupdated 1mo ago

Live crypto + energy predictive data + AI forecasts, right inside Claude (and any MCP-capable AI app).

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What can you do with a0nexus bitcoin mcp?

a0nexus-bitcoin-mcp

Live crypto + energy predictive data + AI forecasts, right inside Claude (and any MCP-capable AI app).

This is a Model Context Protocol server that gives your AI assistant real-time predictive intelligence — Bitcoin network, mempool, and fees; Ethereum gas; best-time-to-transact timing on both chains; AI Bitcoin price forecasts; and Texas (ERCOT) electricity price forecasting including the cheapest upcoming window to run load — all as tools it can call mid-conversation. Data comes from the a0nexus.com Predictive Intelligence API.

Live Bitcoin fees/network/mempool, Ethereum gas, and current ERCOT power prices are free and need no wallet — install it and ask "what's the current Bitcoin fee?", "what's ETH gas right now?", or "what's Texas power costing?" right away. The differentiated tools (forecasts, fee forecast, confirmation ETA, mempool depth, intelligence brief) are pay-per-call: each request is settled with a few cents of USDC on Base via x402 (HTTP 402) — no account, no signup, no subscription. You only enable paid tools if you want them.

Install it with a single npx line (below). Node 18+ required.

Tools

Free (no wallet needed)

Tool What it returns
get_current_fees Current recommended Bitcoin fee rates (sat/vB) by confirmation target.
get_network_snapshot Chain height, best block hash, peers, sync state, mempool summary.
get_mempool_snapshot Current mempool size, fee-rate histogram, and congestion.
get_eth_gas_current Ethereum gas now (gwei): base fee + slow/standard/fast tiers + congestion.
get_ercot_price_current Texas power now ($/MWh) on the ERCOT grid + cheap/normal/expensive level. Arg: hub.
get_status Service status, active payment mode, and component health.
get_pricing Per-endpoint pricing and the payment network in use.

Paid (require a funded Base wallet — see Paid tools)

Tool What it returns
get_broadcast_timing Best time to broadcast (Bitcoin) — send now vs. wait, and the sat/vB you'd save. Args: target (blocks, default 6), vsize (vB, optional → total sats saved).
get_eth_gas_timing Best time to send (Ethereum) — send now vs. wait, and the gwei/ETH you'd save. Args: blocks (default 5), gas_limit (optional).
get_eth_gas_forecast Ethereum base-fee forecast (gwei), N blocks ahead. Args: blocks (default 5).
get_ercot_cheapest_window Cheapest window to run load (Texas grid) — when to charge/compute in the next 24h + savings vs the daily average. Args: window_hours (default 2), horizon_hours (default 24), hub.
get_ercot_price_forecast ERCOT electricity price forecast ($/MWh) for the next N hours. Args: hours (default 12), hub.
get_fee_forecast Forecast of Bitcoin transaction fees by confirmation target.
get_tx_confirmation Confirmation status / ETA for a transaction. Args: txid.
get_latest_forecast Latest published AI price forecast. Args: symbol (e.g. BTCUSD), timeframe (e.g. 1h, 4h, 1d).
run_custom_forecast Run a bespoke Kronos forecast. Args: symbol, timeframe, horizon, sample_count, lookback.
get_intelligence Aggregated Bitcoin intelligence brief. Optional arg: timeframe.

Install

Add the server to your AI app's MCP config. All three use the same one-line npx command — no clone, no build, no global install.

Claude Desktop

Edit claude_desktop_config.json (macOS: ~/Library/Application Support/Claude/claude_desktop_config.json, Windows: %APPDATA%\Claude\claude_desktop_config.json):

{
  "mcpServers": {
    "a0nexus-bitcoin": {
      "command": "npx",
      "args": ["-y", "a0nexus-bitcoin-mcp"],
      "env": {
        "BTCI_API_URL": "https://a0nexus.com"
      }
    }
  }
}

Claude Code

Add an .mcp.json at your project root:

{
  "mcpServers": {
    "a0nexus-bitcoin": {
      "command": "npx",
      "args": ["-y", "a0nexus-bitcoin-mcp"],
      "env": {
        "BTCI_API_URL": "https://a0nexus.com"
      }
    }
  }
}

Cursor

Edit ~/.cursor/mcp.json (global) or .cursor/mcp.json (per-project):

{
  "mcpServers": {
    "a0nexus-bitcoin": {
      "command": "npx",
      "args": ["-y", "a0nexus-bitcoin-mcp"],
      "env": {
        "BTCI_API_URL": "https://a0nexus.com"
      }
    }
  }
}

Restart the app. Your assistant can now fetch live Bitcoin fees and network status for free immediately — try asking "what's the current Bitcoin fee?"

Paid tools

The free tools work with no wallet at all. To unlock the paid tools, add two environment variables to the env block above:

"env": {
  "BTCI_API_URL": "https://a0nexus.com",
  "BTCI_MCP_PAYMENT": "real",
  "BTCI_MCP_PRIVATE_KEY": "0x……"
}
  • BTCI_MCP_PAYMENT: set to real to pay actual USDC. (Leave it unset, or none, for free-only operation.)
  • BTCI_MCP_PRIVATE_KEY: the private key of a Base wallet holding a little USDC. Each paid call spends that endpoint's price (a few cents). Fund it with only what you're comfortable spending — call get_pricing to see exact per-endpoint costs.
  • BTCI_MCP_NETWORK (optional): base (default) or base-sepolia for testnet.

Treat the private key like any secret: use a dedicated low-balance wallet, and never commit it to source control.

How it works

Paid endpoints use the x402 standard: the server requests a resource, the API replies HTTP 402 Payment Required with a price, the client signs a USDC transfer on Base and retries, and the API returns live data. It's true pay-per-call metering — no account, no signup, no monthly bill. You pay only for the calls your assistant actually makes.

Learn more and see live pricing at a0nexus.com.

License

MIT