Replace 'AI' with 'Claude' throughout docs
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@ -3,7 +3,7 @@ title: mcnanovna
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description: MCP servers for NanoVNA control and antenna positioner automation
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description: MCP servers for NanoVNA control and antenna positioner automation
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template: splash
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template: splash
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hero:
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hero:
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tagline: Give your AI direct control of RF test equipment
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tagline: MCP servers for RF test equipment automation
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image:
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image:
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file: ../../assets/hero.svg
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file: ../../assets/hero.svg
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actions:
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actions:
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@ -26,7 +26,7 @@ import nanoVNA from '../../assets/hardware/NanoVNA-H-2.jpg';
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## What is this?
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## What is this?
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Two MCP servers that let AI assistants control RF test equipment:
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Two MCP servers that let Claude control RF test equipment:
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<CardGrid stagger>
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<CardGrid stagger>
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<Card title="mcnanovna" icon="document">
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<Card title="mcnanovna" icon="document">
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@ -39,7 +39,7 @@ Two MCP servers that let AI assistants control RF test equipment:
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</Card>
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</Card>
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<Card title="Cross-Server Workflows" icon="rocket">
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<Card title="Cross-Server Workflows" icon="rocket">
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Both servers work together for automated 3D antenna pattern measurement.
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Both servers work together for automated 3D antenna pattern measurement.
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The AI orchestrates positioning and VNA measurements across the grid.
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Claude orchestrates positioning and VNA measurements across the grid.
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</Card>
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</Card>
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<Card title="Web UI" icon="laptop">
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<Card title="Web UI" icon="laptop">
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Optional Three.js 3D viewer for radiation patterns.
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Optional Three.js 3D viewer for radiation patterns.
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@ -49,7 +49,7 @@ Two MCP servers that let AI assistants control RF test equipment:
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## What Can It Do?
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## What Can It Do?
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Your AI assistant gains direct access to professional RF measurement capabilities:
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Direct access to professional RF measurement capabilities:
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<div class="screenshot-gallery">
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<div class="screenshot-gallery">
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<figure>
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<figure>
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@ -104,7 +104,7 @@ Then ask Claude to analyze your antenna, measure a filter, or run a 3D pattern s
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## Example Prompts
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## Example Prompts
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Once installed, try asking your AI:
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Once installed, try asking Claude:
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- *"Connect to my NanoVNA and sweep 7.0-7.3 MHz to check my 40m dipole"*
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- *"Connect to my NanoVNA and sweep 7.0-7.3 MHz to check my 40m dipole"*
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- *"Measure the insertion loss of this BPF from 144-148 MHz"*
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- *"Measure the insertion loss of this BPF from 144-148 MHz"*
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@ -5,7 +5,7 @@ description: MCP server for NanoVNA-H vector network analyzers
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import { Aside } from '@astrojs/starlight/components';
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import { Aside } from '@astrojs/starlight/components';
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mcnanovna gives AI assistants direct control of NanoVNA-H vector network analyzers over USB serial. It exposes 78 MCP tools for frequency sweeps, S-parameter measurements, calibration, LCD capture, RF analysis, and 3D antenna radiation pattern visualization.
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mcnanovna gives Claude direct control of NanoVNA-H vector network analyzers over USB serial. It exposes 78 MCP tools for frequency sweeps, S-parameter measurements, calibration, LCD capture, RF analysis, and 3D antenna radiation pattern visualization.
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## Capabilities
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## Capabilities
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@ -5,7 +5,7 @@ description: Guided workflow prompts for mcnanovna
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import { Aside } from '@astrojs/starlight/components';
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import { Aside } from '@astrojs/starlight/components';
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Prompts are pre-built conversation templates that guide the AI through multi-step procedures. They set up context and provide step-by-step instructions for common workflows.
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Prompts are pre-built conversation templates that guide Claude through multi-step procedures. They set up context and provide step-by-step instructions for common workflows.
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## Available Prompts
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## Available Prompts
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@ -5,7 +5,7 @@ description: MCP server for ESP32 dual-axis antenna positioner
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import { Aside } from '@astrojs/starlight/components';
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import { Aside } from '@astrojs/starlight/components';
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mcpositioner gives AI assistants control of an ESP32-based dual-axis antenna positioner over WiFi. It drives two NEMA 17 stepper motors via TMC2209 drivers for theta (polar, 0-180°) and phi (azimuth, 0-360°) rotation.
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mcpositioner gives Claude control of an ESP32-based dual-axis antenna positioner over WiFi. It drives two NEMA 17 stepper motors via TMC2209 drivers for theta (polar, 0-180°) and phi (azimuth, 0-360°) rotation.
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## Purpose
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## Purpose
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