Give your AI agent physical world capabilities via RealWorldClaw — control ESP32 modules, read sensors (temperature, humidity, motion), actuate relays/servos/LEDs, and create automation rules. Use when: (1) controlling IoT/ESP32 hardware, (2) reading sensor data, (3) automating physical actions based on conditions, (4) managing RWC-compatible devices, (5) 3D printing related device control. NOT for: pure software tasks, cloud-only APIs unrelated to physical devices.
Scanned 9/5/2026
Install to Claude Code
npx -y skills add dvcrn/openclaw-skills-marketplace --skill realworldclaw --agent claude-codeInstalls into .claude/skills of the current project.
Are you the author of Realworldclaw?
Add the live security badge to your README — it updates automatically with every re-scan.
[](https://www.skillsdirectory.com/skills/dvcrn-realworldclaw)More formats (shields.io, HTML) on the badges page.
---
name: realworldclaw
description: "Give your AI agent physical world capabilities via RealWorldClaw — control ESP32 modules, read sensors (temperature, humidity, motion), actuate relays/servos/LEDs, and create automation rules. Use when: (1) controlling IoT/ESP32 hardware, (2) reading sensor data, (3) automating physical actions based on conditions, (4) managing RWC-compatible devices, (5) 3D printing related device control. NOT for: pure software tasks, cloud-only APIs unrelated to physical devices."
---
# RealWorldClaw — Physical World for AI Agents
Give any AI agent the ability to sense and act in the physical world.
## Setup
1. Install dependencies:
```bash
pip install httpx paho-mqtt
```
2. Configure device connection in `config.json` (skill directory):
```json
{
"api_url": "https://realworldclaw-api.fly.dev/api/v1",
"devices": [
{
"name": "my-esp32",
"ip": "192.168.x.x",
"access_code": "xxxxxxxx",
"serial": "xxxxxxxxxxxx",
"type": "esp32"
}
]
}
```
## Quick Start
### Read sensor data
```bash
python3 scripts/rwc.py sense --device my-esp32
```
Returns temperature, humidity, and other connected sensor values.
### Control actuator
```bash
python3 scripts/rwc.py act --device my-esp32 --action relay_on
python3 scripts/rwc.py act --device my-esp32 --action relay_off
python3 scripts/rwc.py act --device my-esp32 --action led --value '{"r":255,"g":0,"b":0}'
```
### Create automation rule
```bash
python3 scripts/rwc.py rule add --name "cool-down" \
--condition "temperature > 30" \
--action "relay_on" \
--device my-esp32
```
### List devices and status
```bash
python3 scripts/rwc.py status
python3 scripts/rwc.py devices
```
### Platform API (optional, for registered users)
```bash
python3 scripts/rwc.py api health
python3 scripts/rwc.py api modules
python3 scripts/rwc.py api register --username x --email x --password x
```
## Commands Reference
| Command | Description |
|---------|-------------|
| `status` | Show all device status |
| `devices` | List configured devices |
| `sense --device NAME` | Read all sensors from device |
| `act --device NAME --action ACTION` | Execute actuator command |
| `rule add/list/remove` | Manage automation rules |
| `api health/modules/register/login` | Platform API access |
| `monitor --device NAME --interval 5` | Continuous monitoring mode |
## Supported Hardware
- ESP32 / ESP32-C3 / ESP32-S3 with RWC firmware
- Sensors: DHT22 (temp/humidity), PIR (motion), LDR (light), soil moisture
- Actuators: Relay, Servo, LED (RGB), Buzzer
- Communication: WiFi + MQTT (local) or HTTP (cloud API)
## RWC Protocol
Devices expose capabilities via manifest. Read `references/protocol.md` for full spec.
## Architecture
```
AI Agent (OpenClaw)
↓ skill command
RWC Skill (this)
↓ MQTT (local) or HTTP (cloud)
ESP32 Module
↓ GPIO
Physical World (sensors/actuators)
```
Local MQTT is preferred for low latency. Cloud API for remote access.
Is this your skill, or is something wrong with this listing? Request removal or report an issue. Author removals are honored within 72 hours.
No comments yet. Be the first to comment!