ESP32C3 SuperMini is a compact IoT development board based on the Espressif ESP32-C3 WiFi + Bluetooth dual-mode chip. It combines strong wireless performance, low power consumption, and a very small footprint, making it a practical choice for wearable devices, portable nodes, smart sensors, and compact automation projects.
Core advantages:
GPIO8If an external power supply is required, connect the positive terminal to 5V and the negative terminal to GND. The board supports approximately 3.3V to 6V input.
Important: Do not connect USB and external power at the same time. Choose only one power source.
You will need:
Connect the board to your computer using a USB Type-C data cable.
https://raw.githubusercontent.com/espressif/arduino-esp32/gh-pages/package_esp32_index.json
Copy the following code into Arduino IDE and upload it to the board:
// define led according to pin diagram int led = 8; void setup() { // initialize digital pin led as an output pinMode(led, OUTPUT); } void loop() { digitalWrite(led, HIGH); // turn the LED off delay(1000); // wait for a second digitalWrite(led, LOW); // turn the LED on delay(1000); // wait for a second }
After uploading, the on-board blue LED should blink with a 1-second interval.
This example starts a simple web server so you can control the LED from a browser.
/* WiFi Web Server LED Blink A simple web server that lets you blink an LED via the web. This sketch will print the IP address of your WiFi Shield (once connected) to the Serial monitor. From there, you can open that address in a web browser to turn on and off the LED on pin 5. If the IP address of your shield is yourAddress: http://yourAddress/H turns the LED on http://yourAddress/L turns it off This example is written for a network using WPA2 encryption. For insecure WEP or WPA, change the Wifi.begin() call and use Wifi.setMinSecurity() accordingly. Circuit: * WiFi shield attached * LED attached to pin 5 created for arduino 25 Nov 2012 by Tom Igoe ported for sparkfun esp32 31.01.2017 by Jan Hendrik Berlin */ #include <WiFi.h> const char* ssid = "Onion3"; // Set WiFi name const char* password = "asdfghjkl"; // Set WiFi password WiFiServer server(80); void setup() { Serial.begin(115200); pinMode(8, OUTPUT); // set the LED pin mode delay(10); // We start by connecting to a WiFi network Serial.println(); Serial.println(); Serial.print("Connecting to "); Serial.println(ssid); WiFi.begin(ssid, password); while (WiFi.status() != WL_CONNECTED) { delay(500); Serial.print("."); } Serial.println(""); Serial.println("WiFi connected."); Serial.println("IP address: "); Serial.println(WiFi.localIP()); server.begin(); } void loop(){ WiFiClient client = server.available(); // listen for incoming clients if (client) { // if you get a client, Serial.println("New Client."); // print a message out the serial port String currentLine = ""; // make a String to hold incoming data from the client while (client.connected()) { // loop while the client's connected if (client.available()) { // if there's bytes to read from the client, char c = client.read(); // read a byte, then Serial.write(c); // print it out the serial monitor if (c == '\n') { // if the byte is a newline character // if the current line is blank, you got two newline characters in a row. // that's the end of the client HTTP request, so send a response: if (currentLine.length() == 0) { // HTTP headers always start with a response code (e.g. HTTP/1.1 200 OK) // and a content-type so the client knows what's coming, then a blank line: client.println("HTTP/1.1 200 OK"); client.println("Content-type:text/html"); client.println(); // the content of the HTTP response follows the header: client.print("Click <a href=\"/H\">here</a> to turn the LED on pin 8 on.<br>"); client.print("Click <a href=\"/L\">here</a> to turn the LED on pin 8 off.<br>"); // The HTTP response ends with another blank line: client.println(); // break out of the while loop: break; } else { // if you got a newline, then clear currentLine: currentLine = ""; } } else if (c != '\r') { // if you got anything else but a carriage return character, currentLine += c; // add it to the end of the currentLine } // Check to see if the client request was "GET /H" or "GET /L": if (currentLine.endsWith("GET /H")) { digitalWrite(8, HIGH); // GET /H turns the LED on } if (currentLine.endsWith("GET /L")) { digitalWrite(8, LOW); // GET /L turns the LED off } } } // close the connection: client.stop(); Serial.println("Client Disconnected."); } }
Enter download mode in one of the following ways:
After upload completes successfully, press the RESET button once.
Set USB CDC On Boot to Enabled in the Arduino toolbar.
For more questions and project ideas, visit the community forum: