Arduino Uno IR Receiver Simulator: Wiring, Code and a Live Circuit
This is a 38 kHz IR receiver wired to an Arduino Uno with a remote control beside it, decoded live with the IRremote library: open it in the editor, press a button on the remote, and the serial monitor prints its command code.
Three wires to the receiver: power, GND, and OUT to pin 2. The remote speaks NEC, the protocol of most cheap kit remotes.
- 5 V logic
- Library: IRremote.hpp
- OUT on pin 2
- NEC protocol, 38 kHz
Wiring the IR Receiver to the Arduino Uno
Every connection in the circuit above, with the board’s own pin names.
| IR Receiver pin | Arduino Uno pin | Why |
|---|---|---|
| VCC | 5V | The VS1838B-style receiver runs from 2.7 to 5.5 V. |
| GND | GND | Ground. |
| OUT | pin 2 | Low while a 38 kHz burst arrives, high otherwise: the demodulated code. |
| IR (light) | The remote | In the editor the infrared light path is drawn as a gray wire from the remote. |
The receiver runs from the Arduino Uno’s 5V pin and its output idles at 5 V, which the board reads directly.
Pins to leave alone on the Arduino Uno
Pins 0 and 1 are the USB serial port on a real Uno, so anything wired there fights the upload and the serial monitor. Pin 13 carries the onboard LED.
On a real bench
On a real bench the Uno stands beside the breadboard: the IR Receiver goes into the breadboard and male-to-male jumpers run from the Uno’s female headers to its rows. Power the Uno from USB while you build, and unplug it before you move a wire.
The code
The sketch the circuit above runs. Open it in the editor, change a line and press Run: it compiles in your browser.
#include <IRremote.hpp>
const int IR_PIN = 2; // OUT, pin 2
void setup() {
Serial.begin(9600);
IrReceiver.begin(IR_PIN);
Serial.println("Point the remote and press a button");
}
void loop() {
if (IrReceiver.decode()) {
if (!(IrReceiver.decodedIRData.flags & IRDATA_FLAGS_IS_REPEAT)) {
Serial.print("Command: 0x");
Serial.println(IrReceiver.decodedIRData.command, HEX);
}
IrReceiver.resume(); // ready for the next one
}
}
IrReceiver.begin(IR_PIN) starts the IRremote library listening on the pin. decode() returns true once a whole code has arrived, and decodedIRData.command holds the button’s command byte, 0x47 for the button pressed in this demo.
Holding a button makes an NEC remote send short repeat frames, which the library flags with IRDATA_FLAGS_IS_REPEAT. The sketch prints only the first frame of each press. resume() must be called after each code or nothing more is decoded.
Serial.begin(9600) opens the serial monitor. Serial goes over the USB cable, and the serial monitor in the editor reads it at whatever baud rate the sketch sets.
Common mistakes with the IR Receiver on the Arduino Uno
Old IRremote code
Sketches written for IRremote 2.x use IRrecv irrecv(pin), irrecv.enableIRIn() and results.value. Version 3 and later use IrReceiver and decodedIRData, as here. Mixing the two is the most common reason an IR sketch will not compile.
Forgetting resume()
After decode() returns true, the library holds the code until resume() is called. Leave it out and the first button press is the only one you ever see.
Using pins 0 and 1
Pins 0 and 1 carry the USB serial port on a real Uno. the receiver output wired there fights every upload and every Serial.print(). Start at pin 2.
Questions and answers
Can I simulate an IR remote with an Arduino Uno?
Yes. The circuit at the top of this page is an Arduino Uno with a IR receiver and remote, running in your browser on a simulated ATmega328P. Click a button on the simulated remote: it sends a real NEC frame, which the receiver demodulates onto the pin. Press Run it in the editor to change the wiring or the code; it is free and needs no account.
How do I find my remote’s codes?
Run this sketch and press each button: the command printed is the code to compare against. Address and command are both in decodedIRData if you need to tell two remotes apart.
Why does every press print FFFFFFFF?
That is the repeat code of an NEC remote as old versions of the library reported it. The current library flags repeats instead, which the sketch checks.
Which receiver is this?
A three-pin 38 kHz demodulating receiver like the VS1838B or TSOP38238. Check the pin order on yours: it differs between makers.
Build your own IR Receiver project
Open this circuit in the editor, change the wiring or the code, and keep your version in a free account.