Arduino Nano Relay Simulator: Wiring, Code and a Live Circuit
This is a single-channel 5 V relay module wired to an Arduino Nano, clicking on and off once a second live in your browser. The arm on the drawing moves between NC and NO as the board switches it.
VCC to 5V, GND to GND, and IN to pin 2. The pin only gives the signal; the module powers the coil.
- 5 V logic
- No library
- IN on pin 2
- Coil on 5V
Wiring the Relay to the Arduino Nano
Every connection in the circuit above, with the board’s own pin names.
| Relay pin | Arduino Nano pin | Why |
|---|---|---|
| VCC | 5V | The coil is a 5 V coil; it takes about 70 mA, more than any pin can give. |
| GND | GND | Common ground. |
| IN | pin 2 | A logic signal only: the module’s transistor switches the coil. |
| COM, NO, NC | The load | The switched side: COM is the arm, NO is open until the relay pulls in, NC is closed until then. |
The Arduino Nano drives IN at 5 V and the module’s own transistor carries the coil current, so the pin only supplies a few milliamps. The simulated relay triggers on HIGH; many blue modules trigger on LOW, set by the part’s trigger property.
Pins to leave alone on the Arduino Nano
A6 and A7 are analog only: pinMode(A6, OUTPUT) does nothing and digitalRead(A7) is not there to call. D0 and D1 are the USB serial port.
On a real bench
The Nano plugs into the breadboard itself, straddling the center channel, so the Relay goes in a few columns along and every connection is a short jumper. The silkscreen labels its pins D2 to D13 and A0 to A7; in code D2 is simply 2. A Nano clone with a CH340 USB chip needs that driver on a real computer.
The code
The sketch the circuit above runs. Open it in the editor, change a line and press Run: it compiles in your browser.
const int RELAY_PIN = 2; // IN, pin 2
void setup() {
Serial.begin(9600);
pinMode(RELAY_PIN, OUTPUT);
digitalWrite(RELAY_PIN, LOW); // released at start
}
void loop() {
digitalWrite(RELAY_PIN, HIGH); // pull in: COM to NO
Serial.println("Relay on");
delay(1000);
digitalWrite(RELAY_PIN, LOW); // release: COM back to NC
Serial.println("Relay off");
delay(1000);
}
digitalWrite(RELAY_PIN, HIGH) turns on the module’s transistor, which energizes the coil and pulls the arm from NC over to NO about 10 ms later. LOW lets it fall back.
The relay is off at the start because setup() writes LOW before anything else. Do the same in a real project, so the load does not flick on while the board boots.
Serial.begin(9600) opens the serial monitor. Serial is the USB port, as on the Uno; a clone with a CH340 chip needs that driver on a real computer, which the simulator does not.
Common mistakes with the Relay on the Arduino Nano
Active low modules
Many cheap relay boards switch when IN goes LOW, so the sketch seems inverted and the relay is on at boot. Check the board, and in the editor set the relay’s trigger property to low to match.
Driving a coil straight from a pin
A bare relay coil wants 70 mA or more and kicks back a voltage spike when it releases. On a module the transistor and the flyback diode are already there; a bare relay needs both, and never a direct pin.
Switching mains without care
The contacts are rated for mains, but the board and the screw terminals are not a safe enclosure. Learn on a 12 V lamp or a motor, and leave mains to a properly rated, enclosed module.
Questions and answers
Can I simulate a relay with an Arduino Nano?
Yes. The circuit at the top of this page is an Arduino Nano with a relay module, running in your browser on a simulated ATmega328P. The simulated relay has a pull-in and release time, and its contacts really connect COM to NO or NC, so a lamp wired through it switches. Press Run it in the editor to change the wiring or the code; it is free and needs no account.
Can the pin power the relay?
No: a pin gives about 20 mA and the coil wants more. The module’s transistor does the switching; the pin only drives the transistor.
What do NO and NC mean?
Normally open and normally closed. With the coil off, COM is connected to NC; with it on, COM is connected to NO. Wire a load to NO to have it off until the relay switches.
How fast can a relay switch?
A few times a second at most. It takes about 10 ms to pull in and its contacts wear with every click, so for anything faster, or for dimming, use a MOSFET.
Build your own Relay project
Open this circuit in the editor, change the wiring or the code, and keep your version in a free account.