The Arduino UNO R4 Minima is the simplest way to get the Renesas RA4M1 architecture in the traditional UNO form factor.
It has no ESP32-S3, no Wi-Fi, no Bluetooth, no LED matrix and no Qwiic connector. Instead, it focuses on the 48 MHz RA4M1, 5 V logic, native USB, higher-resolution ADC, true DAC, CAN controller, RTC and integrated op-amp.
UNO R4 Minima Specifications
| Feature | UNO R4 Minima |
|---|---|
| MCU | Renesas RA4M1, Arm Cortex-M4 |
| Clock | 48 MHz |
| Logic voltage | 5 V |
| Flash | 256 kB |
| SRAM | 32 kB |
| Data memory | 8 kB |
| Digital I/O | 14 |
| Analog inputs | 6 |
| ADC | Up to 14 bit |
| DAC | 12-bit on A0 |
| CAN | Classic CAN controller |
| RTC | Built in |
| USB | Native USB-C |
Digital Pinout
| Pin | Main functions |
|---|---|
| D0 | RX, GPIO |
| D1 | TX, GPIO |
| D2 | GPIO, interrupt |
| D3 | GPIO, PWM, interrupt |
| D4 | GPIO, CAN TX |
| D5 | GPIO, PWM, CAN RX |
| D6 | GPIO, PWM |
| D7 | GPIO |
| D8 | GPIO |
| D9 | GPIO, PWM |
| D10 | GPIO, PWM, SPI CS |
| D11 | GPIO, PWM, SPI COPI/MOSI |
| D12 | GPIO, SPI CIPO/MISO |
| D13 | GPIO, SPI SCK, LED_BUILTIN |
PWM
The official PWM header pins are:
|
1 2 3 4 5 6 7 8 9 |
D3 D5 D6 D9 D10 D11 |
analogWrite() defaults to an 8-bit value range, while the RA4M1 timers support higher resolution through analogWriteResolution().
Analog Inputs
| Pin | Functions |
|---|---|
| A0 | ADC, DAC |
| A1 | ADC, OPAMP+ |
| A2 | ADC, OPAMP- |
| A3 | ADC, OPAMP output |
| A4 | ADC, SDA |
| A5 | ADC, SCL |
14-Bit ADC
The R4 Minima defaults to 10-bit reads for compatibility, but you can request 12- or 14-bit results:
|
1 2 3 4 5 |
analogReadResolution(14); uint16_t value = analogRead(A0); |
At 14 bits, the numerical range is 0–16383. Resolution is not the same thing as absolute measurement accuracy, so reference voltage, source impedance and noise still matter.
12-Bit DAC on A0
A0 can output a true analog voltage from the RA4M1 DAC.
|
1 2 3 4 5 |
analogWriteResolution(12); analogWrite(A0, 2048); |
This is a true DAC output rather than PWM.
Integrated Op-Amp
|
1 2 3 4 5 6 |
A1 = OPAMP + A2 = OPAMP - A3 = OPAMP OUT |
This peripheral can be used for analog signal conditioning, active filtering and buffering.
I²C
|
1 2 3 4 5 |
A4 / SDA A5 / SCL |
Use Wire.
SPI
|
1 2 3 4 5 6 7 |
D10 = CS D11 = COPI / MOSI D12 = CIPO / MISO D13 = SCK |
The traditional SPI header is also provided for shield compatibility.
UART
|
1 2 3 4 5 |
D0 = RX D1 = TX |
Use Serial1 for the external UART. The native USB connection uses Serial, so USB serial and the physical UART are independent.
CAN Bus
UNO R4 Minima has a real CAN controller inside the RA4M1.
|
1 2 3 4 5 |
D4 = CAN TX D5 = CAN RX |
An external CAN transceiver is still required. The MCU pins are logic-level controller signals, not CANH/CANL.
RTC
The RA4M1 contains a real-time clock capable of maintaining calendar time and generating alarms. Arduino provides an RTC library for R4 boards.
The RTC is useful for data loggers, scheduled control, timestamps and low-power wake-up applications.
Native USB-C
UNO R4 Minima uses native USB from the RA4M1. This enables:
- programming;
- USB serial;
- keyboard/mouse HID;
- custom USB applications supported by the core.
5 V Logic
The board’s standard digital I/O operates at 5 V. This makes it much easier to use with older UNO shields and legacy 5 V modules than most modern 32-bit boards.
However, 5 V compatibility does not mean every old library is compatible. Direct AVR register code for:
|
1 2 3 4 5 6 7 |
PORTB DDRB TCCR1A TIMSK1 |
will not work on the RA4M1.
Memory Upgrade over UNO R3
| Memory | UNO R3 | UNO R4 Minima |
|---|---|---|
| Flash | 32 kB | 256 kB |
| SRAM | 2 kB | 32 kB |
| Non-volatile data | 1 kB EEPROM | 8 kB data memory |
Power
Arduino documents the VIN input range as approximately 6–24 V. USB-C must be powered at 5 V.
When using higher VIN voltages, remember that onboard power conversion still has thermal/current limits. Motors and large servos should use their own suitable supply.
R4 Minima vs R4 WiFi
The Minima and WiFi boards share the RA4M1 application architecture and most header functions.
UNO R4 WiFi adds:
- ESP32-S3 wireless connectivity;
- 12×8 LED matrix;
- 3.3 V Qwiic connector;
- more complicated USB/bridge architecture.
Minima is simpler when you do not need wireless connectivity.
Quick Reference
|
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 |
UART D0 RX D1 TX CAN D4 TX D5 RX PWM D3 D5 D6 D9 D10 D11 SPI D10 CS D11 COPI/MOSI D12 CIPO/MISO D13 SCK I2C A4 SDA A5 SCL ADC A0-A5 up to 14 bit DAC A0 12 bit OPAMP A1 + A2 - A3 OUT USB native USB-C Logic 5 V |
Final Thoughts
The UNO R4 Minima is a straightforward 32-bit upgrade path for classic UNO projects when you want to retain 5 V logic and shield compatibility.
Its most useful hardware upgrades are not just CPU speed. The 14-bit ADC, true DAC, CAN controller, RTC, native USB and integrated op-amp make it a substantially more capable embedded controller than the UNO R3 while keeping the familiar UNO physical format.