Microchip Technology's ATMEGA328PB-MU is a low-power, high-performance 8-bit microcontroller unit (MCU) based on the enhanced AVR RISC architecture. It is designed for a wide range of applications that require high computational power, fast execution, and low power consumption.
Description:
The ATMEGA328PB-MU is a member of the AVR family of microcontrollers and features an 8MHz internal oscillator, 32 KB of In-System Programmable Flash memory, 2 KB of In-System Programmable SRAM, and 1 KB of In-System Programmable EEPROM. The device operates at a supply voltage range of 1.8V to 5.5V and has a wide operating temperature range of -40°C to +85°C.
Features:
- Enhanced AVR RISC architecture for fast execution and high code density
- 32 KB of In-System Programmable Flash memory
- 2 KB of In-System Programmable SRAM
- 1 KB of In-System Programmable EEPROM
- 8MHz internal oscillator with calibration
- I/O lines with optional internal pull-up resistors
- Nested interrupt controller with 32-level priority
- On-chip debug system with JTAG interface
- Power-saving features, including sleep, power-down, and standby modes
- Internal and external interrupts
- On-chip voltage reference and temperature sensor
- Support for SPI, USART, and TWI/I2C communication protocols
- Programmable watchdog timer
- PWM channels with phase-correct and frequency options
- Compatibility with the Arduino Uno R3 development board
Applications:
The ATMEGA328PB-MU is suitable for a wide range of applications, including but not limited to:
- Industrial control and automation systems
- Home automation and smart home devices
- Portable and wearable electronics
- Medical devices and equipment
- Consumer electronics, such as gaming controllers and remote controls
- IoT devices and sensors
- Robotics and autonomous vehicles
- Data acquisition and signal processing systems
- Motor control and power management applications
- Embedded systems in automotive and aerospace industries
The ATMEGA328PB-MU's versatility, performance, and low-power capabilities make it an excellent choice for a variety of embedded applications where high computational power and efficient power management are required.