The ATMEGA165PV-8AUR is a microcontroller unit (MCU) manufactured by Microchip Technology. It belongs to the ATmega series of AVR 8-bit microcontrollers, which are widely used in various embedded systems and applications due to their high performance, low power consumption, and ease of use.
Description:
The ATMEGA165PV-8AUR is a high-performance, low-power 8-bit microcontroller based on the AVR enhanced RISC architecture. It features 16 KB of in-system programmable Flash memory for storing the program code, 1 KB of EEPROM, and 1 KB of SRAM. The device operates at a maximum frequency of 16 MHz and is available in an 8-pin QFN package.
Features:
- 16 KB of In-System Programmable Flash memory with read-while-write capability
- 1 KB of EEPROM
- 1 KB of SRAM
- 23 general-purpose I/O lines
- 32 general-purpose working registers
- Nested interrupt controller with 16 levels of interrupt priority
- On-chip debug support with JTAG and SPI interface
- Two 8-bit timers/counters with 8-bit resolution and independent prescaling
- One 16-bit timer/counter with 16-bit resolution and independent prescaling
- Real-time clock with calendar
- 8-channel, 10-bit analog-to-digital converter (ADC)
- Programmable watchdog timer with separate prescaling
- Two Universal Synchronous Asynchronous Receiver Transmitters (USARTs)
- SPI and I2C serial interfaces
- Power-on reset and Brown-out detection
- Three software selectable power saving modes
Applications:
The ATMEGA165PV-8AUR is suitable for a wide range of applications due to its versatile features and low power consumption. Some common applications include:
- Industrial control and automation systems
- Home automation and smart appliances
- Medical equipment and devices
- Portable electronics and battery-powered devices
- Data acquisition and signal processing systems
- Telecommunication systems and devices
- Automotive electronics and control modules
- Security systems and access control devices
- Consumer electronics and gadgets
- Robotics and IoT devices
The ATMEGA165PV-8AUR's combination of performance, memory, and low power consumption makes it an ideal choice for a variety of embedded applications where space and energy efficiency are critical factors.