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ATMEGA1280-16AU

  • In Stock: 20900
  • Available: 8539

Reference Price(In US Dollars)

QtyUnit PriceExt.Price
1+US $14.89840US $14.90
10+US $13.40856US $134.09
30+US $10.42888US $312.87
100+US $8.56658US $856.66
500+US $8.19412US $4097.06
1000+US $7.44920US $7449.20

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Description

The ATMEGA1280-16AU is a high-performance, low-power 8-bit AVR microcontroller manufactured by Microchip Technology. It is part of the AVR ATmega series, known for its versatility, ease of use, and robust performance, making it suitable for a wide range of embedded applications.

Key Features:

  • High-Performance AVR Core: The ATMEGA1280-16AU features an advanced AVR 8-bit RISC architecture with Harvard architecture, offering high computational throughput and efficient instruction execution.

  • High-Speed Operation: With a maximum CPU clock speed of 16 MHz, this microcontroller can execute instructions swiftly, enabling rapid response times in real-time applications.

  • Large Flash Memory: It incorporates a generous amount of flash memory (128 KB), allowing ample space for program storage, firmware updates, and data logging in embedded systems.

  • RAM and EEPROM: The microcontroller includes 8 KB of SRAM for data storage and 4 KB of EEPROM for non-volatile data storage, facilitating data manipulation and retention even during power-off conditions.

  • Peripheral Integration: Equipped with a rich set of integrated peripherals, including UART, SPI, I2C, timers/counters, PWM channels, analog-to-digital converters (ADC), and digital-to-analog converters (DAC), enabling versatile connectivity and functionality.

  • Multiple Communication Interfaces: Supports various communication protocols such as USART, SPI, and I2C, facilitating seamless interfacing with external devices, sensors, and communication networks.

  • Analog-to-Digital Conversion: Features built-in ADC modules with multiple channels and high resolution, enabling accurate analog signal acquisition and processing in data acquisition and measurement applications.

  • Enhanced Interrupt Handling: Provides flexible interrupt handling capabilities, allowing efficient multitasking and event-driven programming, essential for real-time systems and responsive applications.

  • Low-Power Operation: Incorporates power-saving features such as sleep modes, idle modes, and power-down modes to minimize power consumption, prolonging battery life in battery-powered applications.

  • Wide Operating Voltage Range: Operates over a wide voltage range (1.8V to 5.5V), providing compatibility with various power sources and voltage levels commonly encountered in embedded systems.

Applications:

  • Embedded Systems: Suitable for a broad range of embedded applications including industrial automation, consumer electronics, home automation, and automotive electronics.

  • Data Acquisition Systems: Ideal for building data acquisition systems, data loggers, and instrumentation devices requiring high-speed data processing and analog signal acquisition.

  • IoT Devices: Used in Internet of Things (IoT) devices, sensor nodes, and smart devices for data processing, communication, and control functions.

  • Robotics: Employed in robotics and automation projects for motor control, sensor interfacing, and decision-making tasks.

  • Instrumentation and Control: Applied in instrumentation and control systems for measurement, monitoring, and regulation of physical parameters in industrial and scientific environments.

  • Consumer Electronics: Integrated into various consumer electronic products such as smart appliances, audio/video equipment, gaming consoles, and wearable devices for intelligent control and user interaction.

  • Networking Devices: Utilized in networking equipment, routers, and gateways for protocol handling, data processing, and network management functions.

  • Educational Purposes: Widely used in educational institutions and hobbyist projects for learning embedded systems programming, microcontroller interfacing, and electronic design.

Alternatives

Functional Equivalent (FE) materials, including Fused Filament Fabrication (FFF) form, assembly, and functionally compatible substitute materials.

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