Microchip Technology's AT90USB1287-MU: A Versatile Microcontroller
The AT90USB1287-MU is a high-performance, low-power AVR microcontroller from Microchip Technology, designed to provide a perfect solution for a wide range of applications. This microcontroller is part of the USB AVR family and is well-suited for projects that require full-speed USB connectivity and substantial computing power.
Key Features:
- Advanced RISC Architecture: With 128 KB of in-system self-programmable flash, the AT90USB1287-MU boasts a powerful 8-bit AVR microcontroller that executes powerful instructions in a single clock cycle. This capability ensures optimal performance in applications requiring high-level processing power.
- USB 2.0 Full-speed/Low Speed Device Module: The built-in USB module supports data transfer rates of up to 12 Mbit/s, making it ideal for USB-based applications that need to interface with computers or other USB host devices.
- Extensive Memory: Alongside its flash memory, it offers 4 KB of EEPROM and 8 KB SRAM, providing ample space for data storage and efficient operation.
- Peripheral Features: It includes a variety of peripherals such as timers, serial communication (USART), a 10-bit ADC with 8 channels, and more, enabling a broad range of functionality for embedded systems.
- Power Efficiency: The device operates between 2.7-5.5 volts, ensuring low-power consumption, which is crucial for battery-operated and portable devices.
- Package: The microcontroller comes in a 64-lead QFN (Quad Flat No-lead) package, offering a compact footprint for space-constrained applications.
Applications:
The AT90USB1287-MU is highly versatile and can be used in various applications, including:
- USB peripheral development
- Embedded control systems
- Industrial automation
- Consumer electronics
- Medical devices
- Automotive applications
With its robust feature set and USB connectivity, the AT90USB1287-MU from Microchip Technology is an excellent choice for engineers and designers looking to develop advanced and reliable embedded systems.