Microchip Technology's AVR128DB28-E/SP Microcontroller
The AVR128DB28-E/SP is a high-performance microcontroller from Microchip Technology, designed to offer a perfect blend of power efficiency and processing capability. This device is a part of the AVR DB family of microcontrollers, which are renowned for their ease of use and advanced features. The AVR128DB28-E/SP is particularly suitable for a wide range of applications, including industrial control systems, automotive electronics, IoT devices, and consumer electronics.
At the heart of the AVR128DB28-E/SP lies a powerful 128KB of in-system self-programmable flash memory, along with 16KB SRAM and 512 Bytes of EEPROM. This ample memory provision allows for robust application development without the need for external memory components, thereby simplifying design and reducing system costs.
The microcontroller operates at a voltage range of 1.8V to 5.5V, ensuring flexibility in power supply design and making it ideal for battery-operated applications. Its up to 24 MHz of internal oscillator provides the speed necessary for demanding tasks, while its power-saving modes help to extend battery life in portable devices.
The AVR128DB28-E/SP features a 28-pin SPDIP (Single Plastic Dual In-line Package) which is easy to handle and integrate into various PCB designs. It also includes a range of peripherals, such as multiple 10-bit ADCs, DACs, comparators, and multiple communication interfaces like SPI, I2C, and UART. These built-in peripherals provide the versatility needed to interface with a wide array of sensors, actuators, and communication modules.
For developers, Microchip Technology offers comprehensive support through its Integrated Development Environment (IDE) and software libraries, which help to accelerate the development process. The device is also supported by the AVR-GCC compiler, making it accessible to a broad community of developers familiar with AVR programming.
In summary, the AVR128DB28-E/SP microcontroller is a feature-rich and versatile solution that offers the perfect balance between performance and power consumption, making it an excellent choice for designers looking to create efficient and powerful embedded systems.