Manufacturer Part Number
EFM32HG308F64G-A-QFN24
Manufacturer
silicon-labs
Introduction
The EFM32HG308F64G-A-QFN24 is a high-performance, low-power 32-bit ARM Cortex-M0+ microcontroller from Silicon Labs. It offers a range of advanced features and capabilities, making it well-suited for a variety of embedded applications.
Product Features and Performance
32-bit ARM Cortex-M0+ core running at 25MHz
64KB FLASH program memory
8KB RAM
Variety of communication interfaces including I2C, SPI, UART, and USB
Integrated peripherals such as DMA, PWM, and watchdog timer
Low-power operation with support for multiple power modes
Product Advantages
Excellent energy efficiency for battery-powered applications
Robust set of peripherals and connectivity options
Scalable performance and flexibility for diverse embedded designs
Seamless integration with Silicon Labs' development tools and ecosystem
Key Reasons to Choose This Product
Powerful yet energy-efficient 32-bit microcontroller architecture
Comprehensive peripheral set and communication interfaces
Easy-to-use development tools and extensive ecosystem support
Proven reliability and long-term availability from a trusted semiconductor manufacturer
Quality and Safety Features
Industrial temperature range support (-40°C to 85°C)
Robust power supply and brown-out detection
Comprehensive set of safety and security features
Compatibility
The EFM32HG308F64G-A-QFN24 is compatible with a wide range of embedded systems and can be easily integrated into various application environments.
Application Areas
This microcontroller is well-suited for a variety of embedded applications, including:
Industrial automation and control systems
Wearable and IoT devices
Home and building automation
Sensor and control networks
Battery-powered and low-power designs
Product Lifecycle
The EFM32HG308F64G-A-QFN24 is currently discontinued. However, Silicon Labs offers several equivalent or alternative models that may be suitable for your needs. Please contact our website's sales team for more information and product availability.