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Silicon Labs EFM32TG210F32-D-QFN32R High-performance, Low-Power Microcontroller Based On ARM Cortex-M3
Latest company news about Silicon Labs EFM32TG210F32-D-QFN32R High-performance, Low-Power Microcontroller Based On ARM Cortex-M3

Mingjiada Electronics supplies the EFM32TG210F32-D-QFN32R, a high-performance, low-power microcontroller based on the ARM Cortex-M3 core, specifically designed for embedded applications.

 

EFM32TG210F32-D-QFN32R Product Description
The Silicon Labs EFM32TG210F32-D-QFN32R is a high-performance, low-power microcontroller based on the ARM Cortex-M3 core, offering exceptional processing capabilities and ultra-low power consumption, making it ideal for applications with stringent power requirements. The EFM32TG210F32-D-QFN32R finds widespread application in smart home devices, IoT devices, portable medical devices, and more, making it an ideal choice for achieving efficient, energy-saving designs.

 

EFM32TG210F32-D-QFN32R Product Features
High-Performance Core: The EFM32TG210F32-D-QFN32R uses the ARM Cortex-M3 core, offering a maximum operating frequency of 32MHz, enabling rapid execution of complex computational tasks and meeting the demands of applications with high real-time requirements.
Low-Power Design: The EFM32TG210F32-D-QFN32R offers multiple low-power modes, such as EM0 (run mode), EM1 (sleep mode), and EM2 (deep sleep mode). In deep sleep mode, current consumption is below 900nA, and the transition time from deep sleep mode to full-speed operation is less than 2μs, effectively extending the battery life of battery-powered devices.
Rich peripheral interfaces: The EFM32TG210F32-D-QFN32R integrates multiple UART, I2C, and SPI interfaces, supporting flexible data transmission requirements and facilitating communication with various external devices such as sensors and displays.
Powerful analogue functionality: The EFM32TG210F32-D-QFN32R features a 12-bit SAR ADC with up to 16 configurable input channels and support for multiple sampling rates, enabling precise analogue signal acquisition for accurate monitoring of environmental parameters, physiological signals, and more.
Efficient storage resources: The EFM32TG210F32-D-QFN32R provides 32KB of flash memory and 4KB of SRAM, meeting the storage requirements of most embedded applications while ensuring fast data read/write and storage.
Outstanding Security: The EFM32TG210F32-D-QFN32R features a hardware encryption accelerator and a unique ID register, ensuring the security of data transmission and unique identification, effectively protecting user privacy and device security.
Compact package: The EFM32TG210F32-D-QFN32R uses a QFN32 package, which is compact in size with 32 pins, making it suitable for space-constrained design environments and easily applicable to miniaturised electronic products.

 

Parameters
Model:
EFM32TG210F32-D-QFN32R
Core: ARM Cortex-M3
Clock speed: 32MHz
Memory: 32KB Flash, 4KB RAM
Package: QFN32
Operating voltage: 1.8V to 3.8V
Temperature range: -40°C to +85°C
Peripherals: 12-bit ADC, timers, comparators, etc.

 

Applications
The
EFM32TG210F32-D-QFN32R is suitable for smart sensor nodes, enabling efficient data acquisition.
In wearable devices, the EFM32TG210F32-D-QFN32R's low-power characteristics significantly enhance battery life.
The EFM32TG210F32-D-QFN32R can be used in industrial automation control to ensure stable operation.
In the smart home sector, the EFM32TG210F32-D-QFN32R supports multiple communication protocols, simplifying development.
The EFM32TG210F32-D-QFN32R is also suitable for battery-powered portable devices such as remote controls and medical instruments.

 

The EFM32TG210F32-D-QFN32R offered by Mingjiada Electronics, with its high performance, low power consumption, and compact design, is an optimal solution for embedded development. Whether for IoT or industrial applications, the EFM32TG210F32-D-QFN32R can meet stringent requirements.

 

If you are interested in the EFM32TG210F32-D-QFN32R or have related requirements, please contact:
Phone: +86 13410018555 (Mr. Chen)
Email: sales@hkmjd.com
Homepage:
www.integrated-ic.com

Pub Time : 2025-06-30 10:24:05 >> News list
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