STMicroelectronics STM32F410 microcontroller

Wednesday, 23 December, 2015 | Supplied by: STMicroelectronics Pty Ltd

STMicroelectronics STM32F410 microcontroller

STMicroelectronics’ STM32F410 microcontrollers, supported by the NUCLEO-F410RB development board, establish a small, low-power entry point to the high-performance STM32 F4 series.

The microcontroller features the ARM Cortex-M4F core, giving performance of 125 DMIPS and 339 EEMBC CoreMark at 100 MHz. Power-conscious STM32 Dynamic Efficiency features, such as ST’s ART Accelerator and voltage scaling, help drive dynamic power down to 89 µA/MHz. STOP current of just 6 µA makes the product’s performance accessible for applications such as wearables, IoT devices, sensor hubs, building automation, personal medical devices and smartphones.

Engineered for tiny package sizes, the device has 64 to 128 KB Flash and 32 KB SRAM, and features a strong peripheral set with up to six timers including motor-control and 32-bit/100 MHz timers. Communication ports include SPI, I²C, I²S and USART plus an ISO 7816 interface, as well as a 12-bit DAC. The product is available in UFQFPN48 or LQFP64 packages, or a 2.55 x 2.58 mm 36-bump WLCSP.

Designers of sensing applications can take advantage of the microcontroller’s support for Batch Acquisition Mode (BAM), which enables efficient use of the product’s power-management modes by capturing sensor data directly into SRAM while the CPU and Flash remain off. The device also introduces a RUN mode that allows Flash to be powered down for optimal power savings.

For more information: http://www.st.com/stmf410-pr.

Online: www.st.com
Phone: 02 9158 7200
Related Products

Quectel HCM511S MCU Bluetooth module

The Quectel HCM511S MCU Bluetooth module features enhanced receiver sensitivity and a maximum...

ADLINK cExpress-ASL COM express module

The ADLINK cExpress-ASL COM express module is integrated with Intel UHD graphics with up to 32...

Sensirion SFC6000D mass flow controller

The Sensirion SFC6000D mass flow controller is designed to be small and light, thereby allowing...


  • All content Copyright © 2024 Westwick-Farrow Pty Ltd