STMicroelectronics

The X-NUCLEO-DRP1M1 expansion board from STMicroelectronics enables designers to evaluate the features of the TCPP03-M20 USB Type-C® Power Delivery (PD) controller, including the ability to protect the bus- and supply-voltage lines in dual-role power (DRP) applications.

The expansion board can be stacked on top of any STM32 Nucleo-64 board which has a USB PD peripheral embedded in its microcontroller.

The X-NUCLEO-DRP1M1 demonstrates dead battery and sink operations, an integrated ST715PU33R linear regulator supplies the associated STM32 Nucleo development board. It also performs USB Type-C source operations when a compatible external source is connected to the board. In addition, the board supports dual role data functionality for sourcing devices.

The X-NUCLEO-DRP1M1 complies with the USB Type-C and USB PD 3.1 specifications for the standard power range, and is USB-IF certified as a 100 W DRP solution supporting a programmable power supply.

The companion X-CUBE-TCPP software package contains application examples for NUCLEO-G071RB and NUCLEO-G474RE development boards. These can be ported to other development boards that have USB Type-C PD-enabled MCUs.

STMicroelectronics

The NUCLEO-N657X0-Q evaluation board from STMicroelectronics provides a convenient platform for proof-of-concept and prototype development using the STM32N6 series of microcontrollers, the first STM32 to include the Neural-ART Accelerator, a neural processing unit (NPU). With the on-board NPU, the STM32N6 provides 600 times more machine-learning performance than a high-end STM32 MCU today.  

STMicroelectronics

The STEVAL-PMIC25V1 from STMicroelectronics is a power management IC (PMIC) evaluation board for the highly integrated STPMIC25. This PMIC manages the power requirements of the core, memory and interfaces of the STM32MP2x series microprocessors and other applications microprocessors.

The kit includes a USB dongle, which provides access via I2C interface to the configuration registers of the STPMIC25, where voltage settings, power sequences, protection thresholds and other parameters can be set.

The board includes header connectors for external access to the embedded regulators and switches in the PMIC, as well as internal routing via jumpers to satisfy any physical configuration requirements.

The passive components on the board are chosen for optimal performance across most operating conditions. Three push buttons and digital I/Os allow the engineer to trigger the digital controls of the PMIC.

STMicroelectronics

The STEVAL-MKI250KA demonstration kit from STMicroelectronics comprises: 

  • STEVAL-MKI250A biosensor board, which provides access to the complete pinout of the ST1VAFE3BX vertical analog front-end (vAFE) together with the required decoupling capacitors on the power-supply lines
  • STEVAL-MKE006A and STEVAL-MKE007A electrode boards

An ECG cable with a 3.5 mm phone jack can be plugged in when the STEVAL-MKE007A electrode board is used.

The STEVAL-MKI250KA kit is compatible with the STEVAL-MKI109V3 and STEVAL-MKI109D motherboards.

The kit includes a high-performance 32-bit microcontroller functioning as a bridge between the sensor and a PC, on which it is possible to use the downloadable MEMS Studio graphical user interface software, or dedicated software routines for customized applications.

STMicroelectronics

The STEVAL-MKI249KA demonstration board is a kit made up of an ad hoc PCB, mounting the ST1VAFE6AX, a biosensor with vertical analog front-end (vAFE) for biopotential signals and 6-axis inertial measurement unit (IMU) with AI and sensor fusion.

STMicroelectronics

The STEVAL-MKI250KA demonstration board is a kit made up of an ad hoc PCB, mounting: the ST1VAFE3BX, a biosensor with vertical analog front-end (vAFE) for biopotential signals and ultralow power accelerometer with AI and antialiasing.

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