My initial idea for the "Badminton Training Device" project was to sense the form and intensity of the racket swing, whether it hit the badminton and where it was hit, etc., record the quality of all swings after a game, and combine it with the host computer to make a badminton shot. Play the practice analysis system. The MLC and FSM modules in LSM6DSOX can analyze and identify actions, which greatly reduces the data processing requirements of the MCU and can save resources to complete prompt or record functions.
This project uses LSM6DSOX high-performance sensor and LIS25BA high-precision bone conduction sensor to control the four-axis robotic arm. By combining FMS and MLC with LSM6DSOX, the robotic arm can grab and put down items. Through LIS25BA, the vibration can be recognized and the steering gear can be controlled to complete the corresponding actions.
he STEVAL-MKI218V1 is an adapter board designed to facilitate the evaluation of MEMS devices in the AIS2IH product family.
The STM32 Nucleo-64 board provides an affordable and flexible way for users to try out new concepts and build prototypes by choosing from the various combinations of performance and power consumption features, provided by the STM32 microcontroller.
STM32 Nucleo-64 development board using STM32G474RE MCU, supporting Arduino and ST morpho connections
Three-phase brushless DC motor driver expansion board for STM32 Nucleo, based on L6230
ST25R3916 based NFC reader expansion board for STM32 and STM8 Nucleo
The STEVAL-MKI220V1 is an adapter board designed to facilitate the evaluation of MEMS devices in the LPS27HHTW product family.
STM32L4 Discovery Kit including IoT nodes, low-power wireless solutions, BLE, NFC, SubGHz and Wi-Fi
Digital MEMS microphone expansion board based on MP34DT01-M for STM32 Nucleo
Motor Control Nucleo Kit with NUCLEO-G431RB and X-NUCLEO-IHM16M1
STM32 Nucleo-64 development board using STM32F446RE MCU, supporting Arduino and ST morpho connections
Motor Control Nucleo Kit with NUCLEO-F302R8 and X-NUCLEO-IHM07M1