Industrial digital output expansion board based on IPS160HF for STM32 Nucleo
STM32 Nucleo runs MEMS and environmental sensor expansion board
Powerline communication expansion board for STM32 Nucleo, based on ST7580
Professional MEMS Tools: ST MEMS Adapter Board based on STM32F401VE and compatible with all ST MEMS adapters
Low-voltage three-phase brushless DC motor driver expansion board for STM32 Nucleo, based on STSPIN230
Wi-Fi expansion board for STM32 Nucleo, based on SPWF01SA module
The P-NUCLEO-IOD02A1 is an STM32 Nucleo pack composed of the X-NUCLEO-IOD02A1 and X-NUCLEO-IKS02A1 expansion boards stacked on the NUCLEO-L452RE development board.
Motion MEMS and microphone MEMS expansion board for STM32 Nucleo
24V smart power switch expansion board for STM32 Nucleo, based on VPS2535H
STM32 Power shield and Nucleo expansion board (UM2243) for power consumption measurement
Stepper motor driver expansion board for STM32 Nucleo, based on L6474
Common robotic arm controls are developed from CNC, emphasizing constant speed and stability in the motion process. Many controllers use hybrid PID for speed control, which generates great acceleration during the startup phase in order to quickly reach the set speed. Due to the solid state of the solid itself Stiffness, this drastic speed change is very effective for CNC machining scenarios or general solid handling scenarios. However, it will have a huge impact in liquid handling scenarios, so new control methods need to be proposed. This control method must control the acceleration
STM32 Nucleo-64 development board using STM32F334R8 MCU, supporting Arduino and ST morpho connections
STM32 Nucleo-32 development board using STM32F303K8 MCU, supporting Arduino connection
SPC584B-DISP: Discovery Kit featuring SPC58 4B Series MCU in eTQFP144 package