STM32 Schematics
STM32 is a family of 32-bit microcontrollers developed by STMicroelectronics. These microcontrollers are widely used in a variety of applications, including consumer electronics, automotive, industrial control, and Internet of Things (IoT) devices. One of the key features of STM32 microcontrollers is their high performance and low power consumption, making them suitable for use in battery-powered and energy-sensitive applications. They also have a wide range of peripherals and interfaces, making them highly flexible and adaptable for different use cases. Flux.ai has the world's largest community-driven public library of STM32 microcontrollers, with a wide range of footprints, symbols, datasheets, and simulation models available. This library is a valuable resource for engineers and designers working with STM32 microcontrollers, and helps to accelerate the development process by providing access to pre-tested and verified components.
Pet Tracker Reference Design
This is a Pet Tracker Reference Design based on STM32L4. Tracker connects with network by SIM800L module connected to the STM. Also MCU connected to the GPS by uart and send data to server #STM32 #GPS #G4 #G3 #LTE #IoT #Tracker #referenceDesign #edge-computing #edgeComputing #stm #template #reference-design
0 Uses0 StarsPet Tracker Reference Design 9HKu
This is a Pet Tracker Reference Design based on STM32L4. Tracker connects with network by SIM800L module connected to the STM. Also MCU connected to the GPS by uart and send data to server #STM32 #GPS #G4 #G3 #LTE #IoT #Tracker #referenceDesign #edge-computing #edgeComputing #stm #template #reference-design
0 Uses0 StarsPet Tracker Module fNV7
This is a Pet Tracker module based on STM32L4. Tracker connects with network by SIM800L module connected to the STM. Also MCU connected to the GPS by uart and send data to server #STM32 #GPS #G4 #G3 #LTE #IoT #Tracker #reusable #module #edge-computing #edgeComputing #stm #sublayout
0 Uses0 StarsPet Tracker Module 9f1t
This is a Pet Tracker module based on STM32L4. Tracker connects with network by SIM800L module connected to the STM. Also MCU connected to the GPS by uart and send data to server #STM32 #GPS #G4 #G3 #LTE #IoT #Tracker #reusable #module #edge-computing #edgeComputing #stm #sublayout
0 Uses0 StarsPet Tracker Module
This is a Pet Tracker module based on STM32L4. Tracker connects with network by SIM800L module connected to the STM. Also MCU connected to the GPS by uart and send data to server #STM32 #GPS #G4 #G3 #LTE #IoT #Tracker #reusable #module #edge-computing #edgeComputing #stm #sublayout
0 Uses0 StarsOuter Blue Mr. Fusion
This project actually has two STM32 blue pill microcontrollers where one act as a master and other act as a slave. The next step is the slave STM32 is connected to a MCP9808 temperature sensor and it measures the air temperature and is connected to the slave STM32 microcontroller using I2C protocol. Then the measured temperature data is send from slave to master using two MCP2551 CAN modules. All this connections are done in a breadboard.
0 Uses0 StarsPet Tracker Reference Design
This is a Pet Tracker Reference Design based on STM32L4. Tracker connects with network by SIM800L module connected to the STM. Also MCU connected to the GPS by uart and send data to server #STM32 #GPS #G4 #G3 #LTE #IoT #Tracker #referenceDesign #edge-computing #edgeComputing #stm #template #reference-design
0 Uses0 StarsPet Tracker Reference Design f778
This is a Pet Tracker Reference Design based on STM32L4. Tracker connects with network by SIM800L module connected to the STM. Also MCU connected to the GPS by uart and send data to server #STM32 #GPS #G4 #G3 #LTE #IoT #Tracker #referenceDesign #edge-computing #edgeComputing #stm #template #reference-design
0 Uses0 StarsPet Tracker Reference Design
This is a Pet Tracker Reference Design based on STM32L4. Tracker connects with network by SIM800L module connected to the STM. Also MCU connected to the GPS by uart and send data to server #STM32 #GPS #G4 #G3 #LTE #IoT #Tracker #referenceDesign #edge-computing #edgeComputing #stm #template #reference-design
0 Uses0 StarsDriver circuit
designed an LED driver circuit using an STM32 microcontroller to control 12 RGOY LEDs. By carefully considering the forward voltage and current requirements of the LEDs, calculating appropriate current-limiting resistors based on the 3.3V supply voltage, and connecting the LEDs to GPIO pins with their respective resistors, you've created a functional circuit. Your programming skills were then applied to the microcontroller, enabling the control of LED brightness through PWM signals. Through testing and debugging, you ensured the circuit's proper functionality, showcasing your ability to engineer a versatile and efficient LED driver system tailored to your specific needs.
0 Uses0 Stars