• USB Security Token

    USB Security Token

    This design implements a USB security token powered by an STM32 microcontroller. The device is engineered for compactness and efficient PCB integration while ensuring robust security features. Key elements of the design include: - **Microcontroller Core:** A STM32F103T8U6 serves as the primary processing unit, handling USB communication and security protocols. - **USB Interface:** A USB-A plug provides connectivity to the host. Dedicated net portals ensure proper routing of the VBUS, D+, D–, and ground signals. - **Power Regulation:** A low-dropout regulator supplies a stable 3.3V operating voltage, ensuring low noise and proper current supply to the microcontroller and peripherals. - **Signal Conditioning and EMI Filtering:** An EMI filter is used to maintain signal integrity and reduce interference while preserving the security token’s functionality. - **Synchronous Elements:** A ceramic resonator is incorporated to provide a precise clock source for USB data transfer and microcontroller operations. - **Additional Components:** Surface-mount resistors, capacitors, and LED indicators are deployed to ensure proper conditioning, decoupling, and status feedback. Their compact 0402 packages facilitate a highly integrated design. - **Connectivity and Net Portals:** Custom net portals are used throughout the schematic to streamline connectivity and PCB layout, keeping the design modular and easy to modify. This USB security token is designed with industry-standard components and robust connectivity to ensure secure, reliable operation in portable security applications. #USBToken #STM32 #PCBDesign #SecurityTechnology #PortableSecurity #Microcontrollers #USBInterface #PowerRegulation #EMIProtection #CompactDesign

    jharwinbarrozo

    &

    yamilll

    253 Comments

    29 Stars


  • Flight Controller

    Flight Controller

    This is a custom flight controller based around a STM32F103C8T6. It contains a BMP280 to measure the altitude of a drone, an ICM-42688-P that contains an accelerometer and gyroscope for motion control. The input voltage should be 12V and is set up to work with a LiPo battery.

    hakeem02

    1 Star


  • Office Productivity Hub Reference Design

    Office Productivity Hub Reference Design

    This is an office productivity hub featuring an STM32F103C8T6 MCU, GC9A01A display driver, voltage regulator, capacitors, resistors, switches, USB-C, and SWD header. #referenceDesign #edge-computing #edgeComputing #stm #template #iot #stm32f1 #reference-design

    vasyl

    4 Comments


  • st-link example board

    st-link example board

    This is an ST-LINK programmer that works on the STM32F1 chip, has 2 connectors for SWD and UART programming #st-link #arm #stm32

    vasyl

    1 Comment


  • Office Productivity Hub Reference Design

    Office Productivity Hub Reference Design

    This is an office productivity hub featuring an STM32F103C8T6 MCU, GC9A01A display driver, voltage regulator, capacitors, resistors, switches, USB-C, and SWD header. #referenceDesign #edge-computing #edgeComputing #stm #template #iot #stm32f1 #reference-design

    alkatraz


  • Office Productivity Hub Reference Design 9AdX

    Office Productivity Hub Reference Design 9AdX

    This is an office productivity hub featuring an STM32F103C8T6 MCU, GC9A01A display driver, voltage regulator, capacitors, resistors, switches, USB-C, and SWD header. #referenceDesign #edge-computing #edgeComputing #stm #template #iot #stm32f1 #reference-design

    candelo


  • Office Productivity Hub Reference Design agNw

    Office Productivity Hub Reference Design agNw

    This is an office productivity hub featuring an STM32F103C8T6 MCU, GC9A01A display driver, voltage regulator, capacitors, resistors, switches, USB-C, and SWD header. #referenceDesign #edge-computing #edgeComputing #stm #template #iot #stm32f1 #reference-design

    quangdeptrai


  • STM32F107 custom board

    STM32F107 custom board

    this is a custom board using the MCU "STM32F107RBTx". the reason why i chose this MCU is because i wanted to implement circuits for ethernet communication, CAN communication and USB communication.

    taeho-cho

    10 Comments


  • gps tracker

    gps tracker

    A circuit for a gps tracker using stm32f103c8t6 and sim 808, that acquires and sends gps coordinates to a separate interfaced application. The circuit will be powered by a 12v dc battery so there a need for power regulation. there is a USB type micro B for code uploading.

    teamembedded

    &

    chipaz01
    decey01
    machodamola
    +2

    74 Comments


  • Variable Sapphire Proton Packs

    Variable Sapphire Proton Packs

    use STM32F103 BLUECHIP

    hawkeye

    &

    shreyaa

    50 Comments


  • CAN Slave Control Card Optimised

    CAN Slave Control Card Optimised

    General Purpose Control Card for STM32F103C8T6 (Bluepill) slave, with CANBUS interfacing.

    jaydee9192

    9 Comments


  • RF-ID lock reference design

    RF-ID lock reference design

    This project is an RF-ID lock circuit, complete with microcontroller (MCU). It features an RC522 RFID reader for identification, controlled by an STM32F103C8T6 MCU. The structure also includes an OLED display, lock circuit, and user interface switches. Designed to operate with a AAA battery power source. #MCU #referenceDesign #simple-embedded #stm #project #STM32 #lock #OLED #template #reference-design

    hatzycb

    &

    cam_rose_ratts_tyerel604049

    3 Comments


  • CAN Slave Control Card + Encoder - Noor ul Iman d423 f1d4

    CAN Slave Control Card + Encoder - Noor ul Iman d423 f1d4

    General Purpose Control Card for STM32F103C8T6 (Bluepill) slave, with CANBUS interfacing.

    fatimahr2304

    1 Comment


  • RF-ID lock reference design ae50

    RF-ID lock reference design ae50

    This project is an RF-ID lock circuit, complete with microcontroller (MCU). It features an RC522 RFID reader for identification, controlled by an STM32F103C8T6 MCU. The structure also includes an OLED display, lock circuit, and user interface switches. Designed to operate with a AAA battery power source. #MCU #referenceDesign #simple-embedded #stm #project #STM32 #lock #OLED #template #reference-design

    1 Comment


  • CAN Slave Control Card 12qS

    CAN Slave Control Card 12qS

    General Purpose Control Card for STM32F103C8T6 (Bluepill) slave, with CANBUS interfacing.

    wasay312


  • CAN Slave Control Card

    CAN Slave Control Card

    General Purpose Control Card for STM32F103C8T6 (Bluepill) slave, with CANBUS interfacing.

    wasay312


  • CAN Slave Control Card Optimised Mani

    CAN Slave Control Card Optimised Mani

    General Purpose Control Card for STM32F103C8T6 (Bluepill) slave, with CANBUS interfacing.

    jaydee9192


  • CAN Slave Control Card Optimised 0dff

    CAN Slave Control Card Optimised 0dff

    General Purpose Control Card for STM32F103C8T6 (Bluepill) slave, with CANBUS interfacing.

    jaydee9192


  • CAN Slave Control Card + Encoder - Noor ul Iman d423 f1d4 xaGQ

    CAN Slave Control Card + Encoder - Noor ul Iman d423 f1d4 xaGQ

    General Purpose Control Card for STM32F103C8T6 (Bluepill) slave, with CANBUS interfacing.

    darkjaffs


  • CAN Slave Control Card + Encoder - Noor ul Iman d423 f1d4

    CAN Slave Control Card + Encoder - Noor ul Iman d423 f1d4

    General Purpose Control Card for STM32F103C8T6 (Bluepill) slave, with CANBUS interfacing.

    ahadriz


  • CAN Slave Control Card + Encoder - Noor ul Iman

    CAN Slave Control Card + Encoder - Noor ul Iman

    General Purpose Control Card for STM32F103C8T6 (Bluepill) slave, with CANBUS interfacing.

    jaydee9192

    &

    fatimahr2304
    ahadriz
    muhammadtuaha744
    breebeigedudbolt342605


  • CAN Slave Control Card Optimised e4f7

    CAN Slave Control Card Optimised e4f7

    General Purpose Control Card for STM32F103C8T6 (Bluepill) slave, with CANBUS interfacing.

    jaydee9192


  • Flight Controller 5rHH

    Flight Controller 5rHH

    This is a custom flight controller based around a STM32F103C8T6. It contains a BMP280 to measure the altitude of a drone, an ICM-42688-P that contains an accelerometer and gyroscope for motion control. The input voltage should be 12V and is set up to work with a LiPo battery.

    kplus


  • gps tracker 07dc

    gps tracker 07dc

    A circuit for a gps tracker using stm32f103c8t6 and sim 808, that acquires and sends gps coordinates to a separate interfaced application. The circuit will be powered by a 12v dc battery so there a need for power regulation. there is a USB type micro B for code uploading.

    teamembedded

    &

    decey01