This monorepo centralizes Olin Electric Motorsports’ KiCad designs and STM32 firmware into a single place. It helps with immediate contribution through standardized environments and automated CAN signal tracking. This unified structure makes sure that there is architectural consistency across all vehicle electrical systems.
This monorepo centralizes Olin Electric Motorsports’ KiCad designs and STM32 firmware into a single place. It helps with immediate contribution through standardized environments and automated CAN signal tracking. This unified structure makes sure that there is architectural consistency across all vehicle electrical systems.
This monorepo centralizes Olin Electric Motorsports’ KiCad designs and STM32 firmware into a single place. It helps with immediate contribution through standardized environments and automated CAN signal tracking. This unified structure makes sure that there is architectural consistency across all vehicle electrical systems.
This monorepo centralizes Olin Electric Motorsports’ KiCad designs and STM32 firmware into a single place. It helps with immediate contribution through standardized environments and automated CAN signal tracking. This unified structure makes sure that there is architectural consistency across all vehicle electrical systems.
This monorepo centralizes Olin Electric Motorsports’ KiCad designs and STM32 firmware into a single place. It helps with immediate contribution through standardized environments and automated CAN signal tracking. This unified structure makes sure that there is architectural consistency across all vehicle electrical systems.
This monorepo centralizes Olin Electric Motorsports’ KiCad designs and STM32 firmware into a single place. It helps with immediate contribution through standardized environments and automated CAN signal tracking. This unified structure makes sure that there is architectural consistency across all vehicle electrical systems.
This monorepo centralizes Olin Electric Motorsports’ KiCad designs and STM32 firmware into a single place. It helps with immediate contribution through standardized environments and automated CAN signal tracking. This unified structure makes sure that there is architectural consistency across all vehicle electrical systems.
This project features versatile dataloggers built on ESP32 and ESP32-S3 platforms, integrating I2C devices (MPU6050, OLED, BME680), RS485, CAN, RS232 communication, and SD card logging. Designed for robust industrial and environmental applications.
This project features versatile dataloggers built on ESP32 and ESP32-S3 platforms, integrating I2C devices (MPU6050, OLED, BME680), RS485, CAN, RS232 communication, and SD card logging. Designed for robust industrial and environmental applications.
This project features versatile dataloggers built on ESP32 and ESP32-S3 platforms, integrating I2C devices (MPU6050, OLED, BME680), RS485, CAN, RS232 communication, and SD card logging. Designed for robust industrial and environmental applications.
This repository is a public archive of the LumenPnP Pick and Place (formerly Index) source material from the beginning in mid-2020 until May 2022. The current source can be found at https://github.com/opulo-inc/lumenpnp
This repository is a public archive of the LumenPnP Pick and Place (formerly Index) source material from the beginning in mid-2020 until May 2022. The current source can be found at https://github.com/opulo-inc/lumenpnp
This repository is a public archive of the LumenPnP Pick and Place (formerly Index) source material from the beginning in mid-2020 until May 2022. The current source can be found at https://github.com/opulo-inc/lumenpnp
This repository is a public archive of the LumenPnP Pick and Place (formerly Index) source material from the beginning in mid-2020 until May 2022. The current source can be found at https://github.com/opulo-inc/lumenpnp
This repository is a public archive of the LumenPnP Pick and Place (formerly Index) source material from the beginning in mid-2020 until May 2022. The current source can be found at https://github.com/opulo-inc/lumenpnp
This repository is a public archive of the LumenPnP Pick and Place (formerly Index) source material from the beginning in mid-2020 until May 2022. The current source can be found at https://github.com/opulo-inc/lumenpnp
This repository is a public archive of the LumenPnP Pick and Place (formerly Index) source material from the beginning in mid-2020 until May 2022. The current source can be found at https://github.com/opulo-inc/lumenpnp
This repository is a public archive of the LumenPnP Pick and Place (formerly Index) source material from the beginning in mid-2020 until May 2022. The current source can be found at https://github.com/opulo-inc/lumenpnp
This is where the electronics for the Mothbox are developed, such as the PCB! It's copied over from https://github.com/Digital-Naturalism-Laboratories/Mothbox/tree/main/Hardware/PCB so you can check that out if you want to see the full history!
This is where the electronics for the Mothbox are developed, such as the PCB! It's copied over from https://github.com/Digital-Naturalism-Laboratories/Mothbox/tree/main/Hardware/PCB so you can check that out if you want to see the full history!