Control board for autonomous or radio-controlled robots.
It has inputs to connect distance sensors and encoders for autonomous mode.
It can be radio controlled by the ESP32 bluetooth or by connecting a Flysky RC controller receiver to the IBUS port.
It also has 3 push buttons and you can connect some kind of display by I2C to visualize and select configuration modes.
This is a reference design of the Bluetooth Low-Energy (BLE) temperature sensor. It uses an ESP32-MINI-1 microcontroller to connect to an SHT31-DIS-B2.5KS sensor. The sensor can be powered through connector J15, and additional components provide voltage regulation and derbiaising. Temperature data can be accessed via BLE.
#referenceDesign #simple-embedded #espressif #template #reference-design
Control board for autonomous or radio-controlled robots.
It has inputs to connect distance sensors and encoders for autonomous mode.
It can be radio controlled by the ESP32 bluetooth or by connecting a Flysky RC controller receiver to the IBUS port.
It also has 3 push buttons and you can connect some kind of display by I2C to visualize and select configuration modes.
Control board for autonomous or radio-controlled robots.
It has inputs to connect distance sensors and encoders for autonomous mode.
It can be radio controlled by the ESP32 bluetooth or by connecting a Flysky RC controller receiver to the IBUS port.
It also has 3 push buttons and you can connect some kind of display by I2C to visualize and select configuration modes.
Control board for autonomous or radio-controlled robots.
It has inputs to connect distance sensors and encoders for autonomous mode.
It can be radio controlled by the ESP32 bluetooth or by connecting a Flysky RC controller receiver to the IBUS port.
It also has 3 push buttons and you can connect some kind of display by I2C to visualize and select configuration modes.
Control board for autonomous or radio-controlled robots.
It has inputs to connect distance sensors and encoders for autonomous mode.
It can be radio controlled by the ESP32 bluetooth or by connecting a Flysky RC controller receiver to the IBUS port.
It also has 3 push buttons and you can connect some kind of display by I2C to visualize and select configuration modes.
Control board for autonomous or radio-controlled robots.
It has inputs to connect distance sensors and encoders for autonomous mode.
It can be radio controlled by the ESP32 bluetooth or by connecting a Flysky RC controller receiver to the IBUS port.
It also has 3 push buttons and you can connect some kind of display by I2C to visualize and select configuration modes.
Forked from original project: https://www.flux.ai/jr98/esp32-robot-controller
Control board for autonomous or radio-controlled robots.
It has inputs to connect distance sensors and encoders for autonomous mode.
It can be radio controlled by the ESP32 bluetooth or by connecting a Flysky RC controller receiver to the IBUS port.
It also has 3 push buttons and you can connect some kind of display by I2C to visualize and select configuration modes.
This project a basic development board for MGM240S Transceiver Module, featuring key programming and power nets, and a mix of digital and analog connections. #template #arduino-matter #arduino #siliconlabs #bluetooth #thread #zigbee #matter
This project a basic development board for MGM240S Transceiver Module, featuring key programming and power nets, and a mix of digital and analog connections. #template #arduino-matter #arduino #siliconlabs #bluetooth #thread #zigbee #matter
This project is a Bluetooth Low Energy (BLE) gas leakage detection system. It uses a BME680 sensor from Bosch Sensortec for gas detection and a BMD-330-A-R module from U-blox for BLE communication. It also features a user interaction button, RGB signaling LED, and is powered by two non-rechargeable AA batteries. #BLE #MCU #ReferenceDesign #project #referenceDesign #simple-embedded #ublox #template #reference-design
Control board for autonomous or radio-controlled robots.
It has inputs to connect distance sensors and encoders for autonomous mode.
It can be radio controlled by the ESP32 bluetooth or by connecting a Flysky RC controller receiver to the IBUS port.
It also has 3 push buttons and you can connect some kind of display by I2C to visualize and select configuration modes.
Production-intent universal replacement for the common JBD BMS UART Bluetooth module, adding ESP32-C3 Wi-Fi/BLE, USB-C service, protected 5–36 V input, dual external NTC probes, and internal humidity/temperature sensing.
Prototype breadboard-friendly breakout board for the Realtek RTL8761BTV-CG Bluetooth 5 UART HCI controller, with 0.1 inch headers, 3.3 V power input, support passives, 40 MHz crystal, and RF antenna matching provisions.
Consumer USB-C powered low-power environmental sensor node with Wi-Fi, Bluetooth LE, digital temperature/humidity sensing, and protected 5 V input supporting 0.5–3 A USB-C sources.
Consumer USB-C powered low-power environmental sensor node using a Wi-Fi + Bluetooth LE MCU module, digital temperature/humidity sensor, USB-C 5 V input, and protected 3.3 V power architecture sized for 0.5–3 A USB-C sources.
Consumer USB-C environmental sensor node using a low-power Wi-Fi + Bluetooth MCU and digital temperature/humidity sensor. Powered from 5 V USB-C sink input with input protection including reverse blocking, OVP, UVLO, and overcurrent limiting, then regulated to 3.3 V for the radio and sensor.
Low-power consumer environmental sensor node with USB-C 5V input, Wi-Fi + Bluetooth connectivity, digital temperature/humidity sensing, and protected 5V-to-3.3V power architecture including reverse, OVP, UVLO, and OCP considerations.