The "Green Dot 2040E5" Board is a Node that interfaces RS485 Sensor probes and can log information to the cloud using LoRa Connectivity. It uses the XIAO RP2040 and the LoRa-E5 (STM32WLE5JC) modules from Seeed Studio to do its magic. It also has amazing power management capabilities (Solar charging, Battery protection, etc) that make it very useful for IoT applications #internetOfThings
#smartHomeDevices #SeeedStudio #XIAO #LoRa #RP2040 #IoT
Compute Module 5 is a powerful and scalable system on module with a 64-bit Arm processor @ 2.4GHz, an I/O controller, video and PCIe interfaces, and a range of wireless, SDRAM and eMMC options.
raspberry pi5 #rpi #pi
The "Green Dot 2040E5" Board is a Node that interfaces RS485 Sensor probes and can log information to the cloud using LoRa Connectivity. It uses the XIAO RP2040 and the LoRa-E5 (STM32WLE5JC) modules from Seeed Studio to do its magic. It also has amazing power management capabilities (Solar charging, Battery protection, etc) that make it very useful for IoT applications
#SeeedStudio #XIAO #LoRa #RP2040 #IoT
RP2040 is a low-cost, high-performance microcontroller device with flexible digital interfaces. Key features:
• Dual Cortex M0+ processor cores, up to 133 MHz
• 264 kB of embedded SRAM in 6 banks
• 30 multifunction GPIO
• 6 dedicated IO for SPI Flash (supporting XIP)
• Dedicated hardware for commonly used peripherals
• Programmable IO for extended peripheral support
• 4 channel ADC with internal temperature sensor, 0.5 MSa/s, 12-bit conversion
• USB 1.1 Host/Device
The "Green Dot 2040E5" Board is a Node that interfaces RS485 Sensor probes and can log information to the cloud using LoRa Connectivity. It uses the XIAO RP2040 and the LoRa-E5 (STM32WLE5JC) modules from Seeed Studio to do its magic. It also has amazing power management capabilities (Solar charging, Battery protection, etc) that make it very useful for IoT applications
#Seeed #XIOA #LoRa #RP2040 #IoT
The "Green Dot 2040E5" Board is a Node that interfaces RS485 Sensor probes and can log information to the cloud using LoRa Connectivity. It uses the XIAO RP2040 and the LoRa-E5 (STM32WLE5JC) modules from Seeed Studio to do its magic. It also has amazing power management capabilities (Solar charging, Battery protection, etc) that make it very useful for IoT applications
#Seeed #XIOA #LoRa #RP2040 #IoT
This project is a reference design for the VCNL3040
sensor interfaced via I2C. It includes a VCNL3040 ambient light sensor, a voltage regulator (AP2112K-3.3TRG1), an I2C level shifter using BSS138 MOSFETs, and necessary support components. Circuit interfaces through a JST connector. All components are powered by a 3.3V power source.
#referenceDesign #industrialsensing #vishay #template #reference-design
Supervised-bench reference schematic for a 100 W, 230 VAC single-phase transformerless bidirectional grid-to-12 V battery converter, including protection, sensing, isolated control interfaces, LCL/EMI filtering, HV bridge, DC link, and non-isolated synchronous buck/boost stage. Not a certified grid-tie product.
Beginner-prototype solar bee monitor central controller using a plug-in 38-pin ESP32 NodeMCU-32, breakout sensor interfaces, switched camera and gate power, RS-485, monitored rails, and isolated safety-critical 2S charging/protection interfaces pending fully verified implementations.
Screw-terminal wiring and power-distribution PCB for an Arduino Mega, four BTS7960 DC motor drivers, a TB6600 stepper driver, relay-controlled pumps, MG996R servos, HC-SR04 sensors, DS18B20 probes, and potentiometers. Accepts 24V and interfaces to external high-current buck converters.
Four-phase 0.5–100 V, 0–40 A programmable CV/CC bench supply architecture. High-power AC/DC modules and contactors are modeled as off-board interfaces; the PCB schematic focuses on buck power stages, control, sensing, protection, and auxiliary rails.
Control PCB for a robotic platform with 24V input, STM32F427ZI coordination, Ethernet/USB/CAN/RS-485/wireless interfaces, load gating, thermal control, and STO safety monitoring.
Motherboard for a sixteen-channel 807 nm laser system with Teensy 4.1 audio/PWM control, NUCLEO-G474RE safety/temperature supervision, Raspberry Pi 5 interfaces, protected 5 V input, and 16 DMN2056U low-side laser switches.
ESP32-centered controller PCB with 14.8 V battery bus, external 3.3 V and 12.2 V buck converter interfaces, motor logic headers, and servo driver connections.
Pixhawk V6X Base and Core Board reconstruction workspace for capturing/importing the flight controller base board and core board schematic, interfaces, and layout constraints.
Professional-grade STM32F407 dual-motor tape tension controller with precision load-cell ADCs, CAN interfaces, ESP32 wireless coprocessor, USB-C, external memory, and protected 12–24 V power architecture.