Find Intel processor pinouts instantly with this free Intel Processor Pinout Reference. View CPU socket pin layouts, power pins, signal pins, memory interfaces, and processor package pin configurations for Intel processors.
Configuring Edison Mini Breakout UART
Wire a USB-to-UART adapter to Pins J19-1 (TX) and J19-2 (RX). Establish a serial connection at 115200 baud to access the Yocto Linux system console.
Breadboard I2C Sensors on Galileo
Set Galileo Gen 2 jumpers to 3.3V logic. Wire your sensor to Pins A4 (SDA) and A5 (SCL) on the analog block, utilising standard wire libraries.
Interfacing High-Speed SPI on Joule
Connect your peripheral using J12 SPI_1 channels. Run wires from Pin 11 (MOSI) and Pin 13 (MISO), ensuring 1.8V levels to avoid CPU damage.
Curie Pattern Matching Configurations
Access the built-in neural network using Curie0_SS10 (Analog 0) pins to acquire sensor data for real-time model classifications.
Intel IoT development boards leverage advanced x86 architectures (Quark SoC on Galileo, dual-core Silvermont Atom on Edison, and Quad-Core Goldmont on Joule) to bring desktop-class computing capabilities to embedded hardware projects. These boards utilize complex I/O multiplexers and digital-to-analog converters connected via I2C and PCI buses to maintain physical Arduino header compatibility while running standard Linux distributions (Yocto, Ubuntu, or Windows IoT) in real time.
This reference index consolidates pin configurations, expansion header maps, and line assignments for Intel Galileo Gen 1/2, Edison, Joule, Curie, and Aero series hardware.
Finding accurate pin layouts is essential for embedded systems developers, robotics engineers, IoT architects, and custom hardware builders. Precise pin alignments prevent hardware conflicts, boot failures, and permanent board damage from short-circuits.
Always verify operating voltages (especially the 1.8V limits on Edison and Joule) before modifying hardware setups. Correct connections ensure system stability and peripheral safety.
Yes. Both Galileo Gen 1 and Gen 2 boards feature onboard level shifters and jumper configurations that allow you to toggle the IO header logic levels between 3.3V and 5V safely.
The Edison computer module uses a high-density 22nm Atom SoC designed for ultra-low power consumption. Running the internal digital I/O lines at 1.8V reduces overall power draw and heat dissipation.
You must use the Intel Edison Kit for Arduino. This breakout board includes active level-shifting buffers that translate standard 5V or 3.3V shield signals down to the Edison's native 1.8V operating voltage.
The Aero board was designed specifically for unmanned aerial vehicles (UAVs). It integrates an Atom processor, an Altera Max 10 FPGA, and a dedicated Flight Controller interface to handle real-time flight telemetry and computer vision simultaneously.
Intel Processor Pinout Reference is a free online calculator tool. Use it to get instant, accurate results for your electronics calculations.