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This is an Arduino Uno R3 DIP, a popular open-source microcontroller board based on the ATmega328P chip. Unlike the SMD version, this board features a removable, socketed Dual In-line Package (DIP) processor chip. It serves as an accessible hardware platform used worldwide for prototyping electronics, learning code, and building automated devices.
Key Specifications
- Microcontroller: ATmega328P (Removable DIP package)
- USB-to-Serial: Often powered by the ATmega16U2 or CH340 chip
- Operating Voltage: 5V
- Digital I/O Pins: 14 pins (6 support PWM output)
- Analog Input Pins: 6 pins
- Flash Memory: 32 KB
If you are setting up this specific board, let me know:
- Do you plan to replace or program the DIP chip separately?
- What operating system (Windows, Mac, Linux) are you using?
SKU:
UCS-0066
Categories: Uncategorized, Development Boards
Tag: #Arduino #ArduinoUno #Microcontroller #EmbeddedSystems #Electronics #Robotics
The image shows an Arduino Uno R3 DIP, a foundational open-source microcontroller board designed for prototyping digital devices and building interactive physical computing systems.
Core Architecture
- Processor Configuration: Features a removable ATmega328P processor chip housed in a dual in-line package (DIP) socket.
- Chip Replaceability: Allows users to swap out the microcontroller easily if it gets damaged during high-voltage testing.
- Power Framework: Receives regulated electricity through a standard USB Type-B interface or an external 2.1mm DC barrel jack.
Technical Input & Output
- Digital Infrastructure: Supplies 14 digital input/output pins, with 6 offering pulse-width modulation (PWM) for motor or light control.
- Analog Interface: Incorporates 6 dedicated analog input channels to translate sensor voltages into digital values.
- Memory Capacity: Provides 32 KB of built-in flash memory to hold compiled software instructions.
Target Applications
- Robotics Control: Automating mobile chassis units, interpreting sonar distance data, and driving high-torque servo motors.
- Hardware Education: Introducing university students and makers to low-level register manipulation, circuit building, and embedded C++ syntax.
- Custom PCB Prototyping: Testing firmware on the development board before extracting the DIP chip for use in a permanent circuit.
If you are getting started with this board, let me know:
- What external components (motors, relays, displays) you want to use?
- Do you need help with wiring pins or writing the initial sketch?

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