LilyPad 328 ATmega328P Main Board 16M

Rs. 462.50 Rs. 370.00
You save: Rs. 92.50
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  • PRODUCT NAMELilyPad 328 ATmega328P Main Board – 16 MHz DE....
  • It is based on the ATmega328P microcontroller and operate....
  • The board features a circular design with large conductiv....
  • Fully compatible with the Arduino IDE, it supports easy p....
100 in stock
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Sku: MT1131
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PRODUCT NAME
LilyPad 328 ATmega328P Main Board – 16 MHz

DESCRIPTION
The LilyPad 328 ATmega328P Main Board is a wearable-friendly microcontroller board designed for e-textiles, interactive projects, and creative DIY electronics. It is based on the ATmega328P microcontroller and operates at 16 MHz, providing reliable performance for various applications. The board features a circular design with large conductive pads that allow it to be sewn directly into fabric using conductive thread, making it ideal for wearable electronics and fashion technology. Fully compatible with the Arduino IDE, it supports easy programming and integration into interactive clothing, accessories, and educational projects, allowing users to combine electronics with creative design.

KEY FEATURES
This board operates at 5 V with an input voltage range of 2.7 V to 5.5 V. It includes 14 digital I/O pins, 6 of which support PWM, and 6 analog input pins for sensor interfacing. The Arduino-compatible bootloader allows simple programming, while the circular design with sewable pads makes it easy to integrate into fabrics and wearable projects. Its lightweight and compact form factor ensures comfort and practicality for e-textiles, interactive art, and educational experiments.

PACKAGE INCLUDES
The package contains one LilyPad 328 ATmega328P Main Board, ready for wearable electronics and creative projects.

APPLICATIONS
The board is suitable for wearable electronics and e-textiles, Arduino-based DIY projects, interactive clothing and accessories, as well as educational and creative electronics projects. It provides a practical platform for combining programming, sensors, and creativity in wearable technology.