Difference between revisions of "Arduino LilyPad"
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Warning: Don't power the LilyPad Arduino with more than 5.5 volts, or plug the power in backwards: you'll kill it. | Warning: Don't power the LilyPad Arduino with more than 5.5 volts, or plug the power in backwards: you'll kill it. | ||
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Microcontroller ATmega168V or ATmega328V | Microcontroller ATmega168V or ATmega328V | ||
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Operating Voltage 2.7-5.5 V | Operating Voltage 2.7-5.5 V | ||
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Input Voltage 2.7-5.5 V | Input Voltage 2.7-5.5 V | ||
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Digital I/O Pins 14 (of which 6 provide PWM output) | Digital I/O Pins 14 (of which 6 provide PWM output) | ||
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Analog Input Pins 6 | Analog Input Pins 6 | ||
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DC Current per I/O Pin 40 mA | DC Current per I/O Pin 40 mA | ||
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Flash Memory 16 KB (of which 2 KB used by bootloader) | Flash Memory 16 KB (of which 2 KB used by bootloader) | ||
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SRAM 1 KB | SRAM 1 KB | ||
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EEPROM 512 bytes | EEPROM 512 bytes | ||
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Clock Speed 8 MHz | Clock Speed 8 MHz | ||
Revision as of 01:16, 4 January 2012
Contents
Overview
The LilyPad Arduino is a microcontroller board designed for wearables and e-textiles. It can be sewn to fabric and similarly mounted power supplies, sensors and actuators with conductive thread. The board is based on the ATmega168V (the low-power version of the ATmega168) (datasheet) or the ATmega328V (datasheet). The LilyPad Arduino was designed and developed by Leah Buechley and SparkFun Electronics.
Downloads
Schematic: LilyPad_schematic_v18.pdf
EAGLE (CAD) Files: LilyPad_Board_v18.zip
Summary
Warning: Don't power the LilyPad Arduino with more than 5.5 volts, or plug the power in backwards: you'll kill it.
Microcontroller ATmega168V or ATmega328V
Operating Voltage 2.7-5.5 V
Input Voltage 2.7-5.5 V
Digital I/O Pins 14 (of which 6 provide PWM output)
Analog Input Pins 6
DC Current per I/O Pin 40 mA
Flash Memory 16 KB (of which 2 KB used by bootloader)
SRAM 1 KB
EEPROM 512 bytes
Clock Speed 8 MHz
Programming
==Power