It's really nice
This product has awesome potential. I bought this set for my weaving project, and it's working really well.
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The LilyPad 328 ATmega328P Main Board 16M is a compatible Arduino-program micro-controller designed to be easily integrated into e-textiles and wearable projects. It offers the same functionality you find in other Arduino boards, in a lightweight, round package design to minimize snagging and profile. With wide tabs that can be sewn down and connect with conductive thread.
The LilyPad consists of an ATmega328 compatible with the Arduino bootloader and a minimum number of external components to keep it as small (and as simple) as possible.
This Lilypad board will run from 2V to 5V and offers large pin-out holes that make it easy to sew and connect. Each of these pins, with the exception of (+) and (-), can control an attached input or output device (like a light, motor, or switch).
Each LilyPad was creatively designed to have large connecting pads to allow them to be sewn into clothing. Various input, output, power, and sensor boards are available. These boards are washable as well.
Microcontroller | 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 |
EEPROM | 512 bytes |
Clock Speed | 8 MHz |
Dimensions | 5 x 4 x 1cms |
Weight | 5 grams |
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Arduino LilyPad is a microcontroller board based on the ATmega328P microcontroller. It is designed to be used in wearable projects, such as clothing or accessories, and can be sewn onto fabrics using conductive thread. The LilyPad has a round shape and is very small, making it ideal for use in projects where space is limited.
The LilyPad is similar to other Arduino boards in terms of functionality and programming, but it has a few unique features that make it better suited for wearable projects. For example, it has several input and output pins that are specifically designed to be connected to conductive thread. It also has a built-in power supply that can be used to power small components such as LEDs.
Both Arduino Uno and LilyPad are based on the ATmega328P microcontroller and have a similar number of digital and analog pins, as well as PWM outputs. However, there are a few key differences between the two boards.
One major difference is the operating voltage and input voltage. Arduino Uno operates at 5V and can accept input voltages between 7-20V, while LilyPad operates at a lower voltage range of 2.7-5.5V.
Another difference is the USB interface. Arduino Uno has a built-in USB interface, which makes it easy to program and power the board. In contrast, LilyPad does not have a built-in USB interface and needs to be programmed and powered using an external FTDI breakout board.
Here is a difference between Arduino Uno and LilyPad:
Feature | Arduino Uno | LilyPad |
Microcontroller | ATmega328P | ATmega328P |
Operating Voltage | 5V | 2.7-5.5V |
Input Voltage | 7-20V | 2.7-5.5V |
Digital I/O pins | 14 | 14 |
Analog Inputs | 6 | 6 |
PWM Outputs | 6 | 6 |
USB Interface | Yes | No |
Form Factor | Board | Round |
Designed for | General use | Wearable use |