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- <?xml version='1.0' encoding='UTF-8'?>
- <module fritzingVersion='0.5.2b.02.18.4756' moduleId='Lilypad_PowerSupply-v16'>
- <version replacedby="Lilypad_PowerSupply-v18">4</version>
- <date>2013-05-26</date>
- <author>Fabian Althaus</author>
- <description>A small, but mighty power supply. This board was designed to be as small and inconspicuous as possible. Pop in a AAA battery, flip the power switch, and you will have a 5V supply to power your LilyPad network. Good up to 100mA. Short circuit protected.
- This board has AAA battery clips but can use an input from 1.2V to 5V. Our lithium polymer batteries are a good, rechargable alternative.
- LilyPad is a wearable e-textile technology developed by Leah Buechley and cooperatively designed by Leah and SparkFun. 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. They're even washable - but be sure to remove the battery!</description>
- <title>LilyPad Power Supply</title>
- <url>http://www.sparkfun.com/products/8466</url>
- <tags>
- <tag>Lilypad</tag>
- <tag>Power</tag>
- <tag>Supply</tag>
- </tags>
- <properties>
- <property name='family'>/obsolete/microcontroller board (lilypad)</property>
- <property name='Input Voltage'>1-5V</property>
- <property name='type'>Power Conditioning</property>
- <property name='Output Voltage'>5V</property>
- <property name='Connector'>AA Clip</property>
- </properties>
- <views>
- <breadboardView>
- <layers image='breadboard/Lilypad_PowerSupply-v16_breadboard.svg'>
- <layer layerId='breadboard'/>
- </layers>
- </breadboardView>
- <schematicView>
- <layers image='schematic/Lilypad_PowerSupply-v16_schematic.svg'>
- <layer layerId='schematic'/>
- </layers>
- </schematicView>
- <pcbView>
- <layers image='pcb/Lilypad_PowerSupply-v16_pcb.svg'>
- <layer layerId='copper1'/>
- <layer layerId='silkscreen'/>
- <layer layerId='copper0'/>
- </layers>
- </pcbView>
- <iconView>
- <layers image='breadboard/Lilypad_PowerSupply-v16_breadboard.svg'>
- <layer layerId='icon'/>
- </layers>
- </iconView>
- </views>
- <connectors>
- <connector id='connector27' type='female' name='+'>
- <description>+</description><views>
- <breadboardView>
- <p layer='breadboard' svgId='connector27pin'/></breadboardView>
- <schematicView>
- <p layer='schematic' svgId='connector27pin' terminalId='connector27terminal'/></schematicView>
- <pcbView>
- <p layer='copper0' svgId='connector27pad'/><p layer='copper1' svgId='connector27pad'/></pcbView>
- </views>
- </connector>
- <connector id='connector28' type='female' name='GND'>
- <description>GND</description><views>
- <breadboardView>
- <p layer='breadboard' svgId='connector28pin'/></breadboardView>
- <schematicView>
- <p layer='schematic' svgId='connector28pin' terminalId='connector28terminal'/></schematicView>
- <pcbView>
- <p layer='copper0' svgId='connector28pad'/><p layer='copper1' svgId='connector28pad'/></pcbView>
- </views>
- </connector>
- <connector id='connector29' type='female' name='GND'>
- <description>GND</description><views>
- <breadboardView>
- <p layer='breadboard' svgId='connector29pin'/></breadboardView>
- <schematicView>
- <p layer='schematic' svgId='connector29pin' terminalId='connector29terminal'/></schematicView>
- <pcbView>
- <p layer='copper0' svgId='connector29pad'/><p layer='copper1' svgId='connector29pad'/></pcbView>
- </views>
- </connector>
- <connector id='connector30' type='female' name='GND'>
- <description>GND</description><views>
- <breadboardView>
- <p layer='breadboard' svgId='connector30pin'/></breadboardView>
- <schematicView>
- <p layer='schematic' svgId='connector30pin' terminalId='connector30terminal'/></schematicView>
- <pcbView>
- <p layer='copper0' svgId='connector30pad'/><p layer='copper1' svgId='connector30pad'/></pcbView>
- </views>
- </connector>
- </connectors>
- <buses>
- <bus id='gnd'>
- <nodeMember connectorId='connector28'/>
- <nodeMember connectorId='connector29'/>
- <nodeMember connectorId='connector30'/>
- </bus>
- </buses>
- </module>
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