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ArduinoNanoV30.lbr
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<description><b>Arduino Nano V3.0 Module</b>
<p>The Nano was designed and is being produced by <a href="http://www.gravitech.us/arna30wiatp.html">Gravitech</a>.</p><br></description>
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<text x="-17.78" y="0" size="1.27" layer="21" font="vector">>NAME</text>
<text x="-17.78" y="-2.54" size="1.27" layer="21" font="vector">>VALUE</text>
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<text x="-20.32" y="-6.35" size="1.016" layer="21" font="vector">1</text>
<text x="-21.59" y="0" size="0.6096" layer="21" font="vector" rot="R270" align="center">Mini-B
USB</text>
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<text x="-22.86" y="-1.27" size="0.0508" layer="21" font="vector" ratio="1" rot="R90">This library was created by Esp. Marco-Luis SALCEDO TOVAR.
Please report any errors or suggestions to: [email protected]
Thanks you!!!</text>
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<description><b>Arduino Nano V3.0 Module</b><br><br>
<b>Overview:</b><br>
<p>The Arduino Nano is a small, complete, and breadboard-friendly board based on the ATmega328 (Arduino Nano 3.x) or ATmega168 (Arduino Nano 2.x). It has more or less the same functionality of the Arduino Duemilanove, but in a different package. It lacks only a DC power jack, and works with a Mini-B USB cable instead of a standard one.<br>
The Nano was designed and is being produced by <a href="http://www.gravitech.us/arna30wiatp.html">Gravitech</a>.</p><br>
<table border="1" style="width:auto">
<tr>
<th colspan="2"><b>General specifications:</b></th>
</tr>
<tr>
<th>Item</th>
<th>Value</th>
</tr>
<tr>
<td><center>Microcontroller</center></td>
<td><center>Atmel ATmega168 or ATmega328</center></td>
</tr>
<tr>
<td><center>Operating Voltage (logic level)</center></td>
<td><center>5 V</center></td>
</tr>
<tr>
<td><center>Input Voltage (recommended)</center></td>
<td><center>7-12 V</center></td>
<tr>
<td><center>Input Voltage (limits)</center></td>
<td><center>6-20 V</center></td>
<tr>
<td><center>Digital I/O Pins</center></td>
<td><center>14 (of which 6 provide PWM output)</center></td>
<tr>
<td><center>Analog Input Pins</center></td>
<td><center>8</center></td>
<tr>
<td><center>DC Current per I/O Pin</center></td>
<td><center>40 mA</center></td>
</tr>
<tr>
<td><center>Flash Memory</center></td>
<td><center>16 KB (ATmega168) or 32 KB (ATmega328) of which 2 KB used by bootloader</center></td>
</tr>
<tr>
<td><center>SRAM</center></td>
<td><center>1 KB (ATmega168) or 2 KB (ATmega328)</center></td>
</tr>
<tr>
<td><center>EEPROM</center></td>
<td><center>512 bytes (ATmega168) or 1 KB (ATmega328)</center></td>
</tr>
<tr>
<td><center>Clock Speed</center></td>
<td><center>16 MHz</center></td>
</tr>
<tr>
<td><center>Dimensions (Inches) </center></td>
<td><center>0.73" x 1.70"</center></td>
</tr>
<tr>
<td><center>Dimensions (mm) </center></td>
<td><center>18mm x 45mm</center></td>
</tr>
<tr>
<td><center>Overall height</center></td>
<td><center>About 9 mm (not including pins)</center></td>
</tr>
<tr>
<td><center>Weigth</center></td>
<td><center>5 g</center></td>
</tr>
</table>
<br><br>
<b>Power:</b><br>
The Arduino Nano can be powered via the Mini-B USB connection, 6-20V unregulated external power supply (pin 30), or 5V regulated external power supply (pin 27).<br>
The power source is automatically selected to the highest voltage source.<br><br>
<b>Memory:</b><br>
The ATmega168 has 16 KB of flash memory for storing code (of which 2 KB is used for the bootloader); the ATmega328 has 32 KB, (also with 2 KB used for the bootloader).<br>
The ATmega168 has 1 KB of SRAM and 512 bytes of EEPROM (which can be read and written with the EEPROM library); the ATmega328 has 2 KB of SRAM and 1 KB of EEPROM.<br><br>
<b>Input and Output:</b><br>
Each of the 14 digital pins on the Nano can be used as an input or output, using pinMode(), digitalWrite(), and digitalRead() functions.<br>
They operate at 5 volts.<br>
Each pin can provide or receive a maximum of 40 mA and has an internal pull-up resistor (disconnected by default) of 20-50 kOhms. In addition, some pins have specialized functions.<br><br>
<a href="https://www.arduino.cc/en/Main/ArduinoBoardNano">Visit Arduino - ArduinoBoardNano</a></description>
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<deviceset name="ARDUINO_NANO" prefix="ARDUINO_NANO" uservalue="yes">
<description><b>Arduino Nano V3.0 Module</b><br><br>
<b>Overview:</b><br>
<p>The Arduino Nano is a small, complete, and breadboard-friendly board based on the ATmega328 (Arduino Nano 3.x) or ATmega168 (Arduino Nano 2.x). <br>It has more or less the same functionality of the Arduino Duemilanove, but in a different package.<br>
It lacks only a DC power jack, and works with a Mini-B USB cable instead of a standard one.<br>
The Nano was designed and is being produced by <a href="http://www.gravitech.us/arna30wiatp.html">Gravitech</a>.</p><br>
<table border="1" style="width:auto">
<tr>
<th colspan="2"><b>General specifications:</b></th>
</tr>
<tr>
<th>Item</th>
<th>Value</th>
</tr>
<tr>
<td><center>Microcontroller</center></td>
<td><center>Atmel ATmega168 or ATmega328</center></td>
</tr>
<tr>
<td><center>Operating Voltage (logic level)</center></td>
<td><center>5 V</center></td>
</tr>
<tr>
<td><center>Input Voltage (recommended)</center></td>
<td><center>7-12 V</center></td>
<tr>
<td><center>Input Voltage (limits)</center></td>
<td><center>6-20 V</center></td>
<tr>
<td><center>Digital I/O Pins</center></td>
<td><center>14 (of which 6 provide PWM output)</center></td>
<tr>
<td><center>Analog Input Pins</center></td>
<td><center>8</center></td>
<tr>
<td><center>DC Current per I/O Pin</center></td>
<td><center>40 mA</center></td>
</tr>
<tr>
<td><center>Flash Memory</center></td>
<td><center>16 KB (ATmega168) or 32 KB (ATmega328) of which 2 KB used by bootloader</center></td>
</tr>
<tr>
<td><center>SRAM</center></td>
<td><center>1 KB (ATmega168) or 2 KB (ATmega328)</center></td>
</tr>
<tr>
<td><center>EEPROM</center></td>
<td><center>512 bytes (ATmega168) or 1 KB (ATmega328)</center></td>
</tr>
<tr>
<td><center>Clock Speed</center></td>
<td><center>16 MHz</center></td>
</tr>
<tr>
<td><center>Dimensions (Inches) </center></td>
<td><center>0.73" x 1.70"</center></td>
</tr>
<tr>
<td><center>Dimensions (mm) </center></td>
<td><center>18mm x 45mm</center></td>
</tr>
<tr>
<td><center>Overall height</center></td>
<td><center>About 9 mm (not including pins)</center></td>
</tr>
<tr>
<td><center>Weigth</center></td>
<td><center>5 g</center></td>
</tr>
</table>
<br><br>
<b>Power:</b><br>
<p>The Arduino Nano can be powered via the Mini-B USB connection, 6-20V unregulated external power supply (pin 30), or 5V regulated external power supply (pin 27).<br>
The power source is automatically selected to the highest voltage source.</p><br>
<b>Memory:</b><br>
<p>The ATmega168 has 16 KB of flash memory for storing code (of which 2 KB is used for the bootloader); the ATmega328 has 32 KB, (also with 2 KB used for the bootloader).<br>
The ATmega168 has 1 KB of SRAM and 512 bytes of EEPROM (which can be read and written with the EEPROM library); the ATmega328 has 2 KB of SRAM and 1 KB of EEPROM.</p><br>
<b>Input and Output:</b><br>
<p>Each of the 14 digital pins on the Nano can be used as an input or output, using pinMode(), digitalWrite(), and digitalRead() functions.<br>
They operate at 5 volts.<br>
Each pin can provide or receive a maximum of 40 mA and has an internal pull-up resistor (disconnected by default) of 20-50 kOhms. In addition, some pins have specialized functions.</p><br>
<a href="https://www.arduino.cc/en/Main/ArduinoBoardNano">Visit Arduino - ArduinoBoardNano</a></description>
<gates>
<gate name="G$1" symbol="ARDUINO_NANO" x="0" y="0"/>
</gates>
<devices>
<device name="" package="ARDUINO_NANO">
<connects>
<connect gate="G$1" pin="!RESET@1" pad="18"/>
<connect gate="G$1" pin="!RESET@2" pad="13"/>
<connect gate="G$1" pin="3V3" pad="2"/>
<connect gate="G$1" pin="5V" pad="12"/>
<connect gate="G$1" pin="ADC0/A0" pad="4"/>
<connect gate="G$1" pin="ADC1/A1" pad="5"/>
<connect gate="G$1" pin="ADC2/A2" pad="6"/>
<connect gate="G$1" pin="ADC3/A3" pad="7"/>
<connect gate="G$1" pin="ADC4/SDA/A4" pad="8"/>
<connect gate="G$1" pin="ADC5/SCL/A5" pad="9"/>
<connect gate="G$1" pin="ADC6/A6" pad="10"/>
<connect gate="G$1" pin="ADC7/A7" pad="11"/>
<connect gate="G$1" pin="AREF" pad="3"/>
<connect gate="G$1" pin="D0/RX" pad="17"/>
<connect gate="G$1" pin="D1/TX" pad="16"/>
<connect gate="G$1" pin="D10/OC1B/!SS" pad="28"/>
<connect gate="G$1" pin="D11/MOSI" pad="29"/>
<connect gate="G$1" pin="D12/MISO" pad="30"/>
<connect gate="G$1" pin="D2/INT0" pad="20"/>
<connect gate="G$1" pin="D3/INT1" pad="21"/>
<connect gate="G$1" pin="D4/T0" pad="22"/>
<connect gate="G$1" pin="D5/T1" pad="23"/>
<connect gate="G$1" pin="D6/AIN0" pad="24"/>
<connect gate="G$1" pin="D7/AIN1" pad="25"/>
<connect gate="G$1" pin="D8/CLK0" pad="26"/>
<connect gate="G$1" pin="D9/OC1A" pad="27"/>
<connect gate="G$1" pin="GND@1" pad="19"/>
<connect gate="G$1" pin="GND@2" pad="14"/>
<connect gate="G$1" pin="SCK/D13" pad="1"/>
<connect gate="G$1" pin="VIN" pad="15"/>
</connects>
<technologies>
<technology name=""/>
</technologies>
</device>
</devices>
</deviceset>
</devicesets>
</library>
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