>NAME >VALUE >NAME >VALUE Certified Module with ATWINC1500A-Mu Chip and PCB Antenna <b>Molex Connectors</b><p> <author>Created by librarian@cadsoft.de</author> <b>1.25mm Pitch PicoBlade™ Wire-to-Board Header, Vertical, with Friction Lock, 6 Circuits</b><p><a href =http://www.molex.com/pdm_docs/sd/530470610_sd.pdf>Datasheet </a> >NAME >VALUE <b>1.25mm Pitch PicoBlade™ Header, Right Angle, 6 Circuits</b><p><a href =http://www.molex.com/pdm_docs/sd/530480610_sd.pdf>Datasheet </a> >NAME >VALUE <b>1.25mm Pitch PicoBlade™ Header, Surface Mount, Right Angle, 6 Circuits</b><p><a href =http://www.molex.com/pdm_docs/sd/532610671_sd.pdf>Datasheet </a> >NAME >VALUE 1 <b>1.25mm Pitch PicoBlade™ Header, Surface Mount, Vertical, 6 Circuits</b><p><a href =http://www.molex.com/pdm_docs/sd/533980671_sd.pdf>Datasheet </a> >NAME >VALUE 1 <b>KK® 254 Solid Header, Vertical, with Friction Lock, 2 Circuits, Tin (Sn) Plating</b><p><a href =http://www.molex.com/pdm_docs/sd/022232021_sd.pdf>Datasheet </a> >NAME >VALUE >NAME >VALUE >NAME <b>CONNECTOR</b><p> wire to board 1.25 mm (.049 inch) pitch header .100" (2.54mm) Center Header - 2 Pin Generated from <b>BeagleBone_Blue.sch</b><p> by exp-lbrs.ulp >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE 06 for width 6.0mm ,30 for height 3.0mm >NAME >VALUE >NAME >VALUE <b>datasheet:<br> <u>http://search.murata.co.jp/Ceramy/image/img/PDF/ENG/L0075S0103LQH2MC_02.pdf >NAME >VALUE >NAME >NAME >VALUE >name <b>1813<b><p> >NAME >VALUE >NAME >VALUE >name http://www.vishay.com/docs/34096/idcp2218.pdf >NAME >VALUE >name >NAME >VALUE >NAME Low Profile ,High Current IHLP Inductor 6.47mm*6.47*2.4mm >NAME >VALUE >NAME >NAME >VALUE >NAME >NAME >VALUE >name >value >NAME >VALUE >NAME >VALUE >NAME >VALUE 06 for width 6.0mm ,30 for height 3.0mm <b>datasheet:<br> <u>http://search.murata.co.jp/Ceramy/image/img/PDF/ENG/L0075S0103LQH2MC_02.pdf <b>1813<b><p> http://www.vishay.com/docs/34096/idcp2218.pdf Low Profile ,High Current IHLP Inductor 6.47mm*6.47*2.4mm >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE 1206 10 uF 50 V ±20% Tolerance X5R Multilayer Ceramic Capacitor <b>Supply Symbols</b><p> GND, VCC, 0V, +5V, -5V, etc.<p> Please keep in mind, that these devices are necessary for the automatic wiring of the supply signals.<p> The pin name defined in the symbol is identical to the net which is to be wired automatically.<p> In this library the device names are the same as the pin names of the symbols, therefore the correct signal names appear next to the supply symbols in the schematic.<p> <author>Created by librarian@cadsoft.de</author> >VALUE >VALUE <b>SUPPLY SYMBOL</b> <b>SUPPLY SYMBOL</b> <h3>SparkFun Power Symbols</h3> This library contains power, ground, and voltage-supply symbols. <br> <br> We've spent an enormous amount of time creating and checking these footprints and parts, but it is <b> the end user's responsibility</b> to ensure correctness and suitablity for a given componet or application. <br> <br>If you enjoy using this library, please buy one of our products at <a href=" www.sparkfun.com">SparkFun.com</a>. <br> <br> <b>Licensing:</b> Creative Commons ShareAlike 4.0 International - https://creativecommons.org/licenses/by-sa/4.0/ <br> <br> You are welcome to use this library for commercial purposes. For attribution, we ask that when you begin to sell your device using our footprint, you email us with a link to the product being sold. We want bragging rights that we helped (in a very small part) to create your 8th world wonder. We would like the opportunity to feature your device on our homepage. <h3>Input Voltage Supply</h3> >VALUE <h3>Digital Ground Supply</h3> >VALUE <h3>Input Voltage Supply</h3> <p>Generic voltage input supply symbol.</p> <h3>Ground Supply Symbol</h3> <p>Generic signal ground supply symbol.</p> <b>CAPACITOR</b><p> chip tantalum >NAME >VALUE <b>CAPACITOR</b><p> chip tantalum >NAME >VALUE <b>CAPACITOR</b><p> chip tantalum >NAME >VALUE <b>CAPACITOR</b><p> chip tantalum >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> body 5 x 5 mm, rectangle, grid 2.54 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> body 7.6 x 5 mm, rectangle, grid 5.08 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> body 12.7 x 7.6 mm, rectangle, grid 10.16 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> body 12.5 x 12.5 mm, rectangle, grid 10.16 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> diameter 4 mm, grid 2.54 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> diameter 4 mm, grid 2.54 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 5 mm, grid 2.54 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 6 mm, grid 2.54 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 6 mm, grid 2.54 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 7 mm, grid 2.54 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 7 mm, grid 2.54 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 10 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 11 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 11 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 6 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 6 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 7 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 7 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 9 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 9 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> rectangle, grid 2.54 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> rectangle, grid 5.08 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> rectangle, grid 5.08 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> rectangle, grid 10.16 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> rectangle, grid 10.16 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> diameter 4.5 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 5.0 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 7.0 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 6.0 mm, grid 5.08 mm >NAME >VALUE TT <b>ELECTROLYTIC CAPACITOR</b><p> diameter 8.0 mm, grid 5.08 mm >NAME >VALUE TT <b>Aluminum electrolytic capacitors</b> reflow soldering<p> SMD (Chip) Standard 085 CS<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b> wave soldering<p> SMD (Chip) Standard 085 CS<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b> reflow soldering<p> SMD (Chip) Standard 085 CS<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b> wave soldering<p> SMD (Chip) Standard 085 CS<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b> reflow soldering<p> SMD (Chip) Long Life 139 CLL<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b> wave soldering<p> SMD (Chip) Long Life 139 CLL<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b> reflow soldering<p> SMD (Chip) Long Life 139 CLL<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b> wave soldering<p> SMD (Chip) Long Life 139 CLL<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors SMD (Chip)</b><p> Long life base plate, High temperature 140 CLH<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors SMD (Chip)</b><p> Long life base plate, High temperature 140 CLH<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors SMD (Chip)</b><p> Long life base plate, High temperature 140 CLH<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors SMD (Chip)</b><p> Long life base plate, very low impedance 150 CLZ<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors SMD (Chip)</b><p> Long life base plate, very low impedance 150 CLZ<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors SMD (Chip)</b><p> Long life base plate, very low impedance 150 CLZ<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b><p> SMD (Chip) Long Life Vertical 153 CLV<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b><p> SMD (Chip) Long Life Vertical 153 CLV<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b><p> SMD (Chip) Long Life Vertical 153 CLV<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b><p> SMD (Chip) Long Life Vertical 153 CLV<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b><p> SMD (Chip) Long Life Vertical 153 CLV<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b><p> SMD (Chip) Long Life Vertical 153 CLV<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b><p> SMD (Chip) Long Life Vertical 153 CLV<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b><p> SMD (Chip) Long Life Vertical 153 CLV<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b><p> High Temperature solid electrolytic SMD 175 TMP<p> http://www.bccomponents.com/ >NAME >VALUE <b>Aluminum electrolytic capacitors</b><p> High Temperature solid electrolytic SMD 175 TMP<p> http://www.bccomponents.com/ >NAME >VALUE <b>Chip Capacitor Type KEMET A / EIA 3216-18 Reflow solder</b><p> KEMET S / EIA 3216-12 >NAME >VALUE + <b>Chip Capacitor Type KEMET A / EIA 3216-18 Wave solder</b><p> KEMET S / EIA 3216-12 >NAME >VALUE <b>Chip Capacitor Type KEMET B / EIA 3528-21 Reflow solder</b><p> KEMET T / EIA 3528-12 >NAME >VALUE <b>Chip Capacitor Type KEMET B / EIA 3528-21 Wave solder</b><p> KEMET T / EIA 3528-12 >NAME >VALUE <b>Chip Capacitor Type KEMET C / EIA 6032-28 Reflow solder</b><p> KEMET U / EIA 6032-15 >NAME >VALUE <b>Chip Capacitor Type KEMET C / EIA 6032-28 Wafe solder</b><p> KEMET U / EIA 6032-15 >NAME >VALUE <b>Chip Capacitor Type KEMET D / EIA 7343-21</b><p> KEMET V / EIA 7343-20, KEMET X / EIA 7343-43 Reflow solder >NAME >VALUE <b>Chip Capacitor Type KEMET D / EIA 7343-21</b><p> KEMET V / EIA 7343-20, KEMET X / EIA 7343-43 Wafe solder >NAME >VALUE <b>Chip Capacitor Type KEMET E / EIA 7260-38 Reflow solder</b> >NAME >VALUE <b>Chip Capacitor Type KEMET E / EIA 7260-38 Wafe solder</b> >NAME >VALUE <b>Chip Capacitor Type KEMET R/EIA 2012-12 Reflow solder</b> >NAME >VALUE <b>Chip Capacitor Type KEMET R/EIA 2012-12 Wafe solder</b> >NAME >VALUE <b>Panasonic Aluminium Electrolytic Capacitor VS-Serie Package A</b> >NAME >VALUE <b>Panasonic Aluminium Electrolytic Capacitor VS-Serie Package B</b> >NAME >VALUE <b>Panasonic Aluminium Electrolytic Capacitor VS-Serie Package C</b> >NAME >VALUE <b>Panasonic Aluminium Electrolytic Capacitor VS-Serie Package D</b> >NAME >VALUE <b>Panasonic Aluminium Electrolytic Capacitor VS-Serie Package E</b> >NAME >VALUE <b>Panasonic Aluminium Electrolytic Capacitor VS-Serie Package F</b> >NAME >VALUE <b>Panasonic Aluminium Electrolytic Capacitor VS-Serie Package G</b> >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 1.8 mm, diameter 4 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 10.16 mm, diameter 20 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 10.16 mm, diameter 22.5 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 10.16 mm, diameter 25 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 10.16 mm, diameter 30 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 10.16 mm, diameter 35 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 15.24 mm, diameter 5 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 15.24 mm, diameter 6 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 15.24 mm, diameter 9 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 2.54 mm, diameter 6 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 2 mm, diameter 4 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 2.032 mm, diameter 5 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 2.54 mm, diameter 4 mm, >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 2.54 mm, diameter 5 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 2.54 mm, diameter 4 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 2.54 mm, diameter 6 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 2.54 mm, diameter 7 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 22.86 mm, diameter 10 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 22.86 mm, diameter 6 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 22.86 mm, diameter 9 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 25.4 mm, diameter 10 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 25.4 mm, diameter 9 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 3.5 mm, diameter 10 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 3.5 mm, diameter 8 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 30.48 mm, diameter 10 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 30.48 mm, diameter 12 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 30.48 mm, diameter 16 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 35.56 mm, diameter 12 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 30.48 mm, diameter 14 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 30.48 mm, diameter 16 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 30.48 mm, diameter 18 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 45.72 mm, diameter 16 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 45.72 mm, diameter 18 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 45.72 mm, diameter 21 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 45.72 mm, diameter 22 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 45.72 mm, diameter 25 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 5.08 mm, diameter 10.5 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 5.08 mm, diameter 13 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 5.05 mm, diameter 4 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 5.08 mm, diameter 5 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 5.08 mm, diameter 6 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 5.08 mm, diameter 8.5 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 5.08 mm, diameter 9 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 50 mm, diameter 25 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 50 mm, diameter 30 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 55 mm, diameter 25 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 55 mm, diameter 30 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 7.62 mm, diameter 16 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> grid 7.62 mm, diameter 18 mm >NAME >VALUE <b>ELECTROLYTIC CAPACITOR</b><p> diameter 5 mm, grid 2.54 mm >NAME >VALUE TT <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip, wave soldering >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip, wave soldering >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip, wave soldering >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip, wave soldering >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip, wave soldering >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip, wave soldering >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip, wave soldering >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip, wave soldering >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip, wave soldering >NAME >VALUE <b>RESISTOR</b><p> chip >NAME >VALUE <b>RESISTOR</b><p> chip, wave soldering >NAME >VALUE <b>RESISTOR</b><p> MELF 0.10 W >NAME >VALUE <b>RESISTOR</b><p> MELF 0.25 W >NAME >VALUE <b>RESISTOR</b><p> MELF 0.12 W >NAME >VALUE <b>RESISTOR</b><p> MELF 0.10 W >NAME >VALUE <b>RESISTOR</b><p> MELF 0.25 W >NAME >VALUE <b>RESISTOR</b><p> MELF 0.25 W >NAME >VALUE <b>RESISTOR</b><p> MELF 0.12 W >NAME >VALUE <b>RESISTOR</b><p> MELF 0.25 W >NAME >VALUE <b>RESISTOR</b><p> type 0204, grid 5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0204, grid 7.5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0207, grid 10 mm >NAME >VALUE <b>RESISTOR</b><p> type 0207, grid 12 mm >NAME >VALUE <b>RESISTOR</b><p> type 0207, grid 15mm >NAME >VALUE <b>RESISTOR</b><p> type 0207, grid 2.5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0207, grid 5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0207, grid 7.5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0309, grid 10mm >NAME >VALUE <b>RESISTOR</b><p> type 0309, grid 12.5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0411, grid 12.5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0411, grid 15 mm >NAME >VALUE <b>RESISTOR</b><p> type 0411, grid 3.81 mm >NAME >VALUE <b>RESISTOR</b><p> type 0414, grid 15 mm >NAME >VALUE <b>RESISTOR</b><p> type 0414, grid 5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0617, grid 17.5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0617, grid 22.5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0617, grid 5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0922, grid 22.5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0613, grid 5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0613, grid 15 mm >NAME >VALUE <b>RESISTOR</b><p> type 0817, grid 22.5 mm >NAME >VALUE 0817 <b>RESISTOR</b><p> type 0817, grid 6.35 mm >NAME >VALUE 0817 <b>RESISTOR</b><p> type V234, grid 12.5 mm >NAME >VALUE <b>RESISTOR</b><p> type V235, grid 17.78 mm >NAME >VALUE <b>RESISTOR</b><p> type V526-0, grid 2.5 mm >NAME >VALUE <b>Mini MELF 0102 Axial</b> >NAME >VALUE <b>RESISTOR</b><p> type 0922, grid 7.5 mm >NAME >VALUE 0922 <b>CECC Size RC2211</b> Reflow Soldering<p> source Beyschlag >NAME >VALUE <b>CECC Size RC2211</b> Wave Soldering<p> source Beyschlag >NAME >VALUE <b>CECC Size RC3715</b> Reflow Soldering<p> source Beyschlag >NAME >VALUE <b>CECC Size RC3715</b> Wave Soldering<p> source Beyschlag >NAME >VALUE <b>CECC Size RC6123</b> Reflow Soldering<p> source Beyschlag >NAME >VALUE <b>CECC Size RC6123</b> Wave Soldering<p> source Beyschlag >NAME >VALUE <b>RESISTOR</b><p> type RDH, grid 15 mm >NAME >VALUE RDH <b>RESISTOR</b><p> type 0204, grid 2.5 mm >NAME >VALUE <b>RESISTOR</b><p> type 0309, grid 2.5 mm >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> chip >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 mm, outline 2.4 x 4.4 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 mm, outline 2.5 x 5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 mm, outline 3 x 5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 mm, outline 4 x 5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 mm, outline 5 x 5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 mm, outline 6 x 5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 mm + 5 mm, outline 2.4 x 7 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 + 5 mm, outline 2.5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 + 5 mm, outline 3.5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 + 5 mm, outline 4.5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 2.5 + 5 mm, outline 5.5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 5 mm, outline 2.4 x 4.4 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 5 mm, outline 2.5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 5 mm, outline 4.5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 5 mm, outline 3 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 5 mm, outline 5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 5 mm, outline 5.5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 5 mm, outline 7.5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> Horizontal, grid 5 mm, outline 7.5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 7.5 mm, outline 3.2 x 10.3 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 7.5 mm, outline 4.2 x 10.3 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 7.5 mm, outline 5.2 x 10.6 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 10.2 mm, outline 4.3 x 13.3 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 10.2 mm, outline 5.4 x 13.3 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 10.2 mm, outline 6.4 x 13.3 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 10.2 mm + 15.2 mm, outline 6.2 x 18.4 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 15 mm, outline 5.4 x 18.3 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 15 mm, outline 6.4 x 18.3 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 15 mm, outline 7.2 x 18.3 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 15 mm, outline 8.4 x 18.3 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 15 mm, outline 9.1 x 18.2 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 22.5 mm, outline 6.2 x 26.8 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 22.5 mm, outline 7.4 x 26.8 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 22.5 mm, outline 8.7 x 26.8 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 22.5 mm, outline 10.8 x 26.8 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 22.5 mm, outline 11.3 x 26.8 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 27.5 mm, outline 9.3 x 31.6 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 27.5 mm, outline 11.3 x 31.6 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 27.5 mm, outline 13.4 x 31.6 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 27.5 mm, outline 20.5 x 31.6 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 32.5 mm, outline 13.7 x 37.4 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 32.5 mm, outline 16.2 x 37.4 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 32.5 mm, outline 18.2 x 37.4 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 37.5 mm, outline 19.2 x 41.8 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 37.5 mm, outline 20.3 x 41.8 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 5 mm, outline 3.5 x 7.5 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 37.5 mm, outline 15.5 x 41.8 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 7.5 mm, outline 6.3 x 10.6 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 27.5 mm, outline 15.4 x 31.6 mm >NAME >VALUE <b>CAPACITOR</b><p> grid 27.5 mm, outline 17.3 x 31.6 mm >NAME >VALUE <b>Ceramic Chip Capacitor KEMET 0204 Reflow solder</b><p> Metric Code Size 1005 >NAME >VALUE <b>Ceramic Chip Capacitor KEMET 0603 Reflow solder</b><p> Metric Code Size 1608 >NAME >VALUE <b>Ceramic Chip Capacitor KEMET 0805 Reflow solder</b><p> Metric Code Size 2012 >NAME >VALUE <b>Ceramic Chip Capacitor KEMET 1206 Reflow solder</b><p> Metric Code Size 3216 >NAME >VALUE <b>Ceramic Chip Capacitor KEMET 1210 Reflow solder</b><p> Metric Code Size 3225 >NAME >VALUE <b>Ceramic Chip Capacitor KEMET 1812 Reflow solder</b><p> Metric Code Size 4532 >NAME >VALUE <b>Ceramic Chip Capacitor KEMET 1825 Reflow solder</b><p> Metric Code Size 4564 >NAME >VALUE <b>Ceramic Chip Capacitor KEMET 2220 Reflow solder</b><p> Metric Code Size 5650 >NAME >VALUE <b>Ceramic Chip Capacitor KEMET 2225 Reflow solder</b><p> Metric Code Size 5664 >NAME >VALUE <b>CHICAGO MINIATURE LAMP, INC.</b><p> 7022X Series SMT LEDs 1206 Package Size >NAME >VALUE <B>LED</B><p> 5 mm, square, Siemens >NAME >VALUE <B>LED</B><p> 2 x 5 mm, rectangle >NAME >VALUE <B>LED</B><p> 3 mm, round >NAME >VALUE <B>LED</B><p> 5 mm, round >NAME >VALUE <B>LED</B><p> 1 mm, round, Siemens >NAME >VALUE <B>LED BLOCK</B><p> 1 LED, Siemens >NAME >VALUE <b>LED HOLDER</b><p> Siemens >NAME >VALUE <b>LED HOLDER</b><p> Siemens >NAME >VALUE <b>LED HOLDER</b><p> Siemens A+ K- >NAME >VALUE <b>LED HOLDER</b><p> Siemens >NAME >VALUE + - <B>IR LED</B><p> infrared emitting diode, Infineon TO-18, lead spacing 2.54 mm, cathode marking<p> Inifineon >NAME >VALUE <B>IR LED</B><p> infrared emitting diode, Infineon TO-18, lead spacing 2.54 mm, cathode marking<p> Inifineon >NAME >VALUE <B>LED</B><p> rectangle, 5.7 x 3.2 mm >NAME >VALUE <B>IR LED</B><p> IR transmitter Siemens >NAME >VALUE <b>TOPLED® High-optical Power LED (HOP)</b><p> Source: http://www.osram.convergy.de/ ... ls_t675.pdf >NAME >VALUE A C <b>BLUE LINETM Hyper Mini TOPLED® Hyper-Bright LED</b><p> Source: http://www.osram.convergy.de/ ... LB M676.pdf A C >NAME >VALUE <b>Super SIDELED® High-Current LED</b><p> LG A672, LP A672 <br> Source: http://www.osram.convergy.de/ ... LG_LP_A672.pdf (2004.05.13) C A >NAME >VALUE <b>SmartLEDTM Hyper-Bright LED</b><p> Source: http://www.osram.convergy.de/ ... LA_LO_LS_LY L896.pdf >NAME >VALUE <b>Hyper TOPLED® RG Hyper-Bright LED</b><p> Source: http://www.osram.convergy.de/ ... LA_LO_LS_LY T776.pdf >NAME >VALUE A C <b>Hyper Micro SIDELED®</b><p> Source: http://www.osram.convergy.de/ ... LA_LO_LS_LY Y876.pdf >NAME >VALUE <b>Power TOPLED®</b><p> Source: http://www.osram.convergy.de/ ... LA_LO_LA_LY E67B.pdf >NAME >VALUE C A C C <b>Hyper CHIPLED Hyper-Bright LED</b><p> LB Q993<br> Source: http://www.osram.convergy.de/ ... Lb_q993.pdf >NAME >VALUE <b>Hyper CHIPLED Hyper-Bright LED</b><p> LB R99A<br> Source: http://www.osram.convergy.de/ ... lb_r99a.pdf >NAME >VALUE + <b>Mini TOPLED Santana®</b><p> Source: http://www.osram.convergy.de/ ... LG M470.pdf >NAME >VALUE <b>CHIPLED</b><p> Source: http://www.osram.convergy.de/ ... LG_R971.pdf >NAME >VALUE <b>CHIPLED</b><p> Source: http://www.osram.convergy.de/ ... LG_LY N971.pdf >NAME >VALUE <b>CHIPLED</b><p> Source: http://www.osram.convergy.de/ ... LG_LY Q971.pdf >NAME >VALUE <b>CHIPLED-0603</b><p> Recommended Solder Pad useable for SmartLEDTM and Chipled - Package 0603<br> Package able to withstand TTW-soldering heat<br> Package suitable for TTW-soldering<br> Source: http://www.osram.convergy.de/ ... LO_LS_LY L89K.pdf >NAME >VALUE <b>SmartLED TTW</b><p> Recommended Solder Pad useable for SmartLEDTM and Chipled - Package 0603<br> Package able to withstand TTW-soldering heat<br> Package suitable for TTW-soldering<br> Source: http://www.osram.convergy.de/ ... LO_LS_LY L89K.pdf >NAME >VALUE >NAME >VALUE A K Multilayer SMD >VALUE >NAME >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >VALUE >NAME <B>POLARIZED CAPACITOR</B>, American symbol <B>RESISTOR</B>, American symbol <B>CAPACITOR</B>, American symbol <b>LED</b><p> <u>OSRAM</u>:<br> - <u>CHIPLED</u><br> LG R971, LG N971, LY N971, LG Q971, LY Q971, LO R971, LY R971 LH N974, LH R974<br> LS Q976, LO Q976, LY Q976<br> LO Q996<br> - <u>Hyper CHIPLED</u><br> LW Q18S<br> LB Q993, LB Q99A, LB R99A<br> - <u>SideLED</u><br> LS A670, LO A670, LY A670, LG A670, LP A670<br> LB A673, LV A673, LT A673, LW A673<br> LH A674<br> LY A675<br> LS A676, LA A676, LO A676, LY A676, LW A676<br> LS A679, LY A679, LG A679<br> - <u>Hyper Micro SIDELED®</u><br> LS Y876, LA Y876, LO Y876, LY Y876<br> LT Y87S<br> - <u>SmartLED</u><br> LW L88C, LW L88S<br> LB L89C, LB L89S, LG L890<br> LS L89K, LO L89K, LY L89K<br> LS L896, LA L896, LO L896, LY L896<br> - <u>TOPLED</u><br> LS T670, LO T670, LY T670, LG T670, LP T670<br> LSG T670, LSP T670, LSY T670, LOP T670, LYG T670<br> LG T671, LOG T671, LSG T671<br> LB T673, LV T673, LT T673, LW T673<br> LH T674<br> LS T676, LA T676, LO T676, LY T676, LB T676, LH T676, LSB T676, LW T676<br> LB T67C, LV T67C, LT T67C, LS T67K, LO T67K, LY T67K, LW E67C<br> LS E67B, LA E67B, LO E67B, LY E67B, LB E67C, LV E67C, LT E67C<br> LW T67C<br> LS T679, LY T679, LG T679<br> LS T770, LO T770, LY T770, LG T770, LP T770<br> LB T773, LV T773, LT T773, LW T773<br> LH T774<br> LS E675, LA E675, LY E675, LS T675<br> LS T776, LA T776, LO T776, LY T776, LB T776<br> LHGB T686<br> LT T68C, LB T68C<br> - <u>Hyper Mini TOPLED®</u><br> LB M676<br> - <u>Mini TOPLED Santana®</u><br> LG M470<br> LS M47K, LO M47K, LY M47K<br> <p> Source: http://www.osram.convergy.de/ PTC fuses, resettable thermistors <b>Test Pins/Pads</b><p> Cream on SMD OFF.<br> new: Attribute TP_SIGNAL_NAME<br> <author>Created by librarian@cadsoft.de</author> <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME <b>TEST PAD</b> >NAME >VALUE >TP_SIGNAL_NAME TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD TEST PAD >NAME >TP_SIGNAL_NAME <b>Test pad</b> <b>SMA</b> CASE 403D-02<p> Source: http://www.onsemi.com/pub_link/Collateral/MBRA340T3-D.PDF >NAME >NAME >VALUE * * >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE 1 2 306010020 <Microchip RN4870-V/RM118 Bluetooth Chip 4.2</b><p> <author>Created by SamacSys</author> <b>RN4870</b><br> >NAME >VALUE >NAME >VALUE <b>Microchip RN4870-V/RM118 Bluetooth Chip 4.2</b><p> Source: <a href="http://docs-emea.rs-online.com/webdocs/152f/0900766b8152ff8f.pdf"> Datasheet </a> * >Value * >Name >Name >Value <Darlington Transistors TRANSISTOR ARRAYS</b><p> <author>Created by SamacSys</author> <b>DW (R-PDSO-G18)</b><br> >NAME >VALUE >NAME >VALUE <b>Darlington Transistors TRANSISTOR ARRAYS</b><p> Source: <a href="http://www.ti.com/lit/ds/symlink/uln2803a.pdf"> Datasheet </a> <h3>SparkFun Connectors</h3> This library contains electrically-functional connectors. <br> <br> We've spent an enormous amount of time creating and checking these footprints and parts, but it is <b> the end user's responsibility</b> to ensure correctness and suitablity for a given componet or application. <br> <br>If you enjoy using this library, please buy one of our products at <a href=" www.sparkfun.com">SparkFun.com</a>. <br> <br> <b>Licensing:</b> Creative Commons ShareAlike 4.0 International - https://creativecommons.org/licenses/by-sa/4.0/ <br> <br> You are welcome to use this library for commercial purposes. For attribution, we ask that when you begin to sell your device using our footprint, you email us with a link to the product being sold. We want bragging rights that we helped (in a very small part) to create your 8th world wonder. We would like the opportunity to feature your device on our homepage. <h3>Plated Through Hole - 4 Pin</h3> <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>Molex 4-Pin Plated Through-Hole</h3> <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p><a href=”https://www.sparkfun.com/datasheets/Prototyping/2pin_molex_set_19iv10.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>Screw Terminal 3.5mm Pitch -4 Pin PTH</h3> <p>Specifications: <ul><li>Pin count: 4</li> <li>Pin pitch: 3.5mm/138mil</li> </ul></p> <p><a href=”https://www.sparkfun.com/datasheets/Prototyping/Screw-Terminal-3.5mm.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole - 4 Pin</h3> <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch: 1.27mm</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole - 4 Pin Locking Footprint</h3> Pins are offset 0.005" from center to lock pins in place during soldering. <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole - 4 Pin Long Pads w/ Locking Footprint</h3> Holes are offset 0.005" from center to lock pins in place during soldering. <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>Molex 4-Pin Plated Through-Hole Locking</h3> Holes are offset 0.005" from center to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p><a href=”https://www.sparkfun.com/datasheets/Prototyping/2pin_molex_set_19iv10.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>SMD - 4 Pin Right Angle Male Header</h3> tDocu layer shows pin locations. <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole - 4 Pin Long Pads</h3> <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole - 4 Pin No Silk Outline</h3> <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>JST Right Angle 4 Pin Plated Through Hole</h3> <p>Specifications: <ul><li>Pin count: 4</li> <li>Pin pitch: 2mm</li> </ul></p> <p><a href=”https://www.sparkfun.com/datasheets/Prototyping/ePH.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> + - S S >NAME >VALUE <h3>Screw Terminal 3.5mm Pitch -4 Pin PTH Locking</h3> Holes are offset 0.005" from center to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count: 4</li> <li>Pin pitch: 3.5mm/138mil</li> </ul></p> <p><a href=”https://www.sparkfun.com/datasheets/Prototyping/Screw-Terminal-3.5mm.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>SMD- 4 Pin Right Angle </h3> <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>SMD - 4 Pin Vertical Connector</h3> <p>Specifications: <ul><li>Pin count:4</li> <li>SMD Pad count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>SMD - 4 Pin w/ Long Solder Pads</h3> No silk, but tDocu layer shows pin position. <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> <h3>JST Vertical 4 Pin Plated Through Hole</h3> <p>Specifications: <ul><li>Pin count: 4</li> <li>Pin pitch: 2mm</li> </ul></p> <p><a href="http://www.jst-mfg.com/product/pdf/eng/ePH.pdf">Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> + - Y B >NAME >VALUE <h3>SMD - 4 Pin Right-Angle Female Header</h3> Silk outline shows header location. <p>Specifications: <ul><li>Pin count:4</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_04</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -8 Pin</h3> <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -8 Pin Locking Footprint</h3> Holes are offset 0.005", to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -8 Pin Locking Footprint with Long Pads</h3> Holes are offset 0.005", to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -8 Pin Long Pads</h3> <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>Screw Terminal 3.5mm Pitch -8 Pin PTH</h3> <p>Specifications: <ul><li>Pin count: 8</li> <li>Pin pitch: 3.5mm/138mil</li> </ul></p> <p><a href=”https://www.sparkfun.com/datasheets/Prototyping/Screw-Terminal-3.5mm.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>SMD -8 Pin Vertical Female</h3> <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p><a href=”http://cdn.sparkfun.com/datasheets/Prototyping/femaleSMDheader.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>SMD -8 Pin Vertical Female</h3> Alternate pin configuration <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p><a href=”http://cdn.sparkfun.com/datasheets/Prototyping/femaleSMDheader.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>SMD -8 Pin Vertical Female</h3> Combined footprint configuration <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p><a href=”http://cdn.sparkfun.com/datasheets/Prototyping/femaleSMDheader.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>JST Vertical Crimp Connect</h3> <p>Specifications: <ul><li>Pin count: 8</li> <li>Pin pitch:1mm</li> </ul></p> <p><a href=”http://www.jst-mfg.com/product/pdf/eng/eSR.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>SMD -8 Pin Vertical Male</h3> <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p><a href=”http://cdn.sparkfun.com/datasheets/Prototyping/maleSMDheader.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -8 Pin No Silk</h3> <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -8 Pin Locking Footprint No Silk</h3> Holes are offset 0.005", to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -8 Pin Locking Female Headers</h3> Holes are offset 0.005" to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count:8</li> <li>Pin pitch:0.1"</li> </ul></p> <p><a href=”https://cdn.sparkfun.com/datasheets/Prototyping/SP-140520-XX-001.pdf”>Datasheet referenced for footprint</a></p> <p>Example device(s): <ul><li>CONN_08</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -12 Pin</h3> <p>Specifications: <ul><li>Pin count:12</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_12</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -12 Pin Locking Footprint</h3> Holes are offset 0.005", to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count:12</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_12</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -12 Pin Locking Footprint with Long Pads</h3> Holes are offset 0.005", to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count:12</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_12</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -12 Pin Machine Pin Headers</h3> Holes are offset 0.005", to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count:12</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_12</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -12 Pin Long Pads</h3> Holes are offset 0.005", to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count:12</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_12</li> </ul></p> >NAME >VALUE <h3>Holes -12 Pin</h3> No plating, no silk <p>Specifications: <ul><li>Pin count:12</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_12</li> </ul></p> <h3>Plated Through Hole -12 Pin No Silk Kit</h3> Mask on one side only for soldering kits. <p>Specifications: <ul><li>Pin count:12</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_12</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -12 Pin No Silk</h3> <p>Specifications: <ul><li>Pin count:12</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_12</li> </ul></p> >NAME >VALUE <h3>Plated Through Hole -12 Pin Locking Footprint No Silk</h3> Holes are offset 0.005", to hold pins in place during soldering. <p>Specifications: <ul><li>Pin count:12</li> <li>Pin pitch:0.1"</li> </ul></p> <p>Example device(s): <ul><li>CONN_12</li> </ul></p> >NAME >VALUE Plated Through Hole - 4 Pin Specifications: Pin count:4 Pin pitch:0.1" Example device(s): CONN_04 Molex 4-Pin Plated Through-Hole Specifications: Pin count:4 Pin pitch:0.1" Datasheet referenced for footprint Example device(s): CONN_04 Screw Terminal 3.5mm Pitch -4 Pin PTH Specifications: Pin count: 4 Pin pitch: 3.5mm/138mil Datasheet referenced for footprint Example device(s): CONN_04 Plated Through Hole - 4 Pin Specifications: Pin count:4 Pin pitch: 1.27mm Example device(s): CONN_04 Plated Through Hole - 4 Pin Locking Footprint Pins are offset 0.005" from center to lock pins in place during soldering. Specifications: Pin count:4 Pin pitch:0.1" Example device(s): CONN_04 Plated Through Hole - 4 Pin Long Pads w/ Locking Footprint Holes are offset 0.005" from center to lock pins in place during soldering. Specifications: Pin count:4 Pin pitch:0.1" Example device(s): CONN_04 Molex 4-Pin Plated Through-Hole Locking Holes are offset 0.005" from center to hold pins in place during soldering. Specifications: Pin count:4 Pin pitch:0.1" Datasheet referenced for footprint Example device(s): CONN_04 SMD - 4 Pin Right Angle Male Header tDocu layer shows pin locations. Specifications: Pin count:4 Pin pitch:0.1" Example device(s): CONN_04 Plated Through Hole - 4 Pin Long Pads Specifications: Pin count:4 Pin pitch:0.1" Example device(s): CONN_04 Plated Through Hole - 4 Pin No Silk Outline Specifications: Pin count:4 Pin pitch:0.1" Example device(s): CONN_04 JST Right Angle 4 Pin Plated Through Hole Specifications: Pin count: 4 Pin pitch: 2mm Datasheet referenced for footprint Example device(s): CONN_04 Screw Terminal 3.5mm Pitch -4 Pin PTH Locking Holes are offset 0.005" from center to hold pins in place during soldering. Specifications: Pin count: 4 Pin pitch: 3.5mm/138mil Datasheet referenced for footprint Example device(s): CONN_04 SMD- 4 Pin Right Angle Specifications: Pin count:4 Pin pitch:0.1" Example device(s): CONN_04 SMD - 4 Pin Vertical Connector Specifications: Pin count:4 SMD Pad count:8 Pin pitch:0.1" Example device(s): CONN_04 SMD - 4 Pin w/ Long Solder Pads No silk, but tDocu layer shows pin position. Specifications: Pin count:4 Pin pitch:0.1" Example device(s): CONN_04 JST Vertical 4 Pin Plated Through Hole Specifications: Pin count: 4 Pin pitch: 2mm Datasheet referenced for footprint Example device(s): CONN_04 SMD - 4 Pin Right-Angle Female Header Silk outline shows header location. Specifications: Pin count:4 Pin pitch:0.1" Example device(s): CONN_04 Plated Through Hole -8 Pin Specifications: Pin count:8 Pin pitch:0.1" Example device(s): CONN_08 Plated Through Hole -8 Pin Locking Footprint Holes are offset 0.005", to hold pins in place during soldering. Specifications: Pin count:8 Pin pitch:0.1" Example device(s): CONN_08 Plated Through Hole -8 Pin Locking Footprint with Long Pads Holes are offset 0.005", to hold pins in place during soldering. Specifications: Pin count:8 Pin pitch:0.1" Example device(s): CONN_08 Plated Through Hole -8 Pin Long Pads Specifications: Pin count:8 Pin pitch:0.1" Example device(s): CONN_08 Screw Terminal 3.5mm Pitch -8 Pin PTH Specifications: Pin count: 8 Pin pitch: 3.5mm/138mil Datasheet referenced for footprint Example device(s): CONN_08 SMD -8 Pin Vertical Female Specifications: Pin count:8 Pin pitch:0.1" Datasheet referenced for footprint Example device(s): CONN_08 SMD -8 Pin Vertical Female Alternate pin configuration Specifications: Pin count:8 Pin pitch:0.1" Datasheet referenced for footprint Example device(s): CONN_08 SMD -8 Pin Vertical Female Combined footprint configuration Specifications: Pin count:8 Pin pitch:0.1" Datasheet referenced for footprint Example device(s): CONN_08 JST Vertical Crimp Connect Specifications: Pin count: 8 Pin pitch:1mm Datasheet referenced for footprint Example device(s): CONN_08 SMD -8 Pin Vertical Male Specifications: Pin count:8 Pin pitch:0.1" Datasheet referenced for footprint Example device(s): CONN_08 Plated Through Hole -8 Pin No Silk Specifications: Pin count:8 Pin pitch:0.1" Example device(s): CONN_08 Plated Through Hole -8 Pin Locking Footprint No Silk Holes are offset 0.005", to hold pins in place during soldering. Specifications: Pin count:8 Pin pitch:0.1" Example device(s): CONN_08 Plated Through Hole -8 Pin Locking Female Headers Holes are offset 0.005" to hold pins in place during soldering. Specifications: Pin count:8 Pin pitch:0.1" Datasheet referenced for footprint Example device(s): CONN_08 Plated Through Hole -12 Pin Specifications: Pin count:12 Pin pitch:0.1" Example device(s): CONN_12 Plated Through Hole -12 Pin Locking Footprint Holes are offset 0.005", to hold pins in place during soldering. Specifications: Pin count:12 Pin pitch:0.1" Example device(s): CONN_12 Plated Through Hole -12 Pin Locking Footprint with Long Pads Holes are offset 0.005", to hold pins in place during soldering. Specifications: Pin count:12 Pin pitch:0.1" Example device(s): CONN_12 Plated Through Hole -12 Pin Machine Pin Headers Holes are offset 0.005", to hold pins in place during soldering. Specifications: Pin count:12 Pin pitch:0.1" Example device(s): CONN_12 Plated Through Hole -12 Pin Long Pads Holes are offset 0.005", to hold pins in place during soldering. Specifications: Pin count:12 Pin pitch:0.1" Example device(s): CONN_12 Holes -12 Pin No plating, no silk Specifications: Pin count:12 Pin pitch:0.1" Example device(s): CONN_12 Plated Through Hole -12 Pin No Silk Kit Mask on one side only for soldering kits. Specifications: Pin count:12 Pin pitch:0.1" Example device(s): CONN_12 Plated Through Hole -12 Pin No Silk Specifications: Pin count:12 Pin pitch:0.1" Example device(s): CONN_12 Plated Through Hole -12 Pin Locking Footprint No Silk Holes are offset 0.005", to hold pins in place during soldering. Specifications: Pin count:12 Pin pitch:0.1" Example device(s): CONN_12 <h3>4 Pin Connection</h3> >VALUE >NAME <h3> 8 Pin Connection</h3> >VALUE >NAME <h3> 12 Pin Connection</h3> >VALUE >NAME <h3>Multi connection point. Often used as Generic Header-pin footprint for 0.1 inch spaced/style header connections</h3> <p></p> <b>On any of the 0.1 inch spaced packages, you can populate with these:</b> <ul> <li><a href="https://www.sparkfun.com/products/116"> Break Away Headers - Straight</a> (PRT-00116)</li> <li><a href="https://www.sparkfun.com/products/553"> Break Away Male Headers - Right Angle</a> (PRT-00553)</li> <li><a href="https://www.sparkfun.com/products/115"> Female Headers</a> (PRT-00115)</li> <li><a href="https://www.sparkfun.com/products/117"> Break Away Headers - Machine Pin</a> (PRT-00117)</li> <li><a href="https://www.sparkfun.com/products/743"> Break Away Female Headers - Swiss Machine Pin</a> (PRT-00743)</li> </ul> <p></p> <b> For SCREWTERMINALS and SPRING TERMINALS visit here:</b> <ul> <li><a href="https://www.sparkfun.com/search/results?term=Screw+Terminals"> Screw Terimnals on SparkFun.com</a> (5mm/3.5mm/2.54mm spacing)</li> </ul> <p></p> <b>This device is also useful as a general connection point to wire up your design to another part of your project. Our various solder wires solder well into these plated through hole pads.</b> <ul> <li><a href="https://www.sparkfun.com/products/11375"> Hook-Up Wire - Assortment (Stranded, 22 AWG)</a> (PRT-11375)</li> <li><a href="https://www.sparkfun.com/products/11367"> Hook-Up Wire - Assortment (Solid Core, 22 AWG)</a> (PRT-11367)</li> <li><a href="https://www.sparkfun.com/categories/141"> View the entire wire category on our website here</a></li> <p></p> </ul> <p></p> <b>Special notes:</b> <p> </p> Molex polarized connector foot print use with SKU : PRT-08231 with associated crimp pins and housings. 1MM SMD Version SKU: PRT-10208 <h3>Multi connection point. Often used as Generic Header-pin footprint for 0.1 inch spaced/style header connections</h3> <p></p> <b>On any of the 0.1 inch spaced packages, you can populate with these:</b> <ul> <li><a href="https://www.sparkfun.com/products/116"> Break Away Headers - Straight</a> (PRT-00116)</li> <li><a href="https://www.sparkfun.com/products/553"> Break Away Male Headers - Right Angle</a> (PRT-00553)</li> <li><a href="https://www.sparkfun.com/products/115"> Female Headers</a> (PRT-00115)</li> <li><a href="https://www.sparkfun.com/products/117"> Break Away Headers - Machine Pin</a> (PRT-00117)</li> <li><a href="https://www.sparkfun.com/products/743"> Break Away Female Headers - Swiss Machine Pin</a> (PRT-00743)</li> <li><a href="https://www.sparkfun.com/products/9279"> Arduino Stackable Header - 8 Pin</a> (PRT-09279)</li> </ul> <p></p> <b> For SCREWTERMINALS and SPRING TERMINALS visit here:</b> <ul> <li><a href="https://www.sparkfun.com/search/results?term=Screw+Terminals"> Screw Terimnals on SparkFun.com</a> (5mm/3.5mm/2.54mm spacing)</li> </ul> <p></p> <b>This device is also useful as a general connection point to wire up your design to another part of your project. Our various solder wires solder well into these plated through hole pads.</b> <ul> <li><a href="https://www.sparkfun.com/products/11375"> Hook-Up Wire - Assortment (Stranded, 22 AWG)</a> (PRT-11375)</li> <li><a href="https://www.sparkfun.com/products/11367"> Hook-Up Wire - Assortment (Solid Core, 22 AWG)</a> (PRT-11367)</li> <li><a href="https://www.sparkfun.com/categories/141"> View the entire wire category on our website here</a></li> <p></p> </ul> <p></p> <b>Special notes:</b> <p> </p> Molex polarized connector foot print use with SKU : PRT-08231 with associated crimp pins and housings. 1MM SMD Version SKU: PRT-10208 <p></p> NOTES ON THE VARIANTS LOCK and LOCK_LONGPADS... This footprint was designed to help hold the alignment of a through-hole component (i.e. 6-pin header) while soldering it into place. You may notice that each hole has been shifted either up or down by 0.005 of an inch from it's more standard position (which is a perfectly straight line). This slight alteration caused the pins (the squares in the middle) to touch the edges of the holes. Because they are alternating, it causes a "brace" to hold the component in place. 0.005 has proven to be the perfect amount of "off-center" position when using our standard breakaway headers. Although looks a little odd when you look at the bare footprint, once you have a header in there, the alteration is very hard to notice. Also,if you push a header all the way into place, it is covered up entirely on the bottom side. <h3>Multi connection point. Often used as Generic Header-pin footprint for 0.1 inch spaced/style header connections</h3> <p></p> <b>On any of the 0.1 inch spaced packages, you can populate with these:</b> <ul> <li><a href="https://www.sparkfun.com/products/116"> Break Away Headers - Straight</a> (PRT-00116)</li> <li><a href="https://www.sparkfun.com/products/553"> Break Away Male Headers - Right Angle</a> (PRT-00553)</li> <li><a href="https://www.sparkfun.com/products/115"> Female Headers</a> (PRT-00115)</li> <li><a href="https://www.sparkfun.com/products/117"> Break Away Headers - Machine Pin</a> (PRT-00117)</li> <li><a href="https://www.sparkfun.com/products/743"> Break Away Female Headers - Swiss Machine Pin</a> (PRT-00743)</li> </ul> <p></p> <b> For SCREWTERMINALS and SPRING TERMINALS visit here:</b> <ul> <li><a href="https://www.sparkfun.com/search/results?term=Screw+Terminals"> Screw Terimnals on SparkFun.com</a> (5mm/3.5mm/2.54mm spacing)</li> </ul> <p></p> <b>This device is also useful as a general connection point to wire up your design to another part of your project. Our various solder wires solder well into these plated through hole pads.</b> <ul> <li><a href="https://www.sparkfun.com/products/11375"> Hook-Up Wire - Assortment (Stranded, 22 AWG)</a> (PRT-11375)</li> <li><a href="https://www.sparkfun.com/products/11367"> Hook-Up Wire - Assortment (Solid Core, 22 AWG)</a> (PRT-11367)</li> <li><a href="https://www.sparkfun.com/categories/141"> View the entire wire category on our website here</a></li> <p></p> </ul> <p></p> <b>Special notes:</b> <p> </p> Molex polarized connector foot print use with SKU : PRT-08231 with associated crimp pins and housings. 1MM SMD Version SKU: PRT-10208 <p></p> NOTES ON THE VARIANTS LOCK and LOCK_LONGPADS... This footprint was designed to help hold the alignment of a through-hole component (i.e. 6-pin header) while soldering it into place. You may notice that each hole has been shifted either up or down by 0.005 of an inch from it's more standard position (which is a perfectly straight line). This slight alteration caused the pins (the squares in the middle) to touch the edges of the holes. Because they are alternating, it causes a "brace" to hold the component in place. 0.005 has proven to be the perfect amount of "off-center" position when using our standard breakaway headers. Although looks a little odd when you look at the bare footprint, once you have a header in there, the alteration is very hard to notice. Also,if you push a header all the way into place, it is covered up entirely on the bottom side. Generated from <b>BeagleBone_Black_Wireless.sch</b><p> by exp-lbrs.ulp >NAME Chassis Mounting Hole w/GND connection ability <3-V to 5.5-V multichannel RS-232 line driver and receiver with +/-15-kV IEC ESD protection</b><p> <author>Created by SamacSys</author> <b>MAX3232ECPWR</b><br> >NAME >VALUE >NAME >VALUE <b>3-V to 5.5-V multichannel RS-232 line driver and receiver with +/-15-kV IEC ESD protection</b><p> Source: <a href="http://www.ti.com/general/docs/lit/getliterature.tsp?genericPartNumber=MAX3232E&fileType=pdf&HQS=ti-null-null-sf-df-pf-sep-wwe&DCM=yes"> Datasheet </a> <RS-422/RS-485 Interface IC RS485/RS422 Driver/ Receiver Transceiver</b><p> <author>Created by SamacSys</author> <b>SP3077EEN-L</b><br> >NAME >VALUE >NAME >VALUE <b>RS-422/RS-485 Interface IC RS485/RS422 Driver/ Receiver Transceiver</b><p> Source: <a href="https://www.maxlinear.com/ds/sp3070e_sp3078e_102_120210.pdf"> Datasheet </a> >Value >Name >Name >Value <Subminiature Tact Switch for SMT</b><p> <author>Created by SamacSys</author> <b>KSR</b><br> >NAME >VALUE >NAME >VALUE <b>Subminiature Tact Switch for SMT</b><p> Source: <a href="https://www.ckswitches.com/media/1466/ksr.pdf"> Datasheet </a> Supply Speakers Buttons RS-422 RS-232 TTL-232 Status LEDs Since Version 8.2, EAGLE supports online libraries. The ids of those online libraries will not be understood (or retained) with this version. Since Version 8.3, EAGLE supports URNs for individual library assets (packages, symbols, and devices). The URNs of those assets will not be understood (or retained) with this version. Since Version 8.3, EAGLE supports the association of 3D packages with devices in libraries, schematics, and board files. Those 3D packages will not be understood (or retained) with this version.