<b>Frames for Sheet and Layout</b> >DRAWING_NAME >LAST_DATE_TIME >SHEET Sheet: <b>FRAME</b><p> DIN A3, landscape with location and doc. field >VALUE >VALUE >VALUE >VALUE <b>SUPPLY SYMBOL</b> <b>SUPPLY SYMBOL</b> <b>SUPPLY SYMBOL</b> <b>SUPPLY SYMBOL</b> >Value >Name * * >Value >Name * * >Value >Name >Value >Name >Value >Name >Value >Name >Value >Name GND VCC RPM PWM >Value >Name * * >Value >Name * * >Value >Name >Value >Name >NAME >VALUE >NAME >VALUE >NAME >VALUE <b>Small Outline Transistor; 6 leads</b><p> Philips Semiconductors, SOT363.pdf >NAME >VALUE 10-SOP, 0.50 mm pitch, 5.90 mm span, 3.00 X 3.00 X 0.90 mm body <p>10-pin SOP package with 0.50 mm pitch, 5.90 mm span with body size 3.00 X 3.00 X 0.90 mm</p> >NAME >VALUE Small Outline Transistor; 6 leads Philips Semiconductors, SOT363.pdf 10-SOP, 0.50 mm pitch, 5.90 mm span, 3.00 X 3.00 X 0.90 mm body <p>10-pin SOP package with 0.50 mm pitch, 5.90 mm span with body size 3.00 X 3.00 X 0.90 mm</p> >Name >Value >Name >Value >Name >NAME >Name >Value >Name >Value >Value >NAME TMC5160 SilentStepStick >NAME >VALUE <h3> PNP Transistor</h3> >NAME >VALUE <h3> Dual PNP Transistors in Single Package</h3> <p>The BCM857BS puts two PNP transistors in a single package.</p> <p>Bipolar (BJT) Transistor Array 2 PNP (Dual) 45V 100mA 100MHz 200mW Surface Mount SOT-363</p> <p><a href="https://www.diodes.com/assets/Datasheets/BCM857BS.pdf">Datasheet</a></p> <p><b>SparkFun Products:</b> <ul><li><a href=”https://www.sparkfun.com”>SparkFun Pi Servo HAT V2</a></li> </ul></p> <h3>SparkFun Discrete Semiconductors</h3> This library contains diodes, optoisolators, TRIACs, MOSFETs, transistors, etc. <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. SOT23-3 >NAME >VALUE <b>TO 92</b> >NAME >VALUE >NAME >VALUE SOT23-3 TO 92 <h3> NPN Transistor</h3> Allows current flow when high potential at base. >NAME >VALUE <h3>NPN transistor</h3> <p>Current controlled devices typically used to amplify current or used as a switch.</p> <ul> <li> BC547 - <a href="http://www.sparkfun.com/products/8928">COM-08928</a> (TO-92 45V 100mA) (1.Collector 2.Base 3.Emitter) </li> <li> 2N3904 - <a href="http://www.sparkfun.com/products/521">COM-00521</a> (TO-92 40V 200mA) (1.Emitter 2.Base 3.Collector) </li> <li> P2N2222A - <a href="http://www.sparkfun.com/products/12852">COM-12852</a> (TO-92 40V 600mA) (1.Collector 2.Base 3.Emitter) </li> </ul> <B>Capacitors - Fixed, Variable, Trimmers Molded Body, 3.20 X 1.60 X 1.80 mm body <p>Molded Body package with body size 3.20 X 1.60 X 1.80 mm</p> >NAME >VALUE Molded Body, 3.50 X 2.80 X 2.10 mm body <p>Molded Body package with body size 3.50 X 2.80 X 2.10 mm</p> >NAME >VALUE Molded Body, 6.00 X 3.20 X 2.80 mm body <p>Molded Body package with body size 6.00 X 3.20 X 2.80 mm</p> >NAME >VALUE Molded Body, 7.30 X 4.30 X 3.10 mm body <p>Molded Body package with body size 7.30 X 4.30 X 3.10 mm</p> >NAME >VALUE Radial Polarized Capacitor, 5.08 mm pitch, 10.00 mm body diameter, 11.00 mm body height <p>Radial Polarized Capacitor package with 5.08 mm pitch (lead spacing), 0.65 mm lead diameter, 10.00 mm body diameter and 11.00 mm body height</p> >NAME >VALUE ECAP (Aluminum Electrolytic Capacitor), 10.30 X 10.50 mm body <p>ECAP (Aluminum Electrolytic Capacitor) package with body size 10.30 X 10.50 mm</p> >NAME >VALUE ECAP (Aluminum Electrolytic Capacitor), 8.30 X 10.50 mm body <p>ECAP (Aluminum Electrolytic Capacitor) package with body size 8.30 X 10.50 mm</p> >NAME >VALUE Radial Polarized Capacitor, 10.00 mm pitch, 22.75 mm body diameter, 32.00 mm body height <p>Radial Polarized Capacitor package with 10.00 mm pitch (lead spacing), 1.00 mm lead diameter, 22.75 mm body diameter and 32.00 mm body height</p> >NAME >VALUE ECAP (Aluminum Electrolytic Capacitor), 19.05 X 16.60 mm body <p>ECAP (Aluminum Electrolytic Capacitor) package with body size 19.05 X 16.60 mm</p> >NAME >VALUE Radial Polarized Capacitor, 5.50 mm pitch, 12.50 mm body diameter, 25.00 mm body height <p>Radial Polarized Capacitor package with 5.50 mm pitch (lead spacing), 1.10 mm lead diameter, 12.50 mm body diameter and 25.00 mm body height</p> >NAME >VALUE Radial Polarized Capacitor, 5.50 mm pitch, 12.00 mm body diameter, 20.00 mm body height <p>Radial Polarized Capacitor package with 5.50 mm pitch (lead spacing), 0.60 mm lead diameter, 12.00 mm body diameter and 20.00 mm body height</p> >NAME >VALUE Molded Body, 7.42 X 4.35 X 4.30 mm body <p>Molded Body package with body size 7.42 X 4.35 X 4.30 mm</p> >NAME >VALUE Axial Polarized Capacitor, 34.10 mm pitch, 30.25 mm body length, 18.25 mm body diameter <p>Axial Polarized Capacitor package with 34.10 mm pitch (lead spacing), 0.80 mm lead diameter, 30.25 mm body length and 18.25 mm body diameter</p> >NAME >VALUE Molded Body, 3.20 X 1.60 X 1.80 mm body <p>Molded Body package with body size 3.20 X 1.60 X 1.80 mm</p> Molded Body, 3.50 X 2.80 X 2.10 mm body <p>Molded Body package with body size 3.50 X 2.80 X 2.10 mm</p> Molded Body, 6.00 X 3.20 X 2.80 mm body <p>Molded Body package with body size 6.00 X 3.20 X 2.80 mm</p> Molded Body, 7.30 X 4.30 X 3.10 mm body <p>Molded Body package with body size 7.30 X 4.30 X 3.10 mm</p> Radial Polarized Capacitor, 5.08 mm pitch, 10.00 mm body diameter, 11.00 mm body height <p>Radial Polarized Capacitor package with 5.08 mm pitch (lead spacing), 0.65 mm lead diameter, 10.00 mm body diameter and 11.00 mm body height</p> ECAP (Aluminum Electrolytic Capacitor), 10.30 X 10.50 mm body <p>ECAP (Aluminum Electrolytic Capacitor) package with body size 10.30 X 10.50 mm</p> ECAP (Aluminum Electrolytic Capacitor), 8.30 X 10.50 mm body <p>ECAP (Aluminum Electrolytic Capacitor) package with body size 8.30 X 10.50 mm</p> Radial Polarized Capacitor, 10.00 mm pitch, 22.75 mm body diameter, 32.00 mm body height <p>Radial Polarized Capacitor package with 10.00 mm pitch (lead spacing), 1.00 mm lead diameter, 22.75 mm body diameter and 32.00 mm body height</p> ECAP (Aluminum Electrolytic Capacitor), 19.05 X 16.60 mm body <p>ECAP (Aluminum Electrolytic Capacitor) package with body size 19.05 X 16.60 mm</p> Radial Polarized Capacitor, 5.50 mm pitch, 12.50 mm body diameter, 25.00 mm body height <p>Radial Polarized Capacitor package with 5.50 mm pitch (lead spacing), 1.10 mm lead diameter, 12.50 mm body diameter and 25.00 mm body height</p> Radial Polarized Capacitor, 5.50 mm pitch, 12.00 mm body diameter, 20.00 mm body height <p>Radial Polarized Capacitor package with 5.50 mm pitch (lead spacing), 0.60 mm lead diameter, 12.00 mm body diameter and 20.00 mm body height</p> Molded Body, 7.42 X 4.35 X 4.30 mm body <p>Molded Body package with body size 7.42 X 4.35 X 4.30 mm</p> Axial Polarized Capacitor, 34.10 mm pitch, 30.25 mm body length, 18.25 mm body diameter <p>Axial Polarized Capacitor package with 34.10 mm pitch (lead spacing), 0.80 mm lead diameter, 30.25 mm body length and 18.25 mm body diameter</p> >NAME + >VALUE <B>Capacitor Polarised - Generic Testpoint - Pad >NAME >VALUE Surface Mount Test Point - Compact SMT >NAME >VALUE >NAME >VALUE 1.5 x 2.0mm SMT pad (no solder paste) >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE Testpoint - Round 2mm >NAME >VALUE <b>0805 MicroPitch</b> >NAME >VALUE 0603-Mini <p>Mini footprint for dense boards</p> >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE <b> 0402</b> >NAME >VALUE <b>0402 MicroPitch<p> >NAME >VALUE <b>0603</b> >NAME >VALUE <b>0603 MicroPitch</b> >NAME >VALUE <b>0805</b> >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE <b>RESISTOR 2512 (Metric 6432)</b> >NAME >VALUE Testpoint - Pad Surface Mount Test Point - Compact SMT 1.5 x 2.0mm SMT pad (no solder paste) Testpoint - Round 2mm <b>0805 MicroPitch</b> 0603-Mini <p>Mini footprint for dense boards</p> <b> 0402</b> <b>0402 MicroPitch<p> <b>0603</b> <b>0603 MicroPitch</b> <b>0805</b> <b>RESISTOR 2512 (Metric 6432)</b> >NAME >VALUE >NAME >VALUE >NAME >VALUE <b>Test Point</b> <p>Various test points for characterisation and PCB testing</p> <p> <ul> <li><b>TESTPOINT_SMT</b> - Compact Surface Mount Test Point [Digikey: 5016KTR-ND]</li> </ul> </p> <p><b>Ceramic Capacitors</b></p> <p>For new designs, use the packages preceded by an '_' character since they are more reliable:</p> <p>The following footprints should be used on most boards:</p> <ul> <li><b>_0402</b> - Standard footprint for regular board layouts</li> <li><b>_0603</b> - Standard footprint for regular board layouts</li> <li><b>_0805</b> - Standard footprint for regular board layouts</li> <li><b>_1206</b> - Standard footprint for regular board layouts</li> </ul> <p>For extremely tight-pitch boards where space is at a premium, the following 'micro-pitch' footprints can be used (smaller pads, no silkscreen outline, etc.):</p> <ul> <li><b>_0402MP</b> - Micro-pitch footprint for very dense/compact boards</li> <li><b>_0603MP</b> - Micro-pitch footprint for very dense/compact boards</li> <li><b>_0805MP</b> - Micro-pitch footprint for very dense/compact boards</li> <li><b>_1206MP</b> - Micro-pitch footprint for very dense/compact boards</li> </ul> <p><b>Resistors</b></p> <p>For new designs, use the packages preceded by an '_' character since they are more reliable:</p> <p>The following footprints should be used on most boards:</p> <ul> <li><b>_0402</b> - Standard footprint for regular board layouts</li> <li><b>_0603</b> - Standard footprint for regular board layouts</li> <li><b>_0805</b> - Standard footprint for regular board layouts</li> <li><b>_1206</b> - Standard footprint for regular board layouts</li> </ul> <p>For extremely tight-pitch boards where space is at a premium, the following 'micro-pitch' footprints can be used (smaller pads, no silkscreen outline, etc.):</p> <ul> <li><b>_0402MP</b> - Micro-pitch footprint for very dense/compact boards</li> <li><b>_0603MP</b> - Micro-pitch footprint for very dense/compact boards</li> <li><b>_0805MP</b> - Micro-pitch footprint for very dense/compact boards</li> <li><b>_1206MP</b> - Micro-pitch footprint for very dense/compact boards</li> </ul> <h3>SparkFun Jumpers</h3> In this library you'll find jumpers, or other semipermanent means of changing current paths. The least permanent form is the solder jumper. These can be changed by adding, removing, or moving solder. In cases that are less likely to be changed we have jumpers that are connected with traces. These can be cut with a razor, or reconnected with solder. Reference designator JP. <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. >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE >NAME >VALUE <h3>Normally closed solder jumper (1 of 2 connections)</h3> <p>This jumper has an aperture in the stencil to allow solder paste to bridge one of the two connections. One connection is normally closed (NC), while the other is normally open (NO). Wick off the solder to open the connection. Reapply solder to reclose the connection. Apply solder to the other side instead to change the current path.</p> <h3>Normally open jumper</h3> <p>This jumper has two pads in close proximity to each other. Apply solder to close the connection.</p> <p>Round pads are easier to solder for beginners, but are a lot larger.</p> <p>SparkFun Product that uses the round pads: <ul><li><a href="https://www.sparkfun.com/products/12781">SparkFun EL Sequencer</a></li> </ul></p> <h3>Normally closed solder jumper</h3> <p>This jumper has an aperture in the stencil to allow solder paste to bridge the split in the wire so it's normally closed (NC). Wick off the solder to open the connection. Reapply solder to reclose the connection.</p> <h3>SparkFun Coils</h3> In this library you'll find magnetics. <p><b>SparkFun Products:</b> <ul><li>Inductors</li> <li>Ferrite Beads</li> <li>Transformers</li> </ul></p> <br> <p>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.</p> <h3>4600 series footprint</h3> <p>Not messing with it since production uses it. Origin unknown but loosely based on this <a href="http://www.murata-ps.com/data/magnetics/kmp_4600.pdf">datasheet</a>.</p> >NAME >VALUE <h3>SRN6045 series footprint</h3> <p>Roughly based on the recommendation in this <a href="http://www.mouser.com/ds/2/54/RN6045-778135.pdf">datasheet</a>.</p> >NAME >VALUE <h3>CDRH2D18/HPNP footprint</h3> <p>Recommended footprint for CDRH2D18/HPNP series inductors from <a href="http://products.sumida.com/products/pdf/CDRH2D18HP.pdf">here</a>.</p> >NAME >VALUE <h3>SDR1307 series footprint</h3> <p>Footprint based on recommendation from <a href="https://www.bourns.com/pdfs/SDR1307.pdf">here</a>.</p> >NAME >VALUE <h3>CR54 footprint</h3> <p>These vary by manufacturer, but we used the NPIS54LS footprint from <a href="http://www.niccomp.com/catalog/npis_ls.pdf">here</a>. >Name >Value <p><b>Generic 2012 (0805) package</b></p> <p>0.2mm courtyard excess rounded to nearest 0.05mm.</p> >NAME >VALUE <p><b>Generic 1608 (0603) package</b></p> <p>0.2mm courtyard excess rounded to nearest 0.05mm.</p> >NAME >VALUE <p><b>Generic 1005 (0402) package</b></p> <p>0.2mm courtyard excess rounded to nearest 0.05mm.</p> >NAME >VALUE >NAME >VALUE 4600 series footprint Not messing with it since production uses it. Origin unknown but loosely based on this datasheet. SRN6045 series footprint Roughly based on the recommendation in this datasheet. CDRH2D18/HPNP footprint Recommended footprint for CDRH2D18/HPNP series inductors from here. SDR1307 series footprint Footprint based on recommendation from here. CR54 footprint These vary by manufacturer, but we used the NPIS54LS footprint from here. Generic 2012 (0805) package 0.2mm courtyard excess rounded to nearest 0.05mm. Generic 1608 (0603) package 0.2mm courtyard excess rounded to nearest 0.05mm. Generic 1005 (0402) package 0.2mm courtyard excess rounded to nearest 0.05mm. <h3>Inductors</h3> <p>Resist changes in electrical current. Basically a coil of wire.</p> >NAME >VALUE <h3>Inductors</h3> <p>Resist changes in electrical current. Basically a coil of wire.</p> <p>SparkFun Products: <ul><li><a href="https://www.sparkfun.com/products/13879">SparkFun Load Cell Amplifier - HX711</a></li> <li><a href="https://www.sparkfun.com/products/13613">IOIO-OTG - V2.2</a></li> <li><a href=""></a></li> </ul></p> <h3>SparkFun Discrete Semiconductors</h3> This library contains diodes, optoisolators, TRIACs, MOSFETs, transistors, etc. <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. SOT23-3 >NAME >VALUE <b>TO 220 Vertical</b> Package works with various parts including N-Channel MOSFET SparkFun SKU: COM-10213 >NAME >VALUE SOIC, 0.15 inch width >NAME >VALUE >Name >Value <h3>P-channel MOSFET</h3> Switches electrical signals >NAME >VALUE D S G <h3>P-channel MOSFETs</h3> <p>Voltage controlled devices that allow control of high current outputs.</p> <p><b>SparkFun Products:</b> <ul><li><a href=”https://www.sparkfun.com/products/13907”>SparkFun ESP32 Thing</a></li> <li><a href=”https://www.sparkfun.com/products/13231”>SparkFun ESP8266 Thing</a></li> <li><a href=”https://www.sparkfun.com/products/15316”>SparkFun Pi Servo HAT V2</a> DMG2305UX-7 (20V/4.2A/SOT23-3)</li> </ul></p> <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 <b>SUPPLY SYMBOL</b> <B>PN Junction, BridgeRectifier, Zener, Schottky, Switching MELF, 3.50 mm length, 1.65 mm diameter <p>MELF Diode package with 3.50 mm length and 1.65 mm diameter</p> >NAME >VALUE MELF, 5.00 mm length, 2.49 mm diameter <p>MELF Diode package with 5.00 mm length and 2.49 mm diameter</p> >NAME >VALUE SOD, 3.70 mm span, 2.70 X 1.55 X 1.35 mm body <p>SOD package with 3.70 mm span with body size 2.70 X 1.55 X 1.35 mm</p> >NAME >VALUE SOD, 6.10 mm span, 4.33 X 2.60 X 2.90 mm body <p>SOD package with 6.10 mm span with body size 4.33 X 2.60 X 2.90 mm</p> >NAME >VALUE SOD, 6.10 mm span, 4.20 X 2.65 X 3.50 mm body <p>SOD package with 6.10 mm span with body size 4.20 X 2.65 X 3.50 mm</p> >NAME >VALUE SOD, 6.22 mm span, 4.33 X 3.63 X 2.65 mm body <p>SOD package with 6.22 mm span with body size 4.33 X 3.63 X 2.65 mm</p> >NAME >VALUE SOD, 9.93 mm span, 6.88 X 5.90 X 2.65 mm body <p>SOD package with 9.93 mm span with body size 6.88 X 5.90 X 2.65 mm</p> >NAME >VALUE SODFL, 2.50 mm span, 1.90 X 1.30 X 0.70 mm body <p>SODFL package with 2.50 mm span with body size 1.90 X 1.30 X 0.70 mm</p> >NAME >VALUE SODFL, 2.50 mm span, 2.20 X 1.30 X 0.75 mm body <p>SODFL package with 2.50 mm span with body size 2.20 X 1.30 X 0.75 mm</p> >NAME >VALUE SODFL, 3.70 mm span, 2.80 X 1.80 X 1.15 mm body <p>SODFL package with 3.70 mm span with body size 2.80 X 1.80 X 1.15 mm</p> >NAME >VALUE SODFL, 3.70 mm span, 2.80 X 1.80 X 1.40 mm body <p>SODFL package with 3.70 mm span with body size 2.80 X 1.80 X 1.40 mm</p> >NAME >VALUE SODFL, 5.35 mm span, 4.33 X 3.63 X 1.10 mm body <p>SODFL package with 5.35 mm span with body size 4.33 X 3.63 X 1.10 mm</p> >NAME >VALUE SODFL, 7.95 mm span, 6.88 X 5.90 X 1.10 mm body <p>SODFL package with 7.95 mm span with body size 6.88 X 5.90 X 1.10 mm</p> >NAME >VALUE SODFL, 5.20 mm span, 4.28 X 2.60 X 1.10 mm body <p>SODFL package with 5.20 mm span with body size 4.28 X 2.60 X 1.10 mm</p> >NAME >VALUE SODFL, 4.70 mm span, 3.80 X 2.50 X 1.10 mm body <p>SODFL package with 4.70 mm span with body size 3.80 X 2.50 X 1.10 mm</p> >NAME >VALUE SODFL, 1.60 mm span, 1.20 X 0.80 X 0.70 mm body <p>SODFL package with 1.60 mm span with body size 1.20 X 0.80 X 0.70 mm</p> >NAME >VALUE Molded Body, 5.20 X 2.60 X 2.90 mm body <p>Molded Body package with body size 5.20 X 2.60 X 2.90 mm</p> >NAME >VALUE Molded Body, 5.35 X 3.63 X 2.65 mm body <p>Molded Body package with body size 5.35 X 3.63 X 2.65 mm</p> >NAME >VALUE Molded Body, 7.95 X 5.90 X 6.25 mm body <p>Molded Body package with body size 7.95 X 5.90 X 6.25 mm</p> >NAME >VALUE MELF, 3.50 mm length, 1.65 mm diameter <p>MELF Diode package with 3.50 mm length and 1.65 mm diameter</p> MELF, 5.00 mm length, 2.49 mm diameter <p>MELF Diode package with 5.00 mm length and 2.49 mm diameter</p> SOD, 3.70 mm span, 2.70 X 1.55 X 1.35 mm body <p>SOD package with 3.70 mm span with body size 2.70 X 1.55 X 1.35 mm</p> SOD, 6.10 mm span, 4.33 X 2.60 X 2.90 mm body <p>SOD package with 6.10 mm span with body size 4.33 X 2.60 X 2.90 mm</p> SOD, 6.10 mm span, 4.20 X 2.65 X 3.50 mm body <p>SOD package with 6.10 mm span with body size 4.20 X 2.65 X 3.50 mm</p> SOD, 6.22 mm span, 4.33 X 3.63 X 2.65 mm body <p>SOD package with 6.22 mm span with body size 4.33 X 3.63 X 2.65 mm</p> SOD, 9.93 mm span, 6.88 X 5.90 X 2.65 mm body <p>SOD package with 9.93 mm span with body size 6.88 X 5.90 X 2.65 mm</p> SODFL, 2.50 mm span, 1.90 X 1.30 X 0.70 mm body <p>SODFL package with 2.50 mm span with body size 1.90 X 1.30 X 0.70 mm</p> SODFL, 2.50 mm span, 2.20 X 1.30 X 0.75 mm body <p>SODFL package with 2.50 mm span with body size 2.20 X 1.30 X 0.75 mm</p> SODFL, 3.70 mm span, 2.80 X 1.80 X 1.15 mm body <p>SODFL package with 3.70 mm span with body size 2.80 X 1.80 X 1.15 mm</p> SODFL, 3.70 mm span, 2.80 X 1.80 X 1.40 mm body <p>SODFL package with 3.70 mm span with body size 2.80 X 1.80 X 1.40 mm</p> SODFL, 5.35 mm span, 4.33 X 3.63 X 1.10 mm body <p>SODFL package with 5.35 mm span with body size 4.33 X 3.63 X 1.10 mm</p> SODFL, 7.95 mm span, 6.88 X 5.90 X 1.10 mm body <p>SODFL package with 7.95 mm span with body size 6.88 X 5.90 X 1.10 mm</p> SODFL, 5.20 mm span, 4.28 X 2.60 X 1.10 mm body <p>SODFL package with 5.20 mm span with body size 4.28 X 2.60 X 1.10 mm</p> SODFL, 4.70 mm span, 3.80 X 2.50 X 1.10 mm body <p>SODFL package with 4.70 mm span with body size 3.80 X 2.50 X 1.10 mm</p> SODFL, 1.60 mm span, 1.20 X 0.80 X 0.70 mm body <p>SODFL package with 1.60 mm span with body size 1.20 X 0.80 X 0.70 mm</p> Molded Body, 5.20 X 2.60 X 2.90 mm body <p>Molded Body package with body size 5.20 X 2.60 X 2.90 mm</p> Molded Body, 5.35 X 3.63 X 2.65 mm body <p>Molded Body package with body size 5.35 X 3.63 X 2.65 mm</p> Molded Body, 7.95 X 5.90 X 6.25 mm body <p>Molded Body package with body size 7.95 X 5.90 X 6.25 mm</p> >NAME >VALUE <B>Zener Diode - Generic <b>Pin Headers,Terminal blocks, D-Sub, Backplane, FFC/FPC, Socket <b>PIN HEADER</b> >NAME >VALUE <b>PIN HEADER</b> >NAME >VALUE PIN HEADER PIN HEADER >NAME >VALUE <b>PIN HEADER</b> <b>Seeed Open Parts Library (OPL) for the Seeed Fusion PCB Assembly Service</b> <br><br> This library is designed for use with parts that are stocked by Seeed and can be used directly with Seeed's turnkey PCB assembly service. By using only parts in the OPLs, the PCBA production time can be drastically reduced. <br><br> We continuously work to make sure these libaries are accurate and up to date. Make sure you update to the latest version via the Library Manager. We will not take responsibility for the use of out-of-date libraries. <br><br> If you discover any discreprancies or would like to contribute, please <b><a href="mailto:fusion@seeed.cc?Subject=Regarding the Seeed OPL..." target="_top">get in touch</a></b> or fork the <b><a href="https://github.com/Seeed-Studio/OPL_Eagle_Library" title="Seeed OPL Eagle GitHub Repository">GitHub</a></b> repository. <br><br> <b><a href="https://www.seeedstudio.com/opl.html" title="https://www.seeedstudio.com/opl.html">Seeed Fusion PCBA OPL</a> <br> <a href="https://www.seeedstudio.com/prototype-pcb-assembly.html" title="Seeed Fusion PCB Assembly Service">Seeed Fusion PCB Assembly Service</a> <br> <a href="https://www.seeedstudio.com/fusion_pcb.html">Order PCB/PCBA Now</a> <br> <br> <a href="https://www.seeedstudio.com">www.seeedstudio.com</a> >name >value >name >value 320020017 <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> <BR>Wurth Elektronik - Electrolytic Capacitors,Ceramic Capacitors & Film Capacitors<br><Hr> <BR> <TABLE BORDER=0 CELLSPACING=0 CELLPADDING=0> <TR> <TD BGCOLOR="#cccccc" ALIGN=CENTER><FONT FACE=ARIAL SIZE=3><BR><br> &nbsp;&nbsp;&nbsp;&nbsp; &nbsp;<BR> <BR> <BR> <BR><BR></FONT> </TD> <TD BGCOLOR="#cccccc" ALIGN=CENTER><FONT FACE=ARIAL SIZE=3><br> -----<BR> -----<BR> -----<BR> -----<BR> -----<BR><BR></FONT> </TD> <TD BGCOLOR="#cccccc" ALIGN=CENTER> <FONT FACE=ARIAL SIZE=3><br> ---------------------------<BR> <B><I><span style='font-size:26pt; color:#FF6600;'>WE </span></i></b> <BR> ---------------------------<BR><b>Würth Elektronik</b></FONT> </TD> <TD BGCOLOR="#cccccc" ALIGN=CENTER><FONT FACE=ARIAL SIZE=3><br> ---------O---<BR> ----O--------<BR> ---------O---<BR> ----O--------<BR> ---------O---<BR><BR></FONT> </TD> <TD BGCOLOR="#cccccc" ALIGN=CENTER><FONT FACE=ARIAL SIZE=3><BR> &nbsp;&nbsp;&nbsp;&nbsp; &nbsp;<BR> <BR> <BR> <BR> <BR><BR></FONT> </TD> </TR> <TR> <TD COLSPAN=7>&nbsp; </TD> </TR> </TABLE> <B>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;More than you expect<BR><BR><BR></B> <HR><BR> <b>Würth Elektronik eiSos GmbH & Co. KG</b><br> EMC & Inductive Solutions<br> Max-Eyth-Str.1<br> D-74638 Waldenburg<br> <br> Tel: +49 (0)7942-945-0<br> Fax:+49 (0)7942-945-5000<br> <br> <a href="http://www.we-online.com/web/en/electronic_components/produkte_pb/bauteilebibliotheken/eagle_4.php">www.we-online.com/eagle</a><br> <a href="mailto:libraries@we-online.com">libraries@we-online.com</a> <BR><BR> <br><HR><BR> Neither Autodesk nor Würth Elektronik eiSos does warrant that this library is error-free or <br> that it meets your specific requirements.<br><BR> Please contact us for more information.<br><BR><br> Eagle Version 6, Library Revision 2019a, 2019-08-07<br> <HR> Copyright: Würth Elektronik >NAME >VALUE + >NAME >VALUE + >NAME >VALUE + >NAME >VALUE <b>WCAP-PTHT Aluminum Polymer Capacitors <br> <br> <br>Characteristics <br></b>Aluminum Polymer Capacitor <br>Recommended soldering: Wave <br>Operating temperature: -55°C to +125°C <br>+125°C product series <br>Low ESR at high frequency range <br>Long life: 2000h @ +125°C <br> <br> <br><b>Package name and Variant abbreviation: <br></b>Package: <br> D X A X B = Diameter of the outline X Pitch of the hole X Diameter of the hole. <br> <br> <br><a href="http://katalog.we-online.de/media/images/eisos/WCAP-PTHT_pf2.jpg" title="Enlarge picture"> <img src="http://katalog.we-online.de/media/thumbs2/eisos/thb_WCAP-PTHT_pf2.jpg" width="320"></a><p> Details see: <a href="http://katalog.we-online.de/en/pbs/WCAP-PTHT/">http://katalog.we-online.de/en/pbs/WCAP-PTHT/ </a><p>Created: 2015-02-06 <br>2015 (C) Wurth Elektronik <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 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 <h3>4 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>SparkFun Aesthetics</h3> This library contiains non-functional items such as logos, build/ordering notes, frame blocks, etc. <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>Open-Source Hardware (OSHW) Logo - Small - Top Copper</h3> <p>Exposed copper logo for open-source hardware designs.</p> <p>Devices using: <ul><li>OSHW_LOGO</li></ul></p> <h3>Open-Source Hardware (OSHW) Logo - Medium - Top Copper</h3> <p>Exposed copper logo for open-source hardware designs.</p> <p>Devices using: <ul><li>OSHW_LOGO</li></ul></p> <h3>Open-Source Hardware (OSHW) Logo - Large - Top Copper</h3> <p>Exposed copper logo for open-source hardware designs.</p> <p>Devices using: <ul><li>OSHW_LOGO</li></ul></p> <h3>Open-Source Hardware (OSHW) Logo - Large - Silkscreen</h3> <p>Silkscreen logo for open-source hardware designs.</p> <p>Devices using: <ul><li>OSHW_LOGO</li></ul></p> <h3>Open-Source Hardware (OSHW) Logo - Medium - Silkscreen</h3> <p>Silkscreen logo for open-source hardware designs.</p> <p>Devices using: <ul><li>OSHW_LOGO</li></ul></p> <h3>Open-Source Hardware (OSHW) Logo - Small - Silkscreen</h3> <p>Silkscreen logo for open-source hardware designs.</p> <p>Devices using: <ul><li>OSHW_LOGO</li></ul></p> <h3>Open-Source Hardware (OSHW) Logo - Mini - Silkscreen</h3> <p>Silkscreen logo for open-source hardware designs.</p> <p>Devices using: <ul><li>OSHW_LOGO</li></ul></p> <h3>Fiducial - Circle, 1mm</h3> <p>Point-of-reference for pick-and-place machines and other optical instruments.</p> <p>Devices using: <ul><li>FIDUCIAL</li></ul></p> <h3>Fiducial - Circle, 0.25in</h3> <p>Point-of-reference for pick-and-place machines and other optical instruments.</p> <p>Devices using: <ul><li>FIDUCIAL</li></ul></p> Open-Source Hardware (OSHW) Logo - Small - Top Copper Exposed copper logo for open-source hardware designs. Devices using: OSHW_LOGO Open-Source Hardware (OSHW) Logo - Medium - Top Copper Exposed copper logo for open-source hardware designs. Devices using: OSHW_LOGO Open-Source Hardware (OSHW) Logo - Large - Top Copper Exposed copper logo for open-source hardware designs. Devices using: OSHW_LOGO Open-Source Hardware (OSHW) Logo - Large - Silkscreen Silkscreen logo for open-source hardware designs. Devices using: OSHW_LOGO Open-Source Hardware (OSHW) Logo - Medium - Silkscreen Silkscreen logo for open-source hardware designs. Devices using: OSHW_LOGO Open-Source Hardware (OSHW) Logo - Small - Silkscreen Silkscreen logo for open-source hardware designs. Devices using: OSHW_LOGO Open-Source Hardware (OSHW) Logo - Mini - Silkscreen Silkscreen logo for open-source hardware designs. Devices using: OSHW_LOGO Fiducial - Circle, 1mm Point-of-reference for pick-and-place machines and other optical instruments. Devices using: FIDUCIAL Fiducial - Circle, 0.25in Point-of-reference for pick-and-place machines and other optical instruments. Devices using: FIDUCIAL <h3>Open-Source Hardware (OSHW) Logo</h3> <p> This logo indicates the piece of hardware it is found on incorporates a OSHW license and/or adheres to the definition of open source hardware found here: <a href="http://freedomdefined.org/OSHW">http://freedomdefined.org/OSHW</a></p> <p>Devices using<ul><li>OSHW_LOGO</li></ul></p> <h3>Fiducial</h3> <p>Point-of-reference for pick-and-place machines and other optical instruments.</p> <p>Devices using: <ul><li>FIDUCIAL</li></ul></p> <h3>Open-Source Hardware (OSHW) Logo</h3> <p> This logo indicates the piece of hardware it is found on incorporates a OSHW license and/or adheres to the definition of open source hardware found here: <a href="http://freedomdefined.org/OSHW">http://freedomdefined.org/OSHW</a></p> <h3>Fiducial Alignment Points</h3> <p>Point-of-reference for pick-and-place machines and other optical instruments.</p> <b>Pin Headers,Terminal blocks, D-Sub, Backplane, FFC/FPC, Socket >NAME >VALUE >NAME >VALUE >NAME >VALUE 2 Position Wire to Board Terminal Block Horizontal with Board <br><a href="https://www.te.com.cn/commerce/DocumentDelivery/DDEController?Action=showdoc&DocId=Catalog+Section%7F1308389_EUROSTYLE_TERMINAL_BLOCKS%7F0607%7Fpdf%7FEnglish%7FENG_CS_1308389_EUROSTYLE_TERMINAL_BLOCKS_0607.pdf%7F2-282837-5">Datasheet</a><br> <b>Diodes</b><p> Based on the following sources: <ul> <li>Motorola : www.onsemi.com <li>Fairchild : www.fairchildsemi.com <li>Philips : www.semiconductors.com <li>Vishay : www.vishay.de </ul> <author>Created by librarian@cadsoft.de</author> <b>DIODE</b> >NAME >VALUE <B>DIODE</B><p> diameter 2.54 mm, horizontal, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> diameter 2 mm, horizontal, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> diameter 4 mm, horizontal, grid 10 mm >NAME >VALUE <B>DIODE</B><p> diameter 3.5 mm, horizontal, grid 12.7 mm >NAME >VALUE <B>DIODE</B><p> diameter 4 mm, vertical, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> diameter 5.6 mm, horizontal, grid 15.24 mm >NAME >VALUE <B>DIODE</B><p> diameter 2.54 mm, horizontal, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> diameter 3 mm, horizontal, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> diameter 5 mm, horizontal, grid 12.7 mm >NAME >VALUE <B>DIODE</B><p> diameter 1.8 mm, horizontal, grid 7.62 mm >NAME >VALUE <B>DIODE</B><p> 2-lead plastic, vertical >NAME >VALUE <B>DIODE</B> >NAME >VALUE <B>DIODE</B><p> 2-lead metall, vertical >NAME >VALUE <B>DIODE</B><p> diameter 3.5 mm, vertical, grid 5.08 mm >NAME >VALUE <B>DIODE</B><p> diameter 3.5 mm, horizontal, grid 15.24 mm >NAME >VALUE <B>DIODE</B><p> diameter 4 mm, vertical, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> diameter 4.8 mm, vertical, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> diameter 3.5 mm, vertical, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> diameter 3.5 mm, vertical, grid 15.24 mm >NAME >VALUE <B>DIODE</B><p> diameter 3.5 mm, vertical, grid 17.78 mm >NAME >VALUE <B>DIODE</B><p> diameter 3.5 mm, vertical, grid 15.24 mm >NAME >VALUE <B>DIODE</B><p> diameter 3.5 mm, vertical, grid 20.32 mm >NAME >VALUE <B>DIODE</B><p> diameter 5 mm, horizontal, grid 15.24 mm >NAME >VALUE <B>DIODE</B><p> diameter 2.3 mm, vertical, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> diameter 3.3 mm, vertical, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> diameter 3 mm, horizontal, grid 10.16 mm >NAME >VALUE <B>DIODE</B><p> 2-lead molded, vertical >NAME >VALUE <B>DIODE</B><p> 2-lead molded, horizontal >NAME >VALUE A17,5mm <B>DIODE</B><p> 2-lead molded, vertical >NAME >VALUE <B>DIODE</B><p> diameter 7.62 mm, horizontal, grid 12.7 mm >NAME >VALUE <B>DIODE</B><p> diameter 4.8 mm, vertical, grid 12.7 mm >NAME >VALUE <B>DIODE</B> >NAME >VALUE <B>DIODE</B><p> diameter 9 mm, horizontal, grid 15.24 mm >NAME >VALUE <B>DIODE</B><p> diameter 5.2 mm, horizontal, grid 15.24 mm >NAME >VALUE <B>DIODE</B><p> 2-lead molded, horizontal >NAME >VALUE A17,5mm <B>DIODE</B> >NAME >VALUE <b>DIODE</b> >NAME >VALUE <b>DIODE</b> >NAME >VALUE <b>DIODE</b> >NAME >VALUE <b>DIODE</b> >NAME >VALUE <b>DIODE</b> >NAME >VALUE <b>SOD106 Reflow soldering</b> Philips SC01_Mounting_1996.pdf >NAME >VALUE <b>DIODE</b> >NAME >VALUE <b>SOD106 Wave soldering</b> Philips SC01_Mounting_1996.pdf >NAME >VALUE <b>SOD106A Reflow soldering</b> Philips SC01_Mounting_1996.pdf >NAME >VALUE <b>SOD110 Wave soldering</b> Philips SC01_Mounting_1996.pdf >NAME >VALUE <b>SOD110 Reflow soldering</b> Philips SC01_Mounting_1996.pdf >NAME >VALUE <b>Diode</b> >NAME >VALUE <b>SOD323 Reflow soldering</b> Philips SC01_Mounting_1996.pdf >NAME >VALUE <b>SOD323 Wave soldering</b> Philips SC01_Mounting_1996.pdf >NAME >VALUE <b>GF1</b><p> General Semiconductor >NAME >VALUE <b>Mini Melf Diode</b> >NAME >VALUE <b>DIODE</b><p> Package DO-213AB = http://www.diotec.com/pdf/sm4001.pdf >NAME >VALUE <b>Micro Melf Diode Reflow soldering</b> VISHAY mcl4148.pdf >NAME >VALUE <b>Micro Melf Diode Wave soldering</b> VISHAY mcl4148.pdf >NAME >VALUE <b>Diode Package</b> Reflow soldering<p> INFINEON, www.infineon.com/cmc_upload/0/000/010/257/eh_db_5b.pdf >NAME >VALUE <b>Diode Package</b> Reflow soldering<p> INFINEON, www.infineon.com/cmc_upload/0/000/010/257/eh_db_5b.pdf >NAME >VALUE <b>DIODE</b> >NAME >VALUE <b>DIODE</b> >NAME >VALUE <b>SURFACE MOUNT GENERAL RECTIFIER</b> JEDEC DO-214AC molded platic body<p> Method 2026<br> Source: http://www.kingtronics.com/SMD_M7/M7_SMD_4007.pdf >NAME >VALUE <b>DO41</b> 7.6mm x 2mm<p> Source: http://www.diodes.com/datasheets/ds23001.pdf >NAME >VALUE DIODE DIODE diameter 2.54 mm, horizontal, grid 10.16 mm DIODE diameter 2 mm, horizontal, grid 10.16 mm DIODE diameter 4 mm, horizontal, grid 10 mm DIODE diameter 3.5 mm, horizontal, grid 12.7 mm DIODE diameter 4 mm, vertical, grid 10.16 mm DIODE diameter 5.6 mm, horizontal, grid 15.24 mm DIODE diameter 2.54 mm, horizontal, grid 10.16 mm DIODE diameter 3 mm, horizontal, grid 10.16 mm DIODE diameter 5 mm, horizontal, grid 12.7 mm DIODE diameter 1.8 mm, horizontal, grid 7.62 mm DIODE 2-lead plastic, vertical DIODE DIODE 2-lead metall, vertical DIODE diameter 3.5 mm, vertical, grid 5.08 mm DIODE diameter 3.5 mm, horizontal, grid 15.24 mm DIODE diameter 4 mm, vertical, grid 10.16 mm DIODE diameter 4.8 mm, vertical, grid 10.16 mm DIODE diameter 3.5 mm, vertical, grid 10.16 mm DIODE diameter 3.5 mm, vertical, grid 15.24 mm DIODE diameter 3.5 mm, vertical, grid 17.78 mm DIODE diameter 3.5 mm, vertical, grid 15.24 mm DIODE diameter 3.5 mm, vertical, grid 20.32 mm DIODE diameter 5 mm, horizontal, grid 15.24 mm DIODE diameter 2.3 mm, vertical, grid 10.16 mm DIODE diameter 3.3 mm, vertical, grid 10.16 mm DIODE diameter 3 mm, horizontal, grid 10.16 mm DIODE 2-lead molded, vertical DIODE 2-lead molded, horizontal DIODE 2-lead molded, vertical DIODE diameter 7.62 mm, horizontal, grid 12.7 mm DIODE diameter 4.8 mm, vertical, grid 12.7 mm DIODE DIODE diameter 9 mm, horizontal, grid 15.24 mm DIODE diameter 5.2 mm, horizontal, grid 15.24 mm DIODE 2-lead molded, horizontal DIODE DIODE DIODE DIODE DIODE DIODE SOD106 Reflow soldering Philips SC01_Mounting_1996.pdf DIODE SOD106 Wave soldering Philips SC01_Mounting_1996.pdf SOD106A Reflow soldering Philips SC01_Mounting_1996.pdf SOD110 Wave soldering Philips SC01_Mounting_1996.pdf SOD110 Reflow soldering Philips SC01_Mounting_1996.pdf Diode SOD323 Reflow soldering Philips SC01_Mounting_1996.pdf SOD323 Wave soldering Philips SC01_Mounting_1996.pdf GF1 General Semiconductor Mini Melf Diode DIODE Package DO-213AB = http://www.diotec.com/pdf/sm4001.pdf Micro Melf Diode Reflow soldering VISHAY mcl4148.pdf Micro Melf Diode Wave soldering VISHAY mcl4148.pdf Diode Package Reflow soldering INFINEON, www.infineon.com/cmc_upload/0/000/010/257/eh_db_5b.pdf Diode Package Reflow soldering INFINEON, www.infineon.com/cmc_upload/0/000/010/257/eh_db_5b.pdf DIODE DIODE SURFACE MOUNT GENERAL RECTIFIER JEDEC DO-214AC molded platic body Method 2026 Source: http://www.kingtronics.com/SMD_M7/M7_SMD_4007.pdf DO41 7.6mm x 2mm Source: http://www.diodes.com/datasheets/ds23001.pdf >NAME >VALUE SpiceOrder 1 SpiceOrder 2 <b>DIODE</b> <h3> PCBLayout.com - Frequently Used <i>Headers</i></h3> Visit us at <a href="http://www.PCBLayout.com">PCBLayout.com</a> for quick and hassle-free PCB Layout/Manufacturing ordering experience. <BR> <BR> This library has been generated by our experienced pcb layout engineers using current IPC and/or industry standards. We <b>believe</b> the content to be accurate, complete and current. But, this content is provided as a courtesy and <u>user assumes all risk and responsiblity of it's usage</u>. <BR> <BR> Feel free to contact us at <a href="mailto:Support@PCBLayout.com">Support@PCBLayout.com</a> if you have any questions/concerns regarding any of our content or services. >NAME >VALUE >NAME >VALUE <h3> CONN HEADER R/A 4POS 2MM </h3> <BR> <a href="http://www.jst-mfg.com/product/pdf/eng/ePH.pdf"> Manufacturer's datasheet</a> <b>Crystal, Oscillator, Resonator, Generator,Timer >NAME >VALUE >NAME >VALUE CRYSTAL 32.7680KHZ 12.5PF SMD <br><a href="https://abracon.com/Resonators/ABS07.pdf">Datasheet</a><br> Drawn by: Plankton Planet Romain Bazile v0.2 ~0V +5.16V 3A Power Supply (7.5v-28v Input) Pull-up for DRV_EN Pull-up for I2C1 HAT EEPROM LED Driver INPUT Reverse polarity protection FAN Control system Hardware RTC with trickle charger and supercapacitor Stepper Controllers and connectors I2C OLED Connector Raspberry Pi 40 pin header J1 J3: Direct control of Fan J2: Voltage selection Since Version 6.2.2 text objects can contain more than one line, which will not be processed correctly with this version. 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. Since Version 9.4, EAGLE supports the overriding of 3D packages in schematics and board files. Those overridden 3d packages will not be understood (or retained) with this version. Since Version 8.4, EAGLE supports properties for SPICE simulation. Probes in schematics and SPICE mapping objects found in parts and library devices will not be understood with this version. Update EAGLE to the latest version for full support of SPICE simulation.