Orcad 16.6 Tutorial

Gather your generated .art layer documents and the .drl profile file into a single .zip file archive. This package is ready to upload to any modern quick-turn PCB fabrication house.

Used for creating schematic diagrams and managing components.

OrCAD 16.6 remains one of the most reliable and widely used electronic design automation (EDA) software suites in the engineering world. Known for its stability and robust feature set, it handles complex multilayer PCB designs with precision. This comprehensive tutorial walks you through the entire design pipeline using OrCAD Capture and OrCAD PCB Editor 16.6. 1. Setting Up Your Project

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Before jumping into the board design, you must "prepare" your schematic data. Annotation Tools > Annotate

: These are the industry-standard "blueprints" for your board. Go to Export > Gerber Parameters to configure the layers, then generate the artwork files. NC Drill Files : Generate these via File > Export > NC Drill to provide coordinates for all holes and vias. 4. Advanced Features PSpice Simulation

Once routing is 100% complete without errors, you must export your design files into art formats that fabrication houses accept. 1. Copper and Silkscreen Art Files Go to . Gather your generated

Your board is virtual. To make it real, output Gerber RS-274X.

OrCAD 16.6 remains a cornerstone in the electronics industry, providing a robust environment for schematic capture (OrCAD Capture) and PCB layout (Allegro PCB Editor). Whether you are a student, hobbyist, or professional, mastering this software is essential for professional-grade hardware development.

In the wizard dialog, select if you plan to run PSpice simulations, or leave it blank for standard PCB routing. Click Finish . 2. Schematic Capture in OrCAD Capture OrCAD 16

OrCAD 16.6 includes PSpice, a powerful simulation engine that allows you to test circuit behavior mathematically without soldering.

Fab houses require standard artwork files to manufacture your board physical layers.

: This tool automates the creation of standard packages like DIP or SMD. You define the pin pitch (e.g., 0.1 inches for headers), number of pins, and package dimensions. 3D STEP Models : OrCAD 16.6 supports bi-directional STEP models . You can map a file to a footprint in the Step Package Mapping

If libraries are empty, click the button and navigate to the OrCAD installation folder ( tools/capture/library ).