Complete PCB Design In OrCAD v17.2 for 2-layer and 4-layer Free Video Course Free Download
PCB Design In OrCAD Go from schematic to printed circuit board (PCB) using Cadence OrCAD Capture, PSPICE and PCB Editor v17.2
What you will learn
- How to build your own 2-layer and 4-layer printed circuit board from scratch
- How to find and edit pre-made schematic components and draw schematics
- Troubleshoot schematic and simulation errors and net list errors
- Draw and modify component footprints (with some IPC-7351B guidelines and templates)
- Route a PCB and how to do PCB stack-up with copper planes and copper pours
- Create a 3D model of your printed circuit board
- Produce Gerber, Drill and Pick and Place files for manufacturing your PCB
- Build a professional Bill of Materials (BOM)
- Create assembly drawings and pick and place data for your PCB
- Prepare documentation to manufacture your PCB
Requirements of PCB Design In OrCAD:
- For this course you need to have a hos, domain, and wordpress theme (I will reccomend what to use inside the course)
- Join with an open mind and ready to learn
- No knowledge of coding needed
Description of PCB Design In OrCAD:
“In the event that you might want to have a head start on Orcad schematic catch and PCB format and don’t have time or spending plan to take a 2-multi day instructional course which regularly cost about at any rate $2000 dollars, this course will do. This course helped me massively with my genuine task – I truly value the course – I’m happy I discovered it when I need it the most. I unequivocally suggest this course!”
- CD Dao
“Its great to become familiar with the pspice recreation alongside the pcb planning… Much obliged to you”
- Puneet Mugal
In this course you will figure out how to utilize OrCAD v17.2 (a.k.a. Allegro or PSPICE) programming. OrCAD/Allegro is the business standard in proficient used to plan a wide range of printed circuit sheets, from the sheets inside your cell phone to motherboards and electric vehicles. It is one of the main 3 most utilized programming for electronic plan by the greatest organizations. In the event that you are looking for more noteworthy open doors at bigger enterprises, at that point Allegro/OrCAD is the most intelligent decision in North America.
A few considerations
Just to examine something that may be at the forefront of your thoughts – what might be said about Altium? Altium is likewise a keen decision in North America and different pieces of the world as it is picking up prevalence. Altium is likewise commonly simpler to learn all alone, so truly it is up to you and what your organization needs.
Notwithstanding, OrCAD Standard and Professional are lower in cost contrasted with Altium and Cadence every so often sells a Standard ceaseless permit at under $800, possibly 3 times each year. It’s hard to believe, but it’s true, the full Standard, with PSPICE now. For an expert industry goliath PCB programming, that is truly difficult to beat.
OrCAD in Industry
I work with more seasoned gadgets configuration engineers who are as yet utilizing OrCAD 16.5 and 16.6 and trust me, they aren’t learning some other new PCB plan programming any time soon (one definitely knows Altium 15, however doesn’t have the opportunity to re-become familiar with the most recent adaptations, so he utilizes OrCAD).
Since I use OrCAD 17.2, it makes it a lot simpler to work with them. In any case, I think on the off chance that I was at an alternate organization, similar to a startup or moderate sized organization, there would be greater adaptability for other programming.
Obviously different alternatives are there too, so PADS in case you’re in the China district, or Zuken and EAGLE in the Japan area. In conclusion, Cadence Design Systems (the creators of OrCAD programming) is developing its impression. You’re in an ideal situation learning OrCAD and another PCB configuration instrument too, however unquestionably get OrCAD eventually en route. It will expand your openings for work immensely as it accomplished for me. With the goal that’s simply my input.
The Circuits You Will Be Designing
This basic course tells you the best way to make 3 exceptionally basic printed circuit sheets:
- A 2-layer LED + Resistor circuit with 2 connectors
- A 2-layer offbeat multivibrator circuit with 2 semiconductors, 4 resistors, 2 capacitors, 2 LEDs, connectors, and test focuses
- A 4-layer re-blended variant of the nonconcurrent multivibrator circuit that likewise incorporates a 555 clock chip and 3D displaying.
The above circuits have the perfect measure of effortlessness for you to zero in on the gadgets designing plan measure. Simultaneously, the above circuit ventures have enough assortment to show the abilities you have to make through-opening and surface-mount impressions and finish a straightforward PCB.
This course centers around the straightforward and on standards and the cycle. I additionally uncover my overall diagram for PCB plan that you can generally keep with you to assist you with recollecting the stages to manufacture a PCB in OrCAD, EAGLE, Altium, and so on
Who this course IS for
- School/University Electrical Engineering Junior Students: If you’re in ECE getting your four year college education and have taken circuits 1, Electronics 1 and 2 then you can take this course, you approach scholarly authorizing for a year. Exploit it, in light of the fact that the more established plan engineers are probably utilizing Allegro and OrCAD. This product will give you the best preferred position at looking appealing for a PCB plan job. You will likewise have the option to begin with certain plans and for all intents and purposes perform with your group.
- Junior/Senior electrical equipment configuration engineers with a Bachelor’s certificate or involvement in circuits: I can’t disclose to you how much simpler it would be if our PCB planner would work in OrCAD/Allegro rather than PADS. Obviously, where you work matters however. On the off chance that your organization is utilizing EAGLE, at that point don’t expect any development in the event that you know OrCAD. In any case, you can hope to get interviews from different organizations that are hoping to get enormous or effectively large organizations. With your aptitudes in addition to this product, you will be madly appealing to bosses.
- Amateurs, Hobbyists with a comprehension of resistors, capacitors, dc current and voltage, Ohm’s law and Kirchhoff’s current and voltage laws: Those who are hoping to get into an expert or business PCB plan programming however don’t know which one to begin with. Truly, you can begin with OrCAD or Altium. In the event that you definitely know Altium, at that point learn OrCAD next. With those two under your portfolio and a few ventures finished you will be profoundly alluring for independent plan work or in the event that you choose to get into the business.
Who this course isn’t for
The individuals who don’t have a comprehension of how inactive hardware work. I suggest learning the hypothesis first, since this course doesn’t zero in on hypothesis.
Individuals just searching for a complex PCB with visually impaired and covered vias, 6+ layer stack-ups, rapid plan and EMI plan. While this course exploits some EMI plan standards (I’ve planned <1% wave and low-clamor controllers previously, so two or three propensities get into venture 3), its attention is on arranging the cycle for apprentices to the product or the PCB configuration measure or both, so I keep the circuits basic.
For what reason would it be a good idea for you to begin getting comfortable with OrCAD?
When you learn OrCAD, you can become familiar with some other PCB plan programming, rapidly and without any problem. OrCAD and Allegro are the business standard PCB plan programming for printed circuit board plans. Each genuine gadgets configuration architect should realize OrCAD to be more serious in the equipment configuration designing field and the PC tech industry.
Who this course is for:
- Electrical/electronics engineering university students who have taken Circuits 1 or understand Kirchhoff’s voltage and current laws.
- Hardware/electrical engineering professionals moving from a different PCB CAD software, such as Altium, PADS, DipTrace, etc.
- College Professors in electrical/electronics engineering who want to introduce their students to gain some knowledge in printed circuit board design using industry standard software
- College Junior Electrical and Electronics (or ECE) Engineering students who don’t know where to start or what software to choose for PCB design
- Those who understand Ohm’s law, transistors, resistors and capacitors and dc voltage and current, who want to learn a commercial PCB design tool so they can get a job and practically perform in it
Course content of PCB Design In OrCAD:
Introduction of PCB Design In OrCAD:
- Introduction and how to get the most value from this course
- If you’re using OrCAD Professional – Dongle license issues and how to fix it
- Why should you learn PCB Design using Cadence OrCAD / Allegro?
Project #1: Fast Simple LED Circuit:
- LED: Creating and simulating a schematic in Capture CIS Lite
- LED: Associating Schematic Footprints and Setting PCB Parameters
- LED: Placing Components and Routing the PCB
- LED: Generating Gerber and Drill Files and Online Check
- LED: LED Recap and Finished
- Why do you want to learn PCB design, especially using Allegro/OrCAD?
BREAK 1 – Overview of OrCAD Capture:
- Projects in Capture and the Design Hierarchy
- Capture Part Libraries
- Creating a Part in Capture Part Editor
- Placing Parts in CapturePreview
- Wiring a Schematic in Capture
- Capture Customization and Preferences
- Capture Annotations, Text and Smart PDF
Project #2 Phases 1 – 4: The Astable Multivibrator rev A:
- 00a – Overview of the phases 1-4 – Design, Parts, Schematic, Simulation
- Project 2 Overview
- 00 – Project 2 Overview
- 01 – Starting a project and customizing your schematic template
- 02 – What’s contained in a schematic and the power of PSpice
- 02a – How to Create a Schematic Part in OrCAD Capture
- 03 – Placing parts in a schematic
- 04 – Wiring schematic parts to make the circuit work
- 05 – Nets in your schematicPreview
- 06 – Use PSpice to see how your circuit will work
- 07 – How to re-use a pre-existing schematic for PCB preparation
- 08 – Get your circuit ready for a design rules check
- 09 – How Capture can check your schematic electrical rules for you
- 10 – Rename parts to make your schematic easier to read
BREAK 2 – Overview of Padstack Editor:
- What is a thru-pin padstack?
- Getting started with Padstack Editor
- Through-Hole Padstacks and the editing environment
BREAK 3 – Overview of PCB Editor:
- Environment Setup and Grid Spacing
- Add Lines, Shapes and Text
- Constraints Manager and Vias
- Create Your First Footprint from Scratch
- Creating a surface mount device (SMD) padstack
- Create a Footprint using Package Symbol Wizard
Project #2 Phase 5: Land Pattern (Footprint) Creation:
- 15a – Phase overview for this sectionPreview
- Footprints and Padstacks Information Download
- 15 – Again, make sure you can find your custom footprints
- 16 – Plated Through-hole resistor (R1, R2)
- 17 – Through-hole capacitor (C2)
- 18 – How to fix soldermask on a footprint (C2)
- 19 – Test Point (TP1, TP2)
- 20 – Header (J1)
- 21 – 1-position header (J2, J3) and how to modify a footprint
- 22 – (D1, D2) How to create, modify and edit a footprint and its pin numbers
- 23 – (Q2) Reusing pads saves time
- 24 – (Q1) Using the zig-zag land pattern
- 25 – (R2, R3) Make a surface mount resistor footprint
- 26 – (C1) Create a surface mount capacitor footprint
Project #2 Phase 6-7: Transfer and Lay out your PCB1:
- 27 – Phases 6-7 overview: Transfer to PCB then PCB Layout
- 27a – Let OrCAD find your physical part symbols (footprints)
- 27b – How to match your PCB footprints with your schematic parts
- 27c – Do your PCB outline first
- 27d – Transfer your schematic parts onto a PCB
- 27e – Transfer your Schematic to a PCB
- 28 – Set up custom colors to make layout easier
- 29 – See how PCB represents your PCB work area
- 30 – PCB layer stack up and copper planes
- 31 – Make your life easier with custom hotkeys and shortcuts
- 32 – (Almost) Every PCB needs mounting holes
- 33 – How/Where to place your PCB components (part 1)
- 34 – Making small changes to your footprints during PCB layout
- 35 – Route the PCB (Part 1)
- 36 – Finish routing the PCB (Part 2)
Projection #2 Phase 8: PCB Production:
- Phase 8 Overview – Production
- 37 – Create text on the PCB
- 37b – How to Set up Color Views Before Generating Artwork
- 38 – Artwork films and how to capture your PCB image
- 39 – How to change the origin of your PCB design
- 40 – Create Gerber files for PCB fabrication
- 41 – How to make a drill file for PCB drilling
Project #2 Phase 9-10: Documentation:
- Phases 9-10 Overview – Bill of Materials and Documentation
- 42 – How to check and submit Gerber files for PCB fabrication
- 43 – Communicate all the information about your PCB
- 44 – Make a Bill of Materials to order your parts
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