PCB Layout Design Module

PCB Layout Design Module

PCB LAYOUT DESIGN - Part 1

Theory:

  • Introduction to PCB
  • Definition of PCB
  • Invention & inventor name
  • Copper Clad Laminate
  • Selection of copper & insulator thickness
  • Specification & classification of PCBs (s/s, d/s)
  • Understanding plated through holes technology
  • Introduction to SMT technology
  • Manufacturing video of PCB

Practical:

  • Identify s/s & d/s PCBs

I have learned all above topics very well


Theory:

  • Fundamentals of electronics
  • Component introduction & category
  • Introduction to schematic diagram
  • Symbols of electronics components & their footprints
  • Introduction to datasheets (www.alldatasheet.com)

Practical:

  • Familiar with component hardware
  • Collect datasheet of different components
  • Make symbol of electronic components on paper by hand

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PCB LAYOUT DESIGN - Part 2: Mechanical Dimensions

Theory:

  • Getting started with physical design of activity 1

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Draw some mechanical dimensions of PCB:
Rectangle
Square (rotated)
Circle
Rounded Rect
Hexagon
Octagon
Arc (Bottom)
Trapezoid
Diamond

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PCB LAYOUT DESIGN - Part 3: Netlist, Routing, DRC

Practical:

  • Component placement in activity 1
  • Configuring footprint in library

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Theory:

  • Net list feeding procedure

Practical:

  • Net list feeding in activity 1

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Theory:

  • Routing
  • Track width, pad stack, solder side/comp side, layers, DRC

Practical:

  • Designing of single side circuits
  • Checking for errors

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Theory:

  • Ground pouring, tear drop

Practical:

  • Designing of different single side circuits
  • Checking for errors

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Practical:

  • One copy work after applying all the commands

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Activity 2,3

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Theory:

  • Introduction to double sided
  • Why use double sided
  • Size & cost factor of d/s

Practical:

  • Started with activity 4 with d/s PTH
  • Pad stack, footprints, vias, track width

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Activity 5 with d/s PTH

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Activity 6 with s/s

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Theory:

  • Introduction to Gerber and manufacturing information
  • Documentation
  • BOM
  • NETLIST

PCB LAYOUT DESIGN - Part 4: Auto-Routing & Fabrication

  • NC DRILL
  • PHOTO PLOTTED FILMS

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Activity 7 with d/s PTH

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Activity 8 with d/s PTH

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Activity 9 with d/s PTH

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Activity 10 with s/s

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Start with copy work

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Modular test

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Theory:

  • Introduction to Auto Routing
  • Setting up rules
  • Defining Constraints
  • Auto route setup
  • Follow The Activity List Projects

Practical:

  • Designing Of Different Circuits
  • Checking For Errors

I have learned all above topics very well


Practical:

  • Visit to PCB manufacturing unit optional

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Theory:

  • Introduction To PCB Fabrication Techniques
  • Single, double & multi- layer
  • Etching: Chemical Principles & Mechanisms
  • Post Operations- Stripping, Black-Oxide Coating & Solder Masking
  • PCB Component Assembly Process

Practical:

PCB LAYOUT DESIGN - Part 5: Soldering, Testing & Conclusion

  • Fabrication of Your Own' Designed PCB
  • Collect Components

I have learned all above topics very well


Theory:

  • Soldering Methods
  • Safety Precautions
  • Different Method Of Soldering
  • Use Of Flux In Soldering
  • Checking For Errors
  • De-Soldering Techniques

Practical:

  • Project PCB's Assembled
  • Designing Of Different Circuits

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Practical:

  • Make small project

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Theory:

  • Introduction To Electronic Lab Equipment

Practical:

  • Live Presentation Of Multi meter, C.R.O, DC Supply Etc.
  • Competition, Doubts & Practical Session

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Theory:

  • Revision From Starting To End
  • Prepare Notes

Practical:

  • Collect End-Output Of Your Designed Circuits

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Theory:

  • PCB Design Electrical Consideration
  • Perfect Grounding & By Passing
  • Introduction To Pre-Production Engineering

Practical:

  • Design Layouts

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LESSON PLAN FOR 45 DAYS MODULE

  • Discussion On Doubts
  • QA

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  • QA
  • Certificate Distribution Cum Farewell ceremony

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Watch video

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