PCB Schematics

and Layout Design
 

In this course, learn Electronics and PCB Design from
the ground up and gain a deeper understanding
on how PCBs work.

5 Days / 40 Hours /
+ 3 month coaching + 1 year eLearning access

PCB Schematics
and
Layout Design

In this course, learn Electronics
and PCB Design from the
ground up and gain a
deeper understanding
on how PCBs work.
5 Days / 40 Hours /
+ 3 month coaching + 1 year eLearning access

Learn Electronics and PCB Design from the ground up and gain a deeper understanding on how PCBs work

This course is prepared to enable candidates new to designing printed circuit boards (PCB). Covered topics will be from the fundamentals explaining the science behind the design process, standard terms and rules used in the industry.
 
Key Learning Outcomes

This course will give learners a chance to understand the fundamental of Electronics and PCB Design and gain a deeper understanding on how PCBs work. By the end of the program, participants will be able to achieve to following learning outcomes:

  • Ohm’s Law, Power & Power Dissipation Concepts
  • Digital electronics basics such as the pull-up, down, and open-drain concepts
  • How to read schematics
  • PCB layout and how to cross-reference to schematics
  • How to use Electronic design automation (EDA) software
  • PCB composition such as trace, via, silkscreen, plated through hole (PTH), SMD pads
  • Component types and footprint
  • How to read the component datasheet
  • PCB design rules such as trace width, clearance, copper fills
  • Design rule check (DRC) set-up
  • Design Rules of thumb
  • Signal propagation
  • PCB fabrication, how to comply with manufacturers' requirement
  • PCB initial bring-up and testing

 
 
Key Learning Outcomes

This course will give learners a chance to understand the fundamental of Electronics and PCB Design and gain a deeper understanding on how PCBs work. By the end of the program, participants will be able to achieve to following learning outcomes:

  • Ohm’s Law, Power & Power Dissipation Concepts
  • Digital electronics basics such as the pull-up, down, and open-drain concepts
  • How to read schematics
  • PCB layout and how to cross-reference to schematics
  • How to use Electronic design automation (EDA) software
  • PCB composition such as trace, via, silkscreen, plated through hole (PTH), SMD pads
  • Component types and footprint
  • How to read the component datasheet
  • PCB design rules such as trace width, clearance, copper fills
  • Design rule check (DRC) set-up
  • Design Rules of thumb
  • Signal propagation
  • PCB fabrication, how to comply with manufacturers' requirement
  • PCB initial bring-up and testing

 
Program Curriculum
 
Module 1
  • Introduction to Soldering
  • Terms and Definitions
  • Types of SMT components and Through hole components
  • Identifying all soldering tools and maintenance
  • Understand the hazards and use of fluxes and cleaning solvents
  • Procedures in Making a Good Solder Joint
  • Practical session - Simple soldering
  • Soldering tool maintenance
  • Lead and Lead-free soldering
  • SMT Reflow oven basics
  • Wave soldering and Selective soldering
Module 2
  • Identifying through hole components in detail.
  • Solder Rework Techniques-Through-Hole
  • Through Hole Component Removal Methods
  • The use of hot plate in component removal
  • Through Hole inspection Criteria.
  • Component mounting techniques
  • Through Hole Soldering
  • Practical session - Through hole soldering
Module 3
  • Identifying SMT components in detail.
  • Solder Rework Techniques of SMT parts
  • How to properly use the hot gun
  • SMT Component Removal Methods
  • SMT inspection Criteria.
  • SMT Component mounting techniques
  • SMT Soldering
  • Practical session - SMT components soldering
Module 4
  • Wicking process to clean SMD pads
  • Basic Practical Debugging techniques: Visual inspection
  • Cheat Sheet: Common PCB Issues / Failures
  • Trace/conductor reconnection
  • Plated hole repair
  • Solder mask recoating
Module 5
  • Summary of Learning
  • Practical session
  • Hands-on assessment with the provided kit and tools
 
Program Key Highlights

online-learning-2
16 hours of Remote Online Learning
learning-hours
Coaching Platform Access
hands-on
Relevant Case Studies
certification
Certified by International Body
mentor
Trained by Industry Experts
industry
Designed for Beginners & Professionals
 
 



READY TO PROGRESS YOUR IOT CAREER?
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