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EMC/EMI Reduction PCB Layout Design

This is a process of understanding and practically applying design methods for boards and patterns to reduce noise on circuit PCBs.

1 learners are taking this course

Level Intermediate

Course period 6 months

  • rfking200182
이해가 쏙쏙
이해가 쏙쏙
사용자이해
사용자이해
실무적용
실무적용
하드웨어
하드웨어
전자회로
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Self Improvement
Self Improvement
이해가 쏙쏙
이해가 쏙쏙
사용자이해
사용자이해
실무적용
실무적용
하드웨어
하드웨어
전자회로
전자회로
Self Improvement
Self Improvement

What you will gain after the course

  • Understanding EMI/EMC Phenomena and Countermeasures in Products

  • Understanding PCB layout design examples for noise reduction and practical application


Don't worry about PCB noise anymore!

Are you a circuit developer struggling with design challenges due to EMI/EMC issues in your products? We introduce a practice-oriented course where you can clearly understand the core principles of PCB layout design—which even experienced professionals find difficult to delve into deeply—and apply them directly to your actual work.


This course systematically covers everything from the basics to advanced techniques of PCB layout design. Based on understanding core principles, you'll apply them to actual design cases, and develop the ability to effectively solve EMI/EMC issues in products. With a curriculum optimized for practitioners at the assistant manager level or above with 5+ years of experience, seize the opportunity to elevate your expertise to the next level.




By the end of this course, you will


You will be able to systematically strengthen your PCB layout design capabilities.

  • For circuit design professionals and practitioners, you will fundamentally understand EMI/EMC issues that occur in complex PCB layouts and be able to independently perform effective mitigation designs. You can reduce noise-related trial and error in the product development process and improve design completeness.

You will gain a deep understanding of EMI/EMC phenomena based on practical know-how.

  • Beyond simply complying with regulations, you will clearly understand the principles of electromagnetic interference (EMI) and electromagnetic compatibility (EMC) phenomena that occur during the PCB design process. Through various design cases, you will learn how to respond to actual problem situations, enabling you to elevate your problem-solving abilities as a circuit developer to the next level.

Complete practical PCB layout design skills that can be applied in real situations.

  • You will acquire practical PCB layout design techniques for noise reduction needed by senior engineers and managers with 5+ years of experience, and grow into an expert who can immediately apply them in practice.


We can solve
these concerns!

📌

Circuit design engineer with 5 years of experience

Those experiencing difficulties with unexpected noise issues occurring in PCB
during design

📌

PCB Layout Practitioners

Those who lack the design know-how needed to
accurately diagnose and resolve the causes of EMI/EMC regulation failures or performance degradation

📌

Entry-level Circuit Design Engineer

Those who understand noise reduction theoretically,
but feel lost about how to actually apply it to PCB layout


■ Key Topics

1. EMI Phenomena and Countermeasures
– EMI transmission paths, antenna radiation principles, electromagnetic radiation from PCB
– EMI characteristic case analysis and EMI noise reduction countermeasures

2. Understanding PCB Structure
– PCB layer structure, PCB considerations
– Ground and power plane structure

3. PCB layout design for EMI/EMC reduction
– Component placement strategy
– Return current flow on ground, current flow between ICs
– PCB board component placement
– Shield can, heat sink grounding, AC/DC converter ground connection method
– Chassis ground and system ground separation, power connection after separation
– Cable EMI improvement, filter board design, filter types
– Capacitor placement, anti-resonance, improvement methods
– Trace corner effect, EMI radiation characteristics according to trace conditions
– PCB ground treatment, loop inductance, cable placement

4. Information Signal PCB Layout Design
– EMI and Performance Factors
– Impedance Characteristics by Digital Interface, Noise Transmission Paths
– Wiring Rules, Signal Path Layout for Ground Separation, Stitching Cap Utilization
– USB, MIPI, Ethernet EMI Reduction Measures
– Analog & Digital Mixed Circuit
– Clock Layout Design

5. Power Signal PCB Design
– Ceramic capacitor frequency characteristics, input capacitor placement, diode placement, snubber circuit placement
– Feedback signal routing, power ground layout, ground connection on multilayer boards
– Unshielded & shielded inductor
– Case analysis, PCB comparison, results, conclusion
– EMI characteristics adjusted by component characteristics, EMI scan data analysis, EMI characteristics according to bead usage
– SMPS line filter frequency characteristics

6. Protection Device PCB Layout Design
– EOS&ESD
– Static Electricity Transfer Principles and Intensity
– ESD, Burst and Surge Comparison
– ESD Models & Test Levels
– ESD Countermeasures
– Static Electricity Protection Devices, TVS Diode and Varistor
– PCB Countermeasure Methods, Case Studies, ESD Device Principles
– HDMI Interface ESD Countermeasure Methods
– Clamping Voltage According to Ground Parasitic Inductance
– H-field Distribution Applied to PCB Board
– Protection Device Placement, ESD Penetration Path, USB3.0 Circuit

7. EMC Testing

Recommended for
these people

Who is this course right for?

  • Circuit developer, implementation, design experience professional

  • Practical-level managers and assistant managers with 5+ years of experience

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Curriculum

All

9 lectures ∙ (4hr 9min)

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$152.90

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