Electromagnetic compatibility isn't achieved in the test chamber-it begins with understanding how interference is created, how it travels, and how to control it before the first compliance test.
Every reliable electronic system depends on deliberate EMC design. A poorly controlled return path, cable, enclosure seam, switching node, PCB transition, or filter can turn an otherwise functional product into an emissions or immunity problem. Successful EMC engineering requires understanding the electromagnetic mechanisms behind interference and applying the right design decisions throughout development.
Handbook of Electromagnetic Compatibility Engineering is a comprehensive technical reference for engineers, designers, technicians, EMC practitioners, students, and electronics professionals who want to design, troubleshoot, and verify electronic systems for electromagnetic compatibility. From electromagnetic field fundamentals and coupling mechanisms to grounding, shielding, filtering, PCB design, emissions, immunity, transient protection, testing, and regulatory certification, this handbook connects essential theory with practical engineering application.
Unlike references that treat EMC primarily as a collection of test procedures or isolated design rules, this handbook approaches compatibility as a complete engineering discipline. It connects source, coupling path, and victim with the practical decisions that determine EMC performance-from component selection and PCB layout to cables, enclosures, filtering, measurement, and certification.
Worked examples, engineering calculations, practical guidance, standards cross-references, formula summaries, material-property tables, and a pre-compliance test-plan template make the handbook valuable for both structured learning and day-to-day technical reference.
Whether you're developing your first EMC-conscious design, investigating an emissions failure, preparing equipment for laboratory testing, or strengthening years of electronics experience, this handbook will help you make better design decisions, troubleshoot interference systematically, reduce costly redesign cycles, and approach compliance testing with greater confidence.
Build EMC into the design from the beginning-and develop electronic systems engineered to perform reliably in the electromagnetic environments where they must operate.