EMC of Analog Integrated Circuits - Practical Guide for Engineers
EMC of Analog Integrated Circuits - Practical Guide for Engineers
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In this review of EMC of Analog Integrated Circuits, the focus is practical: the book is for electronics engineers, circuit designers and advanced students who need a clear treatment of electromagnetic compatibility as it applies to analog ICs. The bottom line is that this volume explains why analog parts are especially vulnerable in noisy electromagnetic environments and offers conceptual guidance for designing circuits that both tolerate disturbances and limit emissions. It reads like a technical reference rather than a textbook, and it is most valuable to practitioners seeking applied insight rather than introductory theory.
Key Features
- Focused scope: Concentrates on electromagnetic compatibility for analog integrated circuits, helping readers understand the unique challenges facing non-digital designs.
- Practical explanation: Explains how the omnipresence of communication systems and rising frequencies create a noisy environment that affects sensitive equipment.
- Immunity guidance: Describes why analog ICs lack the inherent immunity of digital systems and how design choices influence susceptibility.
- Emission awareness: Covers the need for integrated circuits to avoid generating intolerable electromagnetic emissions inside appliances.
- Contextual relevance: Places EMC concerns in the context of modern appliances where multiple systems must coexist without harmful interference.
Who It's For
This book is aimed at practicing electrical engineers, circuit designers, and graduate students who work on analog integrated circuits and need to manage interference and emissions in real products. It is also useful for system designers who must coordinate mixed-signal parts within larger appliances and want a technical perspective on immunity and emission tradeoffs.
It is less suited for readers seeking beginner-level introductions to electromagnetics or for hobbyists without an electronics background, because the emphasis is on analog IC vulnerabilities and design considerations rather than elementary theory or hands-on tutorials.
Pros & Cons
Pros
- Conveys a clear, practical focus on why analog ICs are more easily disturbed than digital parts, which helps prioritize design reviews.
- Explains the relationship between increasing frequency use, ambient electromagnetic pollution, and circuit behavior.
- Useful for system-level engineers who need to balance emission limits and immunity when integrating components.
Cons
- Not a step-by-step lab manual, so readers wanting hands-on experiments or introductory electromagnetics may need supplemental texts.
Specifications
| Title | EMC of Analog Integrated Circuits |
| Series | Analog Circuits and Signal Processing |
| Author | Jean-Michel Redoute |
| Subject focus | Electromagnetic compatibility for analog integrated circuits |
| Primary topics | Emission, immunity, analog vulnerability |
| Audience | Engineers, designers, graduate students |
Our Verdict
EMC of Analog Integrated Circuits is a focused, practical reference for professionals who must design analog parts to survive in noisy electromagnetic environments and keep emissions in check. It is good value for engineers seeking applied guidance on immunity and emission issues, though those needing introductory theory or lab procedures should pair it with other texts.
Frequently Asked Questions
Does this book cover digital circuit EMC?
It concentrates on analog integrated circuits and their specific vulnerabilities rather than general digital EMC techniques.
Is this suitable for self-study?
Yes for experienced engineers and students with a solid electronics background; beginners may find it terse and should supplement with introductory material.
Will it help reduce emissions in a finished product?
It provides conceptual guidance on limiting emissions and improving immunity, useful as part of a broader EMC design and testing process.
Editor's Take
A focused, practical reference for engineers who must design analog integrated circuits to tolerate electromagnetic pollution and limit emissions; best for experienced practitioners and students.

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