Electromagnetic Compatibility Engineering Handbook 2026 Baixar grátis

Isbn 13: 9798170653881

Dr. Ellis R. Marchand Electromagnetic Compatibility Engineering Handbook 2026 áudio-livro

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Proven Techniques for Controlling EMI, Improving Shielding, and Designing Reliable Electronics
Your board works. Your firmware is stable. Then the lab report comes back: radiated emissions failed at 3 metres, and nobody in the room can say why.
Electromagnetic compatibility is where good hardware quietly dies. Not because the engineering was careless, but because a grounding choice made in week three, a stack-up approved in week six, and a connector selected in week nine only reveal what they did to each other in week thirty at the lab, on the clock, with tooling already committed.
And EMI never names its own cause. A flickering display, an intermittent reset, a marginal ESD strike each has a dozen plausible explanations, which is why so many teams end up soldering ferrites onto a design and hoping. That is not engineering. It is expensive guessing.
This book replaces the guessing with a method. Every problem in these pages is broken into three parts a source of unwanted energy, a path that carries it, and a receptor that is disturbed by it and then answered with the cheapest countermeasure that actually removes one of the three. You will learn not just what fixes a problem, but which of the three you are attacking, and why the other two fixes would have failed.
What you will be able to do

  • Locate the fault determine whether an emissions, immunity, or signal-integrity failure lives at the source, in the coupling path, or at the receptor, before you spend a respin finding out.
  • Put numbers on it calculate capacitive, inductive, conductive, and radiated coupling, and separate common-mode from differential-mode currents so you filter the one that is actually there.
  • Size the countermeasure specify grounding architectures, shielding materials, filter topologies, and cable-shield terminations for your real frequency range and impedance environment, not a generic rule of thumb.
  • Lay out boards that pass stack-up, plane strategy, return-path discipline, and loop-area control, with the reasoning behind each choice made explicit.
  • Harden the design protect digital and high-speed circuits against ESD, RF susceptibility, and conducted transients.
  • Extend the method into wireless coexistence, power-electronics switching noise, and automotive and EV electrical environments.
  • Read the lab, then pass it interpret chamber and conducted-emissions results, troubleshoot to root cause, and navigate FCC Part 15, CISPR 32, IEC 61000-4-x, and CE marking to a defensible compliance file.
Fix it at layout, not at the lab. Start reading.

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Isbn 13 :9798170653881
Encadernação Electromagnetic Compatibility Engineering Handbook 2026:Capa Comum
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