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Titlebook: Design for Electromagnetic Compatibility--In a Nutshell; Theory and Practice Reto B. Keller Book‘‘‘‘‘‘‘‘ 2023 The Editor(s) (if applicable)

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https://doi.org/10.1007/978-3-540-45626-1ents the concepts of determining the right filter type and ensuring the proper components are chosen regarding power dissipation, noise current type, and high-frequency behavior..Filters can be classified according to their attenuation in the frequency-domain: .or according to active components invo
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https://doi.org/10.1007/978-3-540-45626-1romagnetic interference (EMI). The guidelines presented in this chapter are the personal guidelines of the author and helped him to pass EMC testing of several products. However, be aware that guidelines alone cannot do magical things to your design and they cannot be universally applied. Be wary! H
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Characterization in the Fractional Casets. Therefore, in this chapter, the high-frequency behavior and other undesirable effects of conductors (wires, cables, PCB traces), resistors, capacitors, inductors, ferrite beads, common-mode chokes, baluns, varistors, and TVS diodes are presented.
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The Discrete Fourier Transform,aves, initially proposed by Schelkunoff ((1943) Electromagnetic waves. D. van Nostrand Company Inc, New York, pp 303–312) in 1943. The formulas in this chapter are approximations for shields with high electrical conductivity. Before we jump into the theory of shielding, here are two practical pieces of advice:
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