Electromagnetics for engineers: with applications to digital systems and electromagnetic interference
This book covers the basic electromagnetic principles and laws from the standpoint of engineering applications, focusing on time-varying fields. Numerous applications of the principles and law are given for engineering applications that are primarily drawn from digital system design and electromagnetic interference (Electromagnetic Compatibility or EMC). Clock speeds of digital systems are increasingly in the GHz range as are frequencies used in modern analog communication systems. This increasing frequency content demands that more electrical engineers understand these fundamental electromagnetic principles and laws in order to design high speed and high frequency systems that will successfully operate.
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Ampere's law angle antenna average power boundary capacitor characteristic impedance charge distribution circuit components compute contour cross product crosstalk cylinder Determine the electric dielectric differential direction distance dot product electric and magnetic electric field intensity electric flux density electromagnetic electronic equations example Faraday's law field intensity vector field lines field vectors Figure flux density vector free space frequency Gauss ground plane half-wave dipole Hence Hertzian dipole inductance input impedance intrinsic impedance length line charge load voltage loop lossless lossy magnetic field intensity magnetic flux density magnitude medium Observe obtain parallel path perpendicular phase shift phasor point charge polarization power density problem pulse QUICK REVIEW EXERCISE radiated radius rectangular coordinate system reflection coefficient result shield shown in Fig signal sinusoidal skin depth SOLUTION spherical coordinate system SPICE time-domain transmission line uniform plane wave velocity of propagation voltage and current VSWR wavelength wire zero