Title :
Inductive Network Model for the Radiation Analysis of Electrically Small Parallel-Plate Structures
Author :
Friedrich, Matthias ; Leone, Marco
Author_Institution :
Dept. of Theor. Electr. Eng., Otto-von-Guericke-Univ. of Magdeburg, Magdeburg, Germany
Abstract :
Vertical interconnections between parallel-plate structures as often encountered in electronic designs are the source of various signal integrity and radiated-emission issues. The presented analysis is based on a coupled multiport equivalent-circuit model for frequencies below the first cavity resonance. A main subject is the determination of the self- and mutual port inductances, for which exact closed-form expressions are presented. For special port positions simple approximate formulas are derived. The results show that the considered structure is inherently resonant. The resonance frequency depends on the number and configuration of the ground interconnections and can be estimated from the equivalent circuit. The radiated emission of the whole structure is determined by the capacitive current in the network model, based on a simple Hertzian-dipole radiation characteristic. The model is validated by numerical 3-D field simulations and measurements.
Keywords :
circuit noise; circuit resonance; electromagnetic induction; electromagnetic interference; equivalent circuits; multiport networks; printed circuit design; 3D field simulations; Hertzian dipole radiation; closed form expressions; coupled multiport equivalent circuit model; electrically small parallel plate structures; electronic designs; first cavity resonance; ground interconnections; inductive network model; mutual port inductance; port positions; printed circuit board; radiated emission; radiation analysis; resonance frequency; self inductance; signal integrity; vertical interconnections; Analytical models; Approximation methods; Closed-form solution; Green´s function methods; Inductance; Integrated circuit modeling; Numerical models; Interconnections; motherboard; pin inductances; printed-circuit board (PCB); subboard;
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
DOI :
10.1109/TEMC.2011.2145383