Title :
Electromagnetic coupling circuit model of a magnetic near-field probe to a microstrip line
Author :
J?r?my Raoult;Pierre Payet;Rachid Omarouayache;Laurent Chusseau
Author_Institution :
IES, Universit? de Montpellier, 860 rue de Saint Priest, 34095, France
Abstract :
Electromagnetic (EM) injection experiments require an accurate and quantitative knowledge of the voltage effectively coupled to a target line or circuit in order to predict disruptive behavior or sensitivity of digital IC circuits to EM threats. To answer this question we derive here a complete quantitative model of the coupling of our magnetic probe to a microstrip line. The novelty of this model is to consider the coupling by analogy with a transformer and then to deduce the corresponding mutual inductance as a function of probe to target relative positions. Its inputs are S-parameter measurements of the actual probe coupled to a 50Ω microstrip line and its output is an electric equivalent circuit that can be implemented in any circuit simulator. Validity of the model extends up to GHz frequencies.
Keywords :
"Probes","Integrated circuit modeling","Couplings","Ferrites","Inductance","Electromagnetic compatibility","Microstrip"
Conference_Titel :
Electromagnetic Compatibility of Integrated Circuits (EMC Compo), 2015 10th International Workshop on the
DOI :
10.1109/EMCCompo.2015.7358325