Title :
Circuit modeling of nonlinear lossy frequency dependent thin-film magnetic inductors
Author :
Elsherbini, Adel ; Braunisch, H. ; O´Brien, Kieran
Author_Institution :
Components Res., Intel Corp., Chandler, AZ, USA
Abstract :
Thin-film magnetic inductors are useful for integrated power delivery solutions for microprocessors and mobile devices. In many of these applications, the inductor dimensions have to be optimized simultaneously with the other circuit components and thus, accurate circuit models are required. Hence, we present an accurate physics-based circuit model that can capture the frequency dependency, losses and the nonlinear behavior of thin-film magnetic inductors both for the uncoupled and coupled configurations. The model is based on the magnetic circuit description of the inductors with additional elements to model the frequency dependency within the magnetic material. The model is verified using vector network analyzer measurements of direct current biased inductors.
Keywords :
inductors; magnetic circuits; magnetic devices; thin film devices; circuit components; direct current biased inductors; integrated power delivery solutions; magnetic circuit description; magnetic material; microprocessors; mobile devices; nonlinear lossy frequency dependent thin-film magnetic inductors; physics-based circuit model; vector network analyzer measurements; Inductance; Inductors; Integrated circuit modeling; Magnetic circuits; Magnetic cores; Magnetic domains; Saturation magnetization; equivalent circuit modeling; integrated voltage regulator; nonlinear inductor; thin-film magnetic inductor;
Conference_Titel :
Electrical Performance of Electronic Packaging and Systems (EPEPS), 2012 IEEE 21st Conference on
Conference_Location :
Tempe, AZ
Print_ISBN :
978-1-4673-2539-4
Electronic_ISBN :
978-1-4673-2537-0
DOI :
10.1109/EPEPS.2012.6457853