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A 2.5D Integrated Voltage Regulator Using Coupled-Magnetic-Core Inductors on Silicon Interposer

Authors :
Bucknell C. Webb
Naigang Wang
William J. Gallagher
Robert E. Fontana
Philipp Herget
Gary M. Decad
Angel V. Peterchev
Luca P. Carloni
Noah Sturcken
Lubomyr T. Romankiw
Michele Petracca
Ryan R. Davies
Ioannis Kymissis
Kenneth L. Shepard
Eugene J. O'Sullivan
Source :
IEEE Journal of Solid-State Circuits. 48:244-254
Publication Year :
2013
Publisher :
Institute of Electrical and Electronics Engineers (IEEE), 2013.

Abstract

An integrated voltage regulator (IVR) is presented that uses custom fabricated thin-film magnetic power inductors. The inductors are fabricated on a silicon interposer and integrated with a multi-phase buck converter IC by 2.5D chip stacking. Several inductor design variations have been fabricated and tested. The best performance has been achieved with a set of eight coupled inductors that each occupies 0.245 mm2 and provides 12.5 nH with 270 mΩ DC. With early inductor prototypes, the IVR efficiency for a 1.8 V:1.0 V conversion ratio peaks at 71% with FEOL current density of 10.8 A/mm2 and inductor current density of 1.53 A/mm2. At maximum load current, 69% conversion efficiency and 1.8 V:1.2 V conversion ratio the FEOL current density reaches 22.6 A/mm2 and inductor current density reaches 3.21 A/mm2.

Details

ISSN :
1558173X and 00189200
Volume :
48
Database :
OpenAIRE
Journal :
IEEE Journal of Solid-State Circuits
Accession number :
edsair.doi...........40f623ab9fe639a0191a49d2e33d1372
Full Text :
https://doi.org/10.1109/jssc.2012.2221237