DocumentCode
1294973
Title
Analysis of Microinductor Performance in a 20-100 MHz DC/DC Converter
Author
Meere, Ronan ; O´Donnell, Terence ; Bergveld, Henk Jan ; Wang, Ningning ; O´Mathuna, Séan Cian
Author_Institution
Microsyst. Centre, Univ. Coll. Cork, Cork, Ireland
Volume
24
Issue
9
fYear
2009
Firstpage
2212
Lastpage
2218
Abstract
This paper presents a low-profile thin-film microfabricated inductor on silicon and its performance in a high-frequency low-power DC/DC converter. The design of the inductors has focused on maximizing efficiency while maintaining a relatively flat frequency response up to 30 MHz. The inductance at 20 MHz is approximately 150 nH with a resistance of 1.8 ??. The performance of the microinductor has been compared to two conventional commercially available 150-nH chip inductors. One of the chip inductors has a magnetic-material core and the other is an air core. The maximum efficiency of the microinductor, which relates the power loss of the microinductor to output power loss of the converter, is measured to be approximately 93% at 20 MHz. The low-power DC/DC converter operates in the tens of milliwatts output power range, with an input voltage of 1.8 V and an output voltage programmable between 0 and 1.8 V. The converter maximum efficiency when using the microinductor on silicon is 78.5% at 20 MHz, which is approximately 2% lower than the efficiency using the conventional chip inductors.
Keywords
DC-DC power convertors; frequency response; magnetic materials; microfabrication; thin film inductors; DC/DC converter; air core; flat frequency response; frequency 20 MHz to 100 MHz; low-profile thin-film microfabricated inductor; magnetic-material core; microinductor performance analysis; power loss; resistance 1.8 ohm; voltage 1.8 V; DC-DC power converters; Frequency response; Inductance; Magnetic cores; Performance analysis; Power generation; Semiconductor thin films; Silicon; Thin film inductors; Voltage; DC/DC conversion; high frequency; low profile; magnetic-core inductors;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2009.2021942
Filename
5200340
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