• DocumentCode
    1332314
  • Title

    Magnetic-Core and Air-Core Inductors on Silicon: A Performance Comparison up to 100 MHz

  • Author

    Meere, Ronan ; Ningning Wang ; O´Donnell, Terence ; Kulkarni, Santosh ; Roy, Sandip ; O´Mathuna, S.C.

  • Author_Institution
    Electron., Comput. & Software Eng., Athlone Inst. of Technol., Athlone, Ireland
  • Volume
    47
  • Issue
    10
  • fYear
    2011
  • Firstpage
    4429
  • Lastpage
    4432
  • Abstract
    What is the future of integrated inductor design on silicon for power conversion applications at frequencies up to 100 MHz-is it magnetic-core or air-core inductors. This study presents measured results for two microfabricated inductors (magnetic core and air core), which have been designed to operate at 20 MHz and occupy a substrate area of less than 10 mm2. The inductor technology and design are briefly discussed. An optimized inductor design study is, then, presented. Both magnetic-core and air-core inductor designs are compared and evaluated, in terms of inductance and efficiency per unit area for frequencies up to 100 MHz. The design of the microinductors is discussed and an analytical design optimization program is used to model the devices for the maximum efficiency and inductance. The introduction of laminations with high-frequency core inductors will also be examined within the study. A 100 MHz magnetic-core inductor design with three laminations gives a 36 nH inductance, with 96.4% efficiency and an area of 3 mm2 . A comparable air-core design also gives a 36 nH inductance, with 93.45% efficiency and an area of just 2.6 mm2.
  • Keywords
    elemental semiconductors; inductance; laminations; magnetic cores; microfabrication; optimisation; power convertors; silicon; thin film inductors; Si; air core inductors; analytical design optimization program; frequency 100 MHz; frequency 20 MHz; integrated inductor design; laminations; magnetic core; microfabricated inductors; microfabrication; microinductors; optimized inductor design; power conversion; silicon; Inductance; Inductors; Lamination; Magnetic circuits; Magnetic cores; Magnetic hysteresis; Optimization; DC–DC power converters; optimization; thin-film inductors; wafer scale integration;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2011.2158519
  • Filename
    6028203