4.7 Article

Comprehensive Design Procedure for Racetrack Microinductors

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JESTPE.2021.3094631

关键词

Inductance; Inductors; Mathematical model; Spirals; Magnetic cores; Wires; Complexity theory; Inductor-on-silicon; integrated power; magnetics-on-silicon; micro-inductor; planar back-end-of-line (BEOL); power-supply-on-chip (PwrSoC); race-track; thin-film

资金

  1. Spanish Ministry of Economy and Competitiveness [EPIIoT DPI2017-88062-R]
  2. FEDER funds [EPIIoT DPI2017-88062-R]
  3. CarrICool EU [FP7-ICT-619488]
  4. Madrid Government (Comunidad de Madrid-Spain)
  5. UC3M in the line of Excellence of University Professors [EPUC3M26]

向作者/读者索取更多资源

This article presents a comprehensive design procedure for cored micro-inductors, allowing for the optimal device to be designed in a single iteration. It also helps designers easily determine the limits of the inductor in terms of handled current and losses, providing valuable physical insights into the process output.
Present needs in efficiency and integration drive research toward the miniaturization of power converters. Among the latest components to achieve the desired degree of integration are cored micro-inductors that are still one of the hardest devices to optimize, due to the high number of freedom degrees in their fabrication. In this article, a comprehensive design procedure for these micro-inductors is presented. The proposed method makes it possible to design the optimal device in a single iteration. It also allows the designer to easily ascertain the limits of the inductor in terms of handled current and losses and provides valuable physical insights into the output of the process.

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