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https://thayer.dartmouth.edu/inductor/papers/inddes.pdf
Design of Microfabricated Inductors for Microprocessor Power Delivery G. J. Mehas K. D. Coonley C. R. Sullivan Found in IEEE Applied Power Electronics Conference, Mar. 1999, pp. 1181–1187. °c 1999 IEEE. Personal use of this material is permitted. However, permission to reprint or republish this material for advertising or promotional purposes or
http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.123.2921
CiteSeerX - Document Details (Isaac Councill, Lee Giles, Pradeep Teregowda): Abstract — Microfabricated inductor designs are proposed for converters for microprocessor power delivery. The fabrication process uses anisotropic silicon etching to form V-grooves; granular metal/insulator nanoscale composite magnetic materials; and copper conductors.
https://engineering.dartmouth.edu/inductor/bytopic.shtml
Microprocessor Power Delivery Microfabricated Magnetics for Microprocessor Power Delivery A brief two-page overview of this work is available in "Thin-Film Inductor Designs and Materials for High-Current Low-Voltage Power." Microprocessor power requirements are rapidly getting very difficult to meet.
http://engineering.dartmouth.edu/inductor/papers/pesc2004c.pdf
Microfabricated Coupled Inductors for DC-DC Converters for Microprocessor Power Delivery Satish Prabhakaran, Charles.R. Sullivan Thayer School of Engineering, Dartmouth College 8000 Cummings Hall Hanover, NH, USA Email: [email protected] Terence O’Donnell, Magali Brunet, Saibal Roy National Microelectronics Research Centre
https://engineering.dartmouth.edu/inductor/papers/PESC2h.pdf
Converter and Inductor Design for Fast-Response Microprocessor Power Delivery Gustavo J. Mehas y Kip D. Coonley z Charles R. Sullivan Thayer School of Engineering Dartmouth College 8000 Cummings Hall Hanover, NH 03755-8000 [email protected], [email protected], [email protected] Abstract—The fundamental constraints for fast ...
https://engineering.dartmouth.edu/inductor/papers/measV.pdf
Measured Electrical Performance of V-Groove Inductors for Microprocessor Power Delivery Satish Prabhakaran, Student Member, IEEE, Charles R. Sullivan, Member, IEEE, and Kapil Venkatachalam Abstract— Thin-film V-groove inductors for microprocessor power delivery are discussed. A 10-MHz, 3.3-V to 1.1-V, 7-A dc–dcAuthor: S. Prabhakaran, C.R. Sullivan, K. Venkatachalam
https://www.researchgate.net/publication/4103498_Microfabricated_coupled_inductors_for_DC-DC_converters_for_microprocessor_power_delivery
Microfabricated coupled inductors for DC-DC converters for microprocessor power delivery. ... A four-phase microfabricated magnetic structure with 14 nH of inductance per phase has been fabricated ...
https://core.ac.uk/display/20881489
Design of microfabricated inductors for microprocessor power delivery ... Abstract — Microfabricated inductor designs are proposed for converters for microprocessor power delivery. The fabrication process uses anisotropic silicon etching to form V-grooves; granular metal/insulator nanoscale composite magnetic materials; and copper conductors ...
https://www.researchgate.net/publication/3870859_Converter_and_inductor_design_for_fast-response_microprocessor_power_delivery
Converter and inductor design for fast-response microprocessor power delivery. ... microfabricated power inductors in the 1–50-nH range to be applied in 3.3-V to 1.1-V, 7-A dc–dc power ...
https://engineering.dartmouth.edu/inductor/papers.shtml
Magnetics Design. 2D models for simulations and gap reluctance formulas; Litz wire; Inductor design for low AC resistance; High-frequency winding-loss analysis, including ; Core loss in ferrites with arbitrary flux waveforms; Microfabricated Magnetics. Microfabricated magnetics for microprocessor power delivery
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