Design and Fabrication of Bond Wire Micro-Magnetics

This thesis presents a new approach for the design and fabrication of bond wire magnetics for power converter applications by using standard IC gold bonding wires and micro-machined magnetic cores. It shows a systematic design and characterization study for bond wire transformers with toroidal and...

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Main Author: Macrelli, Enrico <1984>
Other Authors: Tartagni, Marco
Format: Doctoral Thesis
Language:en
Published: Alma Mater Studiorum - Università di Bologna 2014
Subjects:
Online Access:http://amsdottorato.unibo.it/6426/
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spelling ndltd-unibo.it-oai-amsdottorato.cib.unibo.it-64262016-03-13T04:55:13Z Design and Fabrication of Bond Wire Micro-Magnetics Macrelli, Enrico <1984> ING-INF/01 Elettronica This thesis presents a new approach for the design and fabrication of bond wire magnetics for power converter applications by using standard IC gold bonding wires and micro-machined magnetic cores. It shows a systematic design and characterization study for bond wire transformers with toroidal and race-track cores for both PCB and silicon substrates. Measurement results show that the use of ferrite cores increases the secondary self-inductance up to 315 µH with a Q-factor up to 24.5 at 100 kHz. Measurement results on LTCC core report an enhancement of the secondary self-inductance up to 23 µH with a Q-factor up to 10.5 at 1.4 MHz. A resonant DC-DC converter is designed in 0.32 µm BCD6s technology at STMicroelectronics with a depletion nmosfet and a bond wire micro-transformer for EH applications. Measures report that the circuit begins to oscillate from a TEG voltage of 280 mV while starts to convert from an input down to 330 mV to a rectified output of 0.8 V at an input of 400 mV. Bond wire magnetics is a cost-effective approach that enables a flexible design of inductors and transformers with high inductance and high turns ratio. Additionally, it supports the development of magnetics on top of the IC active circuitry for package and wafer level integrations, thus enabling the design of high density power components. This makes possible the evolution of PwrSiP and PwrSoC with reliable highly efficient magnetics. Alma Mater Studiorum - Università di Bologna Tartagni, Marco Romani, Aldo 2014-04-28 Doctoral Thesis PeerReviewed application/pdf en http://amsdottorato.unibo.it/6426/ info:eu-repo/semantics/openAccess
collection NDLTD
language en
format Doctoral Thesis
sources NDLTD
topic ING-INF/01 Elettronica
spellingShingle ING-INF/01 Elettronica
Macrelli, Enrico <1984>
Design and Fabrication of Bond Wire Micro-Magnetics
description This thesis presents a new approach for the design and fabrication of bond wire magnetics for power converter applications by using standard IC gold bonding wires and micro-machined magnetic cores. It shows a systematic design and characterization study for bond wire transformers with toroidal and race-track cores for both PCB and silicon substrates. Measurement results show that the use of ferrite cores increases the secondary self-inductance up to 315 µH with a Q-factor up to 24.5 at 100 kHz. Measurement results on LTCC core report an enhancement of the secondary self-inductance up to 23 µH with a Q-factor up to 10.5 at 1.4 MHz. A resonant DC-DC converter is designed in 0.32 µm BCD6s technology at STMicroelectronics with a depletion nmosfet and a bond wire micro-transformer for EH applications. Measures report that the circuit begins to oscillate from a TEG voltage of 280 mV while starts to convert from an input down to 330 mV to a rectified output of 0.8 V at an input of 400 mV. Bond wire magnetics is a cost-effective approach that enables a flexible design of inductors and transformers with high inductance and high turns ratio. Additionally, it supports the development of magnetics on top of the IC active circuitry for package and wafer level integrations, thus enabling the design of high density power components. This makes possible the evolution of PwrSiP and PwrSoC with reliable highly efficient magnetics.
author2 Tartagni, Marco
author_facet Tartagni, Marco
Macrelli, Enrico <1984>
author Macrelli, Enrico <1984>
author_sort Macrelli, Enrico <1984>
title Design and Fabrication of Bond Wire Micro-Magnetics
title_short Design and Fabrication of Bond Wire Micro-Magnetics
title_full Design and Fabrication of Bond Wire Micro-Magnetics
title_fullStr Design and Fabrication of Bond Wire Micro-Magnetics
title_full_unstemmed Design and Fabrication of Bond Wire Micro-Magnetics
title_sort design and fabrication of bond wire micro-magnetics
publisher Alma Mater Studiorum - Università di Bologna
publishDate 2014
url http://amsdottorato.unibo.it/6426/
work_keys_str_mv AT macrellienrico1984 designandfabricationofbondwiremicromagnetics
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