Design and fabrication of a 315 μH bondwire micro-transformer for ultra-low voltage energy harvesting

DATE(2014)

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摘要
This paper presents a design study of a new topology for miniaturized bondwire transformers fabricated and assembled with standard IC bonding wires and toroidal ferrite (Fair-Rite 5975000801) as a magnetic core. The micro-transformer realized on a PCB substrate, enables the build of magnetics on-top-of-chip, thus leading to the design of high power density components. Impedance measurements in a frequency range between 100 kHz to 5 MHz, show that the secondary self-inductance is enhanced from 0.3 μH with an epoxy core to 315 μH with the ferrite core. Moreover, the micro-machined ferrite improves the coupling coefficient from 0.1 to 0.9 and increases the effective turns ratio from 0.5 to 35. Finally, a low-voltage IC DC-DC converter solution, with the transformer mounted on-top, is proposed for energy harvesting applications.
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ferrite core,pcb substrate,low-voltage ic dc-dc converter,bondwire transformer,epoxy core,toroidal ferrite,ultra-low voltage energy harvesting,design study,magnetic core,h bondwire micro-transformer,standard ic bonding wire,micro-machined ferrite,toroidal ferrite core,pcb,printed circuits,magnetics,topology,ferrites,inductance,self inductance,transformer,coupling coefficient,impedance measurement,energy harvesting,layout,ferrite
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