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This paper introduces a large air-gap capacitive wireless power transfer (WPT) system for electric vehicle charging that achieves a power transfer density exceeding the state-of-the-art by more than a factor of four. This high power transfer density is achieved by operating at a high switching frequency (6.78 MHz), combined with an innovative approach to designing matching networks that enable effective...
The body diodes of 10kV SiC MOSFETs can be used as anti-parallel diodes in medium voltage converters instead of widely used SiC JBS and PiN diodes. Characterization of switching loss of the body diodes is required to evaluate its candidature for replacement of JBS/PiN diodes. Normally, double pulse test setup is used to observe the reverse recovery behavior of the diodes. But, in high voltage diodes,...
This paper introduces a very-high-power-transfer-density GaN-based capacitive wireless power transfer (WPT) system, suitable as one module of a multi-modular WPT system for charging of electric forklifts. This capacitive WPT system achieves very high power transfer density by operating at a high switching frequency (6.78 MHz) using a GaN-based inverter, and by utilizing innovatively designed L-section...
This paper presents a methodology for multi-objective optimization of capacitive wireless power transfer (WPT) systems for electric vehicle charging that allows for a favorable tradeoff between power transfer density and efficiency. By quantifying the tradeoff between these two objectives, this multi-objective optimization approach can inform engineering decisions, given the requirements of a particular...
This paper presents a single phase, two-stage electrolytic-free offline LED driver that utilizes a hybrid film-ceramic stacked switched capacitor (SSC) energy buffer (EB) in place of limited-life electrolytic capacitors for twice-line-frequency energy buffering. The proposed LED driver comprises a front-end power factor correction (PFC) stage, followed by an isolated dc-dc conversion stage, with an...
This paper presents a new capacitive wireless power transfer (WPT) system that achieves effective power transfer even with very low values of coupling capacitance between two metal plates separated by an air-gap. A prototype of the proposed capacitive WPT system has been built and shown to transfer 30 W across two 5-cm by 5-cm metal plates separated by an air-gap of 0.5 cm. The power transfer per...
This paper presents the fabrication and characterization of ZnO-based Memristor devices with Platinum (Pt) electrodes. Properties of ZnO/ZnOx strongly depends upon the sputtering conditions and heat treatment (annealing) done by rapid thermal process (RTP). Annealing creates the vacancies which provide hysteresis or in other words memory in I–V characteristics of the device. Experimental results show...
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