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Synchronous Rectifier for High-Power Wireless Transfer Applications

机译:大功率无线传输应用的同步整流器

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The appliance of wireless power transfer based on inductive coupling, nowadays, is a state-of-the-art approach and widely used in the industry. Different kinds of standards have been established in the past years, e.g. Qi or WPC (Wireless Power Consortium)to name but a few. Regardless of the development, the rectification of the alternative current (AC)itself is, in general, not part of the standard. Up to now, low-cost devices such as smartphone chargers use standard half- or full-wave passive rectifiers. This might give acceptable results for low-power and/or low-cost devices but the achievable efficiency is limited by this approach. The dissipated heat itself is for low-power devices, in most cases, neglectable as the charger itself is mostly connected to the power grid. In this paper, a straightforward solution is proposed which has been successfully implemented for <; 600 W wireless-power application. The solution is not limited to sinusoidal waveforms and prohibits reverse-current flow automatically. The approach automatically switches to passive rectification, when running idle or if a low-load is present, to maximize the efficiency without the requirement to know the waveform for adjustment in advance.
机译:现在,基于电感耦合的无线电力传输设备是一种最先进的方法,并在行业中广泛使用。例如,过去几年已经建立了不同类型的标准。 qi或wpc(无线电力联盟)名称但是几个。无论开发如何,替代电流(AC)本身的整改通常不是标准的一部分。到目前为止,智能手机充电器等低成本设备使用标准的半或全波被动整流器。这可能对低功耗和/或低成本设备提供可接受的结果,但可实现的效率受到这种方法的限制。耗散的热量本身是低功率器件,在大多数情况下,由于充电器本身主要连接到电网而忽略。在本文中,提出了一种已成功实施的直接解决方案。 600 W无线电源应用。解决方案不限于正弦波形,并禁止自动禁止反向电流。当运行空闲或存在低负载时,该方法自动切换到被动整流,或者如果存在低负载,则可以在不需要预先了解调整的波形的情况下最大化效率。

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