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A Passive Tunable Magnetoelectric Gyrator: A Highly Efficient Approach to Non-Power Consumable Capacitor Control Methods

机译:无源可调磁电旋转器:非功耗电容器控制方法的高效方法

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摘要

Tunability in magnetoelectric (ME) gyrators is of importance for realizing controllable energy-efficient electronics. Here, we investigated a novel passive control method that exhibits a high frequency tunability of up to 370 Hz using a non-power-consuming (passive) capacitor approach. The method requires zero external controllable power as the frequency is changed. This tuning does not decrease the power conversion efficiency (86%) of the gyrator. Our results indicate that the internal mechanical reactive components need to be changed by passive external capacitors, which proves to be an effective way by which gyrators can achieve high tunability and retain high power conversion efficiency. This article opens an approach toward the design of new tunable circuit components.
机译:磁电(ME)陀螺器中的可调性对于实现可控节能电子产品具有重要性。在这里,我们研究了一种新的被动控制方法,其使用非功率(被动)电容器方法具有高达370Hz的高达370Hz的高频可调性。该方法需要零外部可控功率随着频率而改变。该调谐不会降低回旋器的功率转换效率(86%)。我们的结果表明,无源外部电容器需要改变内部机械反应部件,这被证明是陀螺器可以实现高可调性并保持高功率转换效率的有效方式。本文开辟了设计新的可调电路组件的方法。

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