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Loss Modeling of Coupled Stripline Microinductors in Power Supply on Chip Applications

机译:片上电源应用中耦合带状线微电感的损耗建模

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摘要

In this paper, models that account for the duty cycle and phase shift angle of the applied phase voltages in coupled stripline microinductors are presented and are shown to have a significant impact on harmonic current amplitudes and therefore microinductor efficiency. The impact of a high coupling factor between two windings surrounded by a single core is also investigated. The models are validated using finite-element analysis and measurements. A three-phase-coupled microinductor has been fabricated with a NiFe core and analyzed for a number of operating conditions. A prototype 1.6 W, three-phase converter utilizing this inductor has also been measured and is discussed in detail. The coupled microinductor is predicted to have a peak efficiency of 86.6% at 20 MHz in the prototype circuit.
机译:在本文中,提出了考虑耦合带状线微电感器中施加的相电压的占空比和相移角的模型,并显示出它们对谐波电流幅度以及微电感器效率具有重大影响。还研究了被单个铁心包围的两个绕组之间的高耦合系数的影响。使用有限元分析和测量对模型进行验证。已使用NiFe磁芯制造了一个三相耦合微电感器,并分析了许多工作条件。利用该电感器的原型1.6W三相转换器也已进行了测量并进行了详细讨论。预计在原型电路中,耦合微电感在20 MHz时的峰值效率为86.6%。

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