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A New Model for Designing Multiwindow Multipermeability Nonlinear LTCC Inductors

机译:设计多窗口多磁导非线性LTCC电感器的新模型

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摘要

Nonlinear inductors have wide applications in dc/dc converters. The multiwindow multipermeability nonlinear inductor based on low-temperature co-fired ceramic (LTCC) technology has been proven to have a gradually changing wide-range inductance value curve while requiring no extra dc bias, which makes them suitable in various high-efficiency dc/dc converters. This paper focuses on the design of such a multiwindow multipermeability inductor based on an innovative module. Currently, the design of the LTCC inductors requires complicated simulation when coupling matrices among all the windows are taken into consideration. A simplified model for calculating the inductance value is proposed in this paper to reduce complexity. In the proposed model, the complicated inductance simulation is simplified to calculating inductance of three basic units in a nine-window inductor. By simulating the nine-window inductor, inductance of a rectangle-shaped inductor with any number of evenly distributed windows on it can be calculated. Based on the proposed model, the design guideline of the nonlinear inductor is also summarized. A 16-window two-permeability prototype is presented to demonstrate the design process according to the new model. The complete simulation and the test results are also provided to verify the model. The proposed model correlates with the simulation results very well.
机译:非线性电感器在dc / dc转换器中具有广泛的应用。已经证明,基于低温共烧陶瓷(LTCC)技术的多窗口多磁导非线性电感器具有逐渐变化的宽范围电感值曲线,而无需额外的直流偏置,这使其适用于各种高效dc /直流转换器。本文重点介绍基于创新模块的这种多窗口多磁导电感器的设计。当前,当考虑所有窗口之间的耦合矩阵时,LTCC电感器的设计需要复杂的仿真。为了降低复杂度,本文提出了一种简化的电感值计算模型。在提出的模型中,简化了复杂的电感仿真,以计算九窗口电感中三个基本单元的电感。通过模拟九窗口电感器,可以计算出矩形电感器上具有任意数量均匀分布的窗口的电感。在提出的模型的基础上,还总结了非线性电感的设计准则。提出了一个具有16个窗口的两个渗透率的原型,以演示根据新模型的设计过程。还提供了完整的仿真和测试结果以验证模型。所提出的模型与仿真结果非常相关。

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