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首页> 外文期刊>Microwave and Wireless Components Letters, IEEE >Tunable Bandpass Filter Based on Partially Magnetized Ferrite LTCC With Embedded Windings for SoP Applications
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Tunable Bandpass Filter Based on Partially Magnetized Ferrite LTCC With Embedded Windings for SoP Applications

机译:基于部分磁化铁氧体LTCC和嵌入式绕组的可调谐带通滤波器,用于SoP应用

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摘要

Tunable filters that are based on ferrite materials often require large and bulky electromagnets. In this work, we present a tunable filter in the Ku-band, which is realized in multilayer ferrite LTCC substrate with embedded bias windings, thus negating the need of a large electromagnet. Also, because of the embedded windings, the bias fields are not lost at the air-substrate interface and therefore the field and current requirements are reduced by an order of magnitude as compared to the previously reported filters. A simulation strategy that uses full permeability tensor with arbitrarily directed magnetic fields has been used to model the filter on a partially magnetized ferrite substrate. Special attention has also been paid to approximate the non-uniform magneto-static fields produced by the embedded windings. The complete design is implemented in 10 layers of ferrite LTCC, making it the first magnetically tunable filter with embedded windings and extremely small size [(55) ]. The filter demonstrates a measured tunability of 4% and an insertion loss of 2.3 dB. With the small form factor, embedded windings, and low bias requirements, the design is highly suitable for compact and tunable SoP applications.
机译:基于铁氧体材料的可调谐滤波器通常需要大而笨重的电磁体。在这项工作中,我们提出了一个Ku波段的可调滤波器,该滤波器是在具有嵌入式偏置绕组的多层铁氧体LTCC基板中实现的,从而消除了对大型电磁体的需求。而且,由于嵌入了绕组,因此在空气-基底界面处不会损失偏置场,因此与先前报道的滤波器相比,场和电流需求降低了一个数量级。使用全磁化张量和任意方向的磁场的模拟策略已用于在部分磁化的铁氧体衬底上对滤波器建模。还特别注意了近似由嵌入式绕组产生的非均匀静磁场。完整设计在10层铁氧体LTCC中实现,使其成为第一个具有嵌入式绕组和极小尺寸的磁性可调滤波器[(55)]。该滤波器的可调谐度为4%,插入损耗为2.3 dB。凭借小巧的外形,嵌入式绕组和低偏置要求,该设计非常适合紧凑且可调的SoP应用。

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