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Compact BandStop Filter Utilizing Low Cost Solution Cast Nanomagnetic Thin Films

机译:利用低成本溶液流延纳米磁性薄膜的紧凑型BandStop滤波器

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A compact integrated microstrip bandstop filter(BSF) with low cost magnetic nanoparticle thin film loaded in the air substrate has been designed, fabricated and characterized. First, an optimized microstrip BSF patterned on a thin Liquid Crystal Polymer (LCP) was mounted on a partially 3D printed air substrate through a lego-like process to have the rejection of 41 dB at 8.5 GHz. To achieve the compactness, various magnetic nanoparticles were deposited within the air substrate to have the magnetic film thickness of 30 μm and 100 μm, which gave the self-resonances of the BSFs from 7.6 GHz to 8.3 GHz. The filter can also operate at higher a center frequency with a rejection over 30 dB by applying an external DC magnetic bias of 2500 Oe that is normal to the filter. Detailed comparison of the filter performance in terms of types of magnetic materials, film thicknesses and magnetic bias strength is provided. This work demonstrates a low cost and compact BSF utilizing the magnetic nanoparticle film which could find many applications in RF and microwave circuits and devices.
机译:设计,制造和表征了一种紧凑的集成微带带阻滤波器(BSF),其低成本的磁性纳米颗粒薄膜负载在空气基质中。首先,通过lego-like工艺将在薄液晶聚合物(LCP)上图案化的优化微带BSF安装在部分3D打印的空气基板上,以在8.5 GHz处抑制41 dB。为了实现致密性,将各种磁性纳米颗粒沉积在空气基板内,以具有30μm和100μm的磁性膜厚度,从而获得了7.6 GHz至8.3 GHz的BSF的自谐振。通过施加与滤波器垂直的2500 Oe外部DC磁偏置,滤波器还可以在更高的中心频率下工作,并具有超过30 dB的抑制比。提供了根据磁性材料类型,薄膜厚度和磁性偏置强度对过滤器性能的详细比较。这项工作证明了利用磁性纳米颗粒薄膜的低成本且紧凑的BSF,可以在RF和微波电路及设备中找到许多应用。

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