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A tunable LTCC fourth-order bandpass filter with high selectivity for L-band satellite applications

机译:可调谐LTCC四阶带通滤波器,具有高选择性的L频卫星应用

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This Letter presents a varactor-loaded double-layer coupled stripline resonator to implement compact fourth-order tunable bandpass filter. The whole structure of the proposed resonator consists of two strongly coupled striplines, a metal post and a varactor with bias circuit. Strong capacitive coupling between the striplines at different layers is introduced to significantly reduce the resonator size. A detailed investigation on the relationship between the transmission line length and loading capacitance is presented. The stripline is connected to the varactor by the metal post so that the resonant frequency can be tuned. Through cross-coupled technology, transmission zeros are introduced in the upper and lower out-of-bands of the filter using combline structure for high selectivity. One prototype bandpass filter has been designed to validate the principle, and the measured results show good agreement with the simulated ones. The designed fourth-order filter has a size of <0.1 lambda(g) x 0.1 lambda(g) and a steep frequency response with the shape factor <1.7.
机译:这封信提出了一种变容二极管加载的双层耦合带线谐振器,以实现紧凑的四阶可调谐带通滤波器。该谐振器的整体结构由两条强耦合带线、一根金属柱和一个带偏置电路的变容管组成。在不同层的带线之间引入了强电容耦合,以显著减小谐振器的尺寸。详细研究了传输线长度与负载电容之间的关系。带状线通过金属柱连接到变容二极管,以便调谐谐振频率。通过交叉耦合技术,利用梳状线结构在滤波器的带外上下引入传输零点,实现高选择性。设计了一个原型带通滤波器来验证该原理,测量结果与仿真结果吻合良好。设计的四阶滤波器具有<0.1λ(g)x 0.1λ(g)的尺寸和陡峭的频率响应,形状因子<1.7。

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