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DESIGN OF LPF USING SUSPENDED SUBSTRATE MICROSTRIP LINES AS HIGH-Z SECTIONS FOR STOPBAND EXTENSION

机译:使用悬浮的基体微带线作为高Z形段的LPF设计,以进行禁带扩展

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This article introduces the use of suspended substrate microstrip lines (SSMLs) as high-Z sections in the design of lowpass filters (LPFs) to extend the stopband. The SSMLs are formed by etching slots on the backside of microstrip lines and placing the substrate on an aluminum base with grooves that cover these slots. The higher characteristic impedance property of SSMLs brings about not only shorter length for high-Z lines but also a larger high-to-low impedance ratio, thus deepening the stopband suppression and shifting the spurious passband away. As a demonstration, a wide stopband LPF combining this structure with hammer-shaped stubs is designed, fabricated, and measured. The 20 dB stopband is obtained from 1.45 to 11.77 GHz. Compared with reported LPFs, this shows the widest fractional bandwidth (FBW) of 156% without sacrificing other performances. (C) 2016 Wiley Periodicals, Inc.
机译:本文介绍了在低通滤波器(LPF)设计中使用悬置衬底微带线(SSML)作为高Z部分以扩展阻带的方法。通过蚀刻微带线背面的槽并将基板放置在铝质基座上,并在槽中覆盖这些槽,从而形成SSML。 SSML的较高特性阻抗特性不仅会导致高Z线的长度变短,而且导致高到低的阻抗比也变大,从而加深了阻带抑制作用,并把杂散通带移开了。作为演示,设计,制造和测量了将这种结构与锤形短截线结合起来的宽阻带LPF。从1.45至11.77 GHz获得20 dB的阻带​​。与报告的LPF相比,这显示了156%的最宽分数带宽(FBW),而没有牺牲其他性能。 (C)2016威利期刊公司

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