Improved Stopband Rejection in Compact Microstrip Filters by Transmission Zero Reallocation

T. K. Das, S. Chatterjee
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Abstract

The design of compact microstrip bandpass filters with a center frequency of 5.25 GHz applicable for WLAN with the standard of IEEE 802.11a is presented in this article. The conventional coupled-line filter has been folded at the symmetry plane, which results in the improvement of upper stopband skirt characteristics. However, the harmonic rejection level remains almost unaffected due to the phase velocity imbalance. Subsequently, the coupled-lines have been modified by inserting quarter-elliptical grooves and the transmission zero reallocation has been employed. Fabrication of the optimized third-order folded filters has been carried out to justify the effectiveness of periodic grooves in the improvement of harmonic suppression. A wide stopband below 35 dB of attenuation level up to 2.4f0 has been obtained experimentally. Moreover, the filter size has been reduced to 58% compared to the conventional filter.
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利用传输零重分配改进紧凑型微带滤波器的阻带抑制
本文设计了一种适用于IEEE 802.11a标准的无线局域网的中心频率为5.25 GHz的紧凑型微带带通滤波器。将传统的耦合线滤波器在对称面上进行折叠,从而改善了上部阻带裙的特性。然而,由于相速度不平衡,谐波抑制水平几乎不受影响。随后,通过插入四分之一椭圆槽对耦合线进行修正,并采用传输零重分配。优化后的三阶折叠滤波器的制作验证了周期沟槽在改善谐波抑制方面的有效性。实验获得了35 dB以下的宽阻带,衰减水平高达2.4f0。此外,与传统过滤器相比,过滤器尺寸减小了58%。
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