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Ultra-compact dual-band WLAN filter using independent band stop resonators

机译:使用独立的带阻谐振器的超紧凑型双频WLAN滤波器

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In this paper, a highly miniaturized dual-band band pass filter using independent band stop resonators has been newly designed and fabricated by embedding all the passive lumped elements into a low-temperature co-fired ceramic (LTCC) substrate for 2.4 to 2.5 GHz (802.11b) and 5.15 to 5.85 GHz (802.11a/g) wireless LAN system applications. In order to reduce a size/volume of the filter and avoid electromagnetic parasitic couplings between the embedded passive elements, the proposed filter was designed by using 3rd order Chebyshev circuit topology and J-inverter transformation technology. The 3rd order Chebyshev band pass filter was firstly realized for 802.11b frequency band selection and it was transformed by using finite transmission zeros technology to minimize the electromagnetic coupling. Finally a dual-band filter was realized by constructing 802.11a/g WLAN band selection filter by adding independent band stop resonators into the 802.11b filter circuit. The measured maximum insertion losses in the lower and higher pass-bands were better than 2.0 dB and 1.3 dB with minimum return losses of 15 dB and 14 dB, respectively. The overall size/volume of the fabricated filter was 2.7 × 2.3 × 0.68 mm3 which was the smallest one in the previously reported devices.
机译:本文通过将所有无源集总元件嵌入2.4至2.5 GHz(LTCC)的低温共烧陶瓷(LTCC)基板中,新设计和制造了使用独立带阻谐振器的高度小型化的双带通滤波器。 802.11b)和5.15至5.85 GHz(802.11a / g)无线LAN系统应用程序。为了减小滤波器的体积/体积并避免嵌入式无源元件之间的电磁寄生耦合,通过使用3阶Chebyshev电路拓扑和J逆变器变换技术设计了所提出的滤波器。首先针对802.11b频段选择实现了3阶Chebyshev带通滤波器,并使用有限传输零位技术对其进行了变换,以最大程度地减少电磁耦合。最后,通过在802.11b滤波器电路中添加独立的带阻谐振器来构造802.11a / g WLAN频带选择滤波器,从而实现了双频带滤波器。在较低和较高通带中测得的最大插入损耗分别优于2.0 dB和1.3 dB,最小回波损耗分别为15 dB和14 dB。制成的滤波器的整体尺寸/体积为2.7×2.3×0.68 mm 3 ,这是先前报道的设备中最小的。

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