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A compact low insertion loss bandpass filter based on meandered self-coupled ring resonator

机译:基于蜿蜒的自耦环谐振器的紧凑型低插入损耗带通滤波器

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The traditional structure of dual mode bandpass filter is formed by a circular or rectangular resonator, which causes excessive circuit areas to be occupied. A 5.2 GHz bandpass filter, based on the triple-branch self-coupled ring resonator, is designed to achieve most essential features such as low insertion loss, compact size, and wide stopband. The coupling of each coupled branch introduces the even- and odd-mode perturbation, which produce sharp bandpass and wide stopband responses due to the generation of band-edge transmission zeros. The simulation and measurement in this paper are respectively verified by using IE3D electromagnetic simulator and Agilent's HP8722C network analyzer. Experimental results show that the filter has 19.2% bandwidth centered at 5.2 GHz, 1.2 dB insertion loss, 25 dB stopband rejection from 6 to 9 GHz. Moreover, the circuit size in this paper has been down to 9×6 mm2 and can be applied to communication of microwave applications.
机译:双模带通滤波器的传统结构由圆形或矩形谐振器形成,这导致占用过大的电路区域。 A 5.2 GHz带通滤波器,基于三分支自耦形环谐振器,旨在实现最基本的特征,例如低插入损耗,紧凑尺寸和宽的阻带。每个耦合分支的耦合引入了偶数和奇数模式扰动,其由于带边缘传输零而产生尖锐的带通和宽的阻带响应。本文的仿真和测量分别通过使用IE3D电磁模拟器和Agilent的HP8722C网络分析仪验证。实验结果表明,过滤器具有19.2%的带宽,以5.2GHz,1.2 dB插入损耗为中心,25 dB停止抑制从6到9 GHz。此外,本文中的电路尺寸下降至9×6mm2,并且可以应用于微波应用的通信。

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