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Design of Microstrip Triplexer Using Common Dual-mode Resonator with Multi-Spurious Mode Suppressionfor Multiband Applications

机译:使用普通双模谐振器具有多维杂散模式抑制的微带三重交换机的设计

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A triplexer is an important component for channel separation in microwave front-end systems. This paper proposes a triplexers designed with common dual mode resonator sections have been proposed. By exploiting the variable frequency response of the stepped-impedance resonator, resonators can be shared by the three filter channels of the desired triplexer if their fundamental and the first spurious resonant frequency are properly assigned. Triplexer design method for suppressing spurious responses in the stopband by choosing the constitutive resonators with the same fundamental frequency, but staggered higher order resonant frequencies. The design concept is demonstrated by three of third order parallel-coupled bandpass filters. The bandpass filter is composed of three different stepped impedance resonators for which a general design guideline had been provided in order have the same fundamental frequency and different spurious frequencies. The measured results are in good agreement with the simulated predictions, whereby the spurious responses in the upper stopband can be suppressed below -25dB up to 14 GHz, which can be quite useful for multiband and multiservice applications in future wireless communication systems.
机译:三重交通器是微波前端系统中信道分离的重要组成部分。本文提出了一种具有共同的双模式谐振器部分设计的三重交通器。通过利用阶梯式阻抗谐振器的可变频率响应,如果正确分配了它们的基本和第一杂散谐振频率,则可以由所需的三切换器的三个滤波器通道共享谐振器。通过选择具有相同基频的构成谐振器来抑制阻带中的杂散响应的三分分换器设计方法,但是交错的高阶谐振频率。设计概念由三阶并行耦合带通滤波器中的三个证明。带通滤波器由三种不同的阶梯式阻抗谐振器组成,其中已经提供了一般设计指南的顺序具有相同的基本频率和不同的寄生频率。测量结果与模拟预测吻合良好,由此可以抑制上部阻带中的虚假响应至低于-25dB,最多可抑制了14 GHz,这对于未来的无线通信系统中的多频带和多服务器应用非常有用。

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