Design and Implementation of a Wilkinson Power Divider with Integrated Band Stop Filters Based on Parallel-coupled Lines

Ravee Phromloungsri, Somchat Sonasang
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Abstract

This paper presents a technique to improve the spurious suppression performance at the second harmonic (2f0) of a Wilkinson power divider. The technique is achieved by the insertion of bandstop filters realizing with parallel-coupled lines with the characteristic impedance of 2√Z0Ω and the electrical length of λ/8 in a conventional structure. The simulated and measured results of the conventional and the proposed divider are compared at 0.9 GHz. The insertion losses (S21, S31) are less than 3.1 dB, while the return losses (S11) are less than 34.6 dB across 100% fractional bandwidth. Moreover, the proposed Wilkinson power divider achieves more than 25.5 dB suppression at 2f0.
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基于平行耦合线的集成带阻滤波器威尔金森功率分压器的设计与实现
提出了一种提高威尔金森功率分配器二次谐波抑制杂散性能的方法。该技术是通过在传统结构中插入特征阻抗为2√Z0Ω、电长度为λ/8的平行耦合线实现的带阻滤波器来实现的。在0.9 GHz频段对传统分频器和该分频器的仿真和实测结果进行了比较。在100%分数带宽范围内,插入损耗(S21, S31)小于3.1 dB,而回波损耗(S11)小于34.6 dB。此外,所提出的Wilkinson功率分配器在2f0时实现了超过25.5 dB的抑制。
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