Design of Dual-Band Four-Way LC-Ladder Dividers

Ayumu Tsuchiya, Kensuke Nagano, T. Kawai, A. Enokihara
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Abstract

In this paper, a four-way lumped-element power divider with in-phase output using LC-ladder circuits is described. We propose a four-way LC-ladder divider composed of 2-section LC-ladder circuits between input and output ports, and their output ports are connected through external circuits composed of an LC-ladder circuit and a series LR circuit to obtain satisfactory isolations. By designing the divider based on even-/odd-mode analysis techniques and a complex conjugate impedance matching theorem, the proposed four-way LC-ladder divider can achieve dual-band operation. To confirm the validity of the design method, the divider is designed and fabricated at a center frequency of 300MHz. As results of simulation and experiment, broadband characteristics with a relative bandwidth of about 43% can be obtained. Furthermore, measurement results of the fabricated power divider indicate low reflection, high isolation and extremely flat power division, and good agreement with simulation results.
双频四路lc梯分频器的设计
本文介绍了一种采用lc阶梯电路的四路同相输出集总元功率分压器。我们提出了一种由输入和输出端口之间的2段lc阶梯电路组成的四路lc阶梯分频器,其输出端口通过lc阶梯电路和串联LR电路组成的外部电路连接,以获得满意的隔离。通过基于偶/奇模分析技术和复共轭阻抗匹配定理的分频器设计,所提出的四路lc -梯形分频器可以实现双频工作。为了验证设计方法的有效性,在300MHz的中心频率上设计制作了分频器。仿真和实验结果表明,可获得相对带宽约为43%的宽带特性。实验结果表明,该功率分压器具有低反射、高隔离和极平功率划分的特点,与仿真结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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