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A compact dual-band branch-line coupler based on the interdigital transmission line

机译:基于叉指式传输线的紧凑型双频分支线耦合器

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A dual-band (DB) microstrip branch-line coupler with quadrature phase difference based on the interdigital transmission line (TL) is presented. Interdigital TLs are realized by cascading interdigital capacitors (cells of the structure) in series. The design procedure to reach the dual-band interdigital transmission lines at two arbitrary frequencies is presented. Dual-band operation for branch-line coupler is achieved by implementing the interdigital TLs with 3 cells in each branch to provide a phase of −90° at the lower operation frequency band (2GHz) and −270° phase shift at the upper frequency band (3GHz). Branches length is approximately 0.8 λg and as compared to the conventional DB composite right/left handed (CRLH) branch-line couplers, the proposed structure achieves smaller dimension. Also, simulation results show that the dual-band proposed coupler exhibits an amplitude balance of ±2 dB from 1.9 GHz to 2.2 GHz in the lower band and from 2.8 GHz to 3.2 GHz in the upper band. Moreover, at mentioned frequency bands, the phase difference between the coupled and through ports is 90° ± 10°.
机译:提出了一种基于叉指传输线(TL)的具有正交相位差的双频微带支线耦合器。指间TL通过串联级联指间电容器(结构单元)来实现。给出了以两个任意频率到达双频叉指传输线的设计过程。分支线耦合器的双频段操作是通过在每个分支中实现具有3个单元的叉指状TL来实现的,以在较低的工作频段(2GHz)提供-90°的相位,在较高的频段提供-270°的相移(3GHz)。分支长度约为0.8λ g ,并且与常规DB复合右/左手(CRLH)分支线耦合器相比,所提出的结构尺寸更小。此外,仿真结果还表明,建议的双频段耦合器在较低频段的1.9 GHz至2.2 GHz以及在较高频段的2.8 GHz至3.2 GHz处表现出±2 dB的幅度平衡。此外,在提到的频带上,耦合端口与直通端口之间的相位差为90°±10°。

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