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Composite Right/Left-Handed Transmission Line Metamaterial Phase Shifters (MPS) in MMIC Technology

机译:MMIC技术中的复合右/左手传输线超材料移相器(MPS)

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摘要

This paper presents the modeling and design of one-dimensional metamaterial phase shifters (MPSs) in monolithic-microwave integrated-circuit technology based on the composite right/left-handed transmission-line approach. From a theoretical point-of-view, we show that existing design expressions are restricted to phase shifters behaving as effective media, which is the case only if sufficiently large L and C loading elements can be designed in the given technology and at the frequency of interest. Therefore, we propose new design expressions, which are exact on the basis of the circuit model of a unit cell in the structure. We show that the new expressions must be used to design integrated MPSs and the theory is verified by means of measurements of one- and two-cell phase shifters exhibiting a 0 deg phase shift at 17.5 GHz. The designed one-cell phase shifter provides a -10-dB input return-loss bandwidth larger than 10percent with phase shifts of +29 deg and -30 deg at 16.5 and 18.5 GHz, respectively. The insertion loss is -1.3 dB at the center frequency and -1.7 dB at the limit of the bandwidth.
机译:本文提出了基于复合右手/左手传输线方法的单片微波集成电路技术中的一维超材料相移器(MPS)的建模和设计。从理论的角度来看,我们表明现有的设计表达式仅限于作为有效介质的移相器,只有在给定技术和频率下可以设计足够大的L和C负载元件时,情况才如此。利益。因此,我们提出了新的设计表达式,这些表达式基于结构中单位晶胞的电路模型是精确的。我们表明,新的表达式必须用于设计集成式MPS,并且通过测量在17.5 GHz时具有0度相移的一单元和二单元移相器来验证该理论。设计的单单元移相器可提供大于10%的-10dB输入回波损耗带宽,在16.5 GHz和18.5 GHz时的相移分别为+29度和-30度。中心频率处的插入损耗为-1.3 dB,带宽限制处的插入损耗为-1.7 dB。

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