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Schiffman Phase Shifters With Wide Phase Shift Range Under Operation of First and Second Phase Periods in a Coupled Line

机译:Schiffman相移,具有宽相位换档范围,在耦合线中的第一和第二阶段期间的操作下

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摘要

In this article, a class of improved Schiffman phase shifters with two C-section coupled lines separately operating in the first and second phase periods is presented and analyzed. Theoretical model and closed-form synthesis formulae are utilized to analyze the phase performances of the proposed phase shifters, which reveals significant differences compared to the phase shifters solely operating in the first or second phase period. Compared to the traditional counterparts, the proposed phase shifters can achieve a larger phase shift value and a wider phase shift range at the same impedance ratio. Moreover, under the same impedance ratio, the phase shifter can obtain wider phase shift bandwidth. These features are believed to be very useful in the limitedly realizable coupling strength for a wide phase shift range case. Finally, two sets of comparative experiments, including the operations in the first phase period, second phase period, and the proposed type, are designed and fabricated to validate the proposed approach. The simulated and measured results agree well with the theory and achieve a 33.6% (36.7%) increase in phase shift bandwidth when the phase shift value is 90 degrees (150 degrees) under the impedance ratio of 1.5822 (2.0312).
机译:在本文中,提出并分析了一类改进的Schiffman相移器,其具有分别在第一和第二相时段中分别操作的两个C截面耦合线。理论模型和闭合形式的合成公式用于分析所提出的相移器的相位性能,其揭示与在第一或第二期间的相移器相比的显着差异。与传统的对应物相比,所提出的相移器可以以相同的阻抗比实现更大的相移值和更宽的相移范围。此外,在相同的阻抗比下,相移器可以获得更宽的相移带宽。这些特征被认为在宽相移距离壳体的可限制性耦合强度中非常有用。最后,设计并制造了两组比较实验,包括第一期时期,第二阶段和所提出的类型的操作,以验证提出的方法。模拟和测量结果与该理论吻合良好,当相移值为90度(150度)的阻抗比为1.5822(2.0312)时,达到33.6%(36.7%)的相移带宽增加。

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