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A novel tunable true-time delay line/phase shifter based on distributed Schottky structure

机译:一种基于分布式肖特基结构的新型可调真延迟线/移相器

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摘要

True time delay lines and phase shifters are widely used in RF timed/phased array systems. Conventional delay lines and phase shifters often associate with reflection type circuits or distributed (periodically loaded) transmission lines. In this paper, we propose a new type of distributed circuit which composed of uniform transmission lines built on integrated Schottky active layer. A bi-functional chip is designed based on the new distributed structure. An Archimedean spiral topology is adopted to reduce the chip area. Theoretical analysis of the design method and circuit parameters is performed and a miniaturized prototype is implemented with p-HEMT technology to validate the design theory. Measurement results shows that this chip could work as either an area-efficient true-time delay line or a low-voltage phase shifter over the bandwidth 11–15 GHz. As an area-efficient true-time delay line, this chip provides 82.1 ps delay time per square millimeter when the biasing voltage fixed at ?1.4 V. As a low-voltage phase shifter, this chip provides 26.43° phase shift per volt when the biasing voltage sweeps form 0 V to ?1.4 V.
机译:真正的时延线和相移器广泛用于RF定时/相控阵系统。传统的延迟线和相移通常与反射型电路或分布(周期性加载)传输线相关联。在本文中,我们提出了一种新型的分布式电路,该电路由基于集成的肖特基活动层内置的均匀传输线构成。基于新的分布式结构设计了双功能芯片。采用Archimedean螺旋拓扑来减少芯片区域。执行设计方法和电路参数的理论分析,用P-HEMT技术实现小型化原型,以验证设计理论。测量结果表明,该芯片可以在带宽11-15GHz上用作区域有效的真延迟线或低压相移器。作为一个区域效率的真时延延迟线,当偏置电压固定在α1.4V时,该芯片提供82.1 PS延迟时间。作为低压相移电压,该芯片每伏提供26.43°相移偏置电压扫描形式0 V至?1.4 V.

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