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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Continuous True-Time Delay Phase Shifter Using Distributed Inductive and Capacitive Miller Effect
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Continuous True-Time Delay Phase Shifter Using Distributed Inductive and Capacitive Miller Effect

机译:利用分布式电感和电容米勒效应的连续真实时间延迟移相器

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A new true-time delay phase shifter concept is proposed exploiting the distributed Miller effect in coupled transmission lines. Simultaneous change in Miller capacitance and inductance controlled by a single analog voltage changes the propagation delay of a transmission line with constant input impedance and insertion loss. The true-time delay line feature of the proposed architecture accommodates a wide bandwidth signal without group delay distortion. A theoretical framework for understanding Miller inductance from voltage and current duality and the distributed Miller effect using coupled wave equations is presented. As a proof of concept, a four-stage tunable delay line with a high-speed phase modulation capability was fabricated in a 45-nm RF SOI CMOS process and occupies an active area of 0.28 mm(2). The measured IC demonstrates a broadband tunable true-time delay with a measured group delay tuning range of 18 +/- 1 ps from 11 to 24 GHz. The measured phase shift ranges are 173 degrees and 182 degrees with insertion losses of 10.6 +/- 0.7 dB and 11.6 +/- 1 dB at 28 and 30 GHz, respectively. The measured dc power consumption is 22 mW from a 1.2-V supply.
机译:该文提出了一种新的真时延移相器概念,利用耦合传输线路中的分布式米勒效应。由单个模拟电压控制的米勒电容和电感同时变化会改变具有恒定输入阻抗和插入损耗的传输线的传播延迟。所提架构的真实时间延迟线特性可适应宽带宽信号,而不会产生群延迟失真。给出了一个理论框架,用于从电压和电流二象性以及使用耦合波动方程的分布米勒效应来理解米勒电感。作为概念验证,采用45 nm RF SOI CMOS工艺制备了具有高速相位调制能力的四级可调谐延迟线,有效面积为0.28 mm(2)。测量的IC演示了宽带可调谐真实时间延迟,在11至24 GHz范围内测得的群延迟调谐范围为18 +/- 1 ps。在28 GHz和30 GHz频率下,测得的相移范围分别为173度和182度,插入损耗分别为10.6 +/- 0.7 dB和11.6 +/- 1 dB。实测的直流功耗为 22mW(采用 1.2V 电源)。

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