A 5 dBm BiCMOS 90° Phase Shifter with Single-Voltage Tuning for mm-Wave Beam Steering

Luca Steinweg, P. V. Testa, C. Carta, F. Ellinger
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引用次数: 3

Abstract

This work studies a concept for a 90° vector-sum phase shifter operating at 54.6GHz, which delivers a high output power over a wide bandwidth of 20GHz, corresponding to a relative bandwidth of 37.2%. The circuit was designed to control the phase in a local-oscillator chain and was realized in a 130nm SiGe BiCMOS technology. A root mean square (RMS) magnitude error of only 0.23dB is paired with an RMS phase error of 0.89dB, achieving linear control with only one un-calibrated analog voltage. An output-referred 1dB-compression point oP1dB of 5.0dBm is achieved at 60GHz with 11.3dB gain and a power-added efficiency of 6.3%. The high output power qualifies this circuit to directly drive state-of-the-art frequency multipliers and leverage their multiplication factor to reach mm-wave bands with 360° of available phase control. To the best knowledge of the authors, this circuit demonstrates the highest output power and power-added efficiency reported for phase shifters operating at about 60GHz or above, while still providing high power gain.
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一种5dbm BiCMOS 90°移相器,单电压调谐,用于毫米波波束转向
这项工作研究了工作在54.6GHz的90°矢量和移相器的概念,该移相器在20GHz的宽带宽上提供高输出功率,对应于37.2%的相对带宽。该电路设计用于控制本振链中的相位,并在130nm SiGe BiCMOS技术上实现。均方根(RMS)幅度误差仅为0.23dB, RMS相位误差为0.89dB,仅用一个未校准的模拟电压实现线性控制。在60GHz下实现5.0dBm的输出参考1db压缩点oP1dB,具有11.3dB增益和6.3%的功率附加效率。高输出功率使该电路能够直接驱动最先进的乘频器,并利用其倍增系数达到具有360°可用相位控制的毫米波频段。据作者所知,该电路展示了在大约60GHz或更高频率下工作的移相器的最高输出功率和功率附加效率,同时仍然提供高功率增益。
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