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Scalable Wideband and Wide-Angle Beam Steering mm-Wave/THz Radiator and Phased Arrays in Silicon

机译:可扩展的宽带和广角波束转向毫米波/太赫兹辐射器和硅相控阵

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In this paper, we describe a new approach for implementing mm-wave and THz fully integrated circuits based on standing waves. The standing wave structure can be scaled to boost the radiated power without the need for lossy coupling circuits. A 1 × 4 coherent radiator array and a 2 × 2 phased array were implemented at 0.34 THz in a 0.13μm SiGe BiCMOS process along with on-chip antennas and are described in this paper. Taking advantage of the potentials of this approach, we were able to achieve wideband operation with varactor-less frequency tuning and wide 2D beam steering without phase shifters. To our knowledge, the implemented phased array achieves the highest frequency tuning range (15.1%) and widest beam steering (128°/53°) among reported fully integrated THz phased arrays.
机译:在本文中,我们描述了一种基于驻波的实现毫米波和太赫兹完全集成电路的新方法。驻波结构可以按比例缩放以提高辐射功率,而无需有损耗的耦合电路。本文以0.13μmSiGe BiCMOS工艺以0.34 THz的频率实现了一个1×4相干辐射体阵列和一个2×2相控阵以及片上天线,并在本文中进行了描述。利用这种方法的潜力,我们能够在无移相器的情况下利用无变容二极管的频率调谐和2D宽波束控制实现宽带操作。据我们所知,在报告的完全集成的THz相控阵中,已实现的相控阵实现了最高的频率调谐范围(15.1%)和最宽的光束转向(128°/ 53°)。

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