RF beam transmission of x-band PAA system utilizing large-area, polymer-based true-time-delay module developed using imprinting and inkjet printing

SPIE OPTO Pub Date : 2016-05-02 DOI:10.1117/12.2213809
Zeyu Pan, H. Subbaraman, Cheng Zhang, Qiaochu Li, Xiaochuan Xu, Xiangning Chen, Xingyu Zhang, Yi Zou, Ashwin Panday, L. Guo, Ray T. Chen
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引用次数: 1

Abstract

Phased-array antenna (PAA) technology plays a significant role in modern day radar and communication networks. Truetime- delay (TTD) enabled beam steering networks provide several advantages over their electronic counterparts, including squint-free beam steering, low RF loss, immunity to electromagnetic interference (EMI), and large bandwidth control of PAAs. Chip-scale and integrated TTD modules promise a miniaturized, light-weight system; however, the modules are still rigid and they require complex packaging solutions. Moreover, the total achievable time delay is still restricted by the wafer size. In this work, we propose a light-weight and large-area, true-time-delay beamforming network that can be fabricated on light-weight and flexible/rigid surfaces utilizing low-cost “printing” techniques. In order to prove the feasibility of the approach, a 2-bit thermo-optic polymer TTD network is developed using a combination of imprinting and ink-jet printing. RF beam steering of a 1×4 X-band PAA up to 60° is demonstrated. The development of such active components on large area, light-weight, and low-cost substrates promises significant improvement in size, weight, and power (SWaP) requirements over the state-of-the-art.
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采用印迹和喷墨打印技术开发的基于聚合物的大面积实时延迟模块的x波段PAA系统的射频波束传输
相控阵天线(PAA)技术在现代雷达和通信网络中发挥着重要作用。启用实时延迟(TTD)的波束转向网络与电子对应物相比具有几个优势,包括无斜视波束转向、低射频损耗、抗电磁干扰(EMI)和PAAs的大带宽控制。芯片级和集成的TTD模块保证了系统的小型化、轻量化;然而,这些模块仍然是刚性的,它们需要复杂的封装解决方案。此外,总可实现的时间延迟仍然受到晶圆尺寸的限制。在这项工作中,我们提出了一种轻质、大面积、实时延迟波束形成网络,该网络可以利用低成本的“打印”技术在轻质和柔性/刚性表面上制造。为了证明该方法的可行性,采用印迹和喷墨打印相结合的方法开发了一个2位热光聚合物TTD网络。演示了1×4 x波段PAA高达60°的射频波束转向。在大面积、轻量化和低成本基板上开发此类有源元件,有望在尺寸、重量和功耗(SWaP)要求方面取得显著改善。
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