Sang Lei, Zhou Zhikun, Xu Ji, Li Xing, He Wei, Yang Hong, Chen Xiaochen, Yuan Tao, Mei Yongfeng, Huang Wen
School of Microelectronics, Hefei University of Technology, Hefei 230601 China.
Department of Materials Science, Fudan University, Shanghai 200433, China.
iScience. 2022 Sep 3;25(10):105060. doi: 10.1016/j.isci.2022.105060. eCollection 2022 Oct 21.
A planar microwave array device with complex electromagnetic functional reconfigurability is demonstrated by means of phase transition film VO to manipulate the electromagnetic distribution. Based on planar patch architecture, the microwave device can switch between antenna array and cascaded filter functions. Furthermore, hybrid EM functions such as cascaded antenna arrays and filters are enabled, themselves with further reconfigurability. Therefore, a single design realizes many mono and hybrid antenna and filter functions, which are determined by the order of the array. For simplicity of demonstration, a 2 × 2 array device working at three reconfigurable center frequency points of 3.1, 3.7, and 4.4 GHz, fully compatible with standard planar CMOS processing. A comprehensive design method is proposed to meet the design requirements of a patch-based antenna array and cascaded filter. Based on the functionally reconfigurable microwave device, the front-end circuit could be recombined to suitable for multifunctional microwave systems.
通过相变薄膜VO展示了一种具有复杂电磁功能可重构性的平面微波阵列器件,以操纵电磁分布。基于平面贴片架构,该微波器件可以在天线阵列和级联滤波器功能之间切换。此外,还实现了诸如级联天线阵列和滤波器等混合电磁功能,它们本身具有进一步的可重构性。因此,单一设计实现了许多单一天线和滤波器功能以及混合天线和滤波器功能,这些功能由阵列的阶数决定。为了演示简单起见,设计了一个2×2阵列器件,工作在3. I、3.7和4.4 GHz这三个可重构中心频率点上,完全与标准平面CMOS工艺兼容。提出了一种综合设计方法,以满足基于贴片的天线阵列和级联滤波器的设计要求。基于功能可重构微波器件,前端电路可以重新组合以适用于多功能微波系统。