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1–6 GHz UWB phase shifter design and implementation with surface micromachining

机译:具有表面微加工的1–6 GHz UWB移相器设计和实现

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摘要

An Ultra-wideband (UWB), 1-to-6 GHz, 4-bit phase shifter design is presented. The proposed phase shifter utilizes lumped-element, three-stage all-pass network to achieve UWB phase characteristics. Ideal predesign of the phase shifter is done successfully by following the three-stage all-pass network design procedure described in this paper. Following the ideal predesign, circuit elements are implemented using lumped planar spiral inductors (PSIs) and Metal-Insulator-Metal (MIM) capacitors for each phase shift bit and a practical design incorporating element parasitics is accomplished. The simulation results for each phase shift bit as well as all bit-states are provided for the practical design and the ideal one along with phase-related error information. According to the simulation results, the practical design exhibits a maximum rms phase error of 5.3% over 1–6 GHz frequency band. Prototype planar spiral inductors are fabricated using an in-house surface micromachining technology and a good agreement is attained between the simulation and measurement results, which validates the design procedure.
机译:提出了一种超宽带(UWB),1至6 GHz,4位移相器设计。拟议的移相器利用集总元件的三级全通网络来实现UWB相位特性。按照本文所述的三阶段全通网络设计流程,可以成功完成理想的移相器预设计。按照理想的预设计,对每个相移位使用集总平面螺旋电感器(PSI)和金属-绝缘体-金属(MIM)电容器实现电路元件,并实现了包含元件寄生效应的实用设计。为实际设计和理想状态提供了每个相移位以及所有位状态的仿真结果,以及与相位有关的误差信息。根据仿真结果,实际设计在1–6 GHz频带上显示5.3%的最大均方根相位误差。利用内部表面微加工技术制造了原型平面螺旋电感器,并且在仿真和测量结果之间取得了良好的一致性,从而验证了设计过程。

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