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1-6 GHz UWB Phase Shifter Design and Implementation with Surface Micromachining

机译:1-6 GHz UWB相移器设计与表面微机械化

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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:提出了超宽带(UWB),1至6 GHz,4位移相器设计。所提出的移相器利用集总元件,三级全通网络来实现UWB相位特性。通过遵循本文描述的三级全通网络设计程序,成功地完成了相移器的理想预测。在理想的预测之后,使用集体平面螺旋电感器(PSIS)和用于每个相移位的金属 - 绝缘体 - 金属(MIM)电容器来实现电路元件,并且完成了结合元素寄生的实际设计。为实际设计提供每个相移位的模拟结果以及所有位状态,以及相对于相位相关的错误信息。根据仿真结果,实际设计呈现最大RMS相位误差为5.3%,超过1-6 GHz频带。原型平面螺旋电感器使用内部表面微机械加工技术制造,在模拟和测量结果之间实现了良好的一致性,验证了设计过程。

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