English

Low-Loss Reconfigurable Phase Shifter in Gap-Waveguide Technology for mm-Wave Applications

Signal Processing 2021-01-06 v2

Abstract

In this brief, we present a low-loss mechanically reconfigurable phase shifter implemented in gap-waveguide technology for mm-wave frequencies. The proposed design gives a practical implementation of tuning elements inside the waveguide providing alternatives to the use of the E-plane split waveguide at high frequencies in order to avoid leakage losses. The depicted phase shifter design is based on a H-plane split waveguide. The phase shift is controlled by means of a tuning screw, which exerts pressure on a flexible metallic strip inserted inside the waveguide. The flexible strip bends with different curvature radii and determines the phase shift at the output port. Cost-effective manufacturing and simple implementation of the flexible metallic strip are achieved by means of the gap-waveguide design. A prototype has been manufactured for validation purposes. Good impedance matching is achieved from 64 GHz to 75 GHz providing a 15.8% impedance bandwidth. The results show a maximum phase shift of 250o^{o} with a maximum and mean insertion loss (IL) of 3 dB and 1.7 dB, respectively.

Keywords

Cite

@article{arxiv.2003.08695,
  title  = {Low-Loss Reconfigurable Phase Shifter in Gap-Waveguide Technology for mm-Wave Applications},
  author = {Á. Palomares-Caballero and A. Alex-Amor and P. Escobedo and J. Valenzuela-Valdés and P. Padilla},
  journal= {arXiv preprint arXiv:2003.08695},
  year   = {2021}
}
R2 v1 2026-06-23T14:19:55.109Z