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Updated: Apr 30, 2026

Terahertz Microfluidic Sensing Using a Parallel-plate Waveguide Sensor
Published on: August 30, 2012
Gap waveguide slot array antenna based on a metal-only solution using additive manufacturing with multifunctional
Sergio M Feito1, Álvaro F Vaquero2, José Rico-Fernández3
1Universidad de Oviedo, Gijón, 33203, Spain. menendezfsergio@uniovi.es.
Abstract:
This work presents an array of slot-type elements fed by a corporate network, achieving several radiation patterns in the mm-Wave band. The antenna is based on a metal-only structure, with a feeding network implemented using Groove Gap Waveguide technology, resulting in a low-loss, highly scalable solution. The radiating elements are slots in a 1 × 8 array configuration, which are excited through three waveguide ports. The proposed feeding network allows for a sum pattern that can also steer the beam depending on the feeding port. Additionally, a difference pattern can be obtained. The proposed design is manufactured using metal-only additive manufacturing with Laser Powder Bed Fusion. The prototype is measured in an anechoic chamber, showing a high agreement with simulation for each possible pattern. Furthermore, the antenna is evaluated in a planar range, demonstrating the high isolation of the proposed Groove Gap Waveguide. Overall, the antenna exhibits over 90% efficiency and four different radiation patterns, making it an attractive solution for mm-Wave antennas in multifunctional applications.
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