Experimental Demonstration of a 43-dBi Gain Transmitarray in PCB Technology for Backhauling in the 300-GHz Band
Author:
Affiliation:
1. University Grenoble Alpes, CEA-Leti, Grenoble, France
2. University Rennes, CNRS, Institut d'Électronique et des Technologies du numéRique (IETR)-UMR 6164, Rennes, France
Funder
National Research Agency
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering,Radiation
Link
http://xplorestaging.ieee.org/ielx7/5503871/10237333/10153649.pdf?arnumber=10153649
Reference27 articles.
1. $W$ -Band Low-Profile Transmitarray Antenna Using Different Types of FSS Units
2. A 38 dB Gain, Low-Loss, Flat Array Antenna for 320–400 GHz Enabled by Silicon-on-Insulator Micromachining
3. High-Gain $D$ -Band Transmitarrays in Standard PCB Technology for Beyond-5G Communications
4. 140 GHz High-Gain LTCC-Integrated Transmit-Array Antenna Using a Wideband SIW Aperture-Coupling Phase Delay Structure
5. Corporate-Feed Slotted Waveguide Array Antenna in the 350-GHz Band by Silicon Process
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1. Terahertz Transmit-Array Antenna With Specific Beamwidth Based on Thin-Film Technology;IEEE Transactions on Antennas and Propagation;2024-04
2. Characterization of a D-Band Active Transmitarray System for Efficient Point-to-Point Links;2024 18th European Conference on Antennas and Propagation (EuCAP);2024-03-17
3. 300 GHz Low-Cost PCB Vivaldi Antenna Array and Transition Structure to WR-3 Waveguide;IEEE Access;2024
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