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On the Manufacturing Process of a Single-Step Fully 3D Printed Conformal Patch Antenna.

, , , , and . EIT, page 288-292. IEEE, (2020)

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Implementation of Redundancy Techniques Using 97% Carbon Content Graphene-Based Conductors., and . EIT, page 521-524. IEEE, (2019)On the Equivalent Circuit Model of a 3D-Printed Conductive Electrifi Transmission Line on a Flexible NinjaFlex Substrate., , , and . EIT, page 83-85. IEEE, (2021)On using biocomposite filaments to additively manufacture substrates for microstrip transmission lines., , , , , and . EIT, page 194-199. IEEE, (2017)On the use of amplitude tapering for pattern correction of conformal (Curved) antennas., , , , , , , and . WiSEE, page 1-2. IEEE, (2013)Beamforming with 1 × N Conformal Arrays., , , , and . Sensors, 22 (17): 6616 (2022)A Microstrip Transmission Line Biosensor to Measure the Interaction between Microliter Aqueous Solutions and 1.0-17.0 GHz Radio Frequencies., , , and . Sensors, 23 (11): 5193 (2023)A study of microstrip transmission lines on substrates created using additive manufacturing and flexible or semi-rigid filaments., , , , and . EIT, page 200-205. IEEE, (2017)A small footprint ultra-wideband multiple-input multiple-output antenna., , , , , , and . EIT, page 662-666. IEEE, (2015)On using graphene-based conductors as transmission lines for feed networks in printed antenna arrays., , , , and . EIT, page 681-683. IEEE, (2015)On the Design of An Improved Model of Additively Manufactured Microstrip Transmission Lines for Radio Frequency Applications., , , , , and . EIT, page 182-184. IEEE, (2019)