Title :
A 2.45 GHz Phased Array Antenna Unit Cell Fabricated Using 3-D Multi-Layer Direct Digital Manufacturing
Author :
Ketterl, Thomas P. ; Vega, Yaniel ; Arnal, Nicholas C. ; Stratton, John W. I. ; Rojas-Nastrucci, Eduardo A. ; Cordoba-Erazo, Maria F. ; Abdin, Mohamed M. ; Perkowski, Casey W. ; Deffenbaugh, Paul I. ; Church, Kenneth H. ; Weller, Thomas M.
Author_Institution :
Dept. of Electr. Eng., Univ. of South Florida, Tampa, FL, USA
Abstract :
This paper reports on the design, fabrication and characterization of a 3-D printed RF front end for a 2.45 GHz phased array unit cell. The printed unit cell, which includes a circularly-polarized dipole antenna, a miniaturized capacitive-loaded open-loop resonator filter and a 4-bit phase shifter, is fabricated using a direct digital manufacturing (DDM) approach that integrates fused deposition of thermoplastic substrates with micro-dispensing for deposition of conductive traces. The individual components are combined in a passive phased array antenna unit cell comprised of seven stacked substrate layers with seven conductor layers. The measured return loss of the unit cell is > 12 dB across the 2.45 GHz ISM band and the measured gain is -11 dBi including all components. Experimental and simulation-based characterization is performed to investigate electrical properties of as-printed materials, in particular the inhomogeneity of printed thick-film conductors and substrate surface roughness. The results demonstrate the strong potential for fully-printed RF front ends for light weight, low cost, conformal and readily customized applications.
Keywords :
UHF antennas; UHF phase shifters; antenna phased arrays; conductors (electric); dipole antenna arrays; electromagnetic wave polarisation; microstrip antenna arrays; resonator filters; thick film devices; 3D multilayer direct digital manufacturing; 3D printed RF front end; DDM approach; as-printed material; circularly-polarized dipole antenna; conductive trace deposition; conductor layer; frequency 2.45 GHz; microdispensing; miniaturized capacitive-loaded open-loop resonator filter; passive phased array antenna unit cell; phase shifter; printed thick-film conductor; return loss; stacked substrate layer; substrate surface roughness; thermoplastic substrate; word length 4 bit; Antenna measurements; Conductivity; Dipole antennas; Phase shifters; Printing; Radio frequency; Substrates; 3-D printing; Additive manufacturing; dipole antenna; direct digital manufacturing; open loop resonator filter; switched-line phase shifter;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2015.2496180