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  1. Home
  2. Indian Institute of Technology Madras
  3. Publication15
  4. Investigating a Cylindrical Dielectric Resonator Antenna Fabricated with Li<inf>3</inf>MgNbO<inf>5</inf> Microwave Dielectric Ceramic
 
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Investigating a Cylindrical Dielectric Resonator Antenna Fabricated with Li<inf>3</inf>MgNbO<inf>5</inf> Microwave Dielectric Ceramic

Journal
ECS Journal of Solid State Science and Technology
ISSN
21628769
Date Issued
2024-05-01
Author(s)
Dinesh, M. A.
Kumar, Vinay
Kumar, Raghvendra
Gupta, Vibha Rani
Subramanian, V. 
Dayal, Vijaylakshmi
DOI
10.1149/2162-8777/ad4239
Abstract
This work aims to fabricate a single-feed line Cylindrical Dielectric Resonator Antenna (CDRA) using low-temperature sintered Li3MgNbO5 microwave dielectric ceramic as a resonator, excited in HEM11δ mode. The ceramic synthesized using the conventional solid-state route resulted in a single-phase material exhibiting a cubic structure with an Fm-3m space group. The densely packed cylindrical disk of the ceramic was subsequently characterized for its microwave dielectric behaviour in TE01δ mode using the Hakki-Coleman method. The dielectric permittivity (ϵ r) measures 14.4, with a loss factor (tan δ) nearly equal to 4.01 × 10−4 and a temperature coefficient (τf) of −50.9 ppm °C−1. The antenna design was executed using the high-frequency structure simulator design software, utilizing the dielectric ceramic as the resonator, Cu strip as the feedline, and FR4 as the substrate. The maximum energy was coupled to the antenna when the resonator was placed at 11.75 mm on the substrate. The fabricated CDRA, using appropriate simulated parameters, resonated at 7.67 GHz, offering a return loss (S11) of −32.64 dB and an impedance bandwidth of 10.73%. Furthermore, the CDRA displayed a voltage standing wave ratio of 1.04, ensuring a nearby ideal impedance match and a bandwidth of 810 MHz to support high-speed data transmission.
Volume
13
Subjects
  • cylindrical dielectri...

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