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3D Printed Conformal MIMO Antenna with Ladder Shaped Isolating Structure for Wireless Applications

  • Jayshri Kulkarni*
  • , Upesh Patel
  • , Trushit Upadhyaya
  • , Jaume Anguera
  • , Brian Garner
  • , Yang Li
  • *Autor/a de correspondencia de este trabajo

Producción científica: Capítulo del libroContribución a congreso/conferenciarevisión exhaustiva

1 Cita (Scopus)

Resumen

A 3D printed conformal Multiple Input Multiple Output (MIMO) antenna is proposed for 5G sub-6GHz and Wi-Fi 6E applications. The antenna is printed on a Ninjaflex substrate and consists of two identical radiators. An innovative 3D ladder-shaped structure is used as an isolating element between the radiators to reduce mutual coupling. The identical radiators have a fan-shaped structure engraved with a circular ring to operate in a dual band at a resonance of 3.35 and 6.6GHz. The overall footprint of the 3D printed MIMO antenna is only 45 × 25 mm2 and conforms to a -10dB impedance bandwidth of 40.54% (2.95-4.45 GHz) in the lower 5G sub-6GHz frequency band and 18.32% (5.95-7.15 GHz) in the upper Wi-Fi 6E frequency band. The 3D printed MIMO antenna demonstrates excellent radiation characteristics with a gain of more than 2dBi and efficiency of more than 95% in both the dual bands. The antenna's flexibility was also tested by bending it along the X and Y-axis at a radius of 30mm with successful results.

Idioma originalInglés
Título de la publicación alojada2023 IEEE Microwaves, Antennas, and Propagation Conference, MAPCON 2023
EditorialInstitute of Electrical and Electronics Engineers Inc.
ISBN (versión digital)9798350328264
DOI
EstadoPublicada - 2023
Publicado de forma externa
Evento2023 IEEE Microwaves, Antennas, and Propagation Conference, MAPCON 2023 - Ahmedabad, India
Duración: 11 dic 202314 dic 2023

Serie de la publicación

Nombre2023 IEEE Microwaves, Antennas, and Propagation Conference, MAPCON 2023

Conferencia

Conferencia2023 IEEE Microwaves, Antennas, and Propagation Conference, MAPCON 2023
País/TerritorioIndia
CiudadAhmedabad
Período11/12/2314/12/23

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