In this paper, some preliminary results on the scanning capabilities of a dielectric, 3D-printable Transmitarray (TA) are presented. In a previous work, it was already proved that the TA presents a wide-band behavior, thanks to the use of an innovative dielectric unit-cell, composed of three layers: the central one has a square hole, whose constant size is changed to control the phase of the incident field; the two identical, external ones present a truncated pyramid hole, acting as a wide-band matching circuit. Here, it is shown that the behavior of the unit-cell stays almost the same for different angles of incidence, and this makes it particularly convenient for the realization of beam scanning antennas.
Broadband Dielectric Transmitarray with Scanning Capabilities / Massaccesi, A.; Pirinoli, P.; Bertana, V.; Scordo, G.; Marasso, S. L.; Cocuzza, M.; Dassano, G.. - ELETTRONICO. - (2019). (Intervento presentato al convegno 2019 13th European Conference on Antennas and Propagation (EuCAP) tenutosi a Krakow, Poland nel 31 March - 5 April 2019).
Broadband Dielectric Transmitarray with Scanning Capabilities
A. Massaccesi;P. Pirinoli;V. Bertana;G. Scordo;S. L. Marasso;M. Cocuzza;G. Dassano
2019
Abstract
In this paper, some preliminary results on the scanning capabilities of a dielectric, 3D-printable Transmitarray (TA) are presented. In a previous work, it was already proved that the TA presents a wide-band behavior, thanks to the use of an innovative dielectric unit-cell, composed of three layers: the central one has a square hole, whose constant size is changed to control the phase of the incident field; the two identical, external ones present a truncated pyramid hole, acting as a wide-band matching circuit. Here, it is shown that the behavior of the unit-cell stays almost the same for different angles of incidence, and this makes it particularly convenient for the realization of beam scanning antennas.| File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2737972
			
		
	
	
	
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