3D-printer materials are becoming increasingly more appealing also for high frequency applications. Thus, the electromagnetic characterization of these materials is an important step in order to evaluate their applicability in new technological devices. We present a measurement method for the loss tangent evaluation based on a dielectric loaded resonator (DR). Comparing the quality factor Q of the DR with a disk-shaped sample placed on a DR base with Q obtained when the sample is substituted with an air gap, allows a reliable loss tangent determination.

Microwave characterization of 3D-printer dielectric materials / Alimenti, A.; Torokhtii, K.; Pompeo, N.; Piuzzi, E.; Silva, E.. - (2019), pp. 93-97. (Intervento presentato al convegno 23rd IMEKO TC4 International Symposium tenutosi a Xi'an; China).

Microwave characterization of 3D-printer dielectric materials

E. Piuzzi;
2019

Abstract

3D-printer materials are becoming increasingly more appealing also for high frequency applications. Thus, the electromagnetic characterization of these materials is an important step in order to evaluate their applicability in new technological devices. We present a measurement method for the loss tangent evaluation based on a dielectric loaded resonator (DR). Comparing the quality factor Q of the DR with a disk-shaped sample placed on a DR base with Q obtained when the sample is substituted with an air gap, allows a reliable loss tangent determination.
2019
23rd IMEKO TC4 International Symposium
microwave characterization; loss tangent; 3D-printer materials; dielectric resonator
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Microwave characterization of 3D-printer dielectric materials / Alimenti, A.; Torokhtii, K.; Pompeo, N.; Piuzzi, E.; Silva, E.. - (2019), pp. 93-97. (Intervento presentato al convegno 23rd IMEKO TC4 International Symposium tenutosi a Xi'an; China).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1384725
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