The properties of different molding-compound materials with high filler contents have been investigated in order to assess their electrical properties. The experimental part of the present work has been focused on dielectric spectroscopy and steady-state conduction measurements. The results have been used to investigate the electrical properties of the materials at different frequencies, temperatures and electric fields. Differences in the relaxation kinetics with increasing filler content have been found, which can be ascribed to the larger interface regions between the filler particles. In addition, the extracted conductivities show a hopping transport and different activation energies on the temperature range from 20 °C to 190 °C.

Characterization of dielectric properties and conductivity in encapsulation materials with high insulating filler contents

Cornigli, Davide
;
Reggiani, Susanna;Gnudi, Antonio;Gnani, Elena;Baccarani, Giorgio;Fabiani, Davide;
2018

Abstract

The properties of different molding-compound materials with high filler contents have been investigated in order to assess their electrical properties. The experimental part of the present work has been focused on dielectric spectroscopy and steady-state conduction measurements. The results have been used to investigate the electrical properties of the materials at different frequencies, temperatures and electric fields. Differences in the relaxation kinetics with increasing filler content have been found, which can be ascribed to the larger interface regions between the filler particles. In addition, the extracted conductivities show a hopping transport and different activation energies on the temperature range from 20 °C to 190 °C.
2018
Cornigli, Davide*; Reggiani, Susanna; Gnudi, Antonio; Gnani, Elena; Baccarani, Giorgio; Fabiani, Davide; Varghese, Dhanoop; Tuncer, Enis; Krishnan, Srikanth; Nguyen, Luu
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/667589
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