The authors report on an in-depth statistical and parametrical investigation on the microwave performance of graphene FETs on sapphire substrate. The devices differ for the gate-drain/source distance and for the gate length, having kept instead the gate width constant. Microwave S-parameters have been measured for the different devices. Their results demonstrate that the cut-off frequency does not monotonically increase with the scaling of the device geometry and that it exists an optimal region in the gate-drain/source and gatelength space which maximises the microwave performance.

Giambra, M., Benfante, A., Zeiss, L., Pernice, R., Miseikis, V., Pernice, W., et al. (2018). Layout influence on microwave performance of graphene field effect transistors. ELECTRONICS LETTERS, 54(16), 984-986 [10.1049/el.2018.5113].

Layout influence on microwave performance of graphene field effect transistors

Giambra, M. A.
;
Benfante, A.;Pernice, R.;Cino, A. C.;Stivala, S.;Calandra, E.;Busacca, A. C.;
2018-01-01

Abstract

The authors report on an in-depth statistical and parametrical investigation on the microwave performance of graphene FETs on sapphire substrate. The devices differ for the gate-drain/source distance and for the gate length, having kept instead the gate width constant. Microwave S-parameters have been measured for the different devices. Their results demonstrate that the cut-off frequency does not monotonically increase with the scaling of the device geometry and that it exists an optimal region in the gate-drain/source and gatelength space which maximises the microwave performance.
2018
Giambra, M., Benfante, A., Zeiss, L., Pernice, R., Miseikis, V., Pernice, W., et al. (2018). Layout influence on microwave performance of graphene field effect transistors. ELECTRONICS LETTERS, 54(16), 984-986 [10.1049/el.2018.5113].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/347525
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