This letter introduces for the first time a fully integrated analog vectorial modulator (VM) in gallium nitride on silicon (GaN-on-Si) monolithic microwave-integrated circuit (MMIC) technology, operating in Ka -band, and an analytical calibration technique suitable for VM. An extensive characterization of the prototype, with both static and dynamic modulating signals, validates both the design and the calibration technique. The VM is capable to produce corrected constellations with accuracy of 0.06 dB and 0.28° root mean square, respectively, for amplitude and phase, across the 35-40 GHz bandwidth. Furthermore, it is capable to generate single-side modulated signal with undesired sideband suppression in excess of 47 dBc.

A Ka-Band GaN-on-Si MMIC Analog Vectorial Modulator and Its Broadband Calibration Procedure / Collodi G.; Passafiume M.; Bilotta T.; Cidronali A.. - In: IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS. - ISSN 1531-1309. - STAMPA. - 31:(2021), pp. 377-380. [10.1109/LMWC.2021.3054463]

A Ka-Band GaN-on-Si MMIC Analog Vectorial Modulator and Its Broadband Calibration Procedure

Collodi G.;Passafiume M.;Bilotta T.;Cidronali A.
2021

Abstract

This letter introduces for the first time a fully integrated analog vectorial modulator (VM) in gallium nitride on silicon (GaN-on-Si) monolithic microwave-integrated circuit (MMIC) technology, operating in Ka -band, and an analytical calibration technique suitable for VM. An extensive characterization of the prototype, with both static and dynamic modulating signals, validates both the design and the calibration technique. The VM is capable to produce corrected constellations with accuracy of 0.06 dB and 0.28° root mean square, respectively, for amplitude and phase, across the 35-40 GHz bandwidth. Furthermore, it is capable to generate single-side modulated signal with undesired sideband suppression in excess of 47 dBc.
2021
31
377
380
Collodi G.; Passafiume M.; Bilotta T.; Cidronali A.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1238397
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