Alimenti, F.; Palazzi, V.; Mariotti, C.; Virili, M.; Orecchini, G.; Bonafoni, S.; Roselli, L.; Mezzanotte, P.
A 24-GHz Front-End Integrated on a Multilayer Cellulose-Based Substrate for Doppler Radar Sensors. Sensors 2017, 17, 2090.
https://doi.org/10.3390/s17092090
AMA Style
Alimenti F, Palazzi V, Mariotti C, Virili M, Orecchini G, Bonafoni S, Roselli L, Mezzanotte P.
A 24-GHz Front-End Integrated on a Multilayer Cellulose-Based Substrate for Doppler Radar Sensors. Sensors. 2017; 17(9):2090.
https://doi.org/10.3390/s17092090
Chicago/Turabian Style
Alimenti, Federico, Valentina Palazzi, Chiara Mariotti, Marco Virili, Giulia Orecchini, Stefania Bonafoni, Luca Roselli, and Paolo Mezzanotte.
2017. "A 24-GHz Front-End Integrated on a Multilayer Cellulose-Based Substrate for Doppler Radar Sensors" Sensors 17, no. 9: 2090.
https://doi.org/10.3390/s17092090
APA Style
Alimenti, F., Palazzi, V., Mariotti, C., Virili, M., Orecchini, G., Bonafoni, S., Roselli, L., & Mezzanotte, P.
(2017). A 24-GHz Front-End Integrated on a Multilayer Cellulose-Based Substrate for Doppler Radar Sensors. Sensors, 17(9), 2090.
https://doi.org/10.3390/s17092090