Bhaskar, A.; Philippe, J.; Okada, E.; Braud, F.; Robillard, J.-F.; Durand, C.; Gianesello, F.; Gloria, D.; Gaquière, C.; Dubois, E.
Substrate-Induced Dissipative and Non-Linear Effects in RF Switches: Probing Ultimate Performance Based on Laser-Machined Membrane Suspension. Electronics 2022, 11, 2333.
https://doi.org/10.3390/electronics11152333
AMA Style
Bhaskar A, Philippe J, Okada E, Braud F, Robillard J-F, Durand C, Gianesello F, Gloria D, Gaquière C, Dubois E.
Substrate-Induced Dissipative and Non-Linear Effects in RF Switches: Probing Ultimate Performance Based on Laser-Machined Membrane Suspension. Electronics. 2022; 11(15):2333.
https://doi.org/10.3390/electronics11152333
Chicago/Turabian Style
Bhaskar, Arun, Justine Philippe, Etienne Okada, Flavie Braud, Jean-François Robillard, Cédric Durand, Frédéric Gianesello, Daniel Gloria, Christophe Gaquière, and Emmanuel Dubois.
2022. "Substrate-Induced Dissipative and Non-Linear Effects in RF Switches: Probing Ultimate Performance Based on Laser-Machined Membrane Suspension" Electronics 11, no. 15: 2333.
https://doi.org/10.3390/electronics11152333
APA Style
Bhaskar, A., Philippe, J., Okada, E., Braud, F., Robillard, J.-F., Durand, C., Gianesello, F., Gloria, D., Gaquière, C., & Dubois, E.
(2022). Substrate-Induced Dissipative and Non-Linear Effects in RF Switches: Probing Ultimate Performance Based on Laser-Machined Membrane Suspension. Electronics, 11(15), 2333.
https://doi.org/10.3390/electronics11152333