Brevetti

 
Si riportano qui nel seguito i brevetti rilasciati nel periodo 2016-2023 aventi come inventori docenti del DIEEI:
 
  • U Ferlito, M Vaiana, G Bruno, AD Grasso, “Low-dropout voltage regulator circuit and corresponding method of operation”, US Patent App. 18/224,897 
  • D. Tripoli, G. Maiellaro, S. C. Pavone, E. Ragonese, A. Scuderi, “Highly coupled inductor design for reducing area and power consumption of a multi-core oscillator,” U.S. Patent Appl. 18/068708, filed 20 Dec. 2022.
  • A. Parisi, N. Greco, N. Spina, E. Ragonese, G. Palmisano, "A galvanically isolated dc-dc circuit converter, with data communication, corresponding system and corresponding method," EU patent EP3512087B1, granted 25 Jan 2023.
  • A. Parisi, N. Greco, N. Spina, E. Ragonese, G. Palmisano, "A galvanically isolated dc-dc circuit converter, with data communication, corresponding system and corresponding method," US Patent 11611280B2, granted 21 March. 2023.
  • S. Spataro, S. Coffa, E. Ragonese, "Capacitively-coupled stacked class-d oscillators for galvanic isolation," US Patent 11621670B1, granted April 04 2023
  • G. Patti, L. Lo Bello, A. Faulisi, A. Di Pietro, F. Sudano, N. Abbate, “Method for transmitting real-time data packets and further non real-time data packets between the nodes of a BLE mesh topology network, through a connectionless communication", EP 22704434.4, depositato presso l’European Patent Office, The Hague, 2023
  • F. Rundo, M. Calabretta, M. M. Branciforte, C. Spampinato, “Jacobian Regularized Power Electronic Device Monitoring”,  US Patent 83231816, granted September 22 2023.
  •  F. Rundo. S. Coffa, R. E. Sarpietro, C.Spampinato, P. C. Giuffre', G. Randazzo, M. S. Scroppo, D. R. Vinciguerra, “Machine Learning Techniques for Wafer Defect Map Classification”, US Patent 83142381, granted on December 20 2022.
  • Sensorless rotor angle detection circuit and method for a permanent magnet synchronous  machine, 2016, Costanzo D.; Scelba G.; Scarcella G.
  • Galvanically isolated DC-DC converter with bidirectional data transmission, 2016, Ragonese, E.; Spina, N.; Lombardo, P.; Greco, N.; Parisi, A.; Palmisano, G.
  • A galvanic isolation circuit, corresponding system and method, 2016, Ragonese, E.; Spina, N.; Lombardo, P.; Greco, N.; Parisi, A.; Palmisano, G.
  • A galvanic isolation system, apparatus and method, 2016, Spina, N.; Ragonese, E.; Greco, N.; Palmisano, G.
  • A method of transmitting power and data across a galvanic isolation barrier, corresponding system and apparatus, 2016, Ragonese, E.; Greco, N.; Palmisano, G.
  • Power oscillator apparatus with transformer-based power combining, 2016, Ragonese, E.; Fiore, V.; Spina, N.; Palmisano, G. 
  • A galvanic isolation circuit, corresponding system and method, 2017, Ragonese, E.; Spina, N.; Lombardo, P.; Greco, N.; Parisi, A.; Palmisano, G. 
  • Galvanically isolated DC-DC converter with bidirectional data transmission, 2018, Ragonese, E.; Spina, N.; Lombardo, P.o; Greco, N.; Parisi, A.; Palmisano, G.
  • A galvanically isolated dc-dc circuit converter, with data communication, corresponding system and corresponding method, 2018, Parisi, A.; Greco, N.; Spina, N.; Ragonese, E.; Palmisano, G.
  • A galvanic isolation circuit and system, corresponding method, 2018, Parisi, Alessandro; Greco, Nunzio; Spina, Nunzio; Ragonese, Egidio; Palmisano, Giuseppe
  • A galvanically isolated dc-dc circuit converter, with data communication, corresponding system and corresponding method, 2018, Parisi, A.; Greco, N.; Spina, N.; Ragonese, E.; Palmisano, G.