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Egidio Ragonese
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2020 – today
- 2024
- [j25]Simone Spataro, Egidio Ragonese, Nunzio Spina, Giuseppe Palmisano:
A GaN-Integrated Galvanically Isolated Data Link Based on RF Planar Coupling With Voltage Combining for Gate-Driver Applications. IEEE Access 12: 48530-48539 (2024) - [j24]Daniele Tripoli, Giorgio Maiellaro, Santi Concetto Pavone, Egidio Ragonese:
A Low-Phase-Noise and Area-Efficient Quad-Core VCO Based on Stacked Two-Port Inductors. IEEE Access 12: 87065-87076 (2024) - [j23]Nunzio Spina, Marcello Raimondi, Alessandro Castorina, Egidio Ragonese, Giuseppe Palmisano:
A Three-Channel Package-Scale Galvanic Isolation Interface for Wide Bandgap Gate Drivers. IEEE Trans. Very Large Scale Integr. Syst. 32(8): 1389-1399 (2024) - [c19]Minoo Eghtesadi, Gianluca Giustolisi, Salvatore Pennisi, Egidio Ragonese:
A 28-nm CMOS 60-GHz LNA for OOK Low-Power Receivers. PRIME 2024: 1-4 - [c18]Raffaele Mineo, Gaia Caligiore, Concetto Spampinato, Sabina Fontana, Simone Palazzo, Egidio Ragonese:
Sign Language Recognition for Patient-Doctor Communication: A Multimedia/Multimodal Dataset. RTSI 2024: 202-207 - 2023
- [j22]Simone Spataro, Egidio Ragonese:
Capacitive-Coupled Stacked Class-D Oscillators for Galvanic Isolators. IEEE Trans. Circuits Syst. II Express Briefs 70(4): 1356-1360 (2023) - 2022
- [j21]Egidio Ragonese, Giuseppe Papotto, Claudio Nocera, Andrea Cavarra, Giuseppe Palmisano:
CMOS Automotive Radar Sensors: mm-Wave Circuit Design Challenges. IEEE Trans. Circuits Syst. II Express Briefs 69(6): 2610-2616 (2022) - 2021
- [j20]Egidio Ragonese, Marco Fattori, Eugenio Cantatore:
Printed Organic Electronics on Flexible Foil: Circuit Design and Emerging Applications. IEEE Trans. Circuits Syst. II Express Briefs 68(1): 42-48 (2021) - 2020
- [j19]Alessandro Parisi, Egidio Ragonese, Nunzio Spina, Giuseppe Palmisano:
Galvanically Isolated DC-DC Converter Using a Single Isolation Transformer for Multi-Channel Communication. IEEE Trans. Circuits Syst. 67-I(12): 4434-4444 (2020)
2010 – 2019
- 2019
- [j18]Alessandro Finocchiaro, Giuseppe Papotto, Egidio Ragonese, Giuseppe Palmisano:
A 28-nm FD-SOI CMOS Variable-Gain Amplifier With Body-Bias-Based DC-Offset Cancellation for Automotive Radars. IEEE Trans. Circuits Syst. II Express Briefs 66-II(10): 1693-1697 (2019) - [c17]Egidio Ragonese, Nunzio Spina, Alessandro Parisi, Giuseppe Palmisano:
Reinforced Galvanic Isolation: Integrated Approaches to Go Beyond 20-kV Surge Voltage (invited). ApplePies 2019: 277-283 - [c16]Egidio Ragonese, Giuseppe Palmisano, Alessandro Parisi, Nunzio Spina:
Highly Integrated Galvanically Isolated Systems for Data/Power Transfer. ICECS 2019: 518-521 - 2018
- [j17]Nunzio Greco, Alessandro Parisi, Nunzio Spina, Egidio Ragonese, Giuseppe Palmisano:
Scalable lumped models of integrated transformers for galvanically isolated power transfer systems. Integr. 63: 323-331 (2018) - [j16]Egidio Ragonese, Nunzio Spina, Alessandro Castorina, Pierpaolo Lombardo, Nunzio Greco, Alessandro Parisi, Giuseppe Palmisano:
A Fully Integrated Galvanically Isolated DC-DC Converter With Data Communication. IEEE Trans. Circuits Syst. I Regul. Pap. 65-I(4): 1432-1441 (2018) - [j15]Alessandro Finocchiaro, Giovanni Girlando, Alessandro Motta, Alberto Pagani, Egidio Ragonese, Giuseppe Palmisano:
Wafer-Level Contactless Testing Based on UHF RFID Tags With Post-Process On-Chip Antennas. IEEE Trans. Circuits Syst. II Express Briefs 65-II(10): 1355-1359 (2018) - [j14]Nunzio Greco, Alessandro Parisi, Pierpaolo Lombardo, Nunzio Spina, Egidio Ragonese, Giuseppe Palmisano:
A Double-Isolated DC-DC Converter Based on Integrated LC Resonant Barriers. IEEE Trans. Circuits Syst. I Regul. Pap. 65-I(12): 4423-4433 (2018) - [c15]Andrea Cavarra, Claudio Nocera, Giuseppe Papotto, Egidio Ragonese, Giuseppe Palmisano:
Transformer Design for 77-GHz Down-Converter in 28-nm FD-SOI CMOS Technology. ApplePies 2018: 195-201 - [c14]Egidio Ragonese, Alessandro Parisi, Nunzio Spina, Giuseppe Palmisano:
Fully Integrated Galvanically Isolated DC-DC Converters Based on Inductive Coupling. ApplePies 2018: 335-341 - [c13]Claudio Nocera, Andrea Cavarra, Egidio Ragonese, Giuseppe Palmisano, Giuseppe Papotto:
Down-converter solutions for 77-GHz automotive radar sensors in 28-nm FD-SOI CMOS technology. PRIME 2018: 153-156 - 2017
- [j13]Nunzio Greco, Nunzio Spina, Vincenzo Fiore, Egidio Ragonese, Giuseppe Palmisano:
A Galvanically Isolated DC-DC Converter Based on Current-Reuse Hybrid-Coupled Oscillators. IEEE Trans. Circuits Syst. II Express Briefs 64-II(1): 56-60 (2017) - [c12]Nunzio Greco, Alessandro Parisi, Pierpaolo Lombardo, Giuseppe Palmisano, Nunzio Spina, Egidio Ragonese:
A 100-mW fully integrated DC-DC converter with double galvanic isolation. ESSCIRC 2017: 291-294 - 2016
- [j12]Vincenzo Fiore, Egidio Ragonese, Giuseppe Palmisano:
Low-Power ASK Detector for Low Modulation Indexes and Rail-to-Rail Input Range. IEEE Trans. Circuits Syst. II Express Briefs 63-II(5): 458-462 (2016) - [c11]Pierpaolo Lombardo, Vincenzo Fiore, Egidio Ragonese, Giuseppe Palmisano:
16.7 A fully-integrated half-duplex data/power transfer system with up to 40Mb/s data rate, 23mW output power and on-chip 5kV galvanic isolation. ISSCC 2016: 300-301 - 2015
- [j11]Vincenzo Fiore, Placido Battiato, Sahel Abdinia, Stéphanie Jacobs, Isabelle Chartier, Romain Coppard, Gerhard Klink, Eugenio Cantatore, Egidio Ragonese, Giuseppe Palmisano:
An Integrated 13.56-MHz RFID Tag in a Printed Organic Complementary TFT Technology on Flexible Substrate. IEEE Trans. Circuits Syst. I Regul. Pap. 62-I(6): 1668-1677 (2015) - [j10]Nunzio Spina, Vincenzo Fiore, Pierpaolo Lombardo, Egidio Ragonese, Giuseppe Palmisano:
Current-Reuse Transformer-Coupled Oscillators With Output Power Combining for Galvanically Isolated Power Transfer Systems. IEEE Trans. Circuits Syst. I Regul. Pap. 62-I(12): 2940-2948 (2015) - 2014
- [j9]Giorgio Maiellaro, Egidio Ragonese, Romain Gwoziecki, Stéphanie Jacobs, Nenad Marjanovic, Marek Chrapa, Jurg Schleuniger, Giuseppe Palmisano:
Ambient Light Organic Sensor in a Printed Complementary Organic TFT Technology on Flexible Plastic Foil. IEEE Trans. Circuits Syst. I Regul. Pap. 61-I(4): 1036-1043 (2014) - [c10]Vincenzo Fiore, Egidio Ragonese, Sahel Abdinia, Stéphanie Jacob, Isabelle Chartier, Romain Coppard, Arthur H. M. van Roermund, Eugenio Cantatore, Giuseppe Palmisano:
30.4 A 13.56MHz RFID tag with active envelope detection in an organic complementary TFT technology. ISSCC 2014: 492-493 - 2013
- [j8]Giorgio Maiellaro, Egidio Ragonese, Alessandro Castorina, Stéphanie Jacob, Mohamed Benwadih, Romain Coppard, Eugenio Cantatore, Giuseppe Palmisano:
High-Gain Operational Transconductance Amplifiers in a Printed Complementary Organic TFT Technology on Flexible Foil. IEEE Trans. Circuits Syst. I Regul. Pap. 60-I(12): 3117-3125 (2013)
2000 – 2009
- 2009
- [j7]Angelo Scuderi, Egidio Ragonese, Giuseppe Palmisano:
24-GHz ultra-wideband transmitter for vehicular short-range radar applications. IET Circuits Devices Syst. 3(6): 313-321 (2009) - [c9]Egidio Ragonese, Angelo Scuderi, Vittorio Giammello, Ettore Messina, Giuseppe Palmisano:
A fully integrated 24GHz UWB radar sensor for automotive applications. ISSCC 2009: 306-307 - 2008
- [j6]Alessandro Italia, Francesco Carrara, Antonino Scuderi, Egidio Ragonese, Calogero D. Presti, Giuseppina Sapone, Giuseppe Palmisano:
Radio-frequency front-end for 5 GHz wireless local area network transceivers. IET Circuits Devices Syst. 2(5): 439-450 (2008) - [c8]Angelo Scuderi, Egidio Ragonese, Giuseppe Palmisano:
0.13-μm SiGe BiCMOS radio front-end circuits for 24-GHz automotive short-range radar sensors. ESSCIRC 2008: 494-497 - 2007
- [j5]Alessandro Italia, Egidio Ragonese, Giuseppe Palmisano:
Digitally controlled linear-in-dB variable-gain amplifier for high-frequency applications. IET Circuits Devices Syst. 1(6): 409-414 (2007) - [c7]Vittorio Giammello, Egidio Ragonese, Giuseppe Palmisano, Angelo Scuderi:
An Offset Compensated Baseband Circuit for Automotive Radar Ultra-Wideband Applications. ICECS 2007: 931-934 - 2006
- [j4]Francesco Carrara, Alessandro Italia, Egidio Ragonese, Giuseppe Palmisano:
Design methodology for the optimization of transformer-loaded RF circuits. IEEE Trans. Circuits Syst. I Regul. Pap. 53-I(4): 761-768 (2006) - [j3]Egidio Ragonese, Alessandro Italia, Giuseppe Palmisano:
An image-reject down-converter for 802.11a and HIPERLAN2 wireless LANs. Telecommun. Syst. 32(2-3): 105-115 (2006) - 2005
- [j2]Alessandro Italia, Luca La Paglia, Antonino Scuderi, Francesco Carrara, Egidio Ragonese, Giuseppe Palmisano:
A silicon bipolar transmitter front-end for 802.11a and HIPERLAN2 wireless LANs. IEEE J. Solid State Circuits 40(7): 1451-1459 (2005) - [c6]Alessandro Italia, Francesco Carrara, Egidio Ragonese, Giuseppe Palmisano:
Design methodology for the optimization of transformer-loaded RF circuits. ISCAS (4) 2005: 3239-3242 - 2004
- [b1]Egidio Ragonese:
5-GHZ monolithc down-converters in silicon bipolar technology. University of Catania, Italy, 2004 - [j1]Angelo Scuderi, Tonio Biondi, Egidio Ragonese, Giuseppe Palmisano:
A lumped scalable model for silicon integrated spiral inductors. IEEE Trans. Circuits Syst. I Regul. Pap. 51-I(6): 1203-1209 (2004) - [c5]Alessandro Italia, Luca La Paglia, Antonino Scuderi, Francesco Carrara, Egidio Ragonese, Giuseppe Palmisano:
A 5-GHz silicon bipolar transmitter front-end for wireless LAN applications. CICC 2004: 553-556 - [c4]Egidio Ragonese, Alessandro Italia, Luca La Paglia, Giuseppe Palmisano:
Silicon bipolar up and down-converters for 5-GHz WLAN applications. ESSCIRC 2004: 75-78 - 2003
- [c3]Giovanni Girlando, Egidio Ragonese, Alessandro Italia, Giuseppe Palmisano:
Bipolar LNA design at different operating frequencies. ISCAS (1) 2003: 213-216 - 2002
- [c2]Giovanni Girlando, Giuseppe Ferla, Egidio Ragonese, Giuseppe Palmisano:
Silicon bipolar LNAs in the X and Ku bands. ICECS 2002: 113-116 - [c1]Egidio Ragonese, Giovanni Girlando, Giuseppe Palmisano:
A very accurate design of monolithic inductors in a 2D EM simulator. ICECS 2002: 1199-1202
Coauthor Index
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last updated on 2024-12-13 19:10 CET by the dblp team
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