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Andrea Bonfanti
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2020 – today
- 2024
- [j19]Gabriele Zanoletti, Lorenzo Scaletti, Gabriele Bè, Luca Ricci, Michele Rocco, Luca Bertulessi, Carlo Samori, Andrea Bonfanti:
A 250-MS/s 9.9-ENOB 80.7 dB-SFDR Top-Plate Input SAR ADC With Charge Linearization. IEEE Trans. Circuits Syst. II Express Briefs 71(3): 1551-1555 (2024) - [c27]L. Pistolesi, Artem Glukhov, Amadeo de Gracia Herranz, M. Lopez-Vallejo, Marcella Carissimi, Marco Pasotti, Pier Luigi Rolandi, Andrea Redaelli, I. Muñoz-Martín, S. Bianchi, Andrea Bonfanti, Daniele Ielmini:
Drift Compensation in Multilevel PCM for in-Memory Computing Accelerators. IRPS 2024: 1-4 - [c26]Alessia Ceroni, Gabriele Zanoletti, Andrea Bonfanti, Carlo Samori:
A Highly Energy-Efficient FIA-based AZ-free Ring Amplifier for Pipeline-SAR ADCs. PRIME 2024: 1-4 - [i2]Andrea Bonfanti, Giuseppe Bruno, Cristina Cipriani:
The Challenges of the Nonlinear Regime for Physics-Informed Neural Networks. CoRR abs/2402.03864 (2024) - 2023
- [j18]Christian Padovani, Marco Bestetti, Carlo Valzasina, Andrea Giovanni Bonfanti, Giacomo Langfelder:
Sub-10 μHz/√Hz Measurement Instrumentation for 140-dB DR Frequency-Modulated MEMS Sensors. IEEE Trans. Instrum. Meas. 72: 1-8 (2023) - [c25]Lorenzo Scaletti, Luca Bertulessi, Andrea Cristofoli, Andrea Bonfanti:
A Novel Push-Pull Input Buffer for Wideband ADCs with Improved High-Frequency Linearity. NEWCAS 2023: 1-5 - [c24]Luca Ricci, Lorenzo Scaletti, Gabriele Bè, Michele Rocco, Luca Bertulessi, Salvatore Levantino, Andrea L. Lacaita, Carlo Samori, Andrea Bonfanti:
A 2GS/s 11b 8x Interleaved ADC with 9.2 ENOB and 69.9dB SFDR in 28nm CMOS. VLSI Technology and Circuits 2023: 1-2 - [i1]Andrea Bonfanti, Roberto Santana, Marco Ellero, Babak Gholami:
On the Hyperparameters influencing a PINN's generalization beyond the training domain. CoRR abs/2302.07557 (2023) - 2022
- [j17]Gabriele Bè, Angelo Parisi, Luca Bertulessi, Luca Ricci, Lorenzo Scaletti, Mario Mercandelli, Andrea L. Lacaita, Salvatore Levantino, Carlo Samori, Andrea Bonfanti:
A 900-MS/s SAR-Based Time-Interleaved ADC With a Fully Programmable Interleaving Factor and On-Chip Scalable Background Calibrations. IEEE Trans. Circuits Syst. II Express Briefs 69(9): 3645-3649 (2022) - [c23]Marco Bestetti, Andrea Giovanni Bonfanti, Luca Falorni, Matteo Gianollo, Christian Padovani, Giacomo Langfelder:
Full-digital output ASIC for Lissajous Frequency Modulated MEMS Gyroscopes. ICECS 2022 2022: 1-4 - [c22]Luca Ricci, Lorenzo Scaletti, Gabriele Bè, Luca Bertulessi, Salvatore Levantino, Carlo Samori, Andrea Bonfanti:
Concurrent Effect of Redundancy and Switching Algorithms in SAR ADCs. ISCAS 2022: 900-904 - [c21]Lorenzo Scaletti, Gabriele Bè, Angelo Parisi, Luca Bertulessi, Luca Ricci, Mario Mercandelli, Salvatore Levantino, Carlo Samori, Andrea Bonfanti:
A 10.2-ENOB, 150-MS/s Redundant SAR ADC With a Quasi-Monotonic Switching Algorithm for Time-Interleaved Converters. NEWCAS 2022: 20-24 - 2021
- [j16]Francesco Buccoleri, Andrea Bonfanti, Andrea L. Lacaita:
A Generalization of the Groszkowski's Result in Differential Oscillator Topologies. IEEE Trans. Circuits Syst. I Regul. Pap. 68(7): 2800-2812 (2021) - [c20]Marco Bestetti, Giorgio Mussi, Christian Padovani, Andrea Donadel, Carlo Valzasina, Giacomo Langfelder, Andrea Giovanni Bonfanti:
On amplitude-gain-control optimization for Lissajous frequency modulated MEMS gyroscopes. IEEE SENSORS 2021: 1-4 - 2020
- [c19]Oliver Stoll, Shaun West, Mario Rapaccini, Cosimo Barbieri, Andrea Bonfanti, Andrea Gombac:
Upgrading the Data2Action Framework: Results Deriving from Its Application in the Printing Industry. IESS 2020: 273-286
2010 – 2019
- 2019
- [j15]Mauro Leoncini, Marco Bestetti, Andrea Bonfanti, Stefano Facchinetti, Paolo Minotti, Giacomo Langfelder:
Fully Integrated, 406 $\mu$A, $\text{5 }^{\circ}$/hr, Full Digital Output Lissajous Frequency-Modulated Gyroscope. IEEE Trans. Ind. Electron. 66(9): 7386-7396 (2019) - 2018
- [j14]Mauro Leoncini, Andrea Bonfanti, Salvatore Levantino, Andrea L. Lacaita:
Efficient Behavioral Simulation of Charge-Pump Phase-Locked Loops. IEEE Trans. Circuits Syst. I Regul. Pap. 65-I(6): 1968-1980 (2018) - [j13]Paolo Minotti, Stefano Dellea, Giorgio Mussi, Andrea Bonfanti, Stefano Facchinetti, Alessandro Tocchio, Valentina Zega, Claudia Comi, Andrea Leonardo Lacaita, Giacomo Langfelder:
High Scale-Factor Stability Frequency-Modulated MEMS Gyroscope: 3-Axis Sensor and Integrated Electronics Design. IEEE Trans. Ind. Electron. 65(6): 5040-5050 (2018) - 2016
- [j12]Stefano Brenna, Andrea Bonetti, Andrea Bonfanti, Andrea L. Lacaita:
An efficient tool for the assisted design of SAR ADCs capacitive DACs. Integr. 53: 88-99 (2016) - [j11]Stefano Brenna, Fabio Padovan, Andrea Neviani, Andrea Bevilacqua, Andrea Bonfanti, Andrea L. Lacaita:
A 64-Channel 965-µW Neural Recording SoC With UWB Wireless Transmission in 130-nm CMOS. IEEE Trans. Circuits Syst. II Express Briefs 63-II(6): 528-532 (2016) - 2015
- [j10]Gian Nicola Angotzi, Gytis Baranauskas, Alessandro Vato, Andrea Bonfanti, Guido Zambra, Emma Maggiolini, Marianna Semprini, Davide Ricci, Alberto Ansaldo, Elisa Castagnola, Tamara Ius, Miran Skrap, Luciano Fadiga:
A Compact and Autoclavable System for Acute Extracellular Neural Recording and Brain Pressure Monitoring for Humans. IEEE Trans. Biomed. Circuits Syst. 9(1): 50-59 (2015) - [c18]Stefano Brenna, Andrea Bonetti, Andrea Bonfanti, Andrea L. Lacaita:
A tool for the assisted design of charge redistribution SAR ADCs. DATE 2015: 1265-1268 - [c17]Stefano Brenna, Luca Bettini, Andrea Bonetti, Andrea Bonfanti, Andrea L. Lacaita:
Fundamental Power Limits of SAR and ΔΣ Analog-to-Digital Converters. NORCAS 2015: 1-4 - 2014
- [c16]Stefano Brenna, Andrea Bonfanti, Andrea Abba, Francesco Caponio, Andrea L. Lacaita:
Analysis and optimization of a SAR ADC with attenuation capacitor. MIPRO 2014: 68-73 - [c15]Stefano Brenna, Andrea Bonetti, Andrea Bonfanti, Andrea L. Lacaita:
A simulation and modeling environment for the analysis and design of charge redistribution DACs used in SAR ADCs. MIPRO 2014: 74-79 - [c14]Stefano Brenna, Andrea Bonetti, Andrea L. Lacaita, Andrea Bonfanti:
A Modeling Environment for the Simulation and Design of Charge Redistribution DACs Used in SAR ADCs. UKSim 2014: 562-567 - 2013
- [j9]Federico Pepe, Andrea Bonfanti, Salvatore Levantino, Carlo Samori, Andrea L. Lacaita:
Suppression of Flicker Noise Up-Conversion in a 65-nm CMOS VCO in the 3.0-to-3.6 GHz Band. IEEE J. Solid State Circuits 48(10): 2375-2389 (2013) - [c13]Federico Pepe, Andrea Bonfanti, Salvatore Levantino, Paolo Maffezzoni, Carlo Samori, Andrea L. Lacaita:
Simulating phase noise induced from cyclostationary noise sources. ISCAS 2013: 2686-2689 - 2012
- [j8]Andrea Bonfanti, Federico Pepe, Carlo Samori, Andrea L. Lacaita:
Flicker Noise Up-Conversion due to Harmonic Distortion in Van der Pol CMOS Oscillators. IEEE Trans. Circuits Syst. I Regul. Pap. 59-I(7): 1418-1430 (2012) - [j7]Salvatore Levantino, Paolo Maffezzoni, Federico Pepe, Andrea Bonfanti, Carlo Samori, Andrea L. Lacaita:
Efficient Calculation of the Impulse Sensitivity Function in Oscillators. IEEE Trans. Circuits Syst. II Express Briefs 59-II(10): 628-632 (2012) - [c12]Federico Pepe, Andrea Bonfanti, Andrea L. Lacaita:
A fast and accurate simulation method of impulse sensitivity function in oscillators. MIPRO 2012: 66-71 - 2010
- [c11]Andrea Bonfanti, M. Ceravolo, Guido Zambra, Riccardo Gusmeroli, Tommaso Borghi, Alessandro S. Spinelli, Andrea L. Lacaita:
A multi-channel low-power IC for neural spike recording with data compression and narrowband 400-MHz MC-FSK wireless transmission. ESSCIRC 2010: 330-333
2000 – 2009
- 2009
- [c10]Andrea Bonfanti, Tommaso Borghi, Riccardo Gusmeroli, Guido Zambra, Alessandro S. Spinelli, Andriy Oliynyk, Luciano Fadiga, Gytis Baranauskas:
A Low-power Integrated Circuit for Analog Spike Detection and Sorting in Neural Prosthesis Systems. BIODEVICES 2009: 67-74 - 2008
- [j6]Andrea Bonfanti, Davide De Caro, Alfio Dario Grasso, Salvatore Pennisi, Carlo Samori, Antonio G. M. Strollo:
A 2.5-GHz DDFS-PLL With 1.8-MHz Bandwidth in 0.35-µm CMOS. IEEE J. Solid State Circuits 43(6): 1403-1413 (2008) - 2007
- [c9]Tommaso Borghi, Andrea Bonfanti, Guido Zambra, Riccardo Gusmeroli, Andrea L. Lacaita, Alessandro S. Spinelli, Gytis Baranauskas:
An integrated low-noise multichannel system for neural signals amplification. ESSCIRC 2007: 456-459 - [c8]Andrea Bonfanti, Carlo Samori, Andrea L. Lacaita:
A multistandard Σ-Δ fractional-N frequency synthesizer for 802.11a/b/g WLAN. ESSCIRC 2007: 480-483 - 2006
- [j5]Luca Romanò, Andrea Bonfanti, Salvatore Levantino, Carlo Samori, Andrea L. Lacaita:
5-GHz Oscillator Array With Reduced Flicker Up-Conversion in 0.13-$muhboxm$CMOS. IEEE J. Solid State Circuits 41(11): 2457-2467 (2006) - [j4]Andrea Bonfanti, Salvatore Levantino, Carlo Samori, Andrea L. Lacaita:
A varactor configuration minimizing the amplitude-to-phase noise conversion in VCOs. IEEE Trans. Circuits Syst. I Regul. Pap. 53-I(3): 481-488 (2006) - [c7]Riccardo Gusmeroli, Andrea Bonfanti, Tommaso Borghi, Alessandro S. Spinelli, Gytis Baranauskas:
A Switched-capacitor Neural Preamplifier with an Adjustable Pass-band for Fast Recovery following Stimulation. EMBC 2006: 652-655 - 2004
- [c6]Luca Romanò, Carlo Samori, Salvatore Levantino, Andrea Bonfanti, Andrea L. Lacaita:
A multi-tank LC-oscillator [microwave oscillator example]. ICECS 2004: 29-32 - [c5]Salvatore Levantino, Andrea Bonfanti, Luca Romanò, Carlo Samori, Andrea L. Lacaita:
Differential tuning oscillators with reduced flicker noise upconversion. ICECS 2004: 33-36 - [c4]Luca Romanò, Salvatore Levantino, Andrea Bonfanti, Carlo Samori, Andrea L. Lacaita:
Phase noise and accuracy in quadrature oscillators. ISCAS (1) 2004: 161-164 - 2003
- [b1]Andrea Bonfanti:
Meccanismi di conversione del rumore di bassa frequenza in rumore di fase in oscillatori LC-tuned completamente integrati. Polytechnic University of Milan, Italy, 2003 - [j3]Andrea Bonfanti, F. Amorosa, Carlo Samori, Andrea L. Lacaita:
A DDS-based PLL for 2.4-GHz frequency synthesis. IEEE Trans. Circuits Syst. II Express Briefs 50(12): 1007-1010 (2003) - [c3]Andrea Giovanni Bonfanti, Salvatore Levantino, Stefano Pellerano, Carlo Samori, Andrea L. Lacaita, Felice Torrisi:
A voltage-controlled oscillator for IEEE 802.11a and HiperLAN2 application. ESSCIRC 2003: 695-698 - 2002
- [j2]Salvatore Levantino, Carlo Samori, Andrea Bonfanti, Sander L. J. Gierkink, Andrea L. Lacaita, Vito Boccuzzi:
Frequency dependence on bias current in 5 GHz CMOS VCOs: impact on tuning range and flicker noise upconversion. IEEE J. Solid State Circuits 37(8): 1003-1011 (2002) - [j1]Pietro Andreani, Andrea Bonfanti, Luca Romanò, Carlo Samori:
Analysis and design of a 1.8-GHz CMOS LC quadrature VCO. IEEE J. Solid State Circuits 37(12): 1737-1747 (2002) - 2001
- [c2]Alfio Zanchi, Andrea Bonfanti, Salvatore Levantino, Carlo Samori, Andrea L. Lacaita:
Automatic amplitude control loop for a 2-V, 2.5-GHz LC-tank VCO. CICC 2001: 209-212 - 2000
- [c1]Salvatore Levantino, Alfio Zanchi, Andrea Bonfanti, Carlo Samori:
Fast simulation techniques for phase noise analysis of oscillators. ISCAS 2000: 156-159
Coauthor Index
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last updated on 2024-10-07 22:16 CEST by the dblp team
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