default search action
Marcello De Matteis
Person information
- affiliation: University of Salento, Lecce, Italy
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j19]Elia Arturo Vallicelli, Mattia Tambaro, Mattia Oliver Cosmi, Andrea Baschirotto, Marcello De Matteis:
50-Channel Ionoacoustic Sensor for 60 MeV Proton Beam Characterization in Hadron Therapy Applications. SN Comput. Sci. 5(2): 224 (2024) - [j18]Elia Arturo Vallicelli, Mattia Tambaro, Mattia Oliver Cosmi, Andrea Baschirotto, Marcello De Matteis:
Correction: 50-Channel Ionoacoustic Sensor for 60 MeV Proton Beam Characterization in Hadron Therapy Applications. SN Comput. Sci. 5(3): 280 (2024) - [c82]Mirza Hassan Baig, Giuseppe Chirico, Marcello De Matteis, Elia A. Vallicelli:
PVDF Ultrasound Array Design for Ionoacoustic Tomography of Particle Beams in Hadron Therapy. PRIME 2024: 1-4 - [c81]Mirco Malanchini, Andrea Baschirotto, Gennaro Di Meo, Mattia Tambaro, Elia A. Vallicelli, Marcello De Matteis:
38.5-300 kHz-Fundamental-Frequency Tuning Range 16.9 mW-Power Digital Denoising System for Proton Sound Detectors in 28 nm CMOS. PRIME 2024: 1-4 - [c80]Lorenzo Stevenazzi, Andrea Baschirotto, Marcello De Matteis:
Analog Two-Variable Spiking Neuron in 16 nm FinFET for Neuromorphic Systems. PRIME 2024: 1-4 - [c79]Mattia Tambaro, Silvia Ceopi, Andrea Gallacci, Andrea La Gala, Mirco Malanchini, Marcello De Matteis:
500 MHz CMOS 28-nm Floating Point Arithmetic Unit for 32-Bit RISC-V Microprocessors. PRIME 2024: 1-4 - [c78]Davide Turossi, Elia Arturo Vallicelli, Marcello De Matteis, Gennaro Di Meo, Fabio D'Ottavi, Andrea Baschirotto:
A 7.69 ENOB, $161\mu W$ SAR ADC in 28nm CMOS for Proton Sound Detectors. PRIME 2024: 1-4 - 2023
- [c77]Lorenzo Stevenazzi, Andrea Baschirotto, Marcello De Matteis:
Static Noise Margin in 16 nm FinFET 6T and 8T SRAM Cells for Compute-in-Memory. ICECS 2023: 1-4 - [c76]Andrea La Gala, Andrea Baschirotto, Federica Benedini, Lorenzo Stevenazzi, Elia Arturo Vallicelli, Marcello De Matteis:
50-MHz-Bandwidth $850-\mu \mathrm{W}$-Power 60-dB-SNR Analog Amplifier with Complex Conjugated Poles. ISCAS 2023: 1-4 - [c75]Syed Adeel Ali Shah, Hubert Kroha, Marcello De Matteis, Andrea Baschirotto, Robert Richter:
65 nm CMOS 8 mV/fC, 14.6 ns Rising Time Analog Front-End for ATLAS Muon Drift Tubes Detectors. PRIME 2023: 97-100 - [c74]Mirza Hassan Baig, Elia A. Vallicelli, Giuseppe Chirico, Mattia Tambaro, Lorenzo Stevenazzi, Marcello De Matteis:
56-MHz-Bandwidth 2.4-3.5 μV/Pascal-Sensitivity-Range Polyvinylidene Fluoride Ultrasound Sensor Array for Biomedical Thermoacoustic Imaging. PRIME 2023: 113-116 - [c73]Lorenzo Stevenazzi, Andrea Baschirotto, Gennaro Di Meo, Luca Gelmi, Elia A. Vallicelli, Marcello De Matteis:
A 0.26 dB Noise-Figure 2.4 mW-Power Low-Noise-Amplifier with Auto-Tuned Pseudo-Resistors for Ionoacoustic Range Verification. PRIME 2023: 125-128 - 2022
- [c72]Andrea La Gala, Lorenzo Stevenazzi, Elia A. Vallicelli, Mattia Tambaro, Stefano Vassanelli, Andrea Baschirotto, Marcello De Matteis:
Hodgkin-Huxley Verilog-A Electrical Neuron Membrane Model. ICECS 2022 2022: 1-4 - [c71]Elia A. Vallicelli, Mirza Hassan Baig, Andrea La Gala, Giuseppe Chirico, Andrea Baschirotto, Marcello De Matteis:
Low-cost PVDF High-Frequency Ultrasound Sensor Design and Manufacturing for Thermoacoustic Imaging Applications. ICECS 2022 2022: 1-4 - [c70]Elia A. Vallicelli, Mattia Oliver Cosmi, Mattia Tambaro, Andrea Baschirotto, Marcello De Matteis:
140 Frames-per-Second Ionoacoustic Imaging Detector for Real-Time Particle Therapy Monitoring. ICECS 2022 2022: 1-4 - [c69]Elia A. Vallicelli, Valerio Di Palma, Marcello De Matteis, Andrea Baschirotto, Marco Fanciulli:
A 0.46 nV/√Hz JFET Low-Noise Amplifier for Characterization of Nanoelectrode Coating Materials. ICECS 2022 2022: 1-4 - 2021
- [j17]Elia Arturo Vallicelli, Andrea Baschirotto, Sebastian Lehrack, Walter Assmann, Katia Parodi, Salvatore Viola, Giorgio Riccobene, Marcello De Matteis:
22 dB Signal-to-Noise Ratio Real-Time Proton Sound Detector for Experimental Beam Range Verification. IEEE Trans. Circuits Syst. I Regul. Pap. 68(1): 3-13 (2021) - [j16]Marcello De Matteis, Nicolas Galante, Federico Fary, Elia A. Vallicelli, Andrea Baschirotto:
64 dB Dynamic-Range 810 μW 90 MHz Fully-Differential Flipped-Source-Follower Analog Filter in 28nm-CMOS. IEEE Trans. Circuits Syst. II Express Briefs 68(9): 3068-3072 (2021) - [c68]Elia A. Vallicelli, Matteo Corona, Marco Dell'Acqua, Andrea Baschirotto, Marcello De Matteis:
Denoising for Enhancing Signal-to-Noise Ratio in Proton Sound Detectors. BioCAS 2021: 1-4 - [c67]Marcello De Matteis, Andrea Baschirotto, Lorenzo Stevenazzi, Elia A. Vallicelli:
Systematic Design Procedure of CMOS Microelectrode-Arrays Based on Analog Signal Processing Noise Figure. BIOSTEC (Selected Papers) 2021: 1-17 - [c66]David Tomasella, Elia A. Vallicelli, Andrea Baschirotto, Marcello De Matteis:
Detection of <12 µVRMS Extracellular Action Potential and Local Field Potential by Optimum Design of a Single Pixel Electrolyte-Oxide-MOSFET Interface in CMOS 28 nm. BIODEVICES 2021: 66-76 - [c65]Elia A. Vallicelli, Mattia Oliver Cosmi, Andrea Baschirotto, Marcello De Matteis:
Front-end Design Optimization for Ionoacoustic 200 MeV Protons Beam Monitoring with Sub-millimeter Precision for Hadron Therapy Applications. BIODEVICES 2021: 77-87 - [c64]Marcello De Matteis, Andrea Baschirotto, Elia A. Vallicelli:
309-µW 40-MHz 20-dB-Gain Analog Filter in 28nm-CMOS. ESSCIRC 2021: 339-342 - [c63]Elia A. Vallicelli, Andrea Baschirotto, Marcello De Matteis:
2.6-MHz 4.9-mW 37.5 dB-SNR Analog Front-End for Proton Sound Detectors in 28 nm CMOS. ICECS 2021: 1-4 - [c62]Elia A. Vallicelli, Andrea Baschirotto, Lorenzo Stevenazzi, Luciano Rota, Marcello De Matteis:
2.4 Hz-5 kHz Passband $11.8\ \mu \mathrm{V}_{\text{RMS}}$ Noise Power Neural Amplifier for Brain-Chip Interfaces. ICECS 2021: 1-5 - 2020
- [j15]Elia A. Vallicelli, Davide Turossi, Luca Gelmi, Alessandro Baù, Roberto Bertoni, Walter Fulgione, Alessandro Quintino, Massimo Corcione, Andrea Baschirotto, Marcello De Matteis:
A 0.3nV/√Hz input-referred-noise analog front-end for radiation-induced thermo-acoustic pulses. Integr. 74: 11-18 (2020) - [j14]Alessandra Pipino, Federica Resta, Luca Mangiagalli, Marcello De Matteis, Hubert Kroha, Robert Richter, Oliver Kortner, Andrea Baschirotto:
A 28 nm Bulk-CMOS Analog Front-End for High-Rate ATLAS Muon Drift-Tube Detectors. Sensors 20(1): 42 (2020) - [c61]Elia A. Vallicelli, Mattia Oliver Cosmi, Giuseppe Chirico, Maddalena Collini, Andrea Baschirotto, Marcello De Matteis:
Photoacoustic Sensing Instrumentation using 70 W 905 nm Pulsed Laser Source for Proton-Induced Thermoacoustic Effect Emulation. IEEE SENSORS 2020: 1-4
2010 – 2019
- 2019
- [c60]Federico Fary, Luca Mangiagalli, Elia A. Vallicelli, Marcello De Matteis, Andrea Baschirotto:
A 28nm bulk-CMOS 50MHz 18 dBm-IIP3 Active-RC Analog Filter based on 7 GHz UGB OTA. ESSCIRC 2019: 253-256 - [c59]Elia A. Vallicelli, Andrea Baschirotto, Marcello De Matteis:
10 MHz -3 dB Bandwidth 360µW Power Source-Follower Low-Pass Filter for Multi-Channel Acoustic Analog Front-End in CMOS 0.18µm. ICECS 2019: 142-145 - [c58]Federico Fary, Marcello De Matteis, Luciano Rota, Martina Arosio, Andrea Baschirotto:
A 16 nm-FinFET 100 MHz 4th-order Fully-Differential Super-Source-Follower Analog Filter. ICECS 2019: 150-153 - [c57]Alessandra Pipino, Federica Resta, Luca Mangiagalli, Federico Fary, Marcello De Matteis, Hubert Kroha, Robert Richter, Oliver Kortner, Andrea Baschirotto:
sMDT Detectors Read-Out in 28nm technology. ICECS 2019: 691-694 - [c56]Mattia Tambaro, Elia A. Vallicelli, David Tomasella, Andrea Baschirotto, Stefano Vassanelli, Marta Maschietto, Marcello De Matteis:
A 10 MSample/Sec Digital Neural Spike Detection for a 1024 Pixels Multi Transistor Array Sensor. ICECS 2019: 711-714 - [c55]Elia A. Vallicelli, Andrea Baschirotto, Sebastian Lehrack, Walter Assmann, Katia Parodi, Salvo Viola, Giorgio Riccobene, Marcello De Matteis:
Mixed-Signal Ionoacoustic Analog Front-End for Proton Range Verification with 24γm Precision at 0.8 Gy Bragg Peak Dose. ICECS 2019: 811-814 - [c54]Fulvio Ciciotti, Federico Fary, Marcello De Matteis, Andrea Baschirotto:
28nm Implementation Aspects of a 0.9V 75MHz 4th-Order Rauch Analog Filter. ISCAS 2019: 1-5 - [c53]Elia A. Vallicelli, Luca Gelmi, Roberto Bertoni, Walter Fulgione, Mattia Tambaro, Andrea Baschirotto, Marcello De Matteis:
A 0.3nV/√ Hz Input-Referred-Noise Analog Front-End for Weakly-Interacting-Massive-Particles (WIMPs) Acoustic Sensing in Bubbles-Chamber Detectors. PRIME 2019: 197-200 - [c52]Mattia Tambaro, Elia A. Vallicelli, David Tomasella, Andrea Baschirotto, Stefano Vassanelli, Marta Maschietto, Marcello De Matteis:
Real-Time Neural (RT-Neu) Spikes Imaging by a 9375 sample/(sec pixel) 32×32 pixels Electrolyte-Oxide-Semiconductor Biosensor. PRIME 2019: 233-236 - [c51]Michael Rescati, Emanuela Scapini, Marcello De Matteis, Raimondo Schettini, Danilo Pau, Marco Paganoni, Andrea Baschirotto:
HAEMS: Implementation of an Intelligent Event-Driven Edge Mesh IoT Architecture. RTSI 2019: 39-44 - 2018
- [j13]Marcello De Matteis, Luca Mangiagalli, Andrea Baschirotto:
Fully-differential flipped-source-follower low-pass analogue filter in CMOS 28 nm bulk. IET Circuits Devices Syst. 12(6): 689-695 (2018) - [j12]Federica Resta, Simone Gerardin, S. Mattiazzo, Alessandro Paccagnella, Marcello De Matteis, Christian C. Enz, Andrea Baschirotto:
1GigaRad TID impact on 28 nm HEP analog circuits. Integr. 63: 306-314 (2018) - [j11]Michele Riva, Elia Arturo Vallicelli, Andrea Baschirotto, Marcello De Matteis:
Acoustic Analog Front End for Proton Range Detection in Hadron Therapy. IEEE Trans. Biomed. Circuits Syst. 12(4): 954-962 (2018) - [c50]Federico Fary, Marcello De Matteis, Tommaso Vergine, Andrea Baschirotto:
A 28nm-CMOS 100MHz 1mW 12dBm-IIP3 4th-Order Flipped-Source-Follower Analog Filter. ESSCIRC 2018: 298-301 - [c49]Elia A. Vallicelli, Federico Fary, Andrea Baschirotto, Marcello De Matteis, Marco Reato, Marta Maschietto, Federico Rocchi, Stefano Vassanelli, D. Guarrera, Gianmaria Collazuol, Ralf Zeitler:
Real-time digital implementation of a principal component analysis algorithm for neurons spike detection. ICICDT 2018: 33-36 - [c48]Federico Fary, Elia Arturo Vallicelli, Marcello De Matteis, Andrea Baschirotto:
About figure-of-merit for continuous-time analog filters. ICICDT 2018: 57-60 - [c47]Michael Rescati, Marcello De Matteis, Marco Paganoni, Danilo Pau, Raimondo Schettini, Andrea Baschirotto:
Event-driven cooperative-based Internet-of-Things (IoT) system. ICICDT 2018: 193-196 - 2017
- [j10]Alessandra Pipino, Marcello De Matteis, Karen Wan, Andrea Baschirotto:
A Simple Algorithm for Specs Definition in Wireless Receivers. J. Circuits Syst. Comput. 26(4): 1750062:1-1750062:19 (2017) - [j9]Marcello De Matteis, Alessandra Pipino, Federica Resta, Alessandro Pezzotta, Stefano D'Amico, Andrea Baschirotto:
A 63-dB DR 22.5-MHz 21.5-dBm IIP3 Fourth-Order FLFB Analog Filter. IEEE J. Solid State Circuits 52(7): 1977-1986 (2017) - [j8]Marcello De Matteis, Andrea Baschirotto:
A Biquadratic Cell Based on the Flipped-Source-Follower Circuit. IEEE Trans. Circuits Syst. II Express Briefs 64-II(8): 867-871 (2017) - [c46]Michele Riva, Elia A. Vallicelli, Andrea Baschirotto, Marcello De Matteis:
Acoustic analog front-end for Bragg-Peak detection in hadron therapy. BioCAS 2017: 1-4 - [c45]Elia A. Vallicelli, Marcello De Matteis, Andrea Baschirotto, Michael Rescati, Marco Reato, Marta Maschietto, Stefano Vassanelli, D. Guarrera, Gianmaria Collazuol, R. Zeiter:
Neural spikes digital detector/sorting on FPGA. BioCAS 2017: 1-4 - [c44]Fulvio Ciciotti, Marcello De Matteis, Andrea Baschirotto:
A 0.9V 75MHz 2.8mW 4th-order analog filter in CMOS-bulk 28nm technology. ISCAS 2017: 1-4 - [c43]Marcello De Matteis, Antonio A. D'Amico, Fulvio Ciciotti, Andrea Baschirotto:
Closed-loop continuous-time analog filter with almost constant IIP3 over the pass-band. ISCAS 2017: 1-4 - [c42]Marcello De Matteis, Andrea Donno, Stefano Marinaci, Stefano D'Amico, Andrea Baschirotto:
A 0.9V 3rd-order single-OPAMP analog filter in 28nm CMOS-bulk. IWASI 2017: 155-158 - 2016
- [j7]Marcello De Matteis, Federica Resta, Alessandra Pipino, Stefano D'Amico, Andrea Baschirotto:
A 28.8-MHz 23-dBm-IIP3 3.2-mW Sallen-Key Fourth-Order Filter With Out-of-Band Zeros Cancellation. IEEE Trans. Circuits Syst. II Express Briefs 63-II(12): 1116-1120 (2016) - [c41]Alessandra Pipino, Marcello De Matteis, Alessandro Pezzotta, Federica Resta, Stefano D'Amico, Andrea Baschirotto:
A 22.5MHz 21.5dBm-IIP3 4th-Order FLFB analog filter. ESSCIRC 2016: 289-292 - [c40]Federica Resta, Alessandra Pipino, Alessandro Pezzotta, Marcello De Matteis, Marco Croce, Andrea Baschirotto:
A 4.3μW 28nm-CMOS pixel front-end with switched inverter-based comparator. IEEE SENSORS 2016: 1-3 - [c39]Marcello De Matteis, Federica Resta, Alessandra Pipino, Stefano D'Amico, Andrea Baschirotto:
A 28.8MHz 21.1dBm-IIP3 3.2mW Sallen-Key 4th-Order filter with out-of-band zeros cancellation. ISCAS 2016: 2902 - 2015
- [j6]Marcello De Matteis, Alessandro Pezzotta, Stefano D'Amico, Andrea Baschirotto:
A 33 MHz 70 dB-SNR Super-Source-Follower-Based Low-Pass Analog Filter. IEEE J. Solid State Circuits 50(7): 1516-1524 (2015) - [c38]Antonio A. D'Amico, Marcello De Matteis, Stefano D'Amico, Claudio De Berti, Lorenzo Crespi, Andrea Baschirotto:
A 4th-order 100μA diode-C-based filter with 5dBm-IIP3 at the 24MHz cut-off frequency. ESSCIRC 2015: 36-39 - [c37]Alessandra Pipino, Alessandro Pezzotta, Federica Resta, Marcello De Matteis, Andrea Baschirotto:
A rail-to-rail-input chopper instrumentation amplifier in 28nm CMOS. ICECS 2015: 73-76 - [c36]Andrea Donno, Stefano D'Amico, Marcello De Matteis, Andrea Baschirotto:
A 150MHz 3rd-order single Opamp continuous-time analog filter in 28nm CMOS technology. ICECS 2015: 161-164 - [c35]Federica Resta, Marcello De Matteis, G. Rota, Alessandro Pezzotta, Alessandra Pipino, Andrea Baschirotto:
IC-PIX28: A 28nm read-out channel for pixel detector. ICECS 2015: 384-387 - [c34]Alberto Annovi, Andrea Baschirotto, Matteo M. Beretta, Nicolo Vladi Biesuz, Saverio Citraro, Francesco Crescioli, Marcello De Matteis, Federico Fary, Luca Frontini, Paola Giannetti, Valentino Liberali, Pierluigi Luciano, Fabrizio Palla, Alessandro Pezzotta, Seyedruhollah Shojaii, Calliope-Louisa Sotiropoulou, Alberto Stabile:
A XOR-based associative memory block in 28 nm CMOS for interdisciplinary applications. ICECS 2015: 392-395 - [c33]Alessandro Pezzotta, G. Corradi, G. Croci, Marcello De Matteis, Fabrizio Murtas, Giuseppe Gorini, Andrea Baschirotto:
GEMINI: A triple-GEM detector read-out mixed-signal ASIC in 180nm CMOS. ISCAS 2015: 1718-1721 - [c32]Antonio A. D'Amico, Marcello De Matteis, Stefano D'Amico, Lorenzo Crespi, Andrea Baschirotto:
A 4th-order low-power diode-C-based filter with 12dBm-IIP3 at the cut-off frequency. ISCAS 2015: 2656-2659 - [c31]Federica Resta, Marcello De Matteis, Alessandro Pezzotta, Stefano D'Amico, Andrea Baschirotto:
A 30MHz 28dBm-IIP3 3.2mW fully-differential Sallen-Key 4th-order filter with out-of-band zeros cancellation. NEWCAS 2015: 1-4 - 2014
- [j5]Stefano D'Amico, Giuseppe Cocciolo, Annachiara Spagnolo, Marcello De Matteis, Andrea Baschirotto:
A 7.65-mW 5-bit 90-nm 1-Gs/s Folded Interpolated ADC Without Calibration. IEEE Trans. Instrum. Meas. 63(2): 295-303 (2014) - [c30]Marcello De Matteis, Alessandro Pezzotta, Stefano D'Amico, Andrea Baschirotto:
A 33-MHz 70dB-SNR super-source-follower-based low-pass analog filter. ESSCIRC 2014: 363-366 - [c29]Vincenzo Chironi, Stefano D'Amico, Mirko Pasca, Marcello De Matteis, Andrea Baschirotto:
A SAW-less dual-band RF front-end for IR-UWB receiver in 65nm CMOS. ISCAS 2014: 1909-1912 - [c28]Federica Resta, Stefano D'Amico, Marcello De Matteis, Andrea Baschirotto:
An improved source-follower based Sallen-Key continuous-time biquadratic cell with auxiliary path. NORCHIP 2014: 1-4 - 2013
- [c27]Andrea Baschirotto, Marcello De Matteis, Stefano D'Amico:
Towards minimum power analog filters. ICICDT 2013: 135-138 - [c26]Tommaso Vergine, Marcello De Matteis, Stefano D'Amico, Vincenzo Chironi, Alessandro Marchioro, Kostas Kloukinas, Andrea Baschirotto:
A 32-channel 12-bits single slope A-to-D converter for LHC environment. ICICDT 2013: 139-142 - [c25]Domenico M. Cavallo, Marcello De Matteis, Marco Ronchi, Elio Guidetti, Giuseppina Leggeri, Andrea Baschirotto:
A 14-bit extended-range incremental ΣΔ ADC matlab-model based on 90nm CMOS-technology. ICICDT 2013: 143-146 - [c24]Alessandro Pezzotta, Andrea Costantini, Marcello De Matteis, Stefano D'Amico, Giuseppe Gorini, Fabrizio Murtas, Andrea Baschirotto:
A low-power CMOS 0.13 µm Charge-Sensitive Preamplifier for GEM detectors. ICICDT 2013: 147-150 - [c23]Marcello De Matteis, Tommaso Vergine, Marco Sabatini, Andrea Baschirotto:
A 34µW 75dB-dynamic-range CMOS analog front-end for intelligent tyre sensor network. ICICDT 2013: 163-166 - [c22]Vincenzo Chironi, Stefano D'Amico, Marcello De Matteis, Andrea Baschirotto:
A dual-band balun LNA resilient to 5-6 GHz WLAN blockers for IR-UWB in 65nm CMOS. ICICDT 2013: 171-174 - [c21]Marcello De Matteis, Stefano D'Amico, Giuseppe Cocciolo, Marco De Blasi, Andrea Baschirotto:
A 54dB-DR 1-GHz-bandwidth continuous-time low-pass filter with in-band noise reduction. ISCAS 2013: 1280-1283 - [c20]Marco De Blasi, Mino Pierri, Stefano D'Amico, Marcello De Matteis, Andrea Baschirotto, A. Bau, A. Passerini, M. Gervasi, Mario Zannoni:
A monolithic CMOS automatic biasing system for 40GHz multistage HEMT. ISCAS 2013: 1708-1711 - [c19]Alessandro Pezzotta, Andrea Costantini, Marco De Blasi, Marcello De Matteis, Giuseppe Gorini, Fabrizio Murtas, Andrea Baschirotto:
A CMOS 0.13μm read-out front-end for Triple-Gas-Electron-Multiplier detectors. IWASI 2013: 65-70 - 2012
- [j4]Stefano D'Amico, Marco De Blasi, Marcello De Matteis, Andrea Baschirotto:
A 255 MHz Programmable Gain Amplifier and Low-Pass Filter for Ultra Low Power Impulse-Radio UWB Receivers. IEEE Trans. Circuits Syst. I Regul. Pap. 59-I(2): 337-345 (2012) - [c18]Andrea Costantini, Alessandro Pezzotta, Andrea Baschirotto, Marcello De Matteis, Stefano D'Amico, Fabrizio Murtas, Giuseppe Gorini:
A CMOS 0.13µm low power front-end for GEM detectors. ICECS 2012: 193-196 - [c17]Marcello De Matteis, Stefano D'Amico, Andrea Costantini, Alessandro Pezzotta, Andrea Baschirotto:
A 1.25mW 3rd-order Active-Gm-RC 250MHz-bandwidth analog filter based on power-stability optimization. ICECS 2012: 260-263 - [c16]Marcello De Matteis, Giuseppe Cocciolo, Stefano D'Amico, Andrea Baschirotto, M. Sabatini:
A 115µW UWB Programmable Gain Amplifier for intelligent tire personal area network. ISCAS 2012: 1500-1503 - 2011
- [j3]Stefano D'Amico, Giuseppe Cocciolo, Marcello De Matteis, Andrea Baschirotto:
A 6.9 mA 5 bits 90 nm 1 GS/s ADC without calibration for UWB application. Microelectron. J. 42(2): 325-329 (2011) - [c15]X. Wang, Kathleen Philips, C. Zhou, Ben Busze, Hans W. Pflug, Alex Young, Jac Romme, Pieter Harpe, Sumit Bagga, Stefano D'Amico, Marcello De Matteis, Andrea Baschirotto, Harmke de Groot:
A high-band IR-UWB chipset for real-time duty-cycled communication and localization systems. A-SSCC 2011: 381-384 - [c14]Stefano D'Amico, Giuseppe Cocciolo, Marcello De Matteis, Andrea Baschirotto:
A 7.65mW 5bits 90nm 1Gs/s ADC folded-interpolated without calibration. ESSCIRC 2011: 151-154 - [c13]Marcello De Matteis, Giuseppe Cocciolo, Marco De Blasi, Andrea Baschirotto:
A 1.3mW CMOS 65nm 4th order 52dB-DR continuous-time analog filter for DVB-T receivers. ICECS 2011: 21-24 - [c12]Marcello De Matteis, Marco De Blasi, Giuseppe Cocciolo, Andrea Baschirotto, M. Sabatini:
A 1V 115μW 20nV/√Hz 15-50dB-range PGA with 5MHz bandwidth for UWB personal area network. ICECS 2011: 77-80 - [c11]Marcello De Matteis, Alessandro Pezzotta, Andrea Baschirotto:
4th-Order 84dB-DR CMOS-90nm low-pass filter for WLAN receivers. ISCAS 2011: 1644-1647
2000 – 2009
- 2009
- [j2]Marcello De Matteis, Stefano D'Amico, Andrea Baschirotto:
A 0.55 V 60 dB-DR Fourth-Order Analog Baseband Filter. IEEE J. Solid State Circuits 44(9): 2525-2534 (2009) - [c10]Marcello De Matteis, Tommaso Vergine, Giuseppe Cocciolo, Andrea Baschirotto, Matteo Conta:
A programmable active-RC complex filter for wireless communications. ICECS 2009: 187-190 - [c9]Marcello De Matteis, Stefano D'Amico, Piero Andriulo, Giuseppe Cocciolo, Andrea Baschirotto:
A 4th order CMOS 65nm wideband low power analog filter for wireless receivers. ICECS 2009: 191-194 - [c8]Stefano D'Amico, Marcello De Matteis, Franco Grancagnolo, Marco Panareo, Roberto Perrino, Gabriele Chiodini, Alessandro Corvaglia, Giuseppe Cocciolo, Andrea Baschirotto:
A low power 0.13µm ADC for drift chambers. ICECS 2009: 407-410 - [c7]Stefano D'Amico, Marcello De Matteis, Franco Grancagnolo, Marco Panareo, Roberto Perrino, Gabriele Chiodini, Alessandro Corvaglia, Giuseppe Cocciolo, Andrea Baschirotto:
A 0.13µm CMOS VGA for drift chambers. ICECS 2009: 936-939 - 2008
- [j1]Stefano D'Amico, Andrea Baschirotto, Marcello De Matteis, Nicola Ghittori, Andrea Vigna, Piero Malcovati:
A CMOS 5 nV/√Hz 74-dB-Gain-Range 82-dB-DR Multistandard Baseband Chain for Bluetooth, UMTS, and WLAN. IEEE J. Solid State Circuits 43(7): 1534-1541 (2008) - [c6]Marcello De Matteis, Stefano D'Amico, Andrea Baschirotto:
Advanced Analog Filters for Telecommunications. DATE 2008: 1316-1321 - [c5]Pasquale Delizia, Marcello De Matteis, Stefano D'Amico, Andrea Baschirotto, Carlos Azeredo Leme, Ricardo Reis:
Design procedure for DVB-T receivers large tuning range LP filter. ISCAS 2008: 2913-2916 - [c4]Stefano D'Amico, Marcello De Matteis, Andrea Baschirotto:
A 6th-Order 100μA 280MHz Source-Follower-Based Single-loop Continuous-Time Filter. ISSCC 2008: 72-73 - 2007
- [c3]Stefano D'Amico, Marcello De Matteis, Andrea Baschirotto, Nicola Ghittori, Andrea Vigna, Piero Malcovati:
A 5nV/√Hz-IRN, 78dB-gain-range, 78dB-DR multi-standard baseband chain for Bluetooth, UMTS and WLAN. ESSCIRC 2007: 440-443 - [c2]Marcello De Matteis, Stefano D'Amico, Vito Giannini, Andrea Baschirotto:
A 550mV 8dBm IIP3 4pth order analog base band filter for WLAN receivers. ESSCIRC 2007: 504-507 - [c1]Marcello De Matteis, Stefano D'Amico, Andrea Baschirotto:
A 600mV 3.6mW 68dB DR 4th Order Analog Base Band Filter for WLAN Receivers. ISCAS 2007: 3542-3545
Coauthor Index
aka: Elia Arturo Vallicelli
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-10-07 22:09 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint