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Paul M. Furth
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Journal Articles
- 2022
- [j9]Abdelrahman Elkanishy, Paul M. Furth, Derrick T. Rivera, Abdel-Hameed A. Badawy:
Low-overhead Hardware Supervision for Securing an IoT Bluetooth-enabled Device: Monitoring Radio Frequency and Supply Voltage. ACM J. Emerg. Technol. Comput. Syst. 18(1): 6:1-6:28 (2022) - 2019
- [j8]Sri Harsh Pakala, Punith R. Surkanti, Paul M. Furth:
A Spread-Spectrum Mode Enabled Ripple-Based Buck Converter Using a Clockless Frequency Control. IEEE Trans. Circuits Syst. II Express Briefs 66-II(2): 382-386 (2019) - 2015
- [j7]Ivan R. Padilla-Cantoya, Paul M. Furth:
Enhanced Grounded Capacitor Multiplier and Its Floating Implementation for Analog Filters. IEEE Trans. Circuits Syst. II Express Briefs 62-II(10): 962-966 (2015) - 2014
- [j6]Ivan R. Padilla-Cantoya, Paul M. Furth:
High performance voltage follower with very low output resistance for WTA applications. IEICE Electron. Express 11(17): 20140629 (2014) - 2012
- [j5]Ivan R. Padilla-Cantoya, Paul M. Furth, Jesus E. Molinar-Solis, Alejandro Díaz-Sánchez:
Low-voltage differential voltage follower for WTA and fully differential applications. IEICE Electron. Express 9(6): 491-495 (2012) - [j4]Chaitanya Mohan, Paul M. Furth:
A 16-Ώ Audio Amplifier With 93.8-mW Peak Load Power and 1.43-mW Quiescent Power Consumption. IEEE Trans. Circuits Syst. II Express Briefs 59-II(3): 133-137 (2012) - [j3]Punith R. Surkanti, Paul M. Furth:
Converting a Three-Stage Pseudoclass-AB Amplifier to a True-Class-AB Amplifier. IEEE Trans. Circuits Syst. II Express Briefs 59-II(4): 229-233 (2012) - 2010
- [j2]Annajirao Garimella, M. Wasequr Rashid, Paul M. Furth:
Reverse Nested Miller Compensation Using Current Buffers in a Three-Stage LDO. IEEE Trans. Circuits Syst. II Express Briefs 57-II(4): 250-254 (2010) - 1997
- [j1]Paul M. Furth, Andreas G. Andreou:
On fault probabilities and yield models for VLSI neural networks. IEEE J. Solid State Circuits 32(8): 1284-1287 (1997)
Conference and Workshop Papers
- 2019
- [c31]Abdelrahman Elkanishy, Abdel-Hameed A. Badawy, Paul M. Furth, Laura E. Boucheron, Christopher P. Michael:
Machine Learning Bluetooth Profile Operation Verification via Monitoring the Transmission Pattern. ACSSC 2019: 2144-2148 - [c30]Abdelrahman Elkanishy, Derrick T. Rivera, Abdel-Hameed A. Badawy, Paul M. Furth, Z. M. Saifullah, Christopher P. Michael:
An FPGA Decision Tree Classifier to Supervise a Communication SoC. HPEC 2019: 1-6 - [c29]Paul M. Furth, Anurag Veerabathini, Z. M. Saifullah, Derrick T. Rivera, Abdelrahman Elkanishy, Abdel-Hameed A. Badawy, Christopher P. Michael:
Supervisory Circuits for Low-Frequency Monitoring of a Communication SoC. MWSCAS 2019: 17-20 - [c28]Abdelrahman Elkanishy, Abdel-Hameed A. Badawy, Paul M. Furth, Laura E. Boucheron, Christopher P. Michael:
Supervising Communication SoC for Secure Operation Using Machine Learning. MWSCAS 2019: 582-585 - [c27]Anurag Veerabathini, Paul M. Furth:
A Low Output Voltage Ripple Fully-Integrated Switched-Capacitor DC-DC Converter. MWSCAS 2019: 937-940 - [c26]Punith R. Surkanti, Disha Mehrotra, Paul M. Furth:
Multi-Channel LED Driver with Accurate Current Matching for Portable Applications. MWSCAS 2019: 941-944 - [c25]Abdelrahman Elkanishy, Derrick T. Rivera, Paul M. Furth, Abdel-Hameed A. Badawy, Youssef Aly, Christopher P. Michael:
FPGA-Accelerated Decision Tree Classifier for Real-Time Supervision of Bluetooth SoC. ReConFig 2019: 1-5 - 2018
- [c24]Punith R. Surkanti, Annajirao Garimella, Paul M. Furth:
Flipped Voltage Follower Based Low Dropout (LDO) Voltage Regulators: A Tutorial Overview. VLSID 2018: 232-237 - 2017
- [c23]Mahender Manda, Sri Harsh Pakala, Paul M. Furth:
A multi-loop low-dropout FVF voltage regulator with enhanced load regulation. MWSCAS 2017: 9-12 - [c22]Punith R. Surkanti, Annajirao Garimella, Mahender Manda, Paul M. Furth:
On the analysis of low output impedance characteristic of flipped voltage follower (FVF) and FVF LDOs. MWSCAS 2017: 17-20 - [c21]Punith R. Surkanti, Disha Mehrotra, Manaswini Gangineni, Paul M. Furth:
Multi-string LED driver with accurate current matching and dynamic cancellation of forward voltage mismatch. MWSCAS 2017: 229-232 - [c20]Punith R. Surkanti, Manikanta Ponnam, Sri Harsh Pakala, Paul M. Furth, Z. M. Saifullah:
A hybrid voltage-mode hysteretic boost converter with high efficiency across a wide load range. MWSCAS 2017: 711-714 - [c19]Venkat Harish Nammi, Paul M. Furth:
Split-transistor compensation: Analytical model. MWSCAS 2017: 771-774 - [c18]Punith R. Surkanti, Aditya A. Patii, Sri Harsh Pakala, Paul M. Furth:
High bandwidth class-AB amphfier with high slew rate and fast current sensing for envelope tracking applications. MWSCAS 2017: 1220-1223 - [c17]Venkat Harish Nammi, Nitya R. Thota, Paul M. Furth, Wei Tang:
Split-transistor compensation: Application to a low-dropout voltage regulator (LDO). MWSCAS 2017: 1300-1303 - 2015
- [c16]Sri Harsh Pakala, Mahender Manda, Punith R. Surkanti, Annajirao Garimella, Paul M. Furth:
Voltage buffer compensation using Flipped Voltage Follower in a two-stage CMOS op-amp. MWSCAS 2015: 1-4 - [c15]Punith R. Surkanti, Venu Siripurapu, Paul M. Furth:
A high precision and high speed voltage-mode loser/winner-take-all circuit. MWSCAS 2015: 1-4 - 2014
- [c14]Aditya Rayankula, Paul M. Furth:
A CMOS active-pixel image sharpness sensor. MWSCAS 2014: 933-936 - [c13]Kameshwar Kaushik Chavali, Paul M. Furth, Punith R. Surkanti:
A low-voltage, adaptive CMOS centroid image sensor with improved bandwidth. MWSCAS 2014: 937-940 - 2013
- [c12]Paul M. Furth, Srikar Krishnapurapu, Sri Harsh Pakala, Mohammad A. Haque:
A 5.3µA quiescent current fully-integrated low-dropout (LDO) regulator with Transient Recovery Time Enhancement. MWSCAS 2013: 9-12 - [c11]Sriram Venkataraman, Paul M. Furth, Sri Harsh Pakala:
Elimination of false codes in an asynchronous parallel successive approximation A/D converter. MWSCAS 2013: 269-272 - [c10]Punith R. Surkanti, Paul M. Furth:
High-efficiency, high-dimming ratio LED driver. MWSCAS 2013: 360-363 - 2012
- [c9]Paul M. Furth, Sri Harsh Pakala, Annajirao Garimella, Chaitanya Mohan:
A 22dB PSRR enhancement in a two-stage CMOS opamp using tail compensation. CICC 2012: 1-4 - [c8]Harish Valapala, Paul M. Furth:
Analysis and design of fully integrated very low quiescent current LDOs. MWSCAS 2012: 230-233 - [c7]Paul M. Furth, Karthik R. Kothapalli, Punith R. Surkanti:
A high-speed image centroid computation sensor. MWSCAS 2012: 342-345 - [c6]Paul M. Furth, Nitya R. Thota, Venkat Harish Nammi, Annajirao Garimella:
Low dropout (LDO) voltage regulator design using split-length compensation. MWSCAS 2012: 1088-1091 - [c5]Annajirao Garimella, Punith R. Surkanti, Paul M. Furth:
Embedded Tutorial ET1: Pole-Zero Analysis of Low-Dropout (LDO) Regulators: A Tutorial Overview. VLSI Design 2012: 31-32 - [c4]Annajirao Garimella, Punith R. Surkanti, Paul M. Furth:
Pole-Zero Analysis of Low-Dropout (LDO) Regulators: A Tutorial Overview. VLSI Design 2012: 131-136 - 2010
- [c3]Annajirao Garimella, M. Wasequr Rashid, Paul M. Furth:
Single Miller compensation using inverting current buffer for multi-stage amplifiers. ISCAS 2010: 1579-1582 - 2009
- [c2]Annajirao Garimella, Paul M. Furth:
A 1.21V, 100mA, 0.1µF-10µF output capacitor low drop-out voltage regulator for SoC applications. ICECS 2009: 375-378 - 2004
- [c1]Ananth Bashyam, Paul M. Furth, Michael K. Giles:
A high speed centroid computation circuit in analog VLSI. ISCAS (4) 2004: 948-951
Coauthor Index
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