| 2025 | ISCAS | A 28GHz 2-by-2 MIMO Transceiver Employing Transformer Gain Equalization Technique. | Hang Zhao, Michael M. Green |
| 2020 | ISCAS | A 28-GHz Massive MIMO Receiver Deploying One-Bit Direct Detection with Wireless Synchronization. | Hang Zhao, Michael M. Green |
| 2019 | ISCAS | A Radiation Hard Sense Circuit for Spin Transfer Torque Random Access Memory. | Saba Mohammadi, Masoomeh Jasemi, Seyed Mohammadjavad Seyed Talebi, Nader Bagherzadeh, Michael M. Green |
| 2017 | ISCAS | Asychnronous sampling based hybrid equalizer. | Namik Kocaman, Michael M. Green |
| 2015 | ISCAS | Noise analysis for time-domain circuits. | Mehrdad A. Ghanad, Catherine Dehollain, Michael M. Green |
| 2015 | ISCAS | A 2 50-Gb/s receiver with adaptive channel loss equalization and far-end crosstalk cancellation. | Jerry Han, Michael M. Green |
| 2010 | ISCAS | Use of a continuation method for analyzing startup circuits. | Wen Hou, Michael M. Green |
| 2008 | ISCAS | Design methodology for CMOS distributed amplifiers. | Michael M. Green, Marcelo B. Pisani, Catherine Dehollain |
| 2008 | ISCAS | The effect of noise propagation on phase noise in ring oscillators. | Sohrab Samadian, Michael M. Green |
| 2007 | ISCAS | All-CMOS High-Speed CML Gates with Active Shunt-Peaking. | Nader Kalantari, Michael M. Green |
| 2006 | ISCAS | Phase noise in dual inverter-based CMOS ring oscillators. | Sohrab Samadian, Michael M. Green |
| 2004 | ISCAS | A CMOS 10 Gb/s clock and data recovery circuit with a novel adjustable K | Xinyu Chen, Michael M. Green |
| 2003 | ISCAS | Design of CMOS CML circuits for high-speed broadband communications. | Michael M. Green, Ullas Singh |
| 2003 | ISCAS | A BiCMOS 10Gb/s adaptive cable equalizer. | Guangyu Zhang, Pruthvi (Peter) Chaudhari, Michael M. Green |
| 2001 | ISCAS | A family of CMOS latches with 3 stable operating points. | Xiaoqiang Shou, Michael M. Green |
| 2001 | ISCAS | A programmable VHF CMOS read-channel continuous-time filter with on-chip tuning. | Xiaoqiang Shou, Michael M. Green |
| 2001 | ISCAS | A methodology for constructing two-transistor multistable circuits. | Xiaoqiang Shou, Leonid B. Goldgeisser, Michael M. Green |
| 2000 | ISCAS | Using continuation methods to improve convergence of circuits with high impedance nodes. | Leonid B. Goldgeisser, Michael M. Green |
| 2000 | ISCAS | A 1.5 V CMOS VGA based on pseudo-differential structures. | Michael M. Green, Sridevi R. Joshi |
| 1999 | ISCAS | Some two-transistor circuits possess more than three operating points. | Leonid B. Goldgeisser, Michael M. Green |
| 1999 | ISCAS | Some standard SPICE dc algorithms revisited: why does SPICE still not converge? | Ecevit Yilmaz, Michael M. Green |
| 1995 | ISCAS | A Method for Identifying Combinations of Transistors that can be Replaced with a Single Transistor when Applying the Nielsen-Willson Theorem. | Michael M. Green |
| 1995 | ISCAS | Sufficient Conditions for Finding Multiple Operating Points for CD Circuits Using Continuation Methods. | Michael M. Green, Robert C. Melville |
| 1995 | ISCAS | A Loser-Take-All Error Amplifier for DC Power Supply Control. | Paul D. Walker, Michael M. Green |
| 1994 | ISCAS | A Current-Mode FDNR Circuit Element using Capacitive Gyrators. | Vladimir I. Prodanov, Michael M. Green |
| 1994 | ISCAS | A Novel Transconductance Block Eliminates the Need for Common-Mode Feedback in Fully Differential Circuits. | Paul D. Walker, Michael M. Green |
| 1993 | ISCAS | On the relationship between negatve differential resistance and stability for nonlinear one-ports. | Michael M. Green, Alan N. Willson Jr. |
| 1993 | ISCAS | A Monolithic Pulse-shaping Filter for Measurement of Radiation Particles. | Paul D. Walker, Michael M. Green |