| 2017 | ISCAS | Temperature compensation of floating-gate transistors in field-programmable analog arrays. | Alex Dilello, Steven Andryzcik, Brandon M. Kelly, Brandon Rumberg, David W. Graham |
| 2017 | ISCAS | A regulated charge pump for injecting floating-gate transistors. | Mir Mohammad Navidi, David W. Graham |
| 2017 | ISCAS | Below-ground injection of floating-gate transistors for programmable analog circuits. | Mir Mohammad Navidi, David W. Graham, Brandon Rumberg |
| 2007 | ISCAS | Run-Time Programming of Analog Circuits Using Floating-Gate Transistors. | David W. Graham, Paul E. Hasler |
| 2005 | ISCAS | Indirect programming of floating-gate transistors. | David W. Graham, Ethan Farquhar, Brian P. Degnan, Christal Gordon, Paul E. Hasler |
| 2005 | ISCAS | A low-power, programmable bandpass filter section for higher-order filter-bank applications. | David W. Graham, Paul D. Smith, Richard Ellis, Ravi Chawla, Paul E. Hasler |
| 2004 | ISCAS | A programmable bandpass array using floating-gate elements. | David W. Graham, Paul D. Smith, Richard Ellis, Ravi Chawla, Paul E. Hasler |
| 2004 | ISCAS | A five-transistor bandpass filter element. | Paul D. Smith, David W. Graham, Ravi Chawla, Paul E. Hasler |
| 2004 | ISCAS | C | Heejong Yoo, David W. Graham, David V. Anderson, Paul E. Hasler |
| 2002 | ISCAS | Capacitively-coupled current conveyer second-order section for continuous-time bandpass filtering and cochlea modeling. | David W. Graham, Paul E. Hasler |
| 2002 | ISCAS | Empirical comparison of analog and digital auditory preprocessing for automatic speech recognition. | T. M. Massengill, Denise M. Wilson, Paul E. Hasler, David W. Graham |