Feras Al-Dirini

dblp:28/10434 · DBLP profile ↗
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3ranked-venue papers
0as first author
3since 2021 · last 2026
0000-0002-7703-2487ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 3 · 3 since 2021
YearPublicationVenuePosition
2026 Probabilistic Sensing: Intelligence in Data Sampling
Ibrahim A. Albulushi, Saleh Bunaiyan, Suraj S. Cheema, Hesham ElSawy, Feras Al-Dirini
ISCAS5
2026 Configurable p-Neurons Using Modular p-Bits
Saleh Bunaiyan, Mohammad Alsharif, Abdelrahman S. Abdelrahman, Hesham ElSawy, Suraj S. Cheema, Suhaib A. Fahmy, Kerem Yunus Çamsari, Feras Al-Dirini
ISCAS8
2026 Design for Slew-Rate in Multi-Stage CMOS OTAs
abstract
Cascading gain stages in CMOS Operational Transconductance Amplifiers (OTAs) has become a necessity in applications with high gain requirements, where the contribution of each stage to the overall gain is well-known and carefully designed. Many of these applications also impose requirements on speed, including a minimum Slew-Rate (SR) to ensure signal fidelity, however the impact of individual gain stages on the overallSRin multi-stage OTAs has been difficult to characterize–let alone carefully design. The difficulty arises due to the complexity of the compensation networks involved in these OTAs. This paper presents a systematic design approach for achieving a targetSRin multi-stage CMOS OTAs, enabled through the utility of a novel analytical model for estimating the lower-bound Slew-Rate in multi-stage OTAs. The model evaluates individual currents and equivalent capacitances at the output node of each stage, providing insights on the dominant node slowing down the overallSR. For generality, the model establishes theSRanalysis based on N-stage designs, and considers widely employed compensation networks. Example designs, with post-layout simulations and measurements of a 3- and a 4-stage CMOS OTA, and with post-layout simulations of a 5-stage CMOS OTA, are presented for validating the model’s utility. The results show strong agreement between theoretical, simulated, and measuredSRvalues, confirming the model’s reliability in estimating the lower-boundSR, and its utility in a systematic design-for-SRapproach in multi-stage CMOS OTAs.
Mahmood A. Mohammed, Feras Al-Dirini, Ahmed S. Emara, Gordon W. Roberts
IEEE Trans. Circuits Syst. I Regul. Pap.2