Design of high-speed two-stage cascode-compensated operational amplifiers based on settling time and open-loop parameters H Aminzadeh, M Danaie, R Lotfi Integration 41 (2), 183-192, 2008 | 28 | 2008 |
MOSFET-only pipelined analogue-to-digital converters: non-linearity compensation by digital calibration H Aminzadeh International Journal of Electronics 101 (2), 158-173, 2014 | 22 | 2014 |
Three‐stage nested‐Miller‐compensated operational amplifiers: analysis, design, and optimization based on settling time H Aminzadeh International Journal of Circuit Theory and Applications 39 (6), 573-587, 2011 | 22 | 2011 |
Dual loop cascode‐Miller compensation with damping factor control unit for three‐stage amplifiers driving ultralarge load capacitors H Aminzadeh, MA Dashti International Journal of Circuit Theory and Applications 47 (1), 1-18, 2019 | 21 | 2019 |
Self‐biased nano‐power four‐transistor current and voltage reference with a single resistor H Aminzadeh Electronics Letters 56 (6), 282-284, 2020 | 20 | 2020 |
Hybrid cascode feedforward compensation for nano-scale low-power ultra-area-efficient three-stage amplifiers H Aminzadeh, M Danaie, WA Serdijn Microelectronics Journal 44 (12), 1201-1207, 2013 | 20 | 2013 |
On the power efficiency of cascode compensation over Miller compensation in two-stage operational amplifiers H Aminzadeh, K Mafinezhad Proceedings of the 2008 international symposium on Low Power Electronics …, 2008 | 20 | 2008 |
0.7-V supply, 21-nW All–MOS voltage reference using a MOS-Only current-driven reference core in digital CMOS H Aminzadeh, MM Valinezhad Microelectronics Journal 102, 104841, 2020 | 18 | 2020 |
All–MOS self-powered subthreshold voltage reference with enhanced line regulation H Aminzadeh AEU-International Journal of Electronics and Communications 122, 153245, 2020 | 18 | 2020 |
Hybrid cascode compensation with current amplifiers for nano-scale three-stage amplifiers driving heavy capacitive loads H Aminzadeh, A Dashti Analog Integrated Circuits and Signal Processing 83, 331-341, 2015 | 18 | 2015 |
On the linearization of MOSFET capacitors M Danaie, H Aminzadeh, S Naseh 2007 IEEE International Symposium on Circuits and Systems (ISCAS), 1943-1946, 2007 | 18 | 2007 |
Systematic circuit design and analysis using generalised gm/ID functions of MOS devices H Aminzadeh IET Circuits, Devices & Systems 14 (4), 432-443, 2020 | 17 | 2020 |
A low-voltage high-speed high-linearity MOSFET-only analog bootstrapped switch for sample-and-hold circuits P Pouya, A Ghasemi, H Aminzadeh 2015 2nd International Conference on Knowledge-based engineering and …, 2015 | 16 | 2015 |
Low-dropout voltage source: an alternative approach for low-dropout voltage regulators H Aminzadeh, MR Nabavi, WA Serdijn IEEE Transactions on Circuits and Systems II: Express Briefs 61 (6), 413-417, 2014 | 15 | 2014 |
Low-dropout regulators: Hybrid-cascode compensation to improve stability in nano-scale CMOS technologies H Aminzadeh, W Serdijn 2011 IEEE International Symposium of Circuits and Systems (ISCAS), 2293-2296, 2011 | 15 | 2011 |
Low-dropout voltage reference: an approach to low-temperature-sensitivity architectures with high drive capability H Aminzadeh, R Lotfi, K Mafinezhad Electronics letters 45 (24), 1200-1201, 2009 | 15 | 2009 |
Design of low-power single-stage operational amplifiers based on an optimized settling model H Aminzadeh, R Lotfi, K Mafinezhad Analog Integrated Circuits and Signal Processing 58, 153-160, 2009 | 15 | 2009 |
Miller compensation: optimal design for operational amplifiers with a required settling time H Aminzadeh, M Banihashemi Circuits, Systems, and Signal Processing 33 (9), 2675-2694, 2014 | 14 | 2014 |
Design of two-stage miller-compensated amplifiers based on an optimized settling model H Aminzadeh, M Danaie, R Lotfi 20th International Conference on VLSI Design held jointly with 6th …, 2007 | 14 | 2007 |
A nano-power sub-bandgap voltage and current reference topology with no amplifier H Aminzadeh, MM Valinezhad AEU-International Journal of Electronics and Communications 148, 154174, 2022 | 13 | 2022 |