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This book discusses new possibilities and trends in analog circuit design, including applications in communication, measurement and RF systems. The authors combine the main features for circuit design with actual circuit realizations and demonstrate several performance limitations with example circuits.
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This book discusses new possibilities and trends in analog circuit design, including applications in communication, measurement and RF systems. The authors combine the main features for circuit design with actual circuit realizations and demonstrate several performance limitations with example circuits.
Produktdetails
- Produktdetails
- Verlag: Springer International Publishing
- Erscheinungstermin: 21. Mai 2022
- Englisch
- ISBN-13: 9783030968366
- Artikelnr.: 64083681
- Verlag: Springer International Publishing
- Erscheinungstermin: 21. Mai 2022
- Englisch
- ISBN-13: 9783030968366
- Artikelnr.: 64083681
H. Hakan KUNTMAN received his B.Sc., M.Sc. and Ph.D. degrees from Istanbul Technical University in 1974, 1977 and 1982, respectively. In 1974 he joined the Electronics and Communication Engineering Department of Istanbul Technical University. Since 1993 he is a professor of electronics in the same department (retired, 2016). His research interest includes design of electronic circuits, modeling of electron devices and electronic systems, active filters, design of analog IC topologies. Dr. Kuntman has authored many publications on modelling and simulation of electron devices and electronic circuits for computer-aided design, analog VLSI design and active circuit design. He is the author or the co-author of 129 journal papers published or accepted for publishing in international journals, 179 conference papers presented or accepted for presentation in international conferences, 161 Turkish conference papers presented in national conferences and 10 books related to the above mentioned areas. (h-index 37). He advised and completed the work of 16 Ph.D. students and 44 M.Sc students. Dr. Kuntman is a member of the Chamber of Turkish Electrical Engineers (EMO). From 2001 to 2004 he acted as the Head of the Electronics and Communication Engineering Department, from 2004 to 2010 he was the Dean of Electrical & Electronics Engineering Faculty of Istanbul Technical University, furthermore, Dr. Kuntman is one of the founders of the ELECO conferences and acted as the Conference Chairman several times.
Deniz OZENLI received B.Sc. degree from Istanbul University in Electrical and Electronics Engineering in 2009 and M.Sc. as well as Ph.D. degrees from Istanbul Technical University in 2011 and 2018, respectively. He is now Assistant Professor in Electronics Engineering department of Turkish Air Force Academy. His main research interests are analog filters low voltage current and voltage mode circuits, computer aided analog circuit design, VLSI design as well as image and video processing. During his Ph.D., he carried out different analog filter applications in the basis of MOSFET-only and MOSFET-C building blocks. Dr. Deniz Ozenli worked in Electrical and Electronics Department of Marmara University as research and teaching assistant between 2012 and 2019. He also worked with VLSI research group in Istanbul Technical University-VLSI Labs as laboratory assistant between 2012 and 2015. He was also visitor assistant professor in Electrical and Electronics Engineering department of Marmara University for the VLSI lectures between 2019-2020.
Deniz OZENLI received B.Sc. degree from Istanbul University in Electrical and Electronics Engineering in 2009 and M.Sc. as well as Ph.D. degrees from Istanbul Technical University in 2011 and 2018, respectively. He is now Assistant Professor in Electronics Engineering department of Turkish Air Force Academy. His main research interests are analog filters low voltage current and voltage mode circuits, computer aided analog circuit design, VLSI design as well as image and video processing. During his Ph.D., he carried out different analog filter applications in the basis of MOSFET-only and MOSFET-C building blocks. Dr. Deniz Ozenli worked in Electrical and Electronics Department of Marmara University as research and teaching assistant between 2012 and 2019. He also worked with VLSI research group in Istanbul Technical University-VLSI Labs as laboratory assistant between 2012 and 2015. He was also visitor assistant professor in Electrical and Electronics Engineering department of Marmara University for the VLSI lectures between 2019-2020.
1. Basic Concept: New Possibilities and Trends in Circuit Design for Analog Signal Processing.- 2. Operational Transconductance Amplifiers (OTAs) and Their Applications.- 3. Current Conveyors, Variants and Applications.- 4. The operational transresistance amplifier (OTRA).- 5. FTFN: Four Terminal Floating Nullor.- 6. Current Operational Amplifiers.- 7. Current Feedback Operational Amplifiers, CFOA and Applications.- 8. Active Only Circuits: Realizations of Current-Mode and Voltage-Mode Multifunction Filters without External Passive Elements.- 9. MOS-Only and MOS-C Circuits: Fundamentals of MOS-Only and MOS-C Circuits.- 10. Versatile active elements, structure and applications.- 11. DTMOS-Based Ultra Low-Voltage Low-Power Circuit Design.- 12. High-precision current-mode circuits based on the MOS-translinear principle.
1. Basic Concept: New Possibilities and Trends in Circuit Design for Analog Signal Processing.- 2. Operational Transconductance Amplifiers (OTAs) and Their Applications.- 3. Current Conveyors, Variants and Applications.- 4. The operational transresistance amplifier (OTRA).- 5. FTFN: Four Terminal Floating Nullor.- 6. Current Operational Amplifiers.- 7. Current Feedback Operational Amplifiers, CFOA and Applications.- 8. Active Only Circuits: Realizations of Current-Mode and Voltage-Mode Multifunction Filters without External Passive Elements.- 9. MOS-Only and MOS-C Circuits: Fundamentals of MOS-Only and MOS-C Circuits.- 10. Versatile active elements, structure and applications.- 11. DTMOS-Based Ultra Low-Voltage Low-Power Circuit Design.- 12. High-precision current-mode circuits based on the MOS-translinear principle.
1. Basic Concept: New Possibilities and Trends in Circuit Design for Analog Signal Processing.- 2. Operational Transconductance Amplifiers (OTAs) and Their Applications.- 3. Current Conveyors, Variants and Applications.- 4. The operational transresistance amplifier (OTRA).- 5. FTFN: Four Terminal Floating Nullor.- 6. Current Operational Amplifiers.- 7. Current Feedback Operational Amplifiers, CFOA and Applications.- 8. Active Only Circuits: Realizations of Current-Mode and Voltage-Mode Multifunction Filters without External Passive Elements.- 9. MOS-Only and MOS-C Circuits: Fundamentals of MOS-Only and MOS-C Circuits.- 10. Versatile active elements, structure and applications.- 11. DTMOS-Based Ultra Low-Voltage Low-Power Circuit Design.- 12. High-precision current-mode circuits based on the MOS-translinear principle.
1. Basic Concept: New Possibilities and Trends in Circuit Design for Analog Signal Processing.- 2. Operational Transconductance Amplifiers (OTAs) and Their Applications.- 3. Current Conveyors, Variants and Applications.- 4. The operational transresistance amplifier (OTRA).- 5. FTFN: Four Terminal Floating Nullor.- 6. Current Operational Amplifiers.- 7. Current Feedback Operational Amplifiers, CFOA and Applications.- 8. Active Only Circuits: Realizations of Current-Mode and Voltage-Mode Multifunction Filters without External Passive Elements.- 9. MOS-Only and MOS-C Circuits: Fundamentals of MOS-Only and MOS-C Circuits.- 10. Versatile active elements, structure and applications.- 11. DTMOS-Based Ultra Low-Voltage Low-Power Circuit Design.- 12. High-precision current-mode circuits based on the MOS-translinear principle.