The latest low-dropout regulator analog IC design techniques This fully updated guide shows you how to design, analyze, and build linear low-dropout (LDO) regulator ICs in bipolar, CMOS, and biCMOS semiconductor process technologies. Using the example of a real-world design cycle in the analog IC industry, this authoritative resource explains the art of analog IC design from a physical and electrical perspective, rather than a theoretical one. You'll learn how to create analog ICs for today's portable, battery-powered devices. The book features step-by-step coverage of system considerations, microelectronic devices, negative feedback, AC design, IC design, and system-on-chip (SoC), system-in-package (SiP), and system-on-package (SoP) IC design. Analog IC Design with Low-dropout Regulators, Second Edition includes: New chapter: Bias Currents A complete rewriting of the chapter: Negative Feedback Practice problems added to exemplify how the concepts described and developed apply to realistic designs A new appendix on the time-domain response of a single-pole system
Gabriel Alfonso Rincon-Mora was a Senior Integrated Circuit (IC) Design Team Leader for Texas Instruments from 1994 - 2003. He was appointed an Adjunct Professor at the Georgia Institute of Technology in 1999, and became a full-time faculty member in 2001. Since 2011, Dr. Rincon-Mora has also been a visiting professor at National Cheng Kung University in Taiwan. He has published 140 papers in scientific publications, written eight books, and has more than 26 commercial power chip designs. Dr. Rincon-Mora is an IEEE Fellow "for contributions to energy and power integrated circuit design" and an Institution of Engineering and Technology (IET) Fellow. His research is on the design and development of silicon-based integrated circuits (ICs) that draw and condition power from tiny batteries, fuel cells, and energy-harnessing generators to supply mobile, portable, and self-sustaining devices like wireless microsensors for biomedical, consumer, industrial, and military applications.
Ch. 1: System Considerations Ch. 2: Microelectronic Devices Ch. 3: Single-transistor Circuits Ch. 4: Analog Building Blocks Ch. 5: Bias Currents (NEW) Ch. 6: Negative Feedback (NEW) Ch. 7: AC Design of Linear Regulators Ch. 8: IC Design of Linear Regulators Ch. 9: System Design of Linear Regulators Ch. 10: IC Protection and Characterization Appendix A: Time-domain response of a single-pole system (NEW) Index
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