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Lecture
EKV MOS Transistor Model
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Modeling of MOS Transistor for Low-power Design
Revisits the modeling of the MOS transistor for low-voltage and low-power analog circuit design, focusing on the EKV charge-based model.
EKV Charge-based Model: Transistor Design
Explores the EKV charge-based model for low-voltage and low-power circuit design, emphasizing transistor characteristics and noise models.
MOSFET Basics: NMOS and PMOS Characteristics
Provides an overview of MOSFET operation, focusing on NMOS and PMOS characteristics, including current equations and channel modulation effects.
Analog IC Design: MOSFET Operations, Modeling, and Tradeoffs
Explores MOSFET operations, modeling, and tradeoffs in analog IC design, emphasizing biasing, mode of operation, and small-signal parameters.
Transistor Figures of Merit
Explores the transistor figures of merit, covering MOSFET models, velocity saturation effects, and current efficiency.
Basic Electronics: PN Junction and BJT
Introduces the PN junction, BJT operation modes, and MOS transistor basics.
Analog CMOS Integrated Circuits: Fundamentals
Covers the fundamentals of analog CMOS integrated circuits, emphasizing transistor-level design principles and the historical impact of CMOS technology.
MOS Transistor Operation: Triode vs Saturation
Explains MOS transistor operation in triode and saturation regions, focusing on transconductance and layout.
Low-Power Analog IC Design: Inversion Coefficient
Explores the concept of inversion coefficient in low-power analog IC design, emphasizing trade-offs for minimal power consumption.
Thermal and Shot Noise: Analysis in Diodes and Transistors
Covers the origins and calculations of thermal and shot noise in diodes and transistors, emphasizing their implications in electronic components.