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Lecture
EKV Charge-based Model: Transistor Design
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EKV MOS Transistor Model
Covers the EKV MOS Transistor Model, focusing on the charge-based model and its applications.
Noise in Electronic Devices
Explores thermal noise in MOS Transistors, input noise of bipolar transistors, and noise in amplifier stages, mirrors, differential pairs, and opamps.
Noise in the MOS Transistor at RF
Explores noise effects in MOS transistors at RF, addressing thermal noise models and velocity saturation impacts.
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.
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.
Static Logic Fundamentals
Covers the fundamentals of static logic, including noise immunity, noise margins, and various logic gate designs.
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.
MOSFET Operation: Understanding NMOS Behavior
Explains the operation of NMOS structures and their behavior in various regimes, including sub-threshold, linear, and saturation.
Low-power Design Optimization
Explores low-power design optimization in MOSFET transistors, focusing on inversion coefficients and transconductance efficiency for maximum performance.
MOS Transistor Operation: Triode vs Saturation
Explains MOS transistor operation in triode and saturation regions, focusing on transconductance and layout.