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Lecture
Review of BJT and MOS
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Related lectures (32)
Basic Electronics: PN Junction and BJT
Introduces the PN junction, BJT operation modes, and MOS transistor basics.
Controlling Threshold Voltage in Semiconductor Devices
Covers the control of threshold voltage in semiconductor devices through oxide thickness and substrate doping adjustments.
MOS Transistor Operation: Triode vs Saturation
Explains MOS transistor operation in triode and saturation regions, focusing on transconductance and layout.
EKV MOS Transistor Model
Covers the EKV MOS Transistor Model, focusing on the charge-based model and its applications.
MOSFET Operation: Understanding NMOS Behavior
Explains the operation of NMOS structures and their behavior in various regimes, including sub-threshold, linear, and saturation.
MOS Parasitics
Covers the MOS I/V characteristics, including triode and saturation regions, deep triode, and second-order effects.
MOSFET Structure and Operation: Qualitative Analysis
Describes the qualitative behavior of MOSFET transistors, focusing on their structure and operational principles.
MOS Structures: Charge Dynamics and Circuit Design
Covers MOS structures, charge dynamics, and the design of CMOS circuits.
Semiconductor Physics: Transistors and Diodes
Explores semiconductor physics, emphasizing transistors and diodes' behavior and operation.
Diodes and Transistors: Principles and Characteristics
Provides an overview of diodes and transistors, focusing on their principles, characteristics, and operational mechanisms in electronic circuits.
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.
Integrated Circuits: Evolution and Fabrication
Explores the evolution of integrated circuits, from transistors to CMOS technology, highlighting key historical milestones.
Transistor Configurations: Common Base and Common Emitter
Discusses bipolar transistor configurations, focusing on common base and common emitter setups, their current gains, and the impact of Early voltage.
Physics of p-n Junctions
Covers the physics of p-n junctions, including properties at thermal equilibrium, space charge region formation, and optical lithography.
Transistor Logic Gates: TTL vs CMOS
Compares BJT and MOSFET in logic systems, focusing on TTL vs CMOS technologies.
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.
Semiconductor Devices II: Defects Engineering
Covers the analysis of measurements and defects engineering in semiconductor devices, including density of states and defect probing.
Static Logic Fundamentals
Covers the fundamentals of static logic, including noise immunity, noise margins, and various logic gate designs.
MOSFET Analysis: Short-Circuited Gate and Drain
Covers the analysis of MOSFET transistors with short-circuited gate and drain, focusing on their operational characteristics and measurement techniques.
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.
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