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Lecture
Diodes and Transistors: Principles and Characteristics
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Bipolar Transistors: PNP and NPN Configurations
Covers the principles and optimization of bipolar transistors, focusing on PNP and NPN configurations and their performance characteristics.
Understanding Ohmic Contacts: Schottky and Avalanche Effects
Covers the principles of ohmic contacts and their significance in semiconductor devices.
MOS Junctions: Surface Potential and Band Bending
Covers the operation modes of a MOS junction on an n-type substrate, focusing on surface potential and band bending effects.
Review of BJT and MOS
Provides a detailed review of Bipolar Junction Transistor (BJT) and Metal-Oxide-Semiconductor (MOS) devices.
Transistor Logic Gates: TTL vs CMOS
Compares BJT and MOSFET in logic systems, focusing on TTL vs CMOS technologies.
Diode Schottky and PN Heterojunctions: Band Structure Analysis
Covers the construction of band diagrams for Schottky diodes and PN heterojunctions in semiconductor physics.
MOSFET Operation: Understanding NMOS Behavior
Explains the operation of NMOS structures and their behavior in various regimes, including sub-threshold, linear, and saturation.
Semiconductor Junctions: Electric Fields and Currents
Covers semiconductor junctions, focusing on electric fields, current flow, and diode characteristics.
Transistor Amplifiers: NPN Configuration and Characteristics
Discusses the principles and characteristics of NPN transistors used as voltage amplifiers.
Integrated Circuits: Evolution and Fabrication
Explores the evolution of integrated circuits, from transistors to CMOS technology, highlighting key historical milestones.