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Contacts: Semiconductor Devices II
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Metal-Semiconductor Junction: Physics Overview
Provides an overview of metal-semiconductor junction physics, including work function, Schottky barrier, Ohmic contacts, and heterojunctions.
Metal-Semiconductor Junctions: Thermodynamic Equilibrium
Discusses metal-semiconductor junctions, their historical context, thermodynamic equilibrium, and the principles governing their operation in semiconductor technology.
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.
Contact Resistance: Strategies and Measurements
Explores contact resistance, quantum resistance, measurement techniques, reduction strategies, and experimental reviews in 2D materials.
Controlling Threshold Voltage in Semiconductor Devices
Covers the control of threshold voltage in semiconductor devices through oxide thickness and substrate doping adjustments.
Low-power Analog IC Design
Covers the design of low-power analog CMOS integrated circuits and the challenges of technology scaling in semiconductor industry.
Density of States in Semiconductor Devices
Explores density of states in semiconductor devices, covering electron gas, energy bands, Fermi-Dirac distribution, and band structures.
Integrated Circuits: Evolution and Fabrication
Explores the evolution of integrated circuits, from transistors to CMOS technology, highlighting key historical milestones.
Organic Electronic Devices: Field-Effect Transistors
Explores organic field-effect transistors, covering their fabrication, working principles, and real device examples.
JFET Amplifier Design: Key Concepts and Applications
Covers the design and application of JFET amplifiers, focusing on biasing, gain characteristics, and practical examples involving photodiodes.