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Lecture
Diode Schottky: Electrical Characteristics and Modeling
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Understanding Ohmic Contacts: Schottky and Avalanche Effects
Covers the principles of ohmic contacts and their significance in semiconductor devices.
Semiconductor Junctions: Electric Fields and Currents
Covers semiconductor junctions, focusing on electric fields, current flow, and diode characteristics.
PN Junctions: Equilibrium and Band Diagrams
Covers the behavior of p-n junctions at equilibrium, including voltage effects on Fermi energy and depletion regions.
Diode Characteristics: Ideal p-n Junction Analysis
Explains the analysis of ideal p-n junction diodes, focusing on current calculations and minority carrier behavior under different bias conditions.
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.
Real PN Diodes: Generation and Recombination Currents
Covers the behavior of real PN diodes, focusing on generation and recombination currents and their implications in various operational conditions.
Semiconductor Components: Band Diagram Interpretation
Covers the interpretation of band diagrams in semiconductor components, focusing on pn junction diodes and their behavior under applied voltage.
Diodes and Transistors: Electrical Characteristics and Applications
Discusses the principles of diodes and transistors, focusing on their electrical characteristics and applications in electronics and solar energy.
PN Junctions and Heterostructures: Principles and Applications
Discusses the principles of pn junctions and heterostructures in semiconductor physics, focusing on their electrical characteristics and practical applications.
Diode Equations
Covers diode equations in semiconductor devices, including dark IV curve and photocurrent.