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Related lectures (32)
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Nanoscale Design for Efficient Power Devices
Explores nanoscale design for efficient power devices, focusing on new technologies for power devices, thermal management, and faster electronics.
Beyond CMOS Devices: Limits and Concepts
Delves into the fundamental limits of power dissipation in computing and explores emerging concepts using 2D materials.
Variable Voltage and Frequency Power Supply
Covers the operation of power electronic devices for generating variable three-phase voltage systems.
Excitonic Devices: Modeling and Applications
Covers excitonic device modeling and exciton control using 2D materials.
CCD Cameras: Charge Transfer and Physics
Discusses the principles and evolution of charge-coupled devices, including their historical context and technical specifications.
Building Tomorrow’s Electronics: From Atoms to Devices
Delves into the evolution of transistors, the impact of quantum effects on nano-devices, and the functionality of memristors.
Contacts: Semiconductor Devices II
Explores semiconductor devices historical development, contact resistance, FET characteristics, quantum limit, 2D materials contacts, and charge-injection mechanisms.
High-Speed Photodetectors: Bandwidth and Design Considerations
Covers the design and bandwidth limitations of high-speed photodiodes, including optimization strategies and the role of traveling wave photodiodes.
Contact Resistance in Semiconductor Devices
Explores contact resistance in semiconductor devices and methods to measure and extract it.
MOSFET Operation: Understanding NMOS Behavior
Explains the operation of NMOS structures and their behavior in various regimes, including sub-threshold, linear, and saturation.
MOSFET Structure and Operation: Qualitative Analysis
Describes the qualitative behavior of MOSFET transistors, focusing on their structure and operational principles.
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.
Diode Equations
Covers diode equations in semiconductor devices, including dark IV curve and photocurrent.
Formation of PN Junction
Explains the formation of a PN junction in semiconductor devices and its characteristics, including current-voltage behavior and temperature effects.
Diode Schottky: Electrical Characteristics and Modeling
Covers the Schottky diode's structure, electrical characteristics, and modeling under various biasing conditions.
Bipolar Junction Transistors: Small Signal Model and Applications
Provides an overview of bipolar junction transistors, focusing on their small signal model and applications in electronic circuits.
Intelligent Solids: Talking Structures and Smart Nano-Robots
Explores elastic structures with intelligent responses, showcasing examples like recognizing spoken commands and solving mazes.
Photodiodes: Design and Optimization of Heterojunctions
Covers the design and optimization of photodiodes, focusing on enhancing performance through material selection and the importance of the depletion region.
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.
Darlington Transistor: Small Signal Analysis
Covers the analysis of a Darlington transistor circuit, focusing on small signal parameters.
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