Skip to main content
Graph
Search
fr
|
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Thermal and Shot Noise: Analysis in Diodes and Transistors
Graph Chatbot
Related lectures (32)
Previous
Page 3 of 4
Next
Coherent Detection: Signal and Local Oscillator Interference
Explores coherent detection in optical systems, highlighting the interference between the signal and local oscillator.
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.
Electronics: Transistors
Explores the basics of transistors, resistors, and their applications in microcontrollers.
Noise in CCD Cameras: Reset and Readout Mechanisms
Covers noise sources in CCD cameras, focusing on reset noise, readout noise, and methods for noise suppression like correlated double sampling.
Understanding Noise in Electrical Systems
Explores noise sources, Fluctuation-Dissipation Theorem, amplifier noise, interference effects, and quantization error in electrical systems.
Differential Amplifiers: Op-Amps and Comparators
Covers the design and function of differential amplifiers, focusing on operational amplifiers and comparators, including their gain characteristics and circuit configurations.
MOSFET Structure and Operation: Qualitative Analysis
Describes the qualitative behavior of MOSFET transistors, focusing on their structure and operational principles.
Small Signal Analysis: High-Speed Photodetectors
Discusses the small signal analysis of high-speed photodetectors, focusing on circuit components, noise analysis, and modeling for receiver systems.
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.
Optical and Electronic Shot Noise: Signal to Noise Analysis
Covers optical and electronic shot noise, focusing on signal-to-noise ratio calculations and the impact of quantum efficiency on detectivity.