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Related lectures (32)
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CS Stage: Load and Gain Optimization
Explores load and gain optimization in CS stages for amplifier circuits.
CS Stage: Load and Linearization
Explores load impedance, current sources, linearity, and gain optimization in CS stages.
Induction Motor: Torque Calculation
MOOC: Electromechanical conversion II
Covers the power balance in an induction motor and the expression of torque.
Acoustic Systems: Equivalent Electrical Diagrams
Covers the constitutive laws of acoustic systems and impedance effects on tube portions.
Synchronous Machine Exercise 2
Explains the resolution of a synchronous machine exercise, emphasizing data conversion and critical values calculation.
Differential Amplifier Design
Covers the design of a differential amplifier with key parameters like gain and bias current.
Analysis and Resolution Methods
MOOC: Electrical engineering I
Covers the analysis of circuits, real voltage and current sources, and circuit processing.
Current Mirrors: Differential Pair with Active Load
Explores a five-transistor OTA with a differential pair and active load, analyzing gain approximations and common-mode properties.
Source Follower: Large Signal Analysis
Explains the operation of a source follower stage and the importance of impedance matching.
Circuit Adaptation
Explores the concept of circuit adaptation and power absorption analysis.
Electric Circuits: Resistors and Currents
Explains resistors and currents in electric circuits, including series, parallel configurations, and partial currents.
Mechanical Systems: Mechanical Analogies and Mobility Method
Introduces the basics of electricity and oscillating mechanical systems, focusing on converting them into electrical equivalents using analogies and mobility method.
CS Stage: Small-Signal Model and Voltage Gain
Covers the small-signal model and voltage gain in CS stages.
Characteristics of Torque in Induction Motors
Explores the torque characteristics of induction motors and their operational principles.
Introduction to Electricity: Circuits Analysis
Covers the analysis of circuits using Kirchhoff's laws and different methods.
Differential Amplifier Basics
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Explores the basics of differential amplifiers, covering transfer characteristics, voltage gain calculation methods, and small signal behavior.
Step Response of RLC Circuits and Quadrupoles
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Analyzes the step response of RLC circuits and introduces the concept of quadrupoles.
Fundamental Theorems of Circuits and Systems
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Explores fundamental theorems of circuits, superposition, source substitution, and Thévenin and Norton equivalents.
Circuit Analysis: Thevenin and Norton Theorems
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Explores circuit analysis using Thevenin and Norton theorems to simplify complex circuits for analysis.
Analysis of Circuits with Dependent Sources
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Explores the analysis of circuits with dependent sources, node-voltage analysis, Thévenin equivalent circuits, and OPAMP fundamentals.
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