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Lecture
Transistor Bipolar Modeling: Small Signal Linear Model
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Related lectures (32)
Transistor Bipolar: Introduction
MOOC: Electronics II
Covers the electrical specifications and characteristics of bipolar transistors in different configurations.
Transistor Bipolar Modeling: Application Examples
MOOC: Electronics II
Explores small signal models of bipolar transistors with application examples and discusses gain in voltage, Early effect, and temperature behavior.
Transistor Bipolaire: Summary and Examples
MOOC: Electronics II
Covers the large signal equivalent diagrams of bipolar transistors in normal and saturation modes.
Analog CMOS Integrated Circuits: Fundamentals
Covers the fundamentals of analog CMOS integrated circuits, emphasizing transistor-level design principles and the historical impact of CMOS technology.
The Transistor: An Invention of First Plan
Explores the invention, structure, and significance of the transistor in electronics.
Transistor Amplifiers: Voltage Amplifiers
MOOC: Electronics II
Covers common transmitter amplifiers and the characteristics of large signals, including saturation and blocking of transistors.
Electronics: Transistors
Explores the basics of transistors, resistors, and their applications in microcontrollers.
Introduction to Small Signal Configurations
MOOC: Electronics II
Covers small signal configurations, transistor modeling, resistors, gain calculations, and assembly selection in electronics.
Integrated Circuits: Evolution and Fabrication
Explores the evolution of integrated circuits, from transistors to CMOS technology, highlighting key historical milestones.
Transistor Bipolar Models
MOOC: Electronics II
Covers the small signal linear model and DC operation of bipolar transistors.
Excitonic Devices: Modeling and Applications
Covers excitonic device modeling and exciton control using 2D materials.
CMOS Technology: Evolution and MOSFET Analysis
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Explores the historical evolution of CMOS technology, MOSFET analysis, and its applications in digital and analog electronics.
Static Logic Fundamentals
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Covers the fundamentals of static logic, including noise immunity, noise margins, and various logic gate designs.
Scaling Trends: Parallel Hardware Evolution
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Explores the evolution of parallel hardware, from Moore's Law to the challenges of the 2000s, and the shift towards scale-out systems in data centers.
Bipolar Junction Transistors: Small Signal Model and Applications
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Provides an overview of bipolar junction transistors, focusing on their small signal model and applications in electronic circuits.
Logic Systems: Karnaugh Maps and TTL Gates
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Explores Karnaugh maps, TTL gates, analog aspects of digital logic, and prime implicants.
Bipolar Transistor Principles: Historical Context and Functionality
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Covers the principles and historical development of bipolar transistors, detailing their operation and significance in electronics.
Transistors: Understanding Behavior and Circuits
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Explores transistors, from basic concepts to circuit applications, including current sources, amplifiers, followers, and switches.
Electronic Circuits and Systems
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Covers the basics of electronics, amplifiers, transistors, and small signal models for transistors.
Transistor Logic Gates: TTL vs CMOS
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Compares BJT and MOSFET in logic systems, focusing on TTL vs CMOS technologies.
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