Udemy - Electronic Circuits - Part4 - Field Effect Transistors
About Udemy - Electronic Circuits - Part4 - Field Effect Transistors
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Electronic Circuits - Part4: Field Effect Transistors https://WebToolTip.com Published 8/2026 Created by Ali Mavahebi Tabatabai MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch Level: Intermediate | Genre: eLearning | Language: English + subtitle | Duration: 65 Lectures ( 6h 23m ) | Size: 3.6 GB Master JFET, MOSFET and MESFET Circuit Analysis, Design, Multisim Simulations and Practical Experiments What you'll learn ⚡ Understand the physical structure, operation, and characteristics of F
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Electronic Circuits - Part4: Field Effect Transistors
https://WebToolTip.com
Published 8/2026
Created by Ali Mavahebi Tabatabai
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: Intermediate | Genre: eLearning | Language: English + subtitle | Duration: 65 Lectures ( 6h 23m ) | Size: 3.6 GB
Master JFET, MOSFET and MESFET Circuit Analysis, Design, Multisim Simulations and Practical Experiments
What you'll learn
⚡ Understand the physical structure, operation, and characteristics of Field Effect Transistors (FETs).
⚡ Analyze enhancement-type and depletion-type MOSFETs in different operating regions.
⚡ Understand MOSFET I-V characteristics and use them to analyze and design transistor circuits.
⚡ Understand PMOS transistors, threshold voltage, and the body effect.
⚡ Analyze Junction Field Effect Transistors (JFETs) and Metal-Semiconductor Field Effect Transistors (MESFETs).
⚡ Understand MOSFET handling, breakdown mechanisms, and important practical considerations when working with FETs.
⚡ Develop and use large-signal and small-signal models for FET circuit analysis.
⚡ Analyze and design FET biasing circuits for reliable operation.
⚡ Perform DC and AC analysis of MOSFET amplifier circuits.
⚡ Analyze, design, and understand Common Source (CS), Common Drain (CD), and Common Gate (CG) amplifiers.
⚡ Design FET amplifiers for desired voltage gain, input/output resistance, and maximum symmetrical output swing.
⚡ Understand source degeneration and its effect on amplifier performance.
⚡ Analyze and design cascade and cascode amplifiers.
⚡ Understand the operation of basic MOSFET current sources and current mirrors.
⚡ Analyze and design two-transistor, cascode, Widlar, and Wilson current mirrors.
⚡ Read and interpret MOSFET datasheets and identify transistor pins correctly.
⚡ Build and test practical MOSFET circuits, including reverse-voltage protection and temperature-control circuits.
⚡ Measure important amplifier parameters such as voltage gain, input resistance, and output resistance.
⚡ Use Multisim to simulate and analyze practical FET circuits.
⚡ Apply theoretical circuit analysis to practical electronic circuits through simulations and hands-on experiments.
Requirements
❗ You should have a basic understanding of electrical and electronic circuits, including resistors, capacitors, inductors, and diodes.
❗ You should be familiar with basic circuit-analysis techniques such as Ohm's law, Kirchhoff's voltage and current laws (KVL and KCL), Thevenin's theorem, nodal analysis, and mesh analysis.
❗ A basic understanding of DC and AC circuit analysis is recommended.
❗ Basic knowledge of calculus and linear algebra will be helpful for understanding some of the mathematical analysis.
❗ No previous experience with FETs or MOSFETs is required. The course starts with the fundamentals and progressively moves toward advanced analysis and design.
❗ Multisim is recommended for following the simulation sections. You may use another SPICE-based circuit simulator if you prefer.
❗ For the practical experiments, access to basic electronic laboratory equipment such as a multimeter and a power supply is recommended.
❗ IMPORTANT: This is not a beginner course in basic electrical circuits. You should already understand fundamental circuit-analysis concepts before starting.