This course is part of Semiconductor Characterization.
This course cannot be purchased separately - to access the complete learning experience, graded assignments, and earn certificates, you'll need to enroll in the full Semiconductor Characterization Specialization program. You can audit this specific course for free to explore the content, which includes access to course materials and lectures. This allows you to learn at your own pace without any financial commitment.
Instructors:
English
What you'll learn
Extract characteristic parameters of MOS capacitors
Analyze MOSFET electrical characteristics
Determine threshold voltage through current-voltage measurements
Extract oxide charge density from C-V measurements
Analyze real-world RF MOSFET data
Skills you'll gain
This course includes:
1.7 Hours PreRecorded video
4 quizzes, 1 assignment
Access on Mobile, Tablet, Desktop
FullTime access
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There are 5 modules in this course
This comprehensive course focuses on the electrical characterization of MOSFET devices, a fundamental component in semiconductor electronics. Starting with MOS capacitors, students learn to extract oxide charge density and its impact on MOSFET threshold voltage. The curriculum covers MOSFET electrical characteristics, current-voltage measurements, and practical analysis techniques. The course culminates in a hands-on project analyzing real-world data from a 40 nm gate length MOSFET designed for 5G RF integrated circuits.
Course Introduction
Module 1 · 9 Minutes to complete
Extracting Oxide Charge Data From MOS C-V Measurements
Module 2 · 1 Hours to complete
MOSFET Characterization - Part 1
Module 3 · 1 Hours to complete
MOSFET Characterization - Part 2
Module 4 · 44 Minutes to complete
Course Wrap-up and Project
Module 5 · 1 Hours to complete
Fee Structure
Individual course purchase is not available - to enroll in this course with a certificate, you need to purchase the complete Professional Certificate Course. For enrollment and detailed fee structure, visit the following: Semiconductor Characterization
Instructor
Innovator in Electrical Engineering and Additive Manufacturing
Professor Trevor Thornton is an esteemed faculty member in the Ira A. Fulton Schools of Engineering at Arizona State University, where he specializes in electrical engineering with a strong focus on advanced manufacturing technologies. With over 150 published journal and conference papers and seven patents to his name, Thornton has made significant contributions to the field, particularly in the development of silicon-on-insulator MESFETs and power management integrated circuits. He is the founder of RF Micropower, a company dedicated to commercializing efficient RF technologies. His extensive experience includes post-doctoral research at prestigious institutions such as the Cavendish Laboratory and Bell Communications Research, as well as faculty positions at Imperial College London. Currently, he directs the Nanotechnology Collaborative Infrastructure Southwest, fostering innovation in nanotechnology research. Professor Thornton's interdisciplinary approach combines theoretical insights with practical applications, positioning him as a leader in advancing electrical engineering and manufacturing solutions.
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