ECE 5360
Last Updated
- Schedule of Classes - January 11, 2024 7:32PM EST
- Course Catalog - January 11, 2024 7:07PM EST
Classes
ECE 5360
Course Description
Course information provided by the Courses of Study 2023-2024. Courses of Study 2023-2024 is scheduled to publish mid-June.
The class develops the fundamentals of semiconductor electronic and photonic devices that power to-day's computation, communication, and memory industries. It relates the basics of pn junctions to their applications in solar cells, light emitting diodes, and lasers. Majority and minority carrier transport in heterostructure bipolar transistors is related to gain and speed limits of amplifiers for 5G communications and beyond. Schottky diodes and their applications in power electronics, and in field effect transistors of many flavors ranging from Silicon CMOS and FinFETs to GaN high electron mobility transistors are covered. Tunneling transport, flash memory, and DRAM devices are discussed. The course uses industrially relevant simulation tools, and the laboratory component gives students firsthand experience of measuring and appreciating the power and the limitations of semiconductor devices, and the reason for their revolutionary influence on our lives and society. MEng students and ECE PhD students who enroll in the 5000 level will be required to complete one extra design laboratory project compared to the 4000 level class.
When Offered Fall.
Prerequisites/Corequisites Prerequisite: ECE 3150 or permission of instructor.
Outcomes
- Obtain a well-grounded understanding of semiconductor device operation and advanced ideas in use in microelectronic industry and future generations of electronic circuitry.
- Learn through simulations, the aspects of physical behavior that analytic solutions are incomplete at and their more complete description of operational physics.
- Apply device fundamentals and simulation techniques to design modern nanoscale device structures.
- Develop comprehensive skills straddling electronics, integration, and devices as used in integrated circuits leading to effective communication of results.
Regular Academic Session. Choose one lecture and one laboratory. Combined with: ECE 4570
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Credits and Grading Basis
4 Credits GradeNoAud(Letter grades only (no audit))
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Class Number & Section Details
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Meeting Pattern
- TR Phillips Hall 307
- Aug 21 - Dec 4, 2023
Instructors
Jena, D
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Additional Information
Instruction Mode: In Person
co-meets with ECE 4570
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Class Number & Section Details
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Meeting Pattern
- T Phillips Hall 237
- Aug 21 - Dec 4, 2023
Instructors
Jena, D
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Additional Information
Instruction Mode: In Person
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