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Search Results
| Name | Grades | Rating | |||
|---|---|---|---|---|---|
EEMF 6321 (Overall) | |||||
A | |||||
EEMF 6321 Sourav Dutta | |||||
A | |||||
Not teaching in Spring 2026 | |||||
EEMF 6321 William Frensley | |||||
A | |||||
Search Results
| Name | Grades | Rating | |||
|---|---|---|---|---|---|
EEMF 6321 (Overall) | |||||
A | |||||
EEMF 6321 Sourav Dutta | |||||
A | |||||
Not teaching in Spring 2026 | |||||
EEMF 6321 William Frensley | |||||
A | |||||
Active Semiconductor Devices
EEMF 6321
Erik Jonsson School of Engineering and Computer Science
The physics of operation of active devices will be examined, including p-n junctions, bipolar junction transistors and field-effect transistors: MOSFETs, JFETS, and MESFETS. Active two-terminal devices and optoelectronic devices will be presented. Recommended corequisite: EEMF 6320 or MSEN 6320. 3 credit hours.
Offering Frequency: Each year
Grades: 274
Median GPA: A
Mean GPA: 3.941
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Active Semiconductor Devices
EEMF 6321
Erik Jonsson School of Engineering and Computer Science
The physics of operation of active devices will be examined, including p-n junctions, bipolar junction transistors and field-effect transistors: MOSFETs, JFETS, and MESFETS. Active two-terminal devices and optoelectronic devices will be presented. Recommended corequisite: EEMF 6320 or MSEN 6320. 3 credit hours.
Offering Frequency: Each year
Grades: 274
Median GPA: A
Mean GPA: 3.941
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