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Autor Tópico: Coursera - Semiconductor Devices Specialization  (Lida 323 vezes)

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Coursera - Semiconductor Devices Specialization
« em: 15 de Outubro de 2022, 12:11 »


Coursera - Semiconductor Devices Specialization
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English + srt | Duration: 69 Lessons (12h 54m) | Size: 1.35 GB
Master the Fundamentals of Semiconductors. Analyze the fundamentals of semiconductors and evaluate the performance of electronic devices

WHAT YOU WILL LEARN
Principles of basic electronic devices including pn junction, metal-semiconductor contact, bipolar junction transistors and field effect transistors
Analyze and evaluate the performance of basic electronic devices
SKILLS YOU WILL GAIN
device analysis
semiconductor analysis
electronic device design
About this Specialization
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The courses in this specialization can also be taken for academic credit as ECEA 5630-5632, part of CU Boulder's Master of Science in Electrical Engineering degree. Enroll here.
This Semiconductor Devices specialization is designed to be a deep dive into the fundamentals of the electronic devices that form the backbone of our current integrated circuits technology. You will gain valuable experience in semiconductor physics, pn junctions, metal-semiconductor contacts, bipolar junction transistors, metal-oxide-semiconductor (MOS) devices, and MOS field effect transistors.
Specialization Learning Outcomes
*Learn fundamental mechanisms of electrical conduction in semiconductors
*Understand operating principles of basic electronic devices including pn junction, metal-semiconductor contact, bipolar junction transistors and field effect transistors
*Analyze and evaluate the performance of basic electronic devices
*Prepare for further analysis of electronic and photonic devices based on semiconductors
Applied Learning Project
While mastering the fundamental physics of semiconductors and their role in modern technology, you will engage in homework problem sets that challenge you to apply operating principles in derivations and calculations. In addition, you will engage in complex analysis and derivation tasks in consultation with peers to synthesize your theoretical knowledge.

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