- Introduction - Course overview
- Motivation - Applications of micro and nano fabrication
- Moore's law - Scaling of ICs
- Overview of the complete process flow
- Cleanroom environment
- Overview of Silicon properties
Online
₹ 549 1,999
Quick facts
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Medium of instructions
English
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Mode of learning
Self study
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Mode of Delivery
Video and Text Based
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Course overview
The procedures used to produce micrometric and smaller structures are known as microfabrication and nanofabrication. These techniques allow for the development of microscopic devices by fabricating electrical and mechanical components utilizing several advanced microfabrication techniques. Introduction to Micro and Nano fabrication Techniques online certification is developed by Essam Berikaa - a professional instructor, which is delivered by Udemy.
Introduction to Micro and Nano fabrication Techniques online course comprises 3 hours of digital lessons that explain the fundamental concepts underlying each IC fabrication technique as well as the advantages and disadvantages of nano and micro-fabrication. Participants in the Introduction to Micro and Nano fabrication Techniques online classes are given control of the cleanroom facility and are offered an explanation of the fundamental concepts underlying each microfabrication and nanofabrication technique, including oxidation, etching, deposition, patterning, doping, lithography, metallization, thermal evaporation, and more.
The highlights
- Certificate of completion
- Self-paced course
- 3 hours of pre-recorded video content
- Learning resources
Program offerings
- Online course
- Learning resources
- 30-day money-back guarantee
- Unlimited access
- Accessible on mobile devices and tv
Course and certificate fees
Fees information
certificate availability
certificate providing authority
What you will learn
After completing the Introduction to Micro and Nano fabrication Techniques certification course, participants will acquire a solid understanding of the principle involved with microfabrication and nanofabrication for fabricating ICs. Participants will explore the functionalities of a cleanroom environment for operations like process integration for ICs as well as will acquire the knowledge of Moore’s law. Participants will gain knowledge of the methods used with concepts like metallization, doping, etching, deposition, oxidation, and thermal evaporation. Additionally, participants will get knowledge on how to operate photonic and micro-electro-mechanical systems.
The syllabus
Introduction
Patterning techniques - Lithography
- Photolithography
- Resolution enhancement techniques (RETs)
- Extreme UV lithography
Oxidation
- Thermal oxide
- Oxide deposition
Doping
- Diffusion
- Ion implantation
Etching
- Wet etching
- Dry etching
Deposition techniques
- Chemical vapor deposition (CVD)
- Atomic layer deposition (ALD)
- Sputtering
- Thermal evaporation
- Pros and Cons of different deposition techniques
- Epitaxial growth
Metallization
- Metallization
- Chemical Mechanical Polishing (CMP)
Process integration
- IC Process Integration
- Simulation of Process flow - TCAD from Synopsis
Instructors
Mr Essam Berikaa
Instructor
Freelancer
B.E /B.Tech, Ph.D