Introduction to Industrial AI
Due to this challenging time, Foxconn iAI Institute is currently offering free “Introduction to Industrial AI” Training. This Course Content will detail the roadmap to Industry 4.0 which is paved with Industrial AI technologies.
Introduction to Industrial AI
Jay Lee has more than 40 years of experience in the production, teaching, and research of intelligent manufacturing and industrial big data. In addition to serving as Vice Chairman of Foxconn Technology Group and Dean of iAI Institute, he is the Founding Director of the NSF I/UCRC Center for Intelligent Maintenance Systems and L.W. Scott Alter Chair Professor at University of Cincinnati. A White House CPS Expert, Dr. Lee's 5C Framework and CPS theory have assisted major enterprises across industry. His 2019 book, Industrial AI: Applications with Sustainable Performance is now available from Springer.
Due to this challenging time, Foxconn iAI Institute is currently offering free "Introduction to Industrial AI" Training. This Course Content will detail the roadmap to Industry 4.0 which is paved with Industrial AI technologies.
In this course you will learn:
• What is Industrial AI and Why Do We Need it?
• Tools and Frameworks of Industrial AI
• Killer Applications of Industrial AI
• How to Establish Industrial AI Technology and Capability
Who should take the course?
• Decision-makers and digital transformation leadership
• Industry professionals and team leaders
• Data scientists and AI enthusiasts
Featured Product

T.J. Davies' Retention Knobs
Our retention knobs are manufactured above international standards or to machine builder specifications. Retention knobs are manufactured utilizing AMS-6274/AISI-8620 alloy steel drawn in the United States. Threads are single-pointed on our lathes while manufacturing all other retention knob features to ensure high concentricity. Our process ensures that our threads are balanced (lead in/lead out at 180 degrees.) Each retention knob is carburized (hardened) to 58-62HRC, and case depth is .020-.030. Core hardness 40HRC. Each retention knob is coated utilizing a hot black oxide coating to military specifications. Our retention knobs are 100% covered in black oxide to prevent rust. All retention knob surfaces (not just mating surfaces) have a precision finish of 32 RMA micro or better: ISO grade 6N. Each retention knob is magnetic particle tested and tested at 2.5 times the pulling force of the drawbar. Certifications are maintained for each step in the manufacturing process for traceability.