Ramsden Tour

128 Oakland Ave, London, Ontario, Canada, N5W 4H6

Fanshawe College students have the opportunity to attend a guided tour of one of London’s most prestigious manufacturing facilities. Ramsden is known for their leadership in the metal fabrication and precision manufacturing industry. Any Fanshawe College student may register and attend this tour. Please note that students are responsible for arranging their own transportation to and from the Ramsden facility, located at 128 Oakland Ave, London, ON N5W 4<a href="http://H6.Personal" target="_blank" title="H6.Personal">H6.Personal protective equipment (PPE) will be provided by Ramsden. However, students who prefer to bring their own may do so; steel-toe footwear is recommended but not <a href="http://required.IF" target="_blank" title="required.IF">required.IF YOU REGISTER FOR THIS EVENT AND CAN NO LONGER ATTEND, PLEASE UNREGISTER SO OTHER STUDENTS HAVE THE OPPORTUNITY TO <a href="http://PARTICIPATE.Co-sponsored" target="_blank" title="PARTICIPATE.Co-sponsored">PARTICIPATE.Co-sponsored by: Ramsden Industries <a href="http://Ltd.128" target="_blank" title="Ltd.128">Ltd.128 Oakland Ave, London, Ontario, Canada, N5W 4H6

ADC Enhancement Techniques in Advanced CMOS Technologies

Room: 303, Bldg: Galbraith Building, 35 St George Street, Toronto, Ontario, Canada, M5S1A4

Associate Professor, Eindhoven University of TechnologyE: P.J.A.Harpe@<a href="http://tue.nlPieter" target="_blank" title="tue.nlPieter">tue.nlPieter Harpe (SM'15) received the MSc and PhD degrees from the Eindhoven University of Technology, The Netherlands, in 2004 and 2010, respectively. In 2008, he started as researcher at Holst Centre / imec, The Netherlands, where he worked on ultra low-power wireless transceivers, with a focus on ADC research and design. In April 2011, he joined Eindhoven University of Technology where he is currently an Associate Professor and lead of the Resource Efficient Electronics Lab. His main activities are on low-power analog and mixed-signal circuits, for instance for biomedical applications, internet of things, and edge AI. Dr. Harpe is TPC member for ISSCC and A-SSCC, Associate Editor for TCAS-I, SSCS AdCom Member-at-Large and SSCS Distinguished Lecturer. He previously served as TPC member for ISSCC, TPC member and track chair for ESSCIRC/ESSERC and co-organizer for AACD, was an IEEE SSCS Distinguished Lecturer in 2016/2017, and is recipient of the ISSCC 2015 Distinguished Technical Paper <a href="http://Award.Abstract:The" target="_blank" title="Award.Abstract:The">Award.Abstract:The aim of this presentation is to introduce the basics and various practical illustrations of advanced ADC enhancement techniques in a nutshell. With applications pushing for higher resolutions & data-rates, and technology-scaling favoring digital design, the use of digital techniques to enhance ADC performance is inevitable. This talk will first summarize trends and trade-offs regarding the use of these digital-intensive techniques before illustrating some popular and recent examples from literature, including calibration and enhancement techniques as well as digitally-inspired analog circuit design. Besides that, an outlook is given regarding future challenges and opportunities in advanced CMOS <a href="http://technologies.Refreshments" target="_blank" title="technologies.Refreshments">technologies.Refreshments will be provided!Speaker(s): PieterRoom: 303, Bldg: Galbraith Building, 35 St George Street, Toronto, Ontario, Canada, M5S1A4