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Nanoelectronics (ENL 520) Course Plan

This course plan offered by the Centre for VLSI and Nanotechnology at Visvesvaraya National Institute of Technology, Nagpur covers the basics of Nanotechnology and Nanoelectronics. Topics include quantum mechanics, nanoscale devices, carbon nanotubes, and 2D semiconductors. Practical sessions are included.

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Nanoelectronics (ENL 520) Course Plan

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  1. Centre for VLSI and Nanotechnology, Visvesvaraya National Institute of Technology, Nagpur Nanoelectronics (ENL 520) Course Plan

  2. NANOELECTRONICS…ENL520 Course Plan Offered In:M.Tech. (VLSI Design) – II Semester Scheme and Credit:3-0-2; 4 Credit Type of Course:Core Weightage: Theory - 75% + Practical – 25% Course Assessment: Sessional I (15%); Sessional II (15%); Internal Assessment (10%); End Semester Exam (60%) NDG

  3. NANOELECTRONICS…ENL520 Course Plan • Course Objectives: • To learn the basics of Nanotechnology and Nanoelectronics. • To understand working of Nano-scale devices, including Nano scale transistors. • To learn the modelling aspects Nanoscale devices from perspective of circuit modelling. • Course Outcome: • Understands the working of nano scale devices and circuits. • Building molecular level device and circuits. • Design of different materials including carbon based nanoelectronics devices. NDG

  4. NANOELECTRONICS…ENL520 Course Plan • Syllabus: • Basics of Quantum Mechanics: Schrodinger Equation; Density of States • Particles in a box concepts, Degeneracy • Band Theory of Solids, Kronig-Penny Model, Brillouin Zone. • Shrink down approaches: Introduction, CMOS Scaling, the nanoscale MOSFET, FINFETs, Vertical MOSFETs, limits to scaling, system integration limits (interconnect issues etc.) • Resonant Tunneling Diodes, Single electron transistors • Carbon Nanotube Electronics, Bandstructure and transport, devices and applications • 2D semiconductors devices, graphene, transition metal dichalcogenides, atomistic simulations. • Lab: • Practical's based on the theory. NDG

  5. NANOELECTRONICS…ENL520 Course Plan • Text Books: • G.W. Hanson, “Fundamentals of Nanoelectronics”, Pearson, 2009 • W. Ranier, “Nanoelectronics and Information Technology (Advanced Electronics Materials and Novel Devices)”, Wiley-VCH, 2003 • Reference Books: • K.E. Drexler, “Nanosystems”, Wiley, 1992. • J.H. Davies, “The Physics of Low Dimensional Semiconductors”, Cambridge University Press, 1998. • C.P. Poole and F.J. Owens, “Introduction to Nanotechnology”, Wiley, 2003. NDG

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