Physics for Electronics Engineering detail syllabus for Electronics & Communication Engineering (E&Tc), 2017 regulation is taken from Anna University official website and presented for students of Anna University. The details of the course are: course code (PH8253), Category (BS), Contact Periods/week (3), Teaching hours/week (3), Practical Hours/week (0). The total course credits are given in combined syllabus.
For all other e&tc 2nd sem syllabus for be 2017 regulation anna univ you can visit E&TC 2nd Sem syllabus for BE 2017 regulation Anna Univ Subjects. The detail syllabus for physics for electronics engineering is as follows.”
Course Objective:
- To understand the essential principles of Physics of semiconductor device and Electron transport properties. Become proficient in magnetic, dielectric and optical properties of materials and nano devices.
Unit I
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Unit II
Semiconductor Physics
Intrinsic Semiconductors – Energy band diagram – direct and indirect semiconductors – Carrier concentration in intrinsic semiconductors – extrinsic semiconductors – Carrier concentration in N-type and P-type semiconductors – Carrier transport: Velocity-electric field relations – drift and diffusion transport – Einsteins relation – Hall effect and devices – Zener and avalanche breakdown in p-n junctions – Ohmic contacts – tunnel diode – Schottky diode – MOS capacitor -power transistor.
Unit III
Magnetic and Dielectric Properties of Materials
Magnetism in materials – magnetic field and induction – magnetization – magnetic permeability and susceptibility-types of magnetic materials – microscopic classification of magnetic materials -Ferromagnetism: origin and exchange interaction- saturation magnetization and Curie temperature – Domain Theory. Dielectric materials: Polarization processes – dielectric loss – internal field -Clausius-Mosotti relation- dielectric breakdown – high-k dielectrics.
Unit IV
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Unit V
Nanoelectronic Devices
Introduction – electron density in bulk material – Size dependence of Fermi energy- quantum confinement – quantum structures – Density of states in quantum well, quantum wire and quantum dot structures -Zener-Bloch oscillations – resonant tunneling – quantum interference effects -mesoscopic structures: conductance fluctuations and coherent transport – Coulomb blockade effects – Single electron phenomena and Single electron Transistor – magnetic semiconductors-spintronics – Carbon nanotubes: Properties and applications.
Course Outcome:
At the end of the course, the students will able to
- Gain knowledge on classical and quantum electron theories, and energy band structures,
- Acquire knowledge on basics of semiconductor physics and its applications in various devices,
- Get knowledge on magnetic and dielectric properties of materials,
- Have the necessary understanding on the functioning of optical materials for optoelectronics,
- Understand the basics of quantum structures and their applications in spintronics and carbon electronics..
Text Books:
- Kasap, S.O. Principles of Electronic Materials and Devices, McGraw-Hill Education, 2007.
- Umesh K Mishra and Jasprit Singh, Semiconductor Device Physics and Design, Springer, 2008.
- Wahab, M.A. Solid State Physics: Structure and Properties of Materials. Narosa Publishing House, 2009.
References:
- Garcia, N. and Damask, A. Physics for Computer Science Students. Springer-Verlag, 2012.
- Hanson, G.W. Fundamentals of Nanoelectronics. Pearson Education, 2009
- Rogers, B., Adams, J. and Pennathur, S. Nanotechnology: Understanding Small Systems. CRC Press, 2014
For detail syllabus of all other subjects of BE E&Tc, 2017 regulation do visit E&Tc 2nd Sem syllabus for 2017 Regulation.
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