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Course Criteria
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3.00 Credits
Prerequisite: ECGR 3111 with a grade of C or better. A continuation of ECGR 3111 emphasizing system response characteristics in the frequency domain. Introduction to techniques of analysis of continuous and discrete systems.
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3.00 Credits
Prerequisites: ECGR 2112 with a grade of C or better. A study of electric and magnetic fields using the vector formulation. Vector analysis. Electrostatics: potential functions, dielectrics, capacitance, energy, and forces associated with electric fields, solution of Laplance's and Poisson's equations. Magnetostatics: vector potential functions, Lorentz forces, hysteresis, magnetic polarization and induction, and energy. Gauss's, Ampere's, Faraday's laws, etc., leading to the Maxwell's equati
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3.00 Credits
Prerequisite: ECGR 3121 with a grade of C or better. A study of Maxwell's equations, transmission line theory, plane waves in media, propagation of electromagnetic waves in various media. The phenomena of reflection and refraction at interfaces of two dissimilar materials. Guided electromagnetic waves in coaxial cables and waveguides.
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3.00 Credits
Prerequisites: ECGR 2181, ECGR 2111. An introduction to data communications, including transmission media, signal encoding, link control, and multiplexing. Concepts of networking including protocols, LAN, WAN, and wireless networks
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3.00 Credits
Prerequisite: ECGR 2112 with a grade of C or better. Study of the fundamental concepts and applications of semiconductor devices. Diode characteristics and applications, including clipping and rectifier circuits. MOS, JFET, and bipolar transistor fundamentals, including D.C. biasing and small-signal analysis of single-stage amplifiers. Operational amplifier fundamentals.
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3.00 Credits
Prerequisites: ECGR 3131 with a grade of C or better. Low and high-frequency analysis of transistor amplifiers. Multistage and feedback amplifier design. Stability and oscillation. Operational amplifier design and applications.
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3.00 Credits
Prerequisites: ECGR 3121, PHYS 3141, or permission of the Department. Simple crystal structures, energy bands, and charge carriers in semiconductors, distribution functions for photons and electrons, optical and electrical properties, carrier diffusion, generation, and recombination.
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3.00 Credits
Prerequisite: ECGR 3132 with a grade of C or better. High power solid state circuits. Topics include choppers, phase controlled rectifiers, triggering devices, inverters and dual converters, limiting and regulating circuits.
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3.00 Credits
Prerequisite: ECGR 3121 with a grade of C or better. Principles of operation and basic design features of electromechanical energy converters. The role of the magnetic field in transformers and electrical machines. Generation of induced voltages. Electromagnetic torque development. Speed control. Circuit models and machine performance.
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1.00 Credits
Prerequisites: ECGR 2112, and 2156. Corequisites: ECGR 3111 and 3131, or permission of the Department. Systems and signals measurements and applications; electronic circuits.
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