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Course Criteria
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4.00 Credits
Theory of microwave passive devices, transformers, couplers, filters, resonators, and circulators; computer-aided design of microwave circuits; microstrip realization and testing with a network analyzer. Au, Sp Qtrs. 3 cl, 1 3-hr lab.
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3.00 Credits
Dipole, loop, aperture, reflector, lens, surface wave, and other antennas; array theory; radiation resistance, directivity, and input impedance. Wi Qtr. 3 cl.
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3.00 Credits
Practical methods for predicting tropospheric, groundwave, and ionospheric propagation, including refraction, reflection, and extinction effects. * Sp Qtr. 3 cl.
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3.00 Credits
Study of radar systems and their applications; emphasis on measurement of target parameters by means of radar with applications to ranging, tracking, mapping, and navigation. * Wi Qtr. 3 cl.
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3.00 Credits
Provides an introduction to a set of numerical methods (integral equation, finite difference and finite element methods) used to solve electromagnetic-related problems. Au Qtr. 3 cl.
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3.00 Credits
Wave equation, ray optics, optical matrices, near and far-field diffraction theory, diffraction integral with lenses, Fourier optics, optical computing, holography, polarization, birefringence, applications. * Au Qtr. 3 cl.
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3.00 Credits
Fundamentals of planar lightwave circuits and guided wave devices; propagation in anisotropic media; electrooptic and nonlinear optical effects; emerging concepts in RF photonics and nanobiotechnology. *Au Qtr.
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3.00 Credits
Maxwell's equations; constitutive relations; boundary conditions; wave equation; plane wave solutions in planar multilayered media; Doppler shift; vector potentials and fields of simple sources. Au Qtr. 3 cl.
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3.00 Credits
Low voltage low power analog design for mixed analog/digital VLSI systems in CMOS technologies, OpAmps and comparators, sample and hold, switched capacitor filters, Nyquist and oversampling converters, decimation filters, applications in baseband wireless communications, integrated sensors. Wi Qtr. 3 cl.
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3.00 Credits
Design and circuit analysis of basic VLSI structures such as adders and registers; custom macro-cell, bit slice, and re-use design concepts; physical layout design, layout parasitics extraction, use of VLSI layout design tools. Sp Qtr. 3 cl.
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