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Course Criteria
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4.00 Credits
(4-0-4) Voltage, current, transresistance, transconductance, and differential amplifiers. Offset voltage, bias current, offset current. Two-port models. Frequency response, transfer characteristics, nonlinear distortion. Ideal operational amplifiers. Diodes, FETs and BJTs. I vs V characteristics, DC large-signal models, biasing, load-line analysis. Prerequisite: EET 125 with grade "C" or better.Corequisite: EET 210.
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2.00 Credits
(0-6-2) Theoretical concepts discussed in EET 209 verified using available components and instrumentation. Computer simulation using PSPICE. Prerequisite: EET 126 with grade "C" or better.Corequisite: EET 209.
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4.00 Credits
(4-0-4) Linear small-signal equivalent circuit models. Design and analysis of transistor amplifiers, n-channel, p-channel, JFET, MOSFET, npn, pnp common source, source follower, commonemitter, emitter follower, differential. Input impedance, output impedance, gain. Simple BJT and FET current mirrors. Midband frequency operation. Prerequisite: EET 209. Corequisite: EET 236.
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2.00 Credits
(0-6-2) Theoretical concepts discussed in EET 235 verified using available components and instrumentation. Computer simulation using PSPICE. Prerequisite: EET 210. Corequisite: EET 235.
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3.00 Credits
(3-0-3) RC transient analysis, sinusoidal AC voltage, phasors, average and effective value, the decibel, simple RC transfer functions, low-pass, high-pass and band-pass filters, periodic and aperiodic signals in time and frequency, bandwidth. For non-EET majors. Prerequisite: EET 115 with grade "C" or better,Math 252. Corequisite: EET 238.
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1.00 Credits
(0-3-1) Lab to accompany EET 237. For non-EET majors. Prerequisites: EET 115 with grade "C" or better,Math 252. Corequisite: EET 237.
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3.00 Credits
(3-0-3) Digital concepts covering Boolean algebra, algebraic simplification, number systems, and various combinational circuit elements (AND, OR, XOR, NAND, NOR gates). Combinational circuit implementation using NAND gates, NOR gates, decoders, encoders, multiplexers, and demultiplexers. Karnaugh Maps are used in the synthesis of combinational circuits. Prerequisite: EET 125. Corequisite: EET 244.
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1.00 Credits
(0-3-1) Circuits will be built using integrated circuits to reinforce the theoretical concepts discussed in EET 243. Computer simulation. Prerequisite: EET 126. Corequisite: EET 243.
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3.00 Credits
(3-0-3) Combinational logic design using multiplexers, decoders, ROMs, and PLAs. Sequential circuit elements (flip-flops) presented along with applications such as counters and registers. Basic TTL and CMOS circuits analyzed. Prerequisite: EET 243. Corequisite: EET 246.
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2.00 Credits
(0-6-2) Combinational and sequential designs built using SSI, MSI, and LSI integrated circuits. Circuits tested and simulated. Prerequisite: EET 244. Corequisite: EET 245.
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