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Design a state machine which meets the following specifications:1. When x=00 it holds in the current state2. When x=01 it counts up 0-1-2-3-4-5-0- ...3. When x=10 it counts down 5-4-3-2-1-0-5- ...4. When x=11 it resets to 0
Instructions:a. Construct a state diagram showing all states and transitions ( label all transitions) b. Construct a truth table for the state machine showing all possible states and the logic solution using J-K flip-flops. c. Construct K-maps for the J-K solutions, identify the minimum logic implementation (circle groups on K-maps), and write equations for J'sand K's
one question: During each cycle, the velocity v (in mm/s) of a piston is v = 6t - 6t^2, where t is the time (in sec). Find the displacement s of the piston after 0.75 sec if the initial displacement is zero.
Describe your understanding of the similarity and differences between MOSFET and BJT, in terms of 1) terminal behavior, 2) i-v characteristics, 3) amplifier configuration, 4) small-signal equivalent models and 5) biasing technique.
Calculate the converter voltage VC1, reactive power, the converter phase current and modulation index.
Find the phasors corresponding to the following signals. (a) v(t) = 21 cos(4t-15o) V (b) i(t) =-8 sin(10t+70o) mA 2 (c) v(t) = 120 sin (10t -50o ) V (d) i(t) = -60cos(30t +10o) mA
Vary as square root-application, The frequency f of vibration of a wire varies directly as the square root of the tension T of the wire
Determine the Laplace transform of the above signals (use properties of the Laplace transform) including the corresponding region of convergence.
Write a testbench stimulus for the below 8-bit Shift-Left Register with Positive-Edge Clock, Serial In and Serial Out. Start with all ones after the 8th=bit shifted to the left all zeros.
You have to figure out which one using cross or auto correlation.
An input signal of 10V at 0o and a frequency of 1592 Hz is applied to a series RLC circuit with resistor R = 100 ohm, inductor L = 40 mH, and capacitor C = 0.5 F. The value of the total circuit complex impedance is
Convert both numbers to 4-bit values, take the 2's complement of 9 and add them. What happens to the carry out How does that compare with what happens when you subtract 8 from 9
A closed-loop system has a hold circuit and process as shown below. Determine G(z) when T = 1 and Gp(s) = 2 / (s + 2). A sampled-data system such as that presented in the above problem has a sampling period T = 0.05s
A series-parallel circuit contains both series and parallel connections in different arrangements. Do you find it useful to isolate the parallel sections and calculate their resistance first
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