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Design a highpass FIR filter using Kaiser windowDesign a highpass FIR filter using Kaiser window design technique.This problem is from the textbook 'Digital Signal Processing using MatLab' by Ingle/Proakis.
Design a highpass FIR filter using Kaiser window design technique. The specifications are:Stopband edge: 0.4pi;, As = 60dBPassband edge: 0.6pi;, Rp = 0.5dB
Where As = Stopband attenuation in dBAnd Rp = Passband ripple in dBPlot the magnitude response (in dB) and the impulse response of the designed filter using MatLab.
A sinusoidal voltage with a peak-to-peak value of 15 v is applied to an RC high-pass filter. If the reactance at the input frquency is zero
What is the maximum symbol rate for this link and the number of bits per symbol? What format would you recommend for the transmitted current pulses on this baseband link?
Compute the unit-pulse response h[n] for the discrete-time system y[n+2]2y[n+1]+y[n]=x[n] (for n = 0, 1, 2, 3).
A microwave system requires a +4-dBm audio level to provide 100% modulation. Determine the voltage level required if this is a 600 ohm audio system.
Briefly explain your ideal job as electrical engineer? Why did you select this career? What goals do you have in this career? How do you plan to get these goals?
You have to figure out which one using cross or auto correlation.
What are the distinguishing features of the response in the pass-band? What are the distinguishing features of the response in the stop-band? What is an all pass filter?
Design a 2-digit 24 second "shot-clock" countdown timer with pushbutton controller.
Solve the equation z^2+z+1=0 using z=(x,y) and the basic definitions. (Hint: Note that y does not equal 0 because the equation X^2+X+1 does not equal 0 for any real number x.)
Create the Walsh code matrix for a W16. (c) For IS-95, on the forward link, list the Walsh code assigned to the various logical channels (hint: there are 64 Walsh codes)
The signal m(t)=6sin(2*pi*t) volts is transmitted using 4-bit binary PCM system. The quantizer is of the midriser type, with a step size of 1v
Simplify the following circuit. Line A goes into an INVERTER, then into a NAND Gate, then into an OR Gate, then travels into another NOR Gate.
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