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Q.1. Design a parameterized circuit that have two N-bit un-signed inputs A and B. The N-bit output Y = |A...
Q.1. Design a parameterized circuit that have two N-bit un-signed inputs A and B. The N-bit output Y = |A - B|. Test your circuit with 3 sets of inputs; one with A>B, another with A=B, and another with A<B.
Q.2. Use the above module in another module that calculates an 2N-bit output C;
C = |A2- B2| = (A+B) * |A - B|Instantiate a copy of the module in Q.1. to calculate |A - B| and test this module with the same sets of inputs as in Q.1.
To instantiate a module within another module: Module_name instance_name #(parameter1 value, parameter 2 value, ...) (port1, port2, ...) ;
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if a computer executes instructions to sum the contents of memory cells 2 and 999 and store the result in cell 0what
What causes the current gain to decrease both in the case of a low collector current and at a high collector current?
To understand this, imagine we paint one of the blades of an airplane propeller so that we can identify it from the other blades. We will then turn the propeller at 33 rotations per second, in a clockwise direction.
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A communication system must transmit the following real valued signal: v(t) = 4cos(2pi*10MHz*t) + 2cos(2pi*20MHz*t)+cos(2pi*30MHz*t)V For this signal, sketch the positive-frequency power specturm P(f>0)
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an amplifier with a 1 MHz bandwidth and a 20 micro-V input signal. The input noise = 1 micro-V, output signal = 6.0 mV, and output noise = 1 mV. Find (a) SNR at the input Pin = Pn(in)= K(T)BW= 1.38*10-23(290)1MHz= 4*10-15W
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