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The circuit configuration shown in Figure is redesigned such that VCC = 3.3 V, R1 = 16 k, RC = 6 k, and RB = 20 k. Let β = 50.
(a) Determine i1, i3, i4, and v for (i) vX = 0.1 V, vY = 3.3 V and (ii) vX = vY = 3.3 V.
(b) Calculate the maximum fanout for the output low condition such that Q1 remains biased in saturation.
(c) Repeat part (b) if the maximum collector current is limited to 5 mA.
Without working out the numerical solution, determine whether the area of an aluminum wire will be smaller or larger than that of the copper wire. Explain.
One of your engineers suggests to use a coax cable of a gain of -1 cB at room temperature (290K) for input into a 28 K low-noise aplifier. a) What is the total temperature of this combination
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Students should type up, assemble and emulate the BIN2ASCII program which converts the value entered in R3 from Hexadecimal to ASCII. This should be done by dividing R3 by 10 (decimal) and converting the remainder to ASCII
For each of the unit step responses shown in Figure , find the transfer function of the system.
Find the electric field strength between the plates of a parallel plate capacitor if 100 µV are applied across the plates and the plates are 2 mm apart.
The lamp is then inserted in a DC circuit and it is noticed that as the voltage increases the resistance also increases. How do you explain this apparent contradiction with Ohm's law Why does the lamp resistance increase with voltage
How does the distortion (or voltage transfer linearity) for this circuit compare with the single transistor 'standard bias' circuit you are already familiar with?
Show how this can be done with a square wave (clock) that has a period equal to the desired time interval between interrupts.
Find the Laplace transform of a rectangular voltage pulse that is 0 V until time 0 s, then jumps to 5 V and stays there until time 2 ms, then returns to 0 V and stays there after time 2 ms. Hint: express the pulse in terms of unit step functions.
A 1.00kg block slides with a speed of 0.880m/son a frictionless horizontal surface until it encounters a spring with a force constant of 450N/m. The block comes to rest after compressing the spring 4.15 cm.
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