Most sources of electrical power behave as (approximately) ideal voltage sources In this case, if we have several loads that we want to operate independently, we place the loads in parallel with a switch in series with each load Thereupon, we can switch each load on or off without affecting the power delivered to the other loads. How would we connect the loads and switches if the source is an ideal independent current source? Draw the diagram of the current source and three loads with on-off switches such that each load can be switched on or off without affecting the power supplied to the other loads. To turn a load off, should the corresponding switch be opened or closed? Explain.
Most sources of electrical power behave as (approximately) ideal voltage sources In this case, if we have several loads that we want to operate independently, we place the loads in parallel with a switch in series with each load Thereupon, we can switch each load on or off without affecting the power delivered to the other loads. How would we connect the loads and switches if the source is an ideal independent current source? Draw the diagram of the current source and three loads with on-off switches such that each load can be switched on or off without affecting the power supplied to the other loads. To turn a load off, should the corresponding switch be opened or closed? Explain.
Most sources of electrical power behave as (approximately) ideal voltage sources In this case, if we have several loads that we want to operate independently, we place the loads in parallel with a switch in series with each load Thereupon, we can switch each load on or off without affecting the power delivered to the other loads. How would we connect the loads and switches if the source is an ideal independent current source? Draw the diagram of the current source and three loads with on-off switches such that each load can be switched on or off without affecting the power supplied to the other loads. To turn a load off, should the corresponding switch be opened or closed? Explain.
usıng j-k and D flipflop design a counter that counts 0,2,1 again as shown below ın the table
find the minterms of the followıng boolean expressıon desıgn F's cırcuit using one of the approciate decoders given below and a NOR gateF(A,B,C,D)=(A+'BC)(B 'C+'A 'D + CD)
64) answer just two from three the following terms:
A) Design ADC using the successive method if the Vmax=(3) volt, Vmin=(-2) volt, demonstrate the
designing system for vin-1.2 volt.
Successive Approximation ADC
Input Voltage-1.1 V
-4-3.5-3 -2.5 -2 -1.5 +1 -0.5
0 0.5 1 1.5 2 2.5 3
3.5
1
T
-8 -7 -6 -5
-3
+2 -1
0 1 2
3
4
5 6
7
X=1???
1st guess: -0.25 V
(too high)
X=11??
2nd guess: -2.25 V
(too low)
3rd guess: -1.25 V
(too low)
X=1110
X=111?
4th guess: -0.75 V
(too high)
Make successive guesses and
use a comparator to tell
whether your guess is too high
or too low.
Each guess determines one bit
of the answer and cuts the
number of remaining
possibilities in half.
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