A Digital-to-Analog Converter (DAC) circuit is shown in Figure 5 and the output graph is presented in Figure 6. A binary 1 is equal to 5V while a binary 0 is equal to 0V. The correct outputs of the circuit are provided for binary inputs 0000, 0001, 0010, 0011. For the following binary inputs: A. 1011 B. 1100 C. 1101 D. 1110 determine if the output is correct or not. Indicate the possible fault if any, in that particular output/s.

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A Digital-to-Analog Converter (DAC) circuit is shown in Figure 5 and the output graph is presented in Figure 6. A binary 1 is equal to 5V while a binary 0 is equal to 0V. The correct outputs of the circuit are provided for binary inputs 0000, 0001, 0010, 0011. For the following binary inputs:

A. 1011

B. 1100

C. 1101

D. 1110

determine if the output is correct or not. Indicate the possible fault if any, in that particular output/s.

+ Binary
-0.25
number
200 k.
-0.50
input
Do
R
-0.75
-1.00
100 kN
-1.25
D, O
10 k.
-1.50
-1.75
50 kn
-2.00
D, 0
o Vout
-2.25
-2.50
25 k
-2.75
-3.00
-3.25
-3.50
-3.75
VOUT
1010
I100
0100
1000
0000
Transcribed Image Text:+ Binary -0.25 number 200 k. -0.50 input Do R -0.75 -1.00 100 kN -1.25 D, O 10 k. -1.50 -1.75 50 kn -2.00 D, 0 o Vout -2.25 -2.50 25 k -2.75 -3.00 -3.25 -3.50 -3.75 VOUT 1010 I100 0100 1000 0000
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