Problem 3.3. For the circuit of figure P3.3, determine the currents IA, IB, IC, ID, IE, and IF; find the voltages V₁, V₂, V3, and V4 with respect to ground. Assume the op amps are ideal.

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Problem 3.3. For the circuit of figure P3.3, determine the currents IA, IB, IC, ID, IE,
and IF; find the voltages V₁, V₂, V3, and V4 with respect to ground. Assume the op
amps are ideal.
2.5V
1kQ2
ww
2V
IB
V₁
4kQ
+5V
OA1
-5V
Ic
V₂
ID
2ΚΩ
ww
1V
V3
6ΚΩ
ww
+5V
OA2
Figure P3.3. A circuit involving two op amps.
LL
-5V 1k
V4
Transcribed Image Text:Problem 3.3. For the circuit of figure P3.3, determine the currents IA, IB, IC, ID, IE, and IF; find the voltages V₁, V₂, V3, and V4 with respect to ground. Assume the op amps are ideal. 2.5V 1kQ2 ww 2V IB V₁ 4kQ +5V OA1 -5V Ic V₂ ID 2ΚΩ ww 1V V3 6ΚΩ ww +5V OA2 Figure P3.3. A circuit involving two op amps. LL -5V 1k V4
Problem 3.4. Considering the circuit of figure P3.4, is there a range of values of Vin
for which OA1 will be linear? If so determine this range. Is there a range of values
of Vin for which OA2 will be linear? If so, determine this range. If there is a range
of values of Vin for which both op amps are linear, find this range and the equation
relating Vout to Vin.
Vin
2ΚΩ
1V
ΑΚΩ
www
+5V
OA1
+
-5V
10ΚΩ
3ΚΩ
ww
0.5V
+
+
ΑΚΩ
OA2
Figure P3.4. A circuit involving two op amps.
+5V
-5V 2kQ
ww
Vout
Transcribed Image Text:Problem 3.4. Considering the circuit of figure P3.4, is there a range of values of Vin for which OA1 will be linear? If so determine this range. Is there a range of values of Vin for which OA2 will be linear? If so, determine this range. If there is a range of values of Vin for which both op amps are linear, find this range and the equation relating Vout to Vin. Vin 2ΚΩ 1V ΑΚΩ www +5V OA1 + -5V 10ΚΩ 3ΚΩ ww 0.5V + + ΑΚΩ OA2 Figure P3.4. A circuit involving two op amps. +5V -5V 2kQ ww Vout
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