Ideal Operational Amplifier НА 741 Туpical Values cification CA 3130 BİMOS Typical Values cage gain at Resistance put Resistance =y Gain Bandwidth XXXXXXXXXX XXXXXXXXXX |Operational Amplifier Basic Circuit Topologies Assume ideal operational amplifiers therefore you can use summing point constraints. Write an expression for Vo(t) for ach of the four circuits. Observe that no numerical calculations are required. Note-time domain input voltages require a time-domain expression for vo(t). RF R1 vs(t) vo(t) R2 R3 RF vo(t) R1 CIRCUIT 2 CIRCUIT 1 CF vs(t) R1 vo(t) R2 volt) CIRCUIT 4 CIRCUIT 3 Circuit 1 Vo(t) = Circuit 3 Vo(t) Circuit 2 vo(t) Circuit 4 Vo(t)
Ideal Operational Amplifier НА 741 Туpical Values cification CA 3130 BİMOS Typical Values cage gain at Resistance put Resistance =y Gain Bandwidth XXXXXXXXXX XXXXXXXXXX |Operational Amplifier Basic Circuit Topologies Assume ideal operational amplifiers therefore you can use summing point constraints. Write an expression for Vo(t) for ach of the four circuits. Observe that no numerical calculations are required. Note-time domain input voltages require a time-domain expression for vo(t). RF R1 vs(t) vo(t) R2 R3 RF vo(t) R1 CIRCUIT 2 CIRCUIT 1 CF vs(t) R1 vo(t) R2 volt) CIRCUIT 4 CIRCUIT 3 Circuit 1 Vo(t) = Circuit 3 Vo(t) Circuit 2 vo(t) Circuit 4 Vo(t)
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Transcribed Image Text:Operational Amplifier Specifications and Circuits
Should be no surprise here. Provide numerical values for the operational amplifier specifications:
Problem 1
(a)
Ideal Operational
Amplifier
Specification
СА 3130 BiMOS
НА 741 Турісal
Values
Typical Values
Voltage gain
Input Resistance
Output Resistance
Unity Gain Bandwidth
XXXXXXXXXX
XXXXXXXXXX
(b)
Operational Amplifier Basic Circuit Topologies
Assume ideal operational amplifiers therefore you can use summing point constraints. Write an expression for Vo(t) for
each of the four circuits. Observe that no numerical calculations are required. Note-time domain input voltages
require a time-domain expression for vo(t).
RF
R1
vs(t)
W-
v1(t)
vo(t)
R2
v2(t)
R3
RF
vo(t)
v3(t)
R1
CIRCUIT 2
CIRCUIT 1
CF
R1
vs(t)
v1(t)
W-
vo(t)
R2
O W
v2(t)
vo(t)
CIRCUIT 4
CIRCUIT 3
Circuit 1
Vo(t)
Circuit 3
Vo(t)
Circuit 2
Vo(t)
Circuit 4
Vo(t)
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