Design a voltage amplifier that satisfies the following specifications: Gain = 1000 %3D Bandwidth = 100kHz Output voltage swing = 20V (peak-to-peak) %3D

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Design a voltage amplifier that satisfies the following specifications:
Gain = 1000
Bandwidth = 100kHz
Output voltage swing = 20V (peak-to-peak)
Additional constraints:
Use op amps from the table below (you may use different op amps in your circuit):
Vos
los
Isc
typ.
fu
SR
Price
max.
typ.
max.
mV
nA
nA
MHz V/us
JD
AB111
10
0.1
10
50
1
10
1
CD222
20
0.1
1
10
50
1
1
1
TU333
20
1
10
10
50
1
1
2
XY444
10
1
10
50
100
10
10
2
WZ555
20
0.1
1
50
100
100
1
Assume the following:
DC supplies are ±15V.
+Vsat = ±13V for all op amps.
Minimize the total cost of the project: consider the cost of the amplifier to be equal to the
cost of the op amps used.
Minimize the number of amps used (i.e., if two designs have equal costs, then use the
design with fewer op amps).
Transcribed Image Text:Design a voltage amplifier that satisfies the following specifications: Gain = 1000 Bandwidth = 100kHz Output voltage swing = 20V (peak-to-peak) Additional constraints: Use op amps from the table below (you may use different op amps in your circuit): Vos los Isc typ. fu SR Price max. typ. max. mV nA nA MHz V/us JD AB111 10 0.1 10 50 1 10 1 CD222 20 0.1 1 10 50 1 1 1 TU333 20 1 10 10 50 1 1 2 XY444 10 1 10 50 100 10 10 2 WZ555 20 0.1 1 50 100 100 1 Assume the following: DC supplies are ±15V. +Vsat = ±13V for all op amps. Minimize the total cost of the project: consider the cost of the amplifier to be equal to the cost of the op amps used. Minimize the number of amps used (i.e., if two designs have equal costs, then use the design with fewer op amps).
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