3. What is the output voltage in the circuit of Fig. 14.44? 2012 V₁= 1.5 VW 250 k V₂

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2 V. State 3 is a non-inverting amper with gam of (1+200 KZ/10 KIZ-21), le-
sulting in an output of 21(200 mV) = 4.2 V.
§ 14.2 Differential and Common-Mode Op
1. Calculate the CMRR (in dB) for the circuit measurements
on TV, and
Vc = 1 mV, V₂ = 20 μV.
2. Determine the output voltage of an op-amp for input voltages of V₁, = 200 µV and V₁ = 140
V. The amplifier has a differential gain of Ad = 6000 and the value of CMRR is:
(a) 200.
(b) 105.
§ 14.4 Practical Op-Amp Circuits
3. What is the output voltage in the circuit of Fig. 14.44?
V₁ = 1.5 V
20 1:42
ww
Figure 14.44 Problems 3 and 25
— V₂
PRO
Transcribed Image Text:2 V. State 3 is a non-inverting amper with gam of (1+200 KZ/10 KIZ-21), le- sulting in an output of 21(200 mV) = 4.2 V. § 14.2 Differential and Common-Mode Op 1. Calculate the CMRR (in dB) for the circuit measurements on TV, and Vc = 1 mV, V₂ = 20 μV. 2. Determine the output voltage of an op-amp for input voltages of V₁, = 200 µV and V₁ = 140 V. The amplifier has a differential gain of Ad = 6000 and the value of CMRR is: (a) 200. (b) 105. § 14.4 Practical Op-Amp Circuits 3. What is the output voltage in the circuit of Fig. 14.44? V₁ = 1.5 V 20 1:42 ww Figure 14.44 Problems 3 and 25 — V₂ PRO
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