R01 Vino M₁ R02 M₂ ww (type of amplifier The polarity of the feedback is R₁ Complete to study the polarity of the feedback of the provided circuit: Vin increases, VG(M2) (type of amplifier amplifier ), VG(M2) Vout (type of amplifier ), then Vout (type of ), Vout
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- What are the characteristics of an Ideal Operational Amplifier? Draw the diagram of an inverting Operational Amplifier circuit using 741. Draw the diagram of a Differential amplifier circuit using 741. Draw the diagram of an instrumental Amplifier using OpAmp 741.Q2) for the amplifier shown in Figure 1) Determine the voltage gain (Av) and the current Gain (Ai) 2) Determine The input and output resistance 3) Determine The output voltage Vout 4) Draw The Ac load line 5) Draw the AC equivalent circuit 6) Determine the maximum input voltage (Vi(p-p)) for maximum output voltage (Vo(p-p)) without distortion. HH Vi-20 mv RB 56 kQ +₁ D B = 50 - 10 V HH RE 1kQ Vou RL • 10 Ω ww113A Problem 1. (P1) Three op-amps are connected in cascade configuration. An 80 microVolts signal is connected to the non-inverting input of the first op-amp. Both the 2nd and 3rd op-amps operates as inverting amplifiers. All feedback resistors are 420 KOhms while the input resistances are 71.4kOhms, 19.1kOhms, and 14KOhms respectively. 3H Determine the total gain of the circuit in Problem No. 1 (P1) a.792.105 b.9000 c.792 V d.792
- 3G Problem 1. (P1) Three op-amps are connected in cascade configuration. An 80 microVolts signal is connected to the non-inverting input of the first op-amp. Both the 2nd and 3rd op-amps operates as inverting amplifiers. All feedback resistors are 420 KOhms while the input resistances are 71.4kOhms, 19.1kOhms, and 14KOhms respectively. Determine the output voltage of the second stage stage. a.-2640 mV b.-26.4 mV c.-1.2 mV d.26 VQ2// Answer the following questions about voltage-feedback bias circuit for the figure below. 1-Determine Ver and VCB. 2- What happens to the voltage Ve if the resistor Rp is open? 22 K 3- What might cause VCE to become nearly 9 V? 4- Determine the change in Ie from 25° to 75° C, if Ico 0.2 HA, and VBE = 0.7V. 10 ul B-803A Problem 1. (P1) Three op-amps are connected in cascade configuration. An 80 microVolts signal is connected to the non-inverting input of the first op-amp. Both the 2nd and 3rd op-amps operates as inverting amplifiers. All feedback resistors are 420 KOhms while the input resistances are 71.4kOhms, 19.1kOhms, and 14KOhms respectively. Determine the gain of the first stage. a.-15 b.16 c.15 d.-16
- If an opamp is perfroming by keeping two input voltages as 40 mV and 80 mv at inverting and non inverting amplifier respectivelyThen Calculate the output voltage for inverting amplifier with keeping input resistanceof 20 ohm and feedback resistance is 60 ohm.3C Problem 1. (P1) Three op-amps are connected in cascade configuration. An 80 microVolts signal is connected to the non-inverting input of the first op-amp. Both the 2nd and 3rd op-amps operates as inverting amplifiers. All feedback resistors are 420 KOhms while the input resistances are 71.4kOhms, 19.1kOhms, and 14KOhms respectively. Determine the gain of the third stage stage. a.-22 b.22 c.-30 d.31Assume that the R2/R1 ratio of a feedback amplifier with voltage supply of +/- 10 V is 3.0 and that a value of 1.0 V is applied to the non inverting input of the op-amp. What is the output voltage value?
- 3F roblem 1. (P1) Three op-amps are connected in cascade configuration. An 80 microVolts signal is connected to the non-inverting input of the first op-amp. Both the 2nd and 3rd op-amps operates as inverting amplifiers. All feedback resistors are 420 KOhms while the input resistances are 71.4kOhms, 19.1kOhms, and 14KOhms respectively. Determine the output voltage of the first stage stage. a.12 V b.-1200 mV c.-1.2 V d.1.2 mVFor the given op-amp, determine the voltage gains: (a) Av1=Vo1/Vi and (b)Av=Vo/Vi.Find voltage gain (Av) and the output voltage (Vo) Note: • Voltage output is in peak-to-peak. • Use the exact formula and not the approximation to solve for the required parameters.