Assuming the input resistance of the op amp is infinite and its output resistance is zero, has gain A=15 Find Vo given R1=38.6, R2=16.2, Vg=29 V R2 k2 R1k2 6 V -6 V Vo
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- Consider the active circuit with the schematic: (ONLY ANSWER C-E) a. Assuming it's an ideal op amp, derive the circuit’s transfer function as a function of frequency, H(jw). Make sure it in canonical form.b. We want a DC gain of 40dB. If the op amp has value of Rin = 10MΩ and Rout = 50Ω, choose appropriate values for R1 and R2. Explain why your selected values of R1 and R2 allow you to ignore Rin and Rout for the remainder of the problem. c. If L = 1H, sketch the straight-line approximation of the Bode plot for the circuit’s gain assuming the op amp can still be considered as ideal.d. The op amp you select turns out to be non-ideal, and it has a real pole at wC = 1krad/s. Write the updated transfer function for your circuit (using your values of R1, R2, and L = 1H). Make it in the canonical form.e. Sketch the straight-line approximation of the Bode plot for the circuit with your updated transfer function from D.a.Realize a circuit to obtain Vo=5V1-2V2+3V2 using op-amp connected in an inverting mode, Where V1, V2and V3 are positive input signals connected. take the value of feedback resistors as 100ohms. b.An op-amp has a feedback resistor Rf =25kiloohms and the Rs1=6kiloohms, Rs2=10kiloohms, Rs3=5kiloohms. The corresponding inputs are Vi1=-15v, Vi2=4, Vi3=12. The non-inverting terminal is grounded. calculate the total Voltage.how do i design this op amps so that i can get an overall gain of -8? and how do i find the values of vin and vout? (resistors that may be used: 100,180,220,330,1k,2.2k,3.3k,4.7k,6.8k,10k,22k,33k,47k,68k,100k,180k,1.2M ohms)
- Based on the simulation’s results, explain the function of a differential amplifier. (Hints: comment on the shape of Vo1 and Vo2, explain what would happen if V1 and V2 were the same, reflect on why it is important that an ideal op-amp has infinite input impedance).For the op-amp circuit shown below, find the value of vO, where R1 = 19 Ω, R2 = 14 Ω, R3 = 18 Ω, R4 = 14 Ω, Rf = 11 Ω, VS1 = 15 V, and VS2 = 3 V.Please show that gain = -(1-n)/(1+nA) , n = R1/(R1+R2) and compare to gain of ideal op amp. Calculate the input and output impedances, and lastly whats the point of the resistor R1//R2 on the non-inverting input? What would be the best value for this resistor? (pretending it wasn't given that the value is R1/R2).
- A noninverting amplifier is designed with R1 = 1kΩ, R2 = 39 kΩ, and an op amp with an open-loop gain of 80 dB. What are the loop gain, closed-loop gain, ideal gain and fractional gain error of the amplifier?An op amp has Rid = 500 kΩ, Ro = 35 Ω, and A =5×104. You must decide if a single-stage amplifier can be built that meets all of the specifications below. (a) Which configuration (inverting or noninverting) must be used and why? (b) Assume that the gain specification must be met and show which of the other specifications can or cannot be met. |Av| = 200 Rin ≥ 2×108 Ω Rout ≤ 0.2 Ω1. Find the Thévenin equivalent circuit with respect to the output terminals a, b for the inverting amplifier shown. The dc signal source has a value of 880 mV. The op amp has an input resistance of 500 kΩ, an output resistance of 2 kΩ, and an openloop gain of 100,000. 2. What is the output resistance of the inverting amplifier? 3. What is the resistance (in ohms) seen by the signal source vs when the load at the terminals a, b is 330 Ω?
- Consider the active circuit with the schematic:a. Assuming it's an ideal op amp, derive the circuit’s transfer function as a function of frequency, H(jw). Make sure it in canonical form.b. We want a DC gain of 40dB. If the op amp has value of Rin = 10MΩ and Rout = 50Ω, choose appropriate values for R1 and R2. Explain why your selected values of R1 and R2 allow you to ignore Rin and Rout for the remainder of the problem. c. If L = 1H, sketch the straight-line approximation of the Bode plot for the circuit’s gain assuming the op amp can still be considered as ideal.d. The op amp you select turns out to be non-ideal, and it has a real pole at wC = 1krad/s. Write the updated transfer function for your circuit (using your values of R1, R2, and L = 1H). Make it in the canonical form.e. Sketch the straight-line approximation of the Bode plot for the circuit with your updated transfer function from D.Consider the active circuit with the schematic:a. Assuming it's an ideal op amp, derive the circuit’s transfer function as a function of frequency, H(jw). Make sure it in canonical form.b. We want a DC gain of 40dB. If the op amp has value of Rin = 10MΩ and Rout = 50Ω, choose appropriate values for R1 and R2. Explain why your selected values of R1 and R2 allow you to ignore Rin and Rout for the remainder of the problem.A single-pole op amp has an open-loop gain of 95 dB and a unity-gain frequency of 2 MHz. (a) The op amp is used to build an inverting amplifier with an ideal gain of 20 dB. What is the amplifier’s phase margin? (b) Repeat for an ideal gain of 46 dB.