Given V1 = 6
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A: The explanation is as follows.
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A: This can be solved using current division.
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Given V1 = 6 V and V0 = 10 V
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- 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).Consider the following op amp configuration.(a) Choose R2 such that the ideal voltage gain is Av = 40dB and draw the amplifier’stransfer characteristic.(b) Find the amplifier’s input and output resistances.(c) If the op amp’s internal gain is Ao = 120dB, what is the expected voltage gain ofthe entire network?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.
- 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).The circuit utilizes an ideal op amp 1)Find I1, I2, I3, IL and Vx. 2) If VO is not to be lower than -6V, find the maximum allowed value for RL. 3) If RL is varied in the range 200Ω to 600Ω, what is the corresponding change in IL and VO?The following Operational Amplifier circuit is given. Analyze the circuit carefully to identify the functions (i.e., OP-AMP configurations) of each OP-Amps. Calculate the first stage output voltage Vx and then the output voltage at the output of the second stage Vo . Determine the currents I0, IF, and IX . Finally, determine the power absorbed by the resistor R7. The resistors: R2 = R4 =100 kiliohm. R1 = R3 = 10 kiliohm, R5 = 10 kiliohm, R6 = 90 kiliohm. and R5 = 10 kiliohm. The load resistor R7 = 10 kiliohm. The current source; I1 = 100μA and V2 = 1V.
- The op amp in the noninverting amplifier circuit shown has an input resistance of 400 kΩ, an output resistance of 5 kΩ, and an open-loop gain of 20,000. Assume that the op amp is operating in its linear region. 1. Calculate the voltage gain (vo/vg). 2. Find the inverting and noninverting input voltages vn and vp (in millivolts) if vg=1 V. 3. Calculate the difference (vp-vn) in microvolts when vg=1 V. 4. Find the current drain in picoamperes on the signal source vg when vg=1 V. 5. Repeat (a)–(d) assuming an ideal op amp.For the circuit shown, determine the range (i.e., maximum and minimum values) of V1 such that the op-amp operates in the linear region. Assume that R1 = 9.4 kΩ , R2 = 1.6 kΩ , R3 = 4.0 kΩ, RF = 200 kΩ, V2 = 40 mV, V3 = 100 m, and Vcc = 5 V.Find Vout and CMMR of the Op Amp (Show Solution!!) Suppose R1 and R3 are nominally 1-kΩ 1% tolerance resistors and R2 and R4 are nominally 100-kΩ 1%resistors. For this exercise, assume the following exact values for these components, which are well withintheir tolerance ranges: R1 = 995 Ω, R2 = 100.8 kΩ, R3 = 1003 Ω, and R4 = 99.7 kΩ.
- The noninverting amplifier shown is built with an op amp having an input resistance of 2MΩ and an open-loop gain of 90 dB. What is the amplifier input resistance if R1 = 20 kΩ and R2 =510 kΩ?The circuit in Figure below uses an ideal Op Amp. (a) Find I1, I2, I3 and Vx. (b) Assuming that Vo must not be less than –13 V, find the maximum expected value for RL. (c) If RL is varied in the range from 100 Ω to 1kΩ, what will be the corresponding range in IL and in VO?The above cascade circuit uses ideal op-amps. Assume the following: in the second picture Find A of vo1(t) in units of [V ]. Find B of vo1(t) in units of [V ]. Find F of vo2(t) in units of [V ]. Find G of vo2(t) in units of [V ]. Thank you!