Q4) For the circuit shown below, the output voltage (10.01005 volt). If the differential gain (Ad) of the op-amp is (1000). Find he CMRR in (db) of the amplifier. 2 Volt 100 k Ohm 10.01005 Volt 1 k Ohm 99 k Ohm
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- Determine the output voltage of an op-amp forinput voltages of Vi1=150μV, Vi2=140μV and CMRRs of100 and 105. (Given Ad =4000) Vd=? Vc=?For the circuit shown below, if the differential gain (?? ) of the op-amp is (50000) and the CMRR in (db) is (34). Find the output voltage (v_out).Suppose the amplifier shown has a differential-mode gain of 2500 and a CMRR of 80 dB. What is the output voltage if V1 = 5.001 V and V2 = 4.999 V? What is the error introduced by the finite CMRR?
- From these data in Table, compute the gains Ad and Acm and verify that they are as designed. (Q2) From these calculations, what is the CMRR of this amplifier? (Q3) Is your differential amplifier working well?The resistors in the difference amplifier shown are slightly mismatched due to their tolerances. (a) What are the differential-mode and common-mode input voltages if v1 = 3 V and v2 =3V? (b) What is the output voltage? (c) What would be the output voltage if the resistor pairs were matched? (d) What is the CMRR?What is the output impedance of an Ideal Operation Amplifier? What is the open loop gain of an Ideal Operation Amplifier? What is the gain of a voltage follower operational amplifier circuit? What is the input impedance of this circuit? Draw the circuit. How can I add two voltages values together with on op amp? Using op amps, how to make an AD Converter? A DA Converter? What components determine the frequency of an astable, 555 oscillator? Draw the circuit. Draw a circuit for both an astable and a monostable, 555 multivibrator. What is the duty cycle and percentage duty cycle of a pulse train or square wave? What is the overshoot, rise time, fall time, and pulse width of a pulse and where on the waveform is each measured?
- The transistors in the differential amplifier as shown have mismatched transconductances. Calculate Add , Acd , and the CMRR of the amplifierif the output is the differential output voltage υOD, and R = 100 kΩ, gm = 3 mS, Δgm/gm = 0.01, VCC = VEE = 15 V, and REE = 100 kΩ.Suppose we have a two-stage cascaded amplifier with an ideal transconductance amplifier as the first stage and an ideal transresistance amplifier as the second stage. What type of amplifier results and what is its gain in terms of the gains of the two stages? Repeat for the amplifiers cascaded in the opposite order.Slove Foperational amplifiers of your choice both FET and BJT based technologyA) From the datasheet, find the number of pins of the Op-amp IC, the open-loop gain,bandwidth, CMRR, slew rate, Voltage offset, current offset, input and output impedance,recommended supply voltages. Tabulate your outcomes with evidence from the data sheets.For both types of Op-Amps. Discus advantages and disadvantages of both.B) Mention available amplifiers that this op-amp is used for and discuss in brief itsapplications.C) Build a simple differentiator circuit, having C=1µF and R = 1kΩ for the op-amp chosen in(A), virtual using Multisim. Evaluate the voltage saturation, compare your findings with bothtypes of op-amps (FET and BJT) and analyze briefly how you concluded your result.D) Build a simple non-inverting amplifier with a gain of 10V/V circuit, using the op-ampchosen in (A) either BJT or FET, virtual using Multisim. Evaluate the slew rate, and theamplifier specification in terms of conduction angle…
- Suppose a differential amplifier has A = 120 dB,and it is operating in a circuit with an open-circuitoutput voltage vo = 15 V. What is the input voltagevid? How large must the voltage gain be forvid ≤ 1 V? What is the input current i+ ifRid = 1 M ?Q.4/ Refer to the class AB power amplifier shown below:a. Determine the dc parameters VB(Q1), VB(Q2), ICQ, VCEQ(Q1), VCEQ(Q2).b. For the 5Vrms input, determine the power delivered to the load resistor.c. Determine the approximate input resistance seen by the signal source if ac=100We examined the common source amplifier shown in the figure in the 5th experiment. The capacitances have high enough value to assume them short circuit for the small-signal conditions. The gain of the amplifier for no-load condition is measured as 60. When a load resistance RL = 13 kΩ is connected, the gain is measured as 10. Calculate the output impedance of the amplifier, Rout.