For the circuit shown, assume ideal op-amp, and let Vs=30, R₁ =5, R2=20, R3-1, R4-9, R5=15 and R6=10. Find V1, voltage across resistor R4; V₁ = (V) Find Vo, the circuit overall output voltage; V = (V) • Please round all of your decimal value answers to 2 significant digits; for instance, for 2.5666 you would enter 2.56, or 1.3333, you would enter 1.33. The relative tolerance for this problem is 5 %. Vs R₁ ww + R₂ R3 www R5 R6 R4 + >°1
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- 3. Design an op-amp circuit that can perform this operation: Vo = 2 -V1 + 2V2. %3D 1. Circuit Diagram 2. Calculation with AssumptionsFind an expression for the output voltage v, below. Assume an ideal op-amp. What mathematical operation does the circuit perform? R2 RCreate Op-amp circuit... with:Vin= -1 Volt (DC) Vout = 14 Volt (DC) Only resistors with 1k, 3k, 5k, 7k and 11k ohms can be used while the circuit is being built. The V+ value of the LM741 IC to be used for op-amps will be 20 volts and the V- value will be -20 volts. You need to use at least one inverting amplifier and one non-inverting amplifier to build the circuit. Question: Write the gain formula of the circuit and calculate it, and write how we should find the Vout value..
- As an Electronic Engineer in XYZ Analog IC Design Centre, you are required to design Operational Amplifiers (Op-Amp). Based on combination of ideal Op-Amp as illustrated in Figure Q3 (b), derive the output voltages Vo1, V02, V03, and V04. If V₁ = 4 V and V2 = 2 V, determine V04. R Vio-W V₂0- 2R ww R R R __ Voi R R 3R V03 Voz Figure Q3 (b) 2R ww 4R M 2R R V043. A generic op-amp circuit is shown in Figure 3. With the given data, answer the following by showing the corresponding circuit and by explaining your answer or presenting the solution. a. If VA-0, VB-1V, RA-RB-10kQ, R1=70kQ, R2=00 and vout-8V, which terminal (A or B) is the noninverting input? b. If VA-10, VB=0V and B is the inverting input, select RA, RB, R1, and R2 and to obtain an output voltage of 20V. c. If VA=VB=1V, R1=0, R2=∞ and Vout=1V, which terminal (A or B) is the inverting input? R2 VA RA OVout RB B VB R1The circuit below, you may note, does not match any of the common op-amp circuits. By performing circuit analysis, determine the voltage across the load resistor R5. You may assume that V1 = 3.6 V, V2 = 4.7 V, R1 = 37 kQ, R2 = 62 KQ, R3 = 77 kQ, R4 = 71 kQ, and R5 = 90 kQ. R1 ww V1 + R2 V2 R3 R4 R5 mm D
- The circuit below, you may note, does not match any of the common op-amp circuits. By performing circuit analysis, determine the voltage across the load resistor R5. You may assume that V1 = 5.1 V, V2 = 4.2 V, R1 = 95 kQ, R2 = 63 KQ, R3 = 40 kQ, R4 = 28 kQ, and R5 = 73 kQ. R1 V1 R2 V2 + + R3 R4 R5 mn mExample 07:- For the circuit shown in the figure, calculate the output voltage when 1- R1 = R2 = R3 = R4 = 100 2- R1 = R2 = R3 = 1002 and R4 = 1200 Consider the circuit use an ideal Op-Amp and its resistances do not load the bridge circuit. RA www 12K 10K 10V ww R3 B 122 10K 12K(a) Design and implement the give expression from given de voltage Vdc-10v using op-amp.R2=100ohm and R1-120ohm (b) Find out the output voltage form the given expression? Vout = { [1+2*1*13.35*Vde+2.26*Vdc] } R1
- (b) Draw an amplifier circuit using an ideal op-amp that computes the average of 3 input signals. State clearly the value of the resistances given that the inputs are Vi = 5 V, V2= 3 V and V3 = 1 V and the output is Vout = -3 V.Here is a single op-amp, shown under two different conditions (different input voltages). Determine the voltage gain of this op-amp, given the conditions shown. Also, write a mathematical formula solving for differential voltage gain (AV) in terms of an op-amp's input and output voltages. +12 V +12 V Va=1.00 V %3D Vout = 1.5 V +12 V V=1.00003 V %3D -12 V +12 V +12 V Va =1.00 V %3D Vet = 6.8 V +12 V V 1.00004 V -12 VSketch the output voltage waveform for each op armp circuits given below. Given the maximum outputvoltage for the op-armp is Vomax = +10 v and Vomin = -10 v.Use input voltage for all circuit as shown. Also use V2 = 4.7 V for D1 and D2. V. 0 -5V- -5V D1 Kt 1K 1K D2 V1 V2