b) Design a circuit using a single op amp to generate the following output, vo - | (4v, + 2v2 + 10vz)dt If the integrating capacitor is C = 1µF, obtain other component values.
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- Figure Q. 3(b) shows an op amp circuit for linear amplifier application. (i) Determine the value of current I3.(ii) Find the value of R if the output current, Io is given as 2 mA.(iii) Explain what will happen to output voltages, V01 and V02 if the supplyvoltages, +VCC and -VCC are connected to +10V and -10V.subject: Communication Fundamentals Modulation and Demodulation (give solve sub-parts iv and v)Determine the output voltage of an op amp amplifier circuit with the following parameters: Differential voltage gain = 4522CMRR = 631Vi1 = 659 mV Vi2 = 659 mV Vi1 and Vi2 are in phase and have the same frequency. \ QUICKLY
- In the op-amp circuit shown below, find V0. 30 kQ Select one: O avo=6V O b.vo=3v c. None of the above ) d.VO=9VIn the figure above, R_{a}Ra=1kΩ, R_{b}Rb=2kΩ, R_{c}Rc=3kΩ. R_{f}Rf=12kΩ. The sources are v_{a}va=−4V, v_{b}vb=+2V, and v_{c}vc=1V. The power supplies for the op-amp are +15V and −15V. What is the value of v_{o}vo? Notice that this op amp circuit might saturate, and you need to consider that possibility in your answer. Give your answer in volts and omit the units from your answer. What must be R_aRa be changed to so that v_{o}vo is 13 V? Give your answer in kilo-ohms with no units.For the circuit below, you may assume the op amps are ideal and V_Z = 5V. Use Ohm's Law, KCL, and/or KVL to determine values for R1,R2,R3,R4,and R5 such that V_out = 2.5V. Make surc your resistor values allow you to ignore the op amps' input resistances (1 M amps ) and output resistances (50amps).
- How to create a circuit that has three varying input voltages and one output voltage that is equal to the average of the three? Vin = V1, V2, V3Vout = (V1 + V2 + V3) / 3 Example:V1 = 750mV, V2 = 700mV, V3 = 800mVVo = 750mV You can only use resistors and OpAmps (operational amplifiers), show circuit schematic and computations/formulas usedBased on the op amp circuit in Figure, answer the following questions,assuming an ideal op-amp. Given:V1 = 1 VI2 = 2 mAV3 = 0.5 VRa = 2 kΩRb = 1 kΩRc = 5 kΩRd = 10 kΩ Determine the voltage Vx, and the current Ib through RbFigure 1(a) shows a voltage subtraction amplifier where its inputs, VO1 and VO2 are from the circuit of Figure 1(b) and Figure 1(c) respectively. Determine the output voltage, VO, given that Rf = 20 kΩ, R1 = 10 kΩ, R2 = 5 kΩ and R3 = 2.5 kΩ whereby inputs, Vi1 = 4m sin (1000t)V and Vi2 =10m sin (1000t)V. 1. Refer Figure 1(c), calculate output for the op-amp 1: V1 = m sin 1000t 2. Refer Figure 1(c), calculate output for the op-amp 2: V2 = m sin 1000t 3. Refer Figure 1(c), calculate output for the op-amp 3: V3= m sin 1000t 4. Refer Figure 1(b), calculate Vo2 : Vo2 = m sin 1000t 5. Refer Figure 1(a), calculate Vo : Vo = m sin 1000t
- The op amp circuit shown is ideal. The values for the circuit are as follows:+VCC = 12.0V, -VCC = -10.0V, Ra = 9.00Ω, Rb = 30.0Ω, Rc = 42.0Ω, Rd = 4.00Ω, Re = 32.0Ω. Write a KCL equation at node n. Solve for the output voltage vout as a function of the inputs va and vb. If input va=2.00V and output vout =10.0V, then solve for input vb. If inputs va=8.00V and vb=5.00V, then solve for the power absorbed by Rb. If input va=4.00V, then solve for the range of input vb such that the amplifier does not saturate.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 VQ1) find for given circuit below. 1.a. What circuit is shown on the image above and what is gain ? 1.b. If R2 is 40x higher than R1 what will happen to node 2? Provide waveform and explain why it happens. 1.c. Modify the circuit to have an overall gain of 2. Provide photos