Design a summing amplifier that implements the following equation: Xe=-(2.4v1 +0.3333v2 +8.0v3 + v4) Design a difference amplifier that has a gain of 100.
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- Design an inverting amplifier (i.e., choose the values of R1 and R2) to have an input resistance of 20 k and a gain of 40 dB.Solve this problem with the sum amplifier : A sensor produces an output voltage in the range of 20 to 250 mV. Make a circuit that conditions the voltage to be in the range of 0 to 5 V (linear), and the circuit must have a high input impedance.ression.. A noninverting amplifier has an Ri of 1.0 kn and an Rf of 100 kn. Determine Vf and B if Vout=5 10 my ras R₂ 560 kn R₁ 1.5 kn (Ctrl)
- RF Gain = 1 + RIN VIO- Vour For example RIN R an op amp with a resistor, RIN, of 20KQ and a resistor, RF of 100KQ. What will be the resistance gain and the voltage output if the input is 9V in magnitude.An op-amp has a gain bandwidth product (GBP) of 5 MHz. If it will be used to design an amplifier with an audio-range bandwith of 20 kHz, what would be the maximum allowable closed-loop voltage gain of the op- amp? O 0.004 O 250 O 100 x 10^9 O 4.98 x 10^6Problem 1: ( ) Connect the following components to build an amplifier with constant gain. OUT1 1 8 Vcc IN1 (-) 2 7 OUT2 IN1 (+) 6 IN2 (-) GND 5 IN2 (+) A19PX/ 531 4.5V Alkaline
- Suppose we have an amplifier with Ri=200 Ω, Ro=1 kΩ and Aisc=50. Determine the values (including units) of Avoc, Rmoc and Gmsc for this amplifier. Then draw each of the four models for the amplifier showing the value of each parameter.For the difference amplifier given in the circuit below, determine the voltage gain VCC 10V 10k R7 10k Ho BORMZ ~60kHz -10V RB >10K V1 120 Vrms 0° R5 V2 120 Vrms 0⁰ R6 ww 10k U3 TDA2030 VEE Vo31. Assume that the gm of Q, is 1500 umhos for the amplifier in the following figure. a. Compute. b. If gm = 1500 umho, what is the voltage gain? What is You? d. What is the purpose of C₂? What happens if it is open? C. V 200 mV pp 10 kHz HI 0.1 μF WI Ra 1.0 MO +VDD +15 V RD 6.2 k0 C3 -EE -15 V 9₂₁ 2N5458 l₂ 2N3904 RE 15 ΚΩ 0.1 μF 22 μF
- Please show workSignal-conditioning analysis shows that the following equation must relate output voltage to input voltage: Vout = 3Vin – 3V Design circuits to do this using (a) a summing amplifier and (b) a differential amplifierConsider the two-stage amplifier in the figure below. The first stage is a differential amplifier and the second stage is a difference amplifier. Assume that Rg = 20k and you may ignore any early voltage effect. Further assume that Rc = 10k, R3 = 300k and R4 = 100k. What would be the estimated differential gain of the first stage amplifier? CRB close to 200 RB Q4 V01 Stage 1 Q3 O a. O b. close to 150 O c. close to 600 O d. close to 500 e. More information is required to calculate the gain Cm RC Q2 V02 RA R4 R3 Stage 2 -R3 741 + +10v į -10V