! Required information The circuit shows a two-op-amp instrumentation amplifier. R4 R₂ R3 ww 12 + R₁ www- Derive an expression for vo in terms of vyand v2. Assume that R1= 7 kN, R₂ = 26 kN, R3 = 44 kN, gain = 6, and R4= (gain-1)*R3KQ. Vo ) v₁ + ( ) V2
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- Derive Vout in terms of waveform generator.V1Q8 The circuit shown in Figure 4 is a two op-amp instrumentation amplifier. (a) Derive the expression for the output voltage, Vour, as a function of inputs Vin1 and Vin2- Assume ideal op-amps. (b) If R1=R4 and R2=R3, simplify the expression for VouT. R1 Vint Vinz R2 A1 Vot R3 R4 Vx A2 VOUT Figure 4 Two Op-Amp Instrumentation Amplifier
- Q1 Analyse the circuit shown in Figure Q1, (b) (i) Determine the output for each Op-Amp (Vo1, Vo2, Vo3 and Vo4). (ii) Draw all the waveforms based on the answer in part Q1(b)(i). R: R2 O Voi 10k2 56kN |+15V R3 R4 A1 Vo2 Vi + 10k2 68k2 C 1-15V 0.3 sin ot V |+15V +15V Vo3 Rs 1 Hz A2 33µF |+15V Vo4 |-15V АЗ 100k2 A4 -15V |-15V Figure Q1The 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 DThe displacement of an object is measured using a linear potentiometer with resistance Rp = 1.8 k as shown in Figure A5. The potentiometer output is connected to a load with resistance R₁ through an operational amplifier circuit. The load is uncertain in a range [200 № -1 kN]. The input voltage Vin is 3.3 V. The total resistance element length is 250 mm. (a) Explain the operation of this circuit, including a justification for the operational amplifier stage. (b) Initially, the sliding contact is positioned such that X is one third of L. The linear displacement of the object causes the sliding contact to move such that the voltage drop of the load resistance 0.8 V. Determine the displacement of the object and the direction in which it moves. (1-x)Rp L A RL Vin xRp Figure A5
- 5The 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 = 2.4 V, V2 = 5.3 V, R1 = 42 kQ, R2 = 58 KQ, R3 = 48 kQ, R4 = 55 kQ, and R5 = 12 kQ. R1 ww V1 R2 V2 R3 www R4 R5 -please see the attached pic thank you
- Find an expression for the output voltage v, below. Assume an ideal op-amp. What mathematical operation does the circuit perform? R2 R(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] } 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 = 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 m