5.23 The op amp in the circuit of Fig. P5.23 is ideal. PSPICE a) What op amp circuit configuration is this? b) Find vo in terms of vs. MULTISIM c) Find the range of values for v, such that v, does not saturate and the op amp remains in its linear region of operation. Figure P5.23 96 ΚΩ 24 ΚΩ 10 V + + 16 ΚΩ -10 V + 5 V 24 ΚΩ 10 ΚΩΣ + US
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- 5.4. Determine Vout in the following circuits with R, = R, = R, = 1 k2, V, = 10 V, and V, = 5 V. Assume ideal op amp behavior. R3 Vout RỊ V2 R2 (a) Vị R3 Vout R1 V2 R3 R25.2. Determine V out as a function of I (provided by a current source) and the resistor values for each of the op amp circuits that follows. Assume ideal op amp behavior. Vout R1 (a) I R2 R3 R4 R3 R1 (b) I V. out R2R1 = 6 k2 and R2 = 13 k2, determine the output voltage vo. Please pay attention: the 5.21 For the circuit involving an ideal op amp shown in the image below, numbers may change since they are randomized. Your answer must include 2 places after the decimal point, and the proper SI unit. R2 R1 6 V (+ 4 V Vo Your Answer: Answer units 19
- 5.10 For the circuit involving an ideal op amp shown in the image below, if R1 = 10 k2 and R2 = 11 k2, determine the closed-loop gain vo/ Vs Please pay attention: the numbers may change since they are randomized. Your answer must include 2 places after the decimal point. 20 k2 Vs R2 Your Answer: Answer wwTWw R.5.8.3 For the circuit involving an ideal op amp shown in the image below, if the current source provides /= 1.2 mA and the voltage source provides v = 6.1 V respectively, and the resistance R = 4.5 k2, determine the output voltage vo. Please pay attention: the numbers may change since they are randomized. Your answer must include 2 places after the decimal point, and proper Sl unit. R V Vo Your Answer: Answer units5.12 For the circuit involving an ideal inverting op amp shown in the image below, if R = 27 k2 and R2 = 35 k2, determine the closed-loop gain volVs. Please pay attention: the numbers may change since they are randomized. Your answer must include 2 places after the decimal point. R2 R, + 10 kΩ Your Answer: Answer LwwH
- Q1) Using the following input waveform shown in Figure 1, sketch the corresponding output waveform for each op amp circuit shown in Figure 1(a through d). Assume ideal op amp behavior. 30 441 wwwww 25 AG 10 pF 100 k www (6) 1,0 330 www 10 LQ www 51.02 540 M 530 www 10 KO orSection 5.4 5.12 The op amp in Fig. P5.12 is ideal. PSPICE MULTISIM a) What circuit configuration is shown in this figure? b) Find == -4 V. Vo if V₁ = 1 V, Vb = 1.5 V, and vc remain at 1 V and -4 V. c) The voltages va and v respectively. What are the limits on v₁ if the op amp operates within its linear region? Figure P5.12 220 ΚΩ 44 ΚΩ w + 27.5 ΚΩ 10 V + 80 ΚΩ + + -10 V Va Ub Uc ν. 33.3 ΚΩIn this circuit nown, use an ideal op amp model to gat the exprasion for the gain, R V. = f(R,Ar) R-Ar
- 2K The op amp used in the inverting amplifier circuit is not ideal. In fact, it is an LM741 with the following parameters: v W Rin = 2 MQ, AoL = 200 V/mV, Rout = 200 Q. Determine the gain vo/vi of the op amp circuit. If the gain computed in a is the actual gain, what is the percentage accuracy of the computed gain if the op amp is considered ideal? 4. 1K vo а. b.LMH_chapter3-part 1-homework [Protected View] PowerPoint ĐĂNG PHẠM HỒNG File Home Insert Design Transitions Animations Slide Show Review View Help Tell me what you want to do & Share HW16 HW14 5.7 The op amp in Fig 5.46 has R, - 100 k), R, - 100 2, 4 - 100,000. Find he dillerential vollage e, and the output vollage e 5.13 Find v, and i, in the circuit of Fig. 5.52. 10 100 3 10 kΩ HW15 5.10 Find the gain rv, of the circait in Fig. 5.49 37ko 20 ka 10 ka 1V 100 k2 90 kΩ ww 10 k2 4 HW16 50 ΚΩ 5.13 Find t, and i, in the circuit of Fig. 5.52. 10 ka 100 k2 E90 ka 10 ka HW17 5.14 Determine the output voltage v, in the circuit of Fig 5.53. 4 10 ka ww 10 ka 20 ko 5 ma () Ska ww5.33.1 For the circuit involving an ideal op amp shown in the image below, if R1 = 21 k2, R2 = 24 kS2, R3 = 10 k2, and R4 = 30 k2, determine the current ix in the %3D unit of mA. Please pay attention: the numbers may change since they are randomized. Your answer must include 2 places after the decimal point. R3 2.5 mA R, R2 Your Answer: Answer