Find i, in the circuit in Fig. P5.3 if the op amp is ideal Figure P5.3 0.5 mA nobi ribos Va + Change 0-6V lov s to gaibsen The op amp in the circuit in Fig. P5.4 is ideal. a) Calculate vo if va = 4 V and v = 0 V. b) Calculate vo if va = 2 V and v = 0 V. c) Calculate v, if va = 2 V and vp = 1 V. d) Calculate v, if va if va 1 V and % = 2 V. = Ub 10 ΚΩ www e) If v = 1.6 V, specify the range of va such that Va the amplifier does not saturate. Figure P5.4 20 kn ilgin ΚΩ www .6 V 6V 40 ΚΩ ww 100 ΚΩ ww 16 V T loviqqua owoq testlama io § 2.5 kΩ Σ 5 ΚΩ { od +01 210 ti -16 V 250 (8 8.2 JOV υξ50 ΚΩ sd
Find i, in the circuit in Fig. P5.3 if the op amp is ideal Figure P5.3 0.5 mA nobi ribos Va + Change 0-6V lov s to gaibsen The op amp in the circuit in Fig. P5.4 is ideal. a) Calculate vo if va = 4 V and v = 0 V. b) Calculate vo if va = 2 V and v = 0 V. c) Calculate v, if va = 2 V and vp = 1 V. d) Calculate v, if va if va 1 V and % = 2 V. = Ub 10 ΚΩ www e) If v = 1.6 V, specify the range of va such that Va the amplifier does not saturate. Figure P5.4 20 kn ilgin ΚΩ www .6 V 6V 40 ΚΩ ww 100 ΚΩ ww 16 V T loviqqua owoq testlama io § 2.5 kΩ Σ 5 ΚΩ { od +01 210 ti -16 V 250 (8 8.2 JOV υξ50 ΚΩ sd
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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