Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- Question 1 Vcc = +12 V Rci = 10 kΩ R3 = R1 = 67.3 k2 15 kM Ris CC R. Q2 CC3 Q1 Cc2 Vo ER2 = R4 = RE2= RL = 1.6 k2 45 k2 RE 2 ΚΩ Us 12.7 k2 CE 250 2 Copyright The MeCra- Companies, Inc. Parmaion requred for reproduction er daplay Figure 1 The circuit shown in Figure 1 has transistor parameters B= 120 and Va = 0. and for both transistors. (a) Determine the small signal parameters, & Vo Ay Vs. (b) Determine the overall small-signal voltage gain (c) Determine the input resistance R, and the output resistance Ro.arrow_forwardComponent values of the following circuit are listed in the Table I. Answer the following questions and provide your answers in Table II. a) using KCL equations, find resistance value at node c? Table I. Components R3 (0) 1 [rad/s] ww Vin 1 40° R₁ 1k [Ω] R₁ b R₂ a ww ww C R₂ 1k [Ω] R3 1k [22] kı 0.002 [A/V] k2 0.004 [A/V] Table II. Answer Vin k₁Vac k₂Vb Resistance at node carrow_forwardConsider the following circuit. Determine the node voltages at nodes N1, N2, N3 and N4 using both the Nodal Analysis theory and Circuitlab simulations. Thank you!!arrow_forward
- Q2. Find the values of R and V, that makes lo = 10 mA. The coefficients of a,b and c can be found by the method given in the previous question (Derive the coefficients a, b, c according to your student number as format is given as follows: 1c04120ba ) a=8 b=1 c=7 R 1.5k 0 *a*R 3kn *b*R 20 + aV: 5k*c*R 150 n+Rarrow_forwardDetermine the values of the node voltages, v1, V2 and v3 in the circuit shown. 15 V 20Ω 25 2 V2 50 Ω 10Ω V3 V 1 15 V 40 2 10 V 6:04 PM Quection O 2 50°F Clear 2/18/2022 P Type here to search Home End F10 PgUp PgDn PrtScn Esc F2 F3arrow_forwardELTE 108 Homework 6 Circuit Five: R3 = 175 0 R = 225 Q E3 = E = I3 = 4 = R2 = 280 2 Rg = 220 0 P3 = P = Ez = Es = 12 = Is = R = 1200 Q Ps = P, = Eg = R = 150 Q R, = 450 Q Is = E, = E, = P = l9 = = Pg = R7 = 1100 Q R = 1300 Q E, = Eg = I7 = Is = ET = 240 V I = P, = Page 6 of 6 0610 assign_ELTE108_Homework_06_2011-11-04ACC.docx Circuits: ver 2011-11-04 mjfarrow_forward
- V = 21 V, R1 = 200 Ω, R2 = 1,000 Ω, R3 = 1,400 Ω, R4 = 1,750 Ω.What is iR4 and iR2 and thus What is the sum of the currents (iR4+iR2) to the nearest integer milliamp.arrow_forward1arrow_forwardIn the given circuit, R₁ = 6 N, R₂ = 6 N, R3 = 6 N, and R4 = 6 . Find Req. www R₁ R3 R2 The value of Req is R₁ ΙΩ.arrow_forward
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