The multitransistor circuit in Figure 5.61 is to be redesigned. The bias voltages are to be ±3.3 V and the nominal transistor current gains are
The design parameters of the bias stable circuit.
Answer to Problem D5.91DP
The value of the resistance required to design the circuit are
Explanation of Solution
Given:
The given circuit is shown in Figure 1.
Figure 1
Calculation:
Mark the current and other parameters than redraw the circuit.
The required diagrams is shown in Figure 2
Figure 2
The value of the base current of the first transistor is calculated as,
Substitute
The value of the base current of the second transistor is calculated as,
Substitute
Apply KCL to the above circuit.
The expression for the current
Substitute
From KCL the expression for the emitter current of the second transistor is given by,
The expression to determine the voltage
The expression to determine the value of the resistance
The expression to determine the value of the collector voltage is
The expression to determine the value of the resistance
Substitute
By KCL in Figure 2 the expression for the current
Substitute
The expression to determine the value of the emitter voltage
The expression to determine the value of the resistance
Substitute
The expression for the Thevenin voltage is evaluated as,
The Thevenin equivalent base circuit is shown in Figure 3.
Figure 3
Apply KVL to the above circuit.
For bias stable voltage the value of the Thevenin equivalent resistance is given by,
Substitute
Substitute
Substitute
The expression to determine the value of the Thevenin equivalent resistance is given by,
Substitute
Conclusion:
Therefore, the value of the resistance required to design the circuit are
Want to see more full solutions like this?
Chapter 5 Solutions
MICROELECT. CIRCUIT ANALYSIS&DESIGN (LL)
- P3. Given the following network, determine: ⚫ 3.a. Equivalent Y ⚫ 3.b. Equivalent A 2 R[2] 10 8 b 20 30 5arrow_forward[Electrical Circuits] P1. Using the mesh current method, calculate the magnitude and direction of: 1.a. I and I (mesh currents) 1.b. I10 (test current in R10 = 1082) 1.c. (Calculate the magnitude and signs of V10) 6[A] 12 [√] بي 10 38 20 4A] Iw -800arrow_forwardNeed handwritten solution do not use chatgptarrow_forward
- [07/01, 16:59] C P: Question: Calculate the following for 100Hz and 500Hz (express all answers in phasor form). Show all work. A) Xc and ZTB) VR1 and VC1 C) IT Handwritten Solution Pleasearrow_forward1. Sketch the root loci of a system with the following characteristic equation: s²+2s+2+K(s+2)=0 2. Sketch the root loci for the following loop transfer function: KG(s)H(s)=- K(s+1) s(s+2)(s²+2s+4)arrow_forward3. For the unity feedback system with forward path transfer function, G(s), below: G(s)= K(s² +8) (s+4)(s+5) Sketch the root locus and show the breakaway/break-in point(s) and jo-axis crossing. Determine the angle of arrival and K value at the breakaway/break- in point(s). Give your comment the system is stable or unstable.arrow_forward
- Find the step response of each of the transfer functions shown in Eqs. (4.62) through (4.64) and compare them. [Shown in the image]Book: Norman S. Nise - Control Systems Engineering, 6th EditionTopic: Chapter-4: Time Response, Example 4.8Solve the math with proper explanation. Please don't give AI response. Asking for a expert verified answer.arrow_forward2. With respect to the circuit shown in Figure 2 below V2 -R1 R2 R4 w R3 R5 Figure 2: DC Circuit 2 a. Using Ohm's and Kirchhoff's laws calculate the current flowing through R3 and so determine wattage rating of R3. b. Verify your results with simulations. Note: you must use the values for the components in Table 2. Table 2 V2 (Volts) R1 (KQ) R2 (KQ) R3 (KQ) R4 (KQ) R5 (KQ) 9 3.3 5 10 6 1 3.3arrow_forwardDon't use ai to answer i will report your answerarrow_forward
- Don't use ai to answer I will report you answerarrow_forwardcircuit value of i1 and i2arrow_forwardIn the circuit shown in the figure, the switch opens at time t = 0. For t≥ 0 use I(t) and V₁(t) or Find Vc(t) and lc(t). D to icht) w 43 ViLC+) + vc(+) 5. F + 1252 18 A 3) 2H2VLCH 8 V 4л warrow_forward
- Introductory Circuit Analysis (13th Edition)Electrical EngineeringISBN:9780133923605Author:Robert L. BoylestadPublisher:PEARSONDelmar's Standard Textbook Of ElectricityElectrical EngineeringISBN:9781337900348Author:Stephen L. HermanPublisher:Cengage LearningProgrammable Logic ControllersElectrical EngineeringISBN:9780073373843Author:Frank D. PetruzellaPublisher:McGraw-Hill Education
- Fundamentals of Electric CircuitsElectrical EngineeringISBN:9780078028229Author:Charles K Alexander, Matthew SadikuPublisher:McGraw-Hill EducationElectric Circuits. (11th Edition)Electrical EngineeringISBN:9780134746968Author:James W. Nilsson, Susan RiedelPublisher:PEARSONEngineering ElectromagneticsElectrical EngineeringISBN:9780078028151Author:Hayt, William H. (william Hart), Jr, BUCK, John A.Publisher:Mcgraw-hill Education,