R₁ = 60 ΚΩ R₂ = 30 ΚΩ www www V+ = +2.5 V V-= -2.5 V Figure 3.28 Circuit for Exercise Ex 3.5 RD= 4 ΚΩ EXERCISE PROBLEM Ex 3.5: For the transistor in the circuit in Figure 3.28, the nominal parameter val- ues are VTN = 0.6 V and K,, = 0.5 mA/V². (a) Determine the quiescent values VGSQ, IDQ, and VDsq. (b) Determine the range in ID and VDs values for a ±5 percent variation in VTN and K. (Ans. (a) VGsQ = 1.667 V, IDQ = 0.5689 mA, VDSQ = 2.724 V; (b) 0.5105 ≤ ID ≤ 0.6314 mA, 2.474 ≤ VDs ≤ 2.958 V)

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter23: Resistive-inductive-capacitive Series Circuits
Section: Chapter Questions
Problem 6RQ
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R₁ =
60 ΚΩ
R₂ =
30 ΚΩ
www
www
V+ = +2.5 V
V-= -2.5 V
Figure 3.28 Circuit for
Exercise Ex 3.5
RD=
4 ΚΩ
Transcribed Image Text:R₁ = 60 ΚΩ R₂ = 30 ΚΩ www www V+ = +2.5 V V-= -2.5 V Figure 3.28 Circuit for Exercise Ex 3.5 RD= 4 ΚΩ
EXERCISE PROBLEM
Ex 3.5: For the transistor in the circuit in Figure 3.28, the nominal parameter val-
ues are VTN = 0.6 V and K,, = 0.5 mA/V². (a) Determine the quiescent values
VGSQ, IDQ, and VDsq. (b) Determine the range in ID and VDs values for a ±5
percent variation in VTN and K. (Ans. (a) VGsQ = 1.667 V, IDQ = 0.5689 mA,
VDSQ = 2.724 V; (b) 0.5105 ≤ ID ≤ 0.6314 mA, 2.474 ≤ VDs ≤ 2.958 V)
Transcribed Image Text:EXERCISE PROBLEM Ex 3.5: For the transistor in the circuit in Figure 3.28, the nominal parameter val- ues are VTN = 0.6 V and K,, = 0.5 mA/V². (a) Determine the quiescent values VGSQ, IDQ, and VDsq. (b) Determine the range in ID and VDs values for a ±5 percent variation in VTN and K. (Ans. (a) VGsQ = 1.667 V, IDQ = 0.5689 mA, VDSQ = 2.724 V; (b) 0.5105 ≤ ID ≤ 0.6314 mA, 2.474 ≤ VDs ≤ 2.958 V)
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