Microelectronic Circuits (The Oxford Series in Electrical and Computer Engineering) 7th edition
Microelectronic Circuits (The Oxford Series in Electrical and Computer Engineering) 7th edition
7th Edition
ISBN: 9780199339136
Author: Adel S. Sedra, Kenneth C. Smith
Publisher: Oxford University Press
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Chapter 5.2, Problem 5.7E

(a)

To determine

The range of VG for which the transistor conducts.

(b)

To determine

The range of VD in terms of VG for which the transistor operates in the triode region

(c)

To determine

The range of VD in terms of VG for which the transistor operates in the saturation

(d)

To determine

The values of |VOV| , VG and the corresponding range of VD to operate the transistor in the saturation mode

(e)

To determine

The value of ro corresponding to the overdrive voltage obtained in part (d) .

(f)

To determine

The value of ID and the value of the apparent output resistance in saturation.

To compare: The result obtained with the value found in part (e).

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Problem 2: The transistor in the circuit shown has VBEact = 0.7 V and ß = 100. Assume that VCEsat = 0 V and VBIAS = 1 V. a. b. What is the smallest value of vi that will not cause the transistor to go into cut-off. Hint: This should be a negative voltage. What is the largest value of v; that will not cause the transistor to go into saturation. Hint: This will be a positive voltage. Vi V BIAS +1 10K +10 V 1K Vo
Q-2: Explain the saturation of a transistor. Find the given unknowns for the figure below. a. Rc. b. Rg c. Rp. d. VCE e. V Also find the voltage V, at cutoff. 12 V 2 mA Rc 7.6 V V B-80 024 V Q-3: Define Lso and lao, How are they related? Find the following f le corresponding to V = +750mv and Va = +5V
Discussion 1. Calculate the theoretical DC voltages and currents for the transistor bias circuit and compare them with the practically measured values. Table-1: Measured Quantities for the DC Bias Circuit Parameter B VB VE Vc Icọ VCEQ VBEQ Te Value 65.63 1.20 0.58 7.32 1418mA 6.74 0,62 18.3356 ECTR Vcc +12V R5 R3 3.3kQ всз37 R2 R4 4.7kQ 4700 Figure 5: The DC Bias Circuit of the Common Emitter Amplifier

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Microelectronic Circuits (The Oxford Series in Electrical and Computer Engineering) 7th edition

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