EXAMPLE 8.12 The E-MOSFET of Fig. 8.40 was analyzed in Example 7.10, with the result that k = 0.24 × 103 A/V², VGS = 6.4 V, and ID = 2.75 mA. a. Determine gm- b. Find rd. c. Calculate Z; with and without rd. Compare results. d. Find Zo with and without ra. Compare results. e. Find A, with and without rd. Compare results. 카 1 uF Z RE 912 V Rp • 2 ΚΩ 10 ΜΩ HE 1 μF ID (on) = 6 mA VGS (on) = 8 V VGS (Th) = 3 V 80s = 20 μs Za o Vo

Delmar's Standard Textbook Of Electricity
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Chapter29: Dc Generators
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Problem 15RQ: Explain the difference between cumulative- and differential-compounded connections.
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EXAMPLE 8.12 The E-MOSFET of Fig. 8.40 was analyzed in Example 7.10, with the
result that k = 0.24 × 103 A/V², VGS = 6.4 V, and ID = 2.75 mA.
a. Determine gm-
b. Find rd.
c. Calculate Z; with and without rd. Compare results.
d. Find Zo with and without ra. Compare results.
e. Find A, with and without rd. Compare results.
카
1 uF
Z
RE
912 V
Rp
• 2 ΚΩ
10 ΜΩ
HE
1 μF
ID (on) = 6 mA
VGS (on) = 8 V
VGS (Th) = 3 V
80s = 20 μs
Za
o Vo
Transcribed Image Text:EXAMPLE 8.12 The E-MOSFET of Fig. 8.40 was analyzed in Example 7.10, with the result that k = 0.24 × 103 A/V², VGS = 6.4 V, and ID = 2.75 mA. a. Determine gm- b. Find rd. c. Calculate Z; with and without rd. Compare results. d. Find Zo with and without ra. Compare results. e. Find A, with and without rd. Compare results. 카 1 uF Z RE 912 V Rp • 2 ΚΩ 10 ΜΩ HE 1 μF ID (on) = 6 mA VGS (on) = 8 V VGS (Th) = 3 V 80s = 20 μs Za o Vo
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