* 15. For the cascaded system of Fig. 10.55 with two identical stages, determine: (a) The loaded voltage gain of each stage. (b) The total gain of the system, A, and A,. (c) The loaded current gain of each stage. (d) The total current gain of the system. (e) How Z, is affected by the second stage and R.. (f) How Z, is affected by the first stage and R. (g) The phase relationship between V, and V.

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
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10.11 Cascaded Systems
* 15. For the cascaded system of Fig. 10.55 with two identical stages, determine:
(a) The loaded voltage gain of each stage.
(b) The total gain of the system, A, and A,.
(c) The loaded current gain of each stage.
(d) The total current gain of the system.
(e) How Z, is affected by the second stage and R,.
(f) How Z, is affected by the first stage and R,.
(g) The phase relationship between V, and V,
R,
1µF
CE amplifier
Z = 1 k2
CE amplifier
Z = 1 k)
Z 3.3 kM
0.6 kN
RE
2.7 k2
Z, = 3.3 kQ
420
4.
420
Figure 10.55 Problem 15
Problems
Transcribed Image Text:File C:/Users/viren/OneDrive%20-%20Birla%20Vishvakarma%20Mahavidyalaya%20Engineering%20College/SEM%203/2EC02 09 T.. Microsoft Teams 934 Q 10.11 Cascaded Systems * 15. For the cascaded system of Fig. 10.55 with two identical stages, determine: (a) The loaded voltage gain of each stage. (b) The total gain of the system, A, and A,. (c) The loaded current gain of each stage. (d) The total current gain of the system. (e) How Z, is affected by the second stage and R,. (f) How Z, is affected by the first stage and R,. (g) The phase relationship between V, and V, R, 1µF CE amplifier Z = 1 k2 CE amplifier Z = 1 k) Z 3.3 kM 0.6 kN RE 2.7 k2 Z, = 3.3 kQ 420 4. 420 Figure 10.55 Problem 15 Problems
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