1-Is ,lc B,VCE. if hie-1.6KO, hre-2*10-4, hfe-110 and hoe=20us. 2-S(Ico) S(VBE) „S(B) using T1 as the temperature at which the parameter values are specified and B(T2) as 25% more than B(T1). 3-Determine the net change in Ic if a change in operating condition results in Ico increase from 0.2µA to 10HA,VBE drops from 0.7 to 0.5 and B increase 25%. 4-Find the change in Ic if the temperature increase from 25 to 75 (C) 3k Ohm 20 uF 220 KOhm 10 uF 1k Ohm 12k Ohm 120 mv 200 Ohm 20 uF k Ohm

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Q1:For the network of figure, determine:
1-Ig ,Ic B,VCE. if hie-1.6KO, hre=2*10-4, hfe=110 and hoe=20us.
2-S(Ico) ,S(VBE) „S(B) using T, as the temperature at which the parameter values are specified
and B(T2) as 25% more than B(T,).
3-Determine the net change in Ic if a change in operating condition results in Ico increase from
0.2µA to 10µA,VBE drops from 0.7 to 0.5 and ß increase 25%.
4-Find the change in Ic if the temperature increase from 25 to 75 (C)
3k Ohm
20 uF
220 KOhm
10 uF
1 KOhm
12 k Ohm
1 20 mv
200 Ohm
20 uF
1k onm
10
Transcribed Image Text:Q1:For the network of figure, determine: 1-Ig ,Ic B,VCE. if hie-1.6KO, hre=2*10-4, hfe=110 and hoe=20us. 2-S(Ico) ,S(VBE) „S(B) using T, as the temperature at which the parameter values are specified and B(T2) as 25% more than B(T,). 3-Determine the net change in Ic if a change in operating condition results in Ico increase from 0.2µA to 10µA,VBE drops from 0.7 to 0.5 and ß increase 25%. 4-Find the change in Ic if the temperature increase from 25 to 75 (C) 3k Ohm 20 uF 220 KOhm 10 uF 1 KOhm 12 k Ohm 1 20 mv 200 Ohm 20 uF 1k onm 10
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