operation of the circuit and the electrical variables at the end points must be known. end points. Calculate the following for B = 50 and ß = 200. a) IE, VE and VB (DC analysis). b) The input resistance Rin (small signal analysis). c) Voltage gain VO/ Vsig (Small Signal Analysis) 1sig 10 ΚΩ Rin 100 ΚΩ www +3V 8- 1 ΚΩ Dº 1 ΚΩ

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Consider the circuit. The transistor has a parameter β that varies between 50 and 200. The operation of the circuit and the electrical variables at the end points must be known. end points. Calculate the following for β = 50 and β = 200. a) lE, VE and VB (DC analysis). b) The input resistance Rin (small signal analysis). c) Voltage gain V0/ Vsig (Small Signal Analysis
Consider the circuit. The transistor has a parameter ß that varies between 50 and 200. The
operation of the circuit and the electrical variables at the end points must be known.
end points. Calculate the following for ß = 50 and ß = 200.
a) IE, VE and VB (DC analysis).
b) The input resistance Rin (small signal analysis).
c) Voltage gain VO/ Vsig (Small Signal Analysis)
sig
10 ΚΩ
www
Rin
100 ΚΩ
+3V
H1₁
8
1 ΚΩ
1 ΚΩ
Transcribed Image Text:Consider the circuit. The transistor has a parameter ß that varies between 50 and 200. The operation of the circuit and the electrical variables at the end points must be known. end points. Calculate the following for ß = 50 and ß = 200. a) IE, VE and VB (DC analysis). b) The input resistance Rin (small signal analysis). c) Voltage gain VO/ Vsig (Small Signal Analysis) sig 10 ΚΩ www Rin 100 ΚΩ +3V H1₁ 8 1 ΚΩ 1 ΚΩ
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