A base voltage of four volts is applied to an NPN bipolar junction transistor. A twenty kilo ohm resistor is linked to the base, while a hundred kilo ohm resistor is connected to the collector. The Collector is powered by a six volt supply voltage. Assume the transistor is in active mode, with a fifty common Emitter current gain(β). (i) Utilize the dc equivalent model of the transistor to draw the circuit design. (ii) Calculate the
A base voltage of four volts is applied to an NPN bipolar junction transistor. A twenty kilo ohm resistor is linked to the base, while a hundred kilo ohm resistor is connected to the collector. The Collector is powered by a six volt supply voltage. Assume the transistor is in active mode, with a fifty common Emitter current gain(β). (i) Utilize the dc equivalent model of the transistor to draw the circuit design. (ii) Calculate the
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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A base voltage of four volts is applied to an NPN bipolar junction transistor. A twenty kilo ohm resistor is linked to the base, while a hundred kilo ohm resistor is connected to the collector. The Collector is powered by a six volt supply voltage. Assume the transistor is in active mode, with a fifty common Emitter current gain(β).
(i) Utilize the dc equivalent model of the transistor to draw the circuit design.
(ii) Calculate the Collector current (IC) and the Base current (IB) .
ii) Locate/determine the result (VCE).
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