a. In the circuit shown, measurements give Vg = + 4.3 V and Vc = + 2.3 V. Determine the mode of the silicon BJT and calculate the base current, the emitter current and B of the transistor. b. Now replace the 20 KO resistor by a silicon diode with anode connected to the base of BJT. Determine the state of the transistor and calculate the base current. +3 V Ve 20 ka 230 A

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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a. In the circuit shown, measurements give Vg = + 4.3 V and Vc = + 2.3 V.
Determine the mode of the silicon BJT and calculate the base current, the emitter current and B of the transistor.
b. Now replace the 20 KO resistor by a silicon diode with anode connected to the base of BJT.
Determine the state of the transistor and calculate the base current.
+5 V
o ve
20 kn
230 N
Transcribed Image Text:a. In the circuit shown, measurements give Vg = + 4.3 V and Vc = + 2.3 V. Determine the mode of the silicon BJT and calculate the base current, the emitter current and B of the transistor. b. Now replace the 20 KO resistor by a silicon diode with anode connected to the base of BJT. Determine the state of the transistor and calculate the base current. +5 V o ve 20 kn 230 N
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