For the given circuit, Vcc = 13 volts, RB = 700 KN, Rc = 6 KN and ß = 180. Assume Transistor is Silicon, VBE=0.7 volts. %3D +Vcc Rc RB VCE VBE a. Name the type of Biasing in above circuit. [ b. Compute for the base current Q-point, IBa (in Amperes)T c. Compute for the collector current Q-point, Ica (in Amperes) d. Compute for the collector-to-emitter voltage, VCEQ (in Volts) 1. Base current Q-point in amperes is 2. Collector current Q-point in amperes is 3. Collector to Emitter Voltage Q-point in amperes is

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For the given circuit, Vcc = 13 volts, RB = 700
KN, Rc = 6 KN and ß = 180. Assume Transistor is
Silicon, VBE=0.7 volts.
+Vcc
Rc
RB
VCE
VBE
a. Name the type of Biasing in above circuit. [
b. Compute for the base current Q-point,
IBQ (in Amperes)
c. Compute for the collector current Q-point,
Ica (in Amperes,
d. Compute for the collector-to-emitter
voltage, VCEQ (in Volts) K
1. Base current Q-point in amperes is
2. Collector current Q-point in amperes is
3. Collector to Emitter Voltage Q-point in amperes
is
Transcribed Image Text:For the given circuit, Vcc = 13 volts, RB = 700 KN, Rc = 6 KN and ß = 180. Assume Transistor is Silicon, VBE=0.7 volts. +Vcc Rc RB VCE VBE a. Name the type of Biasing in above circuit. [ b. Compute for the base current Q-point, IBQ (in Amperes) c. Compute for the collector current Q-point, Ica (in Amperes, d. Compute for the collector-to-emitter voltage, VCEQ (in Volts) K 1. Base current Q-point in amperes is 2. Collector current Q-point in amperes is 3. Collector to Emitter Voltage Q-point in amperes is
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