For the given circuit, Vcc = 19 volts, Rg = 900 KN, Rc = 8 KN, Rɛ = 3 KN and ß = 100. Assume Transistor is Silicon, VBE=0.7 volts. Vc RC RB RE a. Compute for the base current Q-point, IBQ (in Amperes)...


For the given circuit, Vcc = 19 volts, Rg = 900<br>KN, Rc = 8 KN, Rɛ = 3 KN and ß = 100. Assume<br>Transistor is Silicon, VBE=0.7 volts.<br>Vc<br>RC<br>RB<br>RE<br>a. Compute for the base current Q-point,<br>IBQ (in Amperes) [<br>b. Compute for the collector current Q-point,<br>Ica (in Amperes) [1<br>c. Compute for the collector-to-emitter<br>voltage, VCEQ (in Volts) [ ]<br>d. Draw the Load Line, with details. [1<br>Note: Upload your answers as PDF file in the<br>Moodle Final Exam submission link.<br>1. Base current Q-point in amperes is<br>2. Collector current Q-point in amperes is<br>3. Collector to Emitter Voltage Q-point in volts is<br>

Extracted text: For the given circuit, Vcc = 19 volts, Rg = 900 KN, Rc = 8 KN, Rɛ = 3 KN and ß = 100. Assume Transistor is Silicon, VBE=0.7 volts. Vc RC RB RE a. Compute for the base current Q-point, IBQ (in Amperes) [ b. Compute for the collector current Q-point, Ica (in Amperes) [1 c. Compute for the collector-to-emitter voltage, VCEQ (in Volts) [ ] d. Draw the Load Line, with details. [1 Note: Upload your answers as PDF file in the Moodle Final Exam submission link. 1. Base current Q-point in amperes is 2. Collector current Q-point in amperes is 3. Collector to Emitter Voltage Q-point in volts is

Jun 10, 2022
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