BJT Amplifier Design esign for a VCEQ = 5 volts. Assume II150. RC = 5 KÖI1IVBE(on) = 0.7 volts Provide alues for: CQ=. IBQ = RB = oltage gain, Av = Vout/Vin =
BJT Amplifier Design esign for a VCEQ = 5 volts. Assume II150. RC = 5 KÖI1IVBE(on) = 0.7 volts Provide alues for: CQ=. IBQ = RB = oltage gain, Av = Vout/Vin =
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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
Transcribed Image Text:## BJT Amplifier Design
### Design for a VCEQ = 5 volts.
Assume β = 50, RC = 5 kΩ, VBE(on) = 0.7 volts. Provide values for:
- **ICQ =** _________________
- **IBQ =** _________________
- **RB =** _________________
**Voltage gain, Av = Vout/Vin =** _______________
### Circuit Diagram Description
The diagram shows a basic BJT amplifier circuit with:
- A power supply (VCC) of 10 volts.
- A resistor (RC) of 5 kΩ connected to the collector.
- A transistor with labels for collector current (IC), base current (IB), and the voltages VBE (base-emitter voltage) and VCE (collector-emitter voltage).
- A large capacitor (C) on the input.
- Resistor (RB) connected to the base of the transistor.
- The input voltage source (Vin) applied at the base through the capacitor.
The output voltage (Vout) is taken across the collector resistor (RC).
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