CE with emitter degeneration is biased as shown. The transistor has VBEON = 0.7 V, VCESAT = 0.2 V, VA → 00, and 8= 100. In analyzing the circuit, assume that Ic Ig. Vec Vcc RB Rc OVOUT Vin o RE Fixed Bias CE with Emitter Degeneration ven are the following: Vce = 12 V Rc = 1 kf Rg = 8 kl? halyze the circuit and answer the following: 1. Identify the value of Ing such that the large signal output swing is maximized. Round to 1 decimal place. | µA Hint: Given the output characteristic (Iç vs. Ve), we want Ve,g such that Vee – Veg = Veg – VMIN-. %3D Ice VMIN VeR Vee 2. What is the value of Veg? Round to 2 decimal places. V 3. Is the transistor confirmed to be operating at the forward active region? Choose. 4. Calculate the swing of the amplifier. If the transistor is not in FA, put 0 as the answer, otherwise round your answer to 2 decimal places. V 5. Find the necessary value of Rg- Round to the nearest kiloohms.

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Problem 2: Fixed Bias CE with Emitter Degeneration
A CE with emitter degeneration is biased as shown. The transistor has VREON = 0.7 V, VCE SAT = 0.2 V, VA + 0, and 8 = 100. In analyzing the circuit, assume that Ic s Ig.
Vcc Vcc
RB
RC
-o VOUT
Vin o
RE
Fixed Bias CE with Emitter Degeneration
Given are the following:
• Vcc = 12 V
• Rc = 1 k
• Rg = 8 kn
Analyze the circuit and answer the following:
1. Identify the value of Ing such that the large signal output sw
is maximized. Round to 1 decimal place.
Hint: Given the output characteristic (Ic vs. Vc), we want Veg such that Vec - Vcg = Vcg - VMIN-
VMIN
Vcc
2. What is the value of Vcg? Round to 2 decimal places.
V
3. Is the transistor confirmed to be operating at the forward active region?
Choose.
4. Calculate the swing of the amplifier. If the transistor is not in FA, put 0 as the answer, otherwise round your answer to 2 decimal places.
V
5. Find the necessary value of Rp- Round to the nearest kiloohms.
Transcribed Image Text:Problem 2: Fixed Bias CE with Emitter Degeneration A CE with emitter degeneration is biased as shown. The transistor has VREON = 0.7 V, VCE SAT = 0.2 V, VA + 0, and 8 = 100. In analyzing the circuit, assume that Ic s Ig. Vcc Vcc RB RC -o VOUT Vin o RE Fixed Bias CE with Emitter Degeneration Given are the following: • Vcc = 12 V • Rc = 1 k • Rg = 8 kn Analyze the circuit and answer the following: 1. Identify the value of Ing such that the large signal output sw is maximized. Round to 1 decimal place. Hint: Given the output characteristic (Ic vs. Vc), we want Veg such that Vec - Vcg = Vcg - VMIN- VMIN Vcc 2. What is the value of Vcg? Round to 2 decimal places. V 3. Is the transistor confirmed to be operating at the forward active region? Choose. 4. Calculate the swing of the amplifier. If the transistor is not in FA, put 0 as the answer, otherwise round your answer to 2 decimal places. V 5. Find the necessary value of Rp- Round to the nearest kiloohms.
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