Common Source Inverting Amplifier with Feedback For the circuit in Figure 14, determine the DC bias conditions (solve for ID, VDs, and the voltage at the Drain). IDSS=100mA, Vp=-4V, RG=22kS, R₁=1k£, Rs=2702, RL=100k2. Assume Forward Active Region. Hint: For DC bias analysis, treat all caps as open circuits (note the pull-down resistor, RG, connected to the gate). For AC small signal analysis, treat all caps as shorts. +15 + AGND A00 RD. Rs. RG Probe O-Scope + RL Vout Probe GND Figure 14: Common-Source Inverting Amplifier

Electricity for Refrigeration, Heating, and Air Conditioning (MindTap Course List)
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ISBN:9781337399128
Author:Russell E. Smith
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Chapter11: Thermostats, Pressure Switches, And Other Electric Control Devices
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Common Source Inverting Amplifier with Feedback
For the circuit in Figure 14, determine the DC bias conditions (solve for ID, VDs, and the voltage at the Drain).
IDSS=100mA, Vp=-4V, RG=22kS, R₁=1k£, Rs=2702, RL=100k2. Assume Forward Active Region. Hint: For
DC bias analysis, treat all caps as open circuits (note the pull-down resistor, RG, connected to the gate). For AC
small signal analysis, treat all caps as shorts.
+15
+
AGND
A00
RD.
Rs.
RG
Probe
O-Scope
+
RL Vout
Probe GND
Figure 14: Common-Source Inverting Amplifier
Transcribed Image Text:Common Source Inverting Amplifier with Feedback For the circuit in Figure 14, determine the DC bias conditions (solve for ID, VDs, and the voltage at the Drain). IDSS=100mA, Vp=-4V, RG=22kS, R₁=1k£, Rs=2702, RL=100k2. Assume Forward Active Region. Hint: For DC bias analysis, treat all caps as open circuits (note the pull-down resistor, RG, connected to the gate). For AC small signal analysis, treat all caps as shorts. +15 + AGND A00 RD. Rs. RG Probe O-Scope + RL Vout Probe GND Figure 14: Common-Source Inverting Amplifier
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