The diode in the circuit shown has a reverse saturation current of 1.5 x 10-¹4 A and an ideality factor of 1.1. Assume the circuit is operating at 27°C. a. Determine VOUT. b. C. What is the small signal model of the diode under these conditions? You may neglect the parasitic capacitance across the diode junction and the resistance of the semiconductor material outside the diode junction. 2 V 1ΚΩ VOUT Use this small signal model to approximate the peak-to-peak value of the AC component of VOUT if a 1 mV RMS sinusoidal signal is added to the 2 V DC source.

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The diode in the circuit shown has a reverse saturation current
of 1.5 x 10-¹4 A and an ideality factor of 1.1. Assume the circuit
is operating at 27°C.
a. Determine VOUT.
b. What is the small signal model of the diode under these
conditions? You may neglect the parasitic capacitance
across the diode junction and the resistance of the
semiconductor material outside the diode junction.
C.
2 V
ww
1ΚΩ
▷
-1₁
VOUT
Use this small signal model to approximate the peak-to-peak value of the AC component of
VOUT if a 1 mV RMS sinusoidal signal is added to the 2 V DC source.
Transcribed Image Text:The diode in the circuit shown has a reverse saturation current of 1.5 x 10-¹4 A and an ideality factor of 1.1. Assume the circuit is operating at 27°C. a. Determine VOUT. b. What is the small signal model of the diode under these conditions? You may neglect the parasitic capacitance across the diode junction and the resistance of the semiconductor material outside the diode junction. C. 2 V ww 1ΚΩ ▷ -1₁ VOUT Use this small signal model to approximate the peak-to-peak value of the AC component of VOUT if a 1 mV RMS sinusoidal signal is added to the 2 V DC source.
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