(a) Consider the MOSFET amplifier circuit as shown in Fig. 2(a). The value of Rs = 1.0 kN and assume that the MOSFET is operating in saturation mode. (i) Draw the small signal equivalent circuit. (ii) The peak input voltage, v,(peak) = 45 mV of the common drain amplifier circuit as shown in Fig. 2(a). The circuit for the output peak voltage, v,(peak) = 36 mV. Assume that Early voltage VA = 00 and K, = 2 mA/V², determine Ipo. p+VDD Cc Rc= 200 kN O+ vo Rs VGG

Introductory Circuit Analysis (13th Edition)
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Solve the 2 questions
(c) The
MOSFET
parameters
in
amplifier biasing
circuit
shown
in
Fig.
1(c)
an
are
Kn = 0.25 mA/V² and Vrn = 0.4 V. Answer the following:
9+ Vpp
Rp
Fig. 1(c)
(i) Given Vpp = 4 V and Rp = 1.0 kN, find the Ip for the circuit
(ii) Sketch the output DC load line
(iii) Plot the quiescent point on the DC load line
Transcribed Image Text:(c) The MOSFET parameters in amplifier biasing circuit shown in Fig. 1(c) an are Kn = 0.25 mA/V² and Vrn = 0.4 V. Answer the following: 9+ Vpp Rp Fig. 1(c) (i) Given Vpp = 4 V and Rp = 1.0 kN, find the Ip for the circuit (ii) Sketch the output DC load line (iii) Plot the quiescent point on the DC load line
(a) Consider the MOSFET amplifier circuit as shown in Fig. 2(a). The value of Rs = 1.0 kn and assume that
the MOSFET is operating in saturation mode.
(i)
Draw the small signal equivalent circuit.
(ii) The peak input voltage, v¿(peak) = 45 mV of the common drain amplifier circuit
as shown in Fig. 2(a). The circuit for the output peak voltage, vo(peak) = 36 mV.
Assume that Early voltage VA = 0 and K, = 2 mA/V², determine Ipo.
p+VDD
Cc
RG=
200 kN
+ vo
Rs
VGG
Transcribed Image Text:(a) Consider the MOSFET amplifier circuit as shown in Fig. 2(a). The value of Rs = 1.0 kn and assume that the MOSFET is operating in saturation mode. (i) Draw the small signal equivalent circuit. (ii) The peak input voltage, v¿(peak) = 45 mV of the common drain amplifier circuit as shown in Fig. 2(a). The circuit for the output peak voltage, vo(peak) = 36 mV. Assume that Early voltage VA = 0 and K, = 2 mA/V², determine Ipo. p+VDD Cc RG= 200 kN + vo Rs VGG
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