1. The following circuit shows a discrete common source MOSFET amplilier. The MOSFTE is n-channel MOSFET. The transconductance of the n-channel MOSFET (g) is 3 mA/N. Rsig 100 k2, RGI 47 M2, Rsig =100 k2, Ra2 =10 MQ, Rs = 2 k2, Rp= 4,7 k2, %3D %3D RL= 10 k2, Rsig = 100 k2, Cgs =1 pF, Cgd 0.2 pF, Va = ∞ The C-S MOSFET amplifier has three low break frequencies in low frequency band at fLI =1 Hz (caused by Cci), fi2 = 100 Hz (caused by Cs), fi3 = 10H2 (caused by Cc2)

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QUESTION: Derive the transfer function, TL(s), and find the value of mid-band gain (AM).
1. The following circuit shows a discrete common source MOSFET amplifier.
The MOSFTE is n-channel MOSFET.
The transconductance of the n-channel MOSFET (gm) is 3 mA/V.
Rsig 100 k2, RGI = 47 MQ, Rsig = 100 k2, Ra2 = 10 MQ, Rs =2 k2, Rp =4,7 k2,
%3D
%3D
RL = 10 k2, Rsig = 100 k2, Cgs = 1 pF, Cgd 0.2 pF, VA = ∞
The C-S MOSFET amplifier has three low break frequencies in low frequency band at
fLI =1 Hz (caused by Cci), f2 = 100 Hz (caused by Cs), fi3 = 10HZ (caused by Ccz)
%3D
Transcribed Image Text:1. The following circuit shows a discrete common source MOSFET amplifier. The MOSFTE is n-channel MOSFET. The transconductance of the n-channel MOSFET (gm) is 3 mA/V. Rsig 100 k2, RGI = 47 MQ, Rsig = 100 k2, Ra2 = 10 MQ, Rs =2 k2, Rp =4,7 k2, %3D %3D RL = 10 k2, Rsig = 100 k2, Cgs = 1 pF, Cgd 0.2 pF, VA = ∞ The C-S MOSFET amplifier has three low break frequencies in low frequency band at fLI =1 Hz (caused by Cci), f2 = 100 Hz (caused by Cs), fi3 = 10HZ (caused by Ccz) %3D
VDD
RG1
RD
Cc2
Q1
Cc1
Rsig
G
RG2
Vsig
Transcribed Image Text:VDD RG1 RD Cc2 Q1 Cc1 Rsig G RG2 Vsig
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