Given Ic = 0.8 mA, R1 = 68 Ko, R2 = 27 KN, Rc = 4.7 Kn, RE = 2.2 Ko, Rsig = 10 Ko, RL= 10 K2, po = 200, C, = 0.8 pF, fr 1 GHz. Neglect the effect of rx and ro. Find the midband gain and upper-3dB frequency of the %3D %3D %3D %3D CE amplifier. Also calculate the value of RL that reduce the midband gain to half the value, and hence find the upper-3dB frequency of the CE amplifier for the reduced gain.

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.Given Ic = 0.8 mA, R1 = 68 Ko, R2 = 27 Ko, Rc = 4.7 Ko, RE = 2.2 Ko,
Rsig = 10 Kn, RL= 10 K2, Bo = 200, C, = 0.8 pF, fr = 1 GHz. Neglect the
effect of rx and ro. Find the midband gain and upper-3dB frequency of the
CE amplifier. Also calculate the value of RL that reduce the midband gain
to half the value, and hence find the upper-3dB frequency of the CE
%3D
amplifier for the reduced gain.
Transcribed Image Text:.Given Ic = 0.8 mA, R1 = 68 Ko, R2 = 27 Ko, Rc = 4.7 Ko, RE = 2.2 Ko, Rsig = 10 Kn, RL= 10 K2, Bo = 200, C, = 0.8 pF, fr = 1 GHz. Neglect the effect of rx and ro. Find the midband gain and upper-3dB frequency of the CE amplifier. Also calculate the value of RL that reduce the midband gain to half the value, and hence find the upper-3dB frequency of the CE %3D amplifier for the reduced gain.
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