Saturday, October 14, 2017

Design of Single Stage Transistor Amplifier and Colpitt's Oscillator


Design of Single Stage Transistor Amplfier and RF Oscillator

Diagram

























Design parameters

Transistor available = 2 SC 828 ( general purpose low power )

b = 200 fT = 400 MHz

Vcc = 12 VDC

Vce (quiescent) = 6 V VE = 0.5 V

IE = IC = 0.5 mA RE = VE / IE = 0.5 / 0.5 = 1 k ohm

RC = (Vcc - Vc ) / IC = (12 – 6) / 0.5 = 12 k ohm

IB = IC / b = 0.5 / 200 = 2.5 uA

I PD >> IB = 40 x IB = 0.1 mA

R1 = ( VCC - VB ) / IPD = (12 – 1.1 ) / 0.1 = 109 k ohm

R2 = VB / IPD = 1.1 / 0.1 = 11 k ohm

re’ = 25 mV/ IC = 25 x 10-3 / 0.5 x 10-3 = 50 ohm


Av (max) = RC / re’ = 12000 / 50 = 240

rb = b re’ = 200 x 50 = 10000 = 10 k ohm

rin = rb || R1 || R2 = 5.0 k ohm

rs = 1k then V / Vs = rin / ( rin + rs ) = 5 / 6 = 0.8

Av = Avmax x V / VS = 190



Design of Colpitts L-C oscillator


Coil design


Length ( l ) = 6 cm = 6 x 10-2 m

Diameter = 1 cm Radius ( r ) = 5.0 x 10-3 m

No of Turns ( N ) = 100

Inductance ( L ) = uo N2 p r2 / l = 2.0 x 10-6 H

Capacitors to be used = 3.3 nF

Since 2 capacitors are in series total capacity (Ct) = 3.3 / 2 = 1.65 nF

Operating frequency ( f ) = ( 4 p2 x L x Ct ) -1/2

f = 2.8 MHz

By-pass Capacitor for RE ( CE ) >> 1 / 2 p f RE = 200 / ( 2 p x 2.88 x 106 x 1000 ) = 10 nF



Actual components to be used

Rc = 10 k ohm RE = 1 k ohm R1 = 100 k ohm R2 = 10 k ohm

CE = 10 nF


Observations


Vc = Vb =


VE =


f =





Amplitude Modulation









Note1: p in some relations is Greek pi = 3.14

Note2: Information given without any liability.














Fayyaz Mahmood

Design of a Bistable Multivibrator