Engineering, 25.03.2021 20:10 leapfroggiez
To design a dc bias circuit, some reasonable approximations may be used. The first
assumption is the voltage from emitter to ground. VE is typically one-fifth to one-tenth of the
supply voltage, VCC. Selecting the emitter voltage in this way will permit calculating the
emitter resistance, RE and then the collector resistance, RC by using the following equations:
VE ≈ 1 / 10 VCC
RE ≈ VE / IC
RC = (VCC - VCE - VE) / IC
Hence, the base voltage is approximately equal to the emitter voltage,
or more exactly, VB = VE + VBE.
Finally, determine the values for the base resistors, RB1 and RB2 by approximating
RB2 ≤ 1/ 10 ( βRE )
RB1 can be obtained by using the following equation,
VB = RB2
/ (RB2 + RB1 ) ( VCC )
Now, by referring to the proposed circuit as shown in Figure 1, select appropriate values for
RB1
, RB2
, RC and RE. Simulate the circuit and print the output waveform, Vo for a sinusoidal
input signal of 10mV at frequency 1kHz.
Answers: 1
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Abrake has a normal braking torque of 2.8 kip in and heat-dissipating cast-iron surfaces whose mass is 40 lbm. suppose a load is brought to rest in 8.0 s from an initial angular speed of 1600 rev/min using the normal braking torque; estimate the temperature rise of the heat dissipating surfaces.
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To design a dc bias circuit, some reasonable approximations may be used. The first
assumption is th...
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