The circuit parameters of the diff-amp shown in Figure 11.2 are V + = 3 V , V − = − 3 V , and I Q = 0.25 mA . Base currents are negligible and V A = ∞ for each transistor. (a) Design the circuit such that a differential-mode output voltage of v o = v C 1 − v C 2 = 1.2 V is produced when a differential-mode input voltage of v d = v 1 − v 2 = 16 mV is applied. (b) What is the maximum possible common-mode input voltage that can be applied such that the input transistors remain biased in the forward-active mode? (c) For a one-sided output, what is the value of CMRR dB if the output resistance of the current source is R o = 4 M Ω ?
The circuit parameters of the diff-amp shown in Figure 11.2 are V + = 3 V , V − = − 3 V , and I Q = 0.25 mA . Base currents are negligible and V A = ∞ for each transistor. (a) Design the circuit such that a differential-mode output voltage of v o = v C 1 − v C 2 = 1.2 V is produced when a differential-mode input voltage of v d = v 1 − v 2 = 16 mV is applied. (b) What is the maximum possible common-mode input voltage that can be applied such that the input transistors remain biased in the forward-active mode? (c) For a one-sided output, what is the value of CMRR dB if the output resistance of the current source is R o = 4 M Ω ?
Solution Summary: The author explains the design of the circuit fulfilling the given conditions. The base currents are negligible and V_A=infty.
The circuit parameters of the diff-amp shown in Figure 11.2 are
V
+
=
3
V
,
V
−
=
−
3
V
,
and
I
Q
=
0.25
mA
.
Base currents are negligible and
V
A
=
∞
for each transistor. (a) Design the circuit such that a differential-mode output voltage of
v
o
=
v
C
1
−
v
C
2
=
1.2
V
is produced when a differential-mode input voltage of
v
d
=
v
1
−
v
2
=
16
mV
is applied. (b) What is the maximum possible common-mode input voltage that can be applied such that the input transistors remain biased in the forward-active mode? (c) For a one-sided output, what is the value of
CMRR
dB
if the output resistance of the current source is
R
o
=
4
M
Ω
?
A dc compound motor having a rating of 10 kW,
1150 r/min, 230 V, 50 A, has the following losses at
full-load:
bearing friction loss
40 W
brush friction loss
==
50 W
windage loss
=
200 W
(1)
total mechanical losses
=
290 W
(2)
iron losses
=
420 W
(3)
copper loss in the shunt field
=
120 W
copper losses at full-load:
(4)
a. in the armature
b. in the series field
c. in the commutating winding
total copper loss in the
500 W
25 W
70 W
armature circuit at full-load
=
595 W
4 What determines the power rating of a ma-
chine?
-5 If we cover up the vents in a motor, its out-
put power must be reduced. Explain.
-6 If a motor operates in a cold environment,
may we load it above its rated power? Why?
An electric motor driving a skip hoist with-
draws 1.5 metric tons of minerals from a
trench 20 m deep every 30 seconds. If the
hoist has an overall efficiency of 94 percent,
calculate the power output of the motor in
horsepower and in kilowatts.
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