E
LECTRONIC
C
IRCUIT
A
NALYSIS
6-4
April 2000 Rosemount Analytical 245364-U
Model 755A Oxygen Analyzer
On initial application of power to comparator 3 (Figure 6-3), no potential exists on the
inverting terminal because no charge exists on capacitor, C37. If the transistor of
comparator 3 does not conduct, +15V is at the output terminal. With +15V at the output,
the potential on the non-inverting terminals will be about
±
2.3V because of the resistance
divider, R75, R76. Capacitor C37 will now start to charge positively through R78.
When the positive potential across C37 and at the inverting terminal of comparator 3
exceeds the potential on the non-inverting terminals, the transistor conducts. The output is
-15V. A full 30V drop appears across R77. The potential on the non-inverting terminal will
now be about -2.3V. C37 will not discharge through R78 until its potential exceeds that on
the non-inverting terminal. At that time, comparator 3 will switch polarity and start charging
C37 again. The result is that the potential across C37 will vary almost linearly with time
and form a ramp signal of about 6 Hz.
As the potential across C37 increases and decreases linearly, it affects the potential at the
top of the bridge circuit between R82 and R83 through R74. Because of the ramp action
charging and discharging C37, the potential between R82 and R83 varies approximately
from -1.85V to -1.92VDC.
The temperature sensing device, RT1, in the bridge circuit is a thermistor. The bridge is
designed to control the temperature in the case at 135°F (57
°
C). When the temperature is
135
°
F (57
°
C), the resistance of the thermistor RT1 will be at its lowest and the potential at
the junction of RT1 and R84 should be the same as the junction of R82 and R83.
Comparator 4 (Figure 6-4) does not allow pulses from the OR circuit (comparators 1 and
2) to operate Q6 or Triac Q7 in the case heater (Figure 6-5).
F
IGURE
6-3. C
ASE
H
EATER
C
ONTROL
C
IRCUIT
120 V
RMS
T1
19 VAC
TO POWER
SUPPLY
19 VAC
12
R67
10K
R72
4.75K
C36
.18uF
CR10
CR9
-15V
R71
21.5K
R69
2 M
R68
3.3K
R70
20M
R73
20M
R74
590K
+15V
-
+
1
-
+
2
-
+
3
-
+
4
R75
210K
R85
11.0K
R86
20M
R76
37.4K
C40
2200uF
C37
1.0uF
C39
.01uF
R83
63.4K
R84
169K
R82
9.07K
RT1
-15V
R78
249K
Q6
R80
10K
R79
10K
R81
56.2
C38
.18uF
R87
10K
R77
10K
CR11
T2
Содержание 755A
Страница 1: ...Rosemount Analytical MODEL 755A OXYGEN ANALYZER INSTRUCTION MANUAL 245364 U ...
Страница 16: ...PREFACE P 8 April 2000 Rosemount Analytical 245364 U Model 755A Oxygen Analyzer NOTES ...
Страница 34: ...UNPACKING AND INSTALLATION 2 14 April 2000 Rosemount Analytical 245364 U Model 755A Oxygen Analyzer NOTES ...
Страница 50: ...ROUTINE OPERATION 4 2 April 2000 Rosemount Analytical 245364 U Model 755A Oxygen Analyzer NOTES ...
Страница 76: ...ELECTRONIC CIRCUIT ANALYSIS 6 16 April 2000 Rosemount Analytical 245364 U Model 755A Oxygen Analyzer NOTES ...
Страница 86: ...ROUTINE SERVICE AND MAINTENANCE 7 10 April 2000 Rosemount Analytical 245364 U Model 755A Oxygen Analyzer NOTES ...
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