Configuration
Function Prompt
Selections or
Parameter
Lower Display
Range of Setting
Upper Display
Definition
MULT
(See Note 1)
MULTIPLIER
—The following formula applies:
Alg1 = K x [(Input A x Ratio A + Bias A) x (Input C x Ratio C + Bias C) x (Input B x Ratio B + Bias B)]
x (Calc Hi – Calc Lo) + Alg1Bias
CARB A
CARBON POTENTIAL A
—Make this selection if
you have a Cambridge or Marathon monitor type
Zirconium Oxide sensor. See Note 3.
CARB B
CARBON POTENTIAL B
—Make this selection if
you have a Corning type Zirconium Oxide sensor.
This algorithm requires a temperature range within
the region of 1380 to 2000°F. See Note 3.
CARB C
CARBON POTENTIAL C
—Make this selection if
you have an A.A.C.C. type Zirconium Oxide sensor.
This algorithm requires a temperature range within
the region of 1380 °F to 2000 °F. See Note 3.
CARB D
CARBON POTENTIAL D
—Make this selection if
you have a Barber Coleman, MacDhui, or Bricesco
type Zirconium Oxide sensor. This algorithm
requires a temperature range within the region of
1380 to 2000°F. See Note 3.
FCC
CARBON POTENTIAL FCC
—Make this selection if
you have a Furnace Controls Corp Accucarb type
Zirconium Oxide sensor. This algorithm requires a
temperature range within the region of 1380 °F to
2000 °F. See Note 3.
DEW PT
DEWPOINT OF CARBONIZING ATMOSPHERE
—
Use this selection if you are using any Zirconium
Oxide Carbon Probe and you want to measure the
atmosphere in terms of Dewpoint. The range is –50
°F to 100 °F or –48 °C to 38 °C. This algorithm
requires a temperature range within the region of
1000 °F to 2200 °F and a minimum carbon probe
value of 800 millivolts.
OXYGEN
PERCENT OXYGEN RANGE
—Make this selection
if you are using a Zirconium Oxide Oxygen Probe to
measure Percent of Oxygen in a range of 0 to 40 %
O
2
. This algorithm requires a temperature range
within the region of 800 °F to 3000 °F.
12/04
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Summary of Contents for UDC3200 series
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