Ph-Orp Driver Card Diagnostics; Ct (Conductivity, Boiler Cond., Condensate And Temperature) Driver Card Diagnostics; The 4-20Ma Input Driver Card Diagnostics; The 4-20Ma Output Driver Card Diagnostics - ProMinent Aegis-II Assembly And Operating Instructions Manual

Cooling tower and boiler controller
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9.9.1 pH-ORP Driver card Diagnostics

To see diagnostic press F1
Use Up/Down Arrow keys to navigate to
desired pH-ORP input then press F3
Diagnostic 1: sensor Type pH Sensor
Diagnostic 3: Gain will change based on
calibration
Diagnostic 4: Offset will change based on
calibration
Diagnostic 5: reports any type of Alarm
Diagnostic 6: Driver Type, Dual pH or ORP
Diagnostic 7: Factory Use
Diagnostic 8: Factory Use (Driver Type and
Product Code)
Diagnostic 9: Driver card Serial Number
Diagnostic 10:Factory Use
Diagnostic 11:Driver card Firmware version for
example "01.00.02.00"
9.9.2 CT (Conductivity, Boiler Cond.,
Condensate and Temperature) Driver
card Diagnostics
To see diagnostic press F1
Use Up/Down Arrow keys to navigate to
desired Analog Conductivity input then press
F3
Diagnostic 1: sensor Type (Conductivity,
Boiler Cond., Condensate)
Diagnostic 2: Raw sensor value
Diagnostic 3: Gain will change based on
calibration Sensor Value = Raw x GAIN +
OFFSET, for example 999 x 0.16+0=1599 μS
Diagnostic 4: Offset will change based on
calibration
Diagnostic 5: reports any type of Alarm
Diagnostic 6: Driver Type, Dual conductivity
Diagnostic 7: Factory Use
Diagnostic 8: Factory Use (Driver Type and
Product Code)
Diagnostic 9: Driver card Serial Number
Diagnostic 10: Factory Use
Diagnostic 11: Driver card Firmware version
for example "01.00.00.02"
Diagnostic 19: Temperature Input Value, for
example 75F
9.9.3 The 4-20mA Input Driver Card
Diagnostics
To see diagnostic press F1
Use Up/Down Arrow keys to navigate to
desired 4-20mA Input I/O then press F3
Diagnostic 1: sensor Type (CLE3 Chlorine, CBR
Bromine, CGE Oxidant, CLO Chlorine, CTE
Chlorine, Fluorescent, PAA Peracetic, pH
Sensor, ORPO Sensor, Temperature, Toroidal
Conductivity)
Diagnostic 2: sensor Raw value,
11.99mA=66.6%, Amperometric sensors use 4-
16mA for min and max range
Diagnostic 3:Gain, changes based on calibration
Sensor Value = Raw x GAIN + OFFSET, for
example 11.99mA x 0.833+(-3.333)= 6.655ppm
Diagnostic 4:Offse changes based on
calibration, see step 5
Diagnostic 5: reports any Alarm
Diagnostic 6:Driver Type, for example Dual 4-
20mA input
Diagnostic 7:Factory Use
Diagnostic 8: Factory Use
Diagnostic 9:Driver card Serial Number
Diagnostic 10:Factory Use
Diagnostic 11:Driver card Firmware version for
example "00.00.00.17"
Diagnostic 14:Sensor Range for example 0-
10ppm
9.9.4 The 4-20mA output Driver Card
Diagnostics
To see diagnostic press F1
Use Up/Down Arrow keys to navigate to desired
4-20mA output I/O then press F3
Diagnostic 1: sensor Type 4-20mA output
Diagnostic 3:Gain will change based on
calibration
Diagnostic 4:Offset changes based on
calibration
Diagnostic 5: reports any type of Alarm
Diagnostic 6:Driver Type, Dual 4-20mA Output
Diagnostic 7:Factory Use
Diagnostic 8: Factory Use (Driver Type and
Product Code)
Diagnostic 9:Driver card Serial Number
Diagnostic 10:Factory Use
Diagnostic 11:Driver card Firmware version for
example "00.00.00.01"
9.9.5 Serial Sensors (CTFs, LPR, DP) Driver
Card Diagnostics
To see diagnostic press F1
Use Up/Down Arrow keys to navigate to
desired I/O then press F3
Diagnostic 1: sensor Type (Conductivity,
Corrosion, Differential Pressure)
Page 57 of 102
Programming the Inputs

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