Omega CNiS16D, CNiS8DH, CNiS32, CNiS8DV, CNiS8C manual Contact Closure Submenu, Active Submenu

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Press d

CONTACT CLOSURE SUBMENU:

Press d 11) Display flashes previous selection. Press b to N.ç.. Normally Closed or N.o.. Normally Open.

12) Display shows STRD stored message momentarily and then advances to AçTV only, if it was changed, otherwise press a to advance to AçTV Active Submenu.

Normally Open: If this feature is selected, then the relay is "energized" only when an alarm condition occurs.

Normally Closed: "Fail Safe" Mode. Relay is energized under "normal" conditions and becomes de-energized during alarm or power failure.

ACTIVE SUBMENU:

Press d 13) Display flashes previous selection. Press b to scroll through the available selections: ABoV Above, BELo Below, HI.Lo HI/Low and BAND Band. (Band is active if _DEV Deviation was selected).

Press d 14) Display shows STRD stored message momentarily and then advances to A.P.oN only, if it was changed, otherwise press a to advance to A.P.oN Alarm Enable/Disable at Power On

Submenu.

Above: Alarm 1 condition triggered when the process variable is greater than the Alarm Hi Value (Low value ignored).

Below: Alarm 1 condition triggered when the process variable is less than the Alarm Low Value (Hi value ignored).

Hi/Low: Alarm 1 condition triggered when the process variable is less than the Alarm Low Value or above the Hi Value.

Band: Alarm 1 condition triggered when the process variable is above or below the "band" set around Setpoint 1. Band equals Hi Value (Low Value ignored). A "band" is set around the Setpoint by the instrument only in the "Deviation" Mode.

The Band for the AL 1 would be following the Setpoint 1 value The Band for the AL 2 would be following the Setpoint 2 value. The Band or the Deviation Value should be entered under:

AL1 High (if they want Alarm 1) AL2 High (if they want Alarm 2)

AL Low value is ignored in the Band mode.

Example: if customer requires a Deviation Value of ±10 degrees around a setpoint (using Output 2 as alarm)

Output 2: disabled (this enables the Alarm 2)

Alarm 2: - Deviation

Contact Closure type: Deviation---Band

AL2 High: 10 (Band they want around Setpoint 2)

Then the Band Value is to be entered under AL2 HI: 10 not 80+10 = 90

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Contents CNiS8, CNiS8C CNiS8DH, CNiS8DV CNiS16, CNiS16D, CNiS32 Servicing North America Table of Contents List of Figures List of TablesTIP Part Introduction DescriptionSafety Considerations EMC ConsiderationsBefore You Begin Part Setup Front PanelFront Panel Annunciators Rear Panel ConnectionsPower InputOutput OptionElectrical Installation Power Connections Main Power Connections Fuse RequirementsProcess Current Figure below shows the wiring hookup for 4-wire bridge input Strain Gauge11 Snubber Circuits Wiring Hookup Outputs Wiring HookupWiring Outputs RS-232 Output Wiring Hookup b RS-485 Output Wiring HookupJumper Connections Excitation OutputTop View Location of S2 on 1/8 DIN Compact Unit Part Operation Configuration Mode Turning your Controller On for the First TimeMenu Configuration Flow Chart for ID and Set Points MenuID Number Menu Entering Your NON-DEFAULT Full Security ID NumberEntering Your NON-DEFAULT SETPOINT/ID Security ID Number Set Points Menu SetpointInput Type Menu Configuration MenuEnter Configuration Menu INPUT/READING Resolution Submenu Enter Input Type MenuInput Type Menu Ratiometric Operation SubmenuReading Configuration Menu Button Selection SubmenuEnter Reading Configuration Menu Decimal Point SubmenuKNOWN/UNKNOWN Loads Submenu Linearization Points SubmenuFilter Constant Submenu Input/Reading Scale and Offset Menu Example 1 Scaling with Known Loads On-Line CalibrationExample 2 Scaling without Known Loads Input Resolution MultiplierConversion Table Page Page Alarm 1 Menu Enter Alarm 1 MenuAlarm 1 LATCH/UNLATCH Submenu Alarm 1 ENABLE/DISABLE SubmenuAlarm 1 ABSOLUTE/DEVIATION Submenu Contact Closure Submenu Active SubmenuAlarm 1 HI Value Submenu Alarm ENABLE/DISABLE AT Power onAlarm 1 LOW Value Submenu Analog Output Retransmission Menu Enter Analog Output MenuAnalog Output ENABLE/DISABLE Submenu CURRENT/VOLTAGE SubmenuReading OUTFor example Alarm 2 Menu Enter Alarm 2 MenuEnter Loop Break Time Menu Alarm 2 ENABLE/DISABLE SubmenuLoop Break Time Menu Loop Break Time Value Submenu Loop Break ENABLE/DISABLE SubmenuSetpoint Deviation ENABLE/DISABLE Submenu Flow Chart for Output 1 Menu Output 1 MenuMINIMUM/PERCENT LOW Submenu Enter Output 1 MenuSelf Submenu MAXIMUM/PERCENT High Submenu Control Type OutputAnti Integral Submenu Action Type SubmenuAuto PID Submenu Start Auto Tune PID Proportional Band SubmenuCycle Time Submenu Reset Setup SubmenuRate Setup Submenu Damping Factor Submenu Deadband SubmenuControl Type Submenu Output 2 MenuEnter Output 2 Menu Be called Reverse Acting Cycle Time Submenu Enter Ramp and Soak Menu Ramp ENABLE/DISABLE SubmenuRamp & Soak Menu Soak Value Submenu Soak ENABLE/DISABLE SubmenuRamp Value Submenu Enter ID Code Menu Entering or Changing Your NON-DEFAULT ID CodeID Code Menu SETPOINT/ID Security Level Submenu Entering or Changing Your Default ID CodeFull Security Level Submenu 13 Flow Chart for Communication Option Menu Communication Option MenuEnter Communication Option Menu Communication Parameters SubmenuBaud Submenu Parity SubmenuStop BIT Submenu BUS Format SubmenuModbus Protocol Submenu Line Feed SubmenuData Separation Character Submenu Data Flow Mode SubmenuCommunication Interface Standard Submenu Alarm Status Submenu Data Format SubmenuMain Reading Submenu Peak Value SubmenuAddress Setup Submenu Unit Submenu not applicableAddress Value Submenu Transmit Time Interval SubmenuAlarm 1 Display Color Submenu Display Color Selection MenuEnter Display Color Selection Menu Normal Color Display SubmenuAlarm 2 Display Color Submenu ExampleDisplay Colors change sequences Green RED AmberAmber Green Part Specifications ControlControl Output 1 SSRExcitation InsulationGeneral Part Factory Preset Values Factory preset valueMenu Items Factory Preset Values PID Part CE Approvals Information Measurement CategoryPage Page WARRANTY/DISCLAIMER Return REQUESTS/INQUIRIESTemperature PRESSURE, Strain and ForceFLOW/LEVEL Data Acquisition