The IAdministrationType provides the interface to administration variables and methods of the device and is formally defined in Table 16.

Table 16 – IAdministrationType definition

Attribute

Value

BrowseName

IAdministrationType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

DisplayLanguage

0:LocaleId

0:BaseDataVariableType

O

0:HasComponent

Variable

DateOfLastChange

0:DateTime

0:BaseDataVariableType

O

0:HasComponent

Method

FactoryReset

Defined in 9.1 

O

Conformance Units

PA-DIM IAdmin DisplayLanguage

PA-DIM IAdmin DateOfChange

PA-DIM IAdmin FactoryReset

DisplayLanguage: is the language used for the local display of the device. ABN597#004 defines language or languages set on the display.

DateOfLastChange: ABN604#001 defines parameter indicating the date and time at which one of the device parameters was changed the last time.

FactoryReset: ABN609#002 property the value of which indicates the kind of reset function to be executed. Note: Properties can be variables or methods according IEC 61987 CDD.

The components of IAdministrationType have additional references which are defined in Table 17.

Table 17 – IAdministrationType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

DisplayLanguage

0:HasDictionaryEntry

True

3:0112/2///61987#ABN597#004

DateOfLastChange

0:HasDictionaryEntry

True

3:0112/2///61987#ABN604#001

FactoryReset

0:HasDictionaryEntry

True

3:0112/2///61987#ABN609#002

The child Nodes of the IAdministrationType have additional Attribute values defined in Table 18.

Table 18 – IAdministrationType Attribute values for child Nodes

BrowsePath

Value Attribute

DisplayLanguage

en

DateOfLastChange

1/1/1601 12:00:00 AM

The ISignalSetType provides the interface to process variables of the device and is formally defined in Table 19.

Table 19 – ISignalSetType definition

Attribute

Value

BrowseName

ISignalSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Object

SignalSet

SignalSetType

O

Conformance Units

PA-DIM ISignal

SignalSet is a container object for the process variables of the device.

The ICalibrationType provides the interface to calibration variables of the sensor resp. signal and is formally defined in Table 20.

Table 20 – ICalibrationType definition

Attribute

Value

BrowseName

ICalibrationType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasProperty

Variable

CalibrationTimestamp

0:DateTime

0:PropertyType

O

0:HasComponent

Variable

TypeOfCalibration

0:UInt32

0:MultiStateDictionaryEntryDiscreteType

O

0:HasComponent

Object

CalibrationPointSet

CalibrationPointSetType

O

Conformance Units

PA-DIM ICalibration

PA-DIM ICalibration CalibrationTimestamp

PA-DIM ICalibration TypeOfCalibration

PA-DIM ICalibration CalibrationPointSet

CalibrationTimestamp is defined by IRDI as ABP544#001 which states “point in time when a measurement channel of a device was calibrated”.

TypeOfCalibration is defined by IRDI as ABH609#002 which states “classification of a calibration according to its intended use”.

CalibrationPointSet is a container object for calibration points of the sensor resp. signal.

The components of ICalibrationType have additional references which are defined in Table 21.

Table 21 – ICalibrationType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

CalibrationTimestamp

0:HasDictionaryEntry

True

3:0112/2///61987#ABP544#001

TypeOfCalibration

0:HasDictionaryEntry

True

3:0112/2///61987#ABH609#002

The child Nodes of the ICalibrationType have additional Attribute values defined in Table 22.

Table 22 – ICalibrationType Attribute values for child Nodes

BrowsePath

Value Attribute

CalibrationTimestamp

1/1/1601 12:00:00 AM

TypeOfCalibration

0

TypeOfCalibration

0:ValueAsDictionaryEntries

ns=3;s=0112/2///61987#ABP732#001

TypeOfCalibration

0:ValueAsText

adjustment

The IConductivityCalibrationType provides the interface to conductivity measurement specific calibration variables of the sensor resp. signal and is formally defined in Table 23.

Table 23 – IConductivityCalibrationType definition

Attribute

Value

BrowseName

IConductivityCalibrationType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

ConductivityCellConstant

0:Float

0:AnalogUnitType

O

Conformance Units

PA-DIM PhSignalType

ConductivityCellConstant is defined by IRDI as ABF161#001 which states “ratio of the distance between the electrodes to the electrode area”.

The components of IConductivityCalibrationType have additional references which are defined in Table 24.

Table 24 – IConductivityCalibrationType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

ConductivityCellConstant

0:HasDictionaryEntry

True

3:0112/2///61987#ABF161#001

ConductivityCellConstant

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

The child Nodes of the IConductivityCalibrationType have additional Attribute values defined in Table 25.

Table 25 – IConductivityCalibrationType Attribute values for child Nodes

BrowsePath

Value Attribute

ConductivityCellConstant

0.0

ConductivityCellConstant

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705744658DisplayName: cm⁻¹Description: reciprocal centimetre

The IAmperometricCalibrationType provides the interface to amperometric measurement specific calibration variables of the sensor resp. signal and is formally defined in Table 26.

Table 26 – IAmperometricCalibrationType definition

Attribute

Value

BrowseName

IAmperometricCalibrationType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

AmperometricSensorSlope

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

AmperometricSensorZeroPoint

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

AbsoluteAirPressure

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SensorT90

0:Float

0:PropertyType

O

Conformance Units

PA-DIM AmperometricSignalType

PA-DIM IAmperometricCalibration AbsoluteAirPressure

PA-DIM IAmperometricCalibration SensorT90

AmperometricSensorSlope is defined by IRDI as ABP572#001 which states “slope of an amperometric sensing element characteristic determined by the last calibration”.

AmperometricSensorZeroPoint is defined by IRDI as ABP573#001 which states “zero point of an amperometric sensing element characteristic determined by the last calibration”.

AbsoluteAirPressure is defined by IRDI as ABP574#001 which states “absolute air pressure under which the last calibration was performed”.

SensorT90 is defined by IRDI as ABP569#001 which states “t90 settling time determined by the last calibration”.

The components of IAmperometricCalibrationType have additional references which are defined in Table 27.

Table 27 – IAmperometricCalibrationType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

AmperometricSensorSlope

0:HasDictionaryEntry

True

3:0112/2///61987#ABP572#001

AmperometricSensorSlope

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

AmperometricSensorZeroPoint

0:HasDictionaryEntry

True

3:0112/2///61987#ABP573#001

AmperometricSensorZeroPoint

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

AbsoluteAirPressure

0:HasDictionaryEntry

True

3:0112/2///61987#ABP574#001

AbsoluteAirPressure

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorT90

0:HasDictionaryEntry

True

3:0112/2///61987#ABP569#001

The child Nodes of the IAmperometricCalibrationType have additional Attribute values defined in Table 28.

Table 28 – IAmperometricCalibrationType Attribute values for child Nodes

BrowsePath

Value Attribute

AmperometricSensorZeroPoint

0.0

AmperometricSensorZeroPoint

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705750616DisplayName: pADescription: picoampere

AbsoluteAirPressure

0.0

AbsoluteAirPressure

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705746519DisplayName: hPaDescription: hectopascal

SensorT90

0.0

The IOpticalFluorescenseQuenchingCalibrationType provides the interface to optical fluorescence quenching measurement specific calibration variables of the sensor resp. signal and is formally defined in Table 29.

Table 29 – IOpticalFluorescenseQuenchingCalibrationType definition

Attribute

Value

BrowseName

IOpticalFluorescenseQuenchingCalibrationType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

OpticalFluorescenseQuenchingSensorSlope

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

OpticalFluorescenseQuenchingSensorZeroPoint

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

AbsoluteAirPressure

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SensorT90

0:Float

0:PropertyType

O

Conformance Units

PA-DIM OpticalFluorescenseQuenchingSignalType

PA-DIM IOpticalFluorescenseQuenchingCalibration AbsoluteAirPressure

PA-DIM IOpticalFluorescenseQuenchingCalibration SensorT90

OpticalFluorescenseQuenchingSensorSlope is defined by IRDI as ABP586#001 which states “slope of an optical fluorescence quenching sensing element characteristic determined by the last calibration”.

OpticalFluorescenseQuenchingSensorZeroPoint is defined by IRDI as ABP587#001 which states “zero point of an optical fluorescence quenching sensing element characteristic determined by the last calibration”.

AbsoluteAirPressure is defined by IRDI as ABP574#001 which states “absolute air pressure under which the last calibration was performed”.

SensorT90 is defined by IRDI as ABP569#001 which states “t90 settling time determined by the last calibration”.

The components of IOpticalFluorescenseQuenchingCalibrationType have additional references which are defined in Table 30.

Table 30 – IOpticalFluorescenseQuenchingCalibrationType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

OpticalFluorescenseQuenchingSensorSlope

0:HasDictionaryEntry

True

3:0112/2///61987#ABP586#001

OpticalFluorescenseQuenchingSensorSlope

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

OpticalFluorescenseQuenchingSensorZeroPoint

0:HasDictionaryEntry

True

3:0112/2///61987#ABP587#001

OpticalFluorescenseQuenchingSensorZeroPoint

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

AbsoluteAirPressure

0:HasDictionaryEntry

True

3:0112/2///61987#ABP574#001

AbsoluteAirPressure

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorT90

0:HasDictionaryEntry

True

3:0112/2///61987#ABP569#001

The child Nodes of the IOpticalFluorescenseQuenchingCalibrationType have additional Attribute values defined in Table 31.

Table 31 – IOpticalFluorescenseQuenchingCalibrationType Attribute values for child Nodes

BrowsePath

Value Attribute

OpticalFluorescenseQuenchingSensorZeroPoint

0.0

OpticalFluorescenseQuenchingSensorZeroPoint

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741621DisplayName: µsDescription: microsecond

AbsoluteAirPressure

0.0

AbsoluteAirPressure

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705746519DisplayName: hPaDescription: hectopascal

SensorT90

0.0

The IGasChromatographCalibrationType provides the interface to gaschromatograph measurement specific calibration variables of the sensor resp. signal and is formally defined in Table 32.

Table 32 – IGasChromatographCalibrationTypedefinition

Attribute

Value

BrowseName

IGasChromatographCalibrationType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasProperty

Variable

CalibrationRange1ResponseFactor

0:Float

0:PropertyType

O

0:HasComponent

Variable

CalibrationRange1LowerRangeValue

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

CalibrationRange1UpperRangeValue

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

CalibrationRange2ResponseFactor

0:Float

0:PropertyType

O

0:HasComponent

Variable

CalibrationRange2LowerRangeValue

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

CalibrationRange2UpperRangeValue

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

CalibrationRange3ResponseFactor

0:Float

0:PropertyType

O

0:HasComponent

Variable

CalibrationRange3LowerRangeValue

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

CalibrationRange3UpperRangeValue

0:Float

0:AnalogUnitType

O

Conformance Units

PA-DIM GasChromatograph CalibrationRange1

PA-DIM GasChromatograph CalibrationRange2

PA-DIM GasChromatograph CalibrationRange3

CalibrationRange1ResponseFactor is defined by IRDI as ABQ024#001 which states "ratio between the concentration of a compound being analysed and the response of the detector to that compound for the calibration range 1".

CalibrationRange1LowerRangeValue is defined by IRDI as ABQ025#001 which states "volume concentration value assigned to the lower range end-value of calibration range 1".

CalibrationRange1UpperRangeValue is defined by IRDI as ABQ026#001 which states "volume concentration value assigned to the upper range end-value of calibration range 1".

CalibrationRange2ResponseFactor is defined by IRDI as ABQ027#001 which states "ratio between the concentration of a compound being analysed and the response of the detector to that compound for the calibration range 2".

CalibrationRange2LowerRangeValue is defined by IRDI as ABQ028#001 which states "volume concentration value assigned to the lower range end-value of calibration range 2".

CalibrationRange2UpperRangeValue is defined by IRDI as ABQ029#001 which states "volume concentration value assigned to the upper range end-value of calibration range 2".

CalibrationRange3ResponseFactor is defined by IRDI as ABQ030#001 which states "ratio between the concentration of a compound being analysed and the response of the detector to that compound for the calibration range 3".

CalibrationRange3LowerRangeValue is defined by IRDI as ABQ031#001 which states "volume concentration value assigned to the lower range end-value of calibration range 3".

CalibrationRange3UpperRangeValue is defined by IRDI as ABQ032#001 which states "volume concentration value assigned to the upper range end-value of calibration range 3".

The components of IGasChromatographCalibrationType have additional references which are defined in Table 33.

Table 33 – IGasChromatographCalibrationType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

CalibrationRange1ResponseFactor

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ024#001

CalibrationRange1LowerRangeValue

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ025#001

CalibrationRange1UpperRangeValue

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ026#001

CalibrationRange2ResponseFactor

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ027#001

CalibrationRange2LowerRangeValue

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ028#001

CalibrationRange2UpperRangeValue

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ029#001

CalibrationRange3ResponseFactor

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ030#001

CalibrationRange3LowerRangeValue

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ031#001

CalibrationRange3UpperRangeValue

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ032#001

The child Nodes of the IGasChromatographCalibrationType have additional Attribute values defined in Table 34.

Table 34 – IGasChromatographCalibrationType Attribute values for child Nodes

BrowsePath

Value Attribute

CalibrationRange1ResponseFactor

1.0

CalibrationRange1LowerRangeValue

0.0

CalibrationRange1LowerRangeValue

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705848917

DisplayName: ppm

Description: parts per million

CalibrationRange1UpperRangeValue

100.0

CalibrationRange1UpperRangeValue

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705848917

DisplayName: ppm

Description: parts per million

CalibrationRange2ResponseFactor

1.0

CalibrationRange2LowerRangeValue

0.0

CalibrationRange2LowerRangeValue

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705848917

DisplayName: ppm

Description: parts per million

CalibrationRange2UpperRangeValue

100.0

CalibrationRange2UpperRangeValue

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705848917

DisplayName: ppm

Description: parts per million

CalibrationRange3ResponseFactor

1.0

CalibrationRange3LowerRangeValue

0.0

CalibrationRange3LowerRangeValue

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705848917

DisplayName: ppm

Description: parts per million

CalibrationRange3UpperRangeValue

100.0

CalibrationRange3UpperRangeValue

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705848917

DisplayName: ppm

Description: parts per million

The IPhCalibrationType provides the interface to pH measurement specific calibration variables of the sensor resp. signal and is formally defined in .

Table 35 – IPhCalibrationType definition

Attribute

Value

BrowseName

IPhCalibrationType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

SensorSlope

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SensorAsymmetryPotential

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SensorT90

0:Float

0:PropertyType

O

Conformance Units

PA-DIM PhSignalType

PA-DIM IPhCalibration SensorT90

SensorSlope is defined by IRDI as ABP567#001 which states “slope of a pH sensing element characteristic, expressed as the voltage change of the pH sensor per pH value, determined by the last calibration”.

SensorAsymmetryPotential is defined by IRDI as ABP568#001 which states “asymmetry potential of a pH sensing element characteristic determined by the last calibration”.

SensorT90is defined by IRDI as ABP569#001 which states “t90 settling time determined by the last calibration”.

The components of IPhCalibrationType have additional references which are defined in Table 36.

Table 36 – IPhCalibrationType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

SensorSlope

0:HasDictionaryEntry

True

3:0112/2///61987#ABP567#001

SensorSlope

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorAsymmetryPotential

0:HasDictionaryEntry

True

3:0112/2///61987#ABP568#001

SensorAsymmetryPotential

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorT90

0:HasDictionaryEntry

True

3:0112/2///61987#ABP569#001

The child Nodes of the IPhCalibrationType have additional Attribute values defined in Table 37.

Table 37 – IPhCalibrationType Attribute values for child Nodes

BrowsePath

Value Attribute

SensorSlope

0.0

SensorSlope

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705749524DisplayName: mV

Description: millivolt

SensorAsymmetryPotential

0.0

SensorAsymmetryPotential

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705749524

DisplayName: mV

Description: millivolt

SensorT90

0.0

The IGeneralDeviceConditionSetType provides the interface to condition variables of the device and its components and is formally defined in Table 38.

Table 38 – IGeneralDeviceConditionSetType definition

Attribute

Value

BrowseName

IGeneralDeviceConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Object

GeneralDeviceConditions

GeneralDeviceConditionSetType

O

0:HasComponent

Object

DeviceComponentConditions

0:BaseObjectType

O

Conformance Units

PA-DIM IGeneralDeviceConditionSet

PA-DIM IGeneralDeviceConditionSet DeviceComponentConditions

GeneralDeviceConditions is a container object for general condition variables of the device.

DeviceComponentConditions is a container object for condition variables of the device components.

Table 39 – IGeneralDeviceConditionSetType additional subcomponents

BrowsePath

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

DeviceComponentConditions

0:HasComponent

Object

<DeviceComponentIdentifier>

GeneralDeviceConditionSetType

OP

<DeviceComponentIdentifier> is an optional placeholder for an object containing the condition variables related to a specific device component.

The ITocDeviceConditionSetType provides the interface to TOC device specific condition variables and is formally defined in Table 40.

Table 40 – ITocDeviceConditionSetType definition

Attribute

Value

BrowseName

ITocDeviceConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

CarrierGasVolumeFlow

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

CarrierGasGaugePressure

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

ReactorTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SampleWaterVolumeFlow

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

ReferenceInjectionVolume

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

ActualInjectedVolume

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

CoolerTemperature

0:Float

0:AnalogUnitType

O

Conformance Units

PA-DIM TocAnalyserType

PA-DIM TocAnalyserType CarrierGasGaugePressure

PA-DIM TocAnalyserType SampleWaterVolumeFlow

PA-DIM TocAnalyserType ActualInjectedVolume

CarrierGasVolumeFlow is defined by IRDI as ABP558#001 which states “volume flow of the auxiliary (compressed air) gas supply”.

CarrierGasGaugePressure is defined by IRDI as ABP559#001 which states “overpressure of the auxiliary (compressed air) gas supply in the system due to flow resistance within the complete analytical system”.

ReactorTemperature is defined by IRDI as ABP554#001 which states “measured temperature of a high temperature combustion system”.

SampleWaterVolumeFlow is defined by IRDI as ABP561#001 which states “volume flow of a liquid sample inside the device”.

ReferenceInjectionVolume is defined by IRDI as ABP563#001 which states “volume of liquid that should be injected by the injection system”.

ActualInjectedVolume is defined by IRDI as ABP564#001 which states “volume of liquid that has been injected by the injection system”.

CoolerTemperature is defined by IRDI as ABP555#001 which states “measured temperature of the gas cooler”.

The components of ITocDeviceConditionSetType have additional references which are defined in Table 41.

Table 41 – ITocDeviceConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

CarrierGasVolumeFlow

0:HasDictionaryEntry

True

3:0112/2///61987#ABP558#001

CarrierGasVolumeFlow

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

CarrierGasGaugePressure

0:HasDictionaryEntry

True

3:0112/2///61987#ABP559#001

CarrierGasGaugePressure

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

ReactorTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP554#001

ReactorTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SampleWaterVolumeFlow

0:HasDictionaryEntry

True

3:0112/2///61987#ABP561#001

SampleWaterVolumeFlow

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

ReferenceInjectionVolume

0:HasDictionaryEntry

True

3:0112/2///61987#ABP563#001

ReferenceInjectionVolume

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

ActualInjectedVolume

0:HasDictionaryEntry

True

3:0112/2///61987#ABP564#001

ActualInjectedVolume

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

CoolerTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP555#001

CoolerTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

The child Nodes of the ITocDeviceConditionSetType have additional Attribute values defined in Table 42.

Table 42 – ITocDeviceConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

CarrierGasVolumeFlow

0.0

CarrierGasVolumeFlow

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705747637DisplayName: l/hDescription: litre per hour

CarrierGasGaugePressure

0.0

CarrierGasGaugePressure

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705749552DisplayName: mbarDescription: millibar

ReactorTemperature

0.0

ReactorTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

SampleWaterVolumeFlow

0.0

SampleWaterVolumeFlow

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705749685DisplayName: ml/min

Description: millilitre per minute

ReferenceInjectionVolume

0.0

ReferenceInjectionVolume

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705749652DisplayName: ml

Description: millilitre

ActualInjectedVolume

0.0

ActualInjectedVolume

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705749652DisplayName: ml

Description: millilitre

CoolerTemperature

0.0

CoolerTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

The IFlameIonisationDeviceConditionSetType provides the interface to FID specific condition variables and is formally defined in Table 43.

Table 43 – IFlameIonisationDeviceConditionSetType definition

Attribute

Value

BrowseName

IFlameIonisationDeviceConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

CatalystTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

FuelGasPressure

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

CombustionAirPressure

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

BlockTemperature

0:Float

0:AnalogUnitType

O

Conformance Units

PA-DIM FlameIonisationDetectorType CatalystTemperature

PA-DIM FlameIonisationDetectorType FuelGasPressure

PA-DIM FlameIonisationDetectorType CombustionAirPressure

PA-DIM FlameIonisationDetectorType BlockTemperature

CatalystTemperature is defined by IRDI as ABP576#001 which states “measured temperature of a catalyst”.

FuelGasPressure is defined by IRDI as ABP578#001 which states “measured absolute pressure of the fuel gas”.

CombustionAirPressure is defined by IRDI as ABP579#001 which states “measured absolute pressure of the combustion air”.

BlockTemperature is defined by IRDI as ABP577#001 which states “measured temperature of a flame ionisation detector block”.

The components of IFlameIonisationDeviceConditionSetType have additional references which are defined in Table 44.

Table 44 – IFlameIonisationDeviceConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

CatalystTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP576#001

CatalystTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

FuelGasPressure

0:HasDictionaryEntry

True

3:0112/2///61987#ABP578#001

FuelGasPressure

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

CombustionAirPressure

0:HasDictionaryEntry

True

3:0112/2///61987#ABP579#001

CombustionAirPressure

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

BlockTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP577#001

BlockTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

The child Nodes of the IFlameIonisationDeviceConditionSetType have additional Attribute values defined in Table 45.

Table 45 – IFlameIonisationDeviceConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

CatalystTemperature

0.0

CatalystTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

FuelGasPressure

0.0

FuelGasPressure

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705749552DisplayName: mbarDescription: millibar

CombustionAirPressure

0.0

CombustionAirPressure

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705749552DisplayName: mbarDescription: millibar

BlockTemperature

0.0

BlockTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

The IGasChromatographDeviceConditionSetType provides the interface to gas chromatograph device specific condition variables and is formally defined in Table 46

Table 46 – IGasChromatographDeviceConditionSetType definition

Attribute

Value

BrowseName

IGasChromatographDeviceConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasProperty

Variable

ValveName

0:LocalizedText[]

0:PropertyType

O

0:HasProperty

Variable

ValveSwitchingCyclesCounter

0:UInt32[]

0:PropertyType

O

0:HasComponent

Variable

TotalAreaMeasuredPeaks

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

BaselineNoise

0:Float

0:AnalogUnitType

O

Conformance Units

PA-DIM GasChromatographType

PA-DIM GasChromatographType Valve

PA-DIM GasChromatographType TotalAreaMeasuredPeaks

PA-DIM GasChromatographType BaselineNoise

ValveName is defined by IRDI as ABQ046#001 which states “name of the valve”.

ValveSwitchingCyclesCounter is defined by IRDI as ABQ007#001 which states “number of opening or closing operations of a valve”.

TotalAreaMeasuredPeaks is defined by IRDI as ABQ043#001 which states “integral of the area under the output peaks of all chromatogram substance signals in units defined by the manufacturer”.

BaselineNoise is defined by IRDI as ABQ036#001 which states “short-term variation of the baseline from a straight line caused by electric signal fluctuations from the detector”.

The components of IGasChromatographDeviceConditionSetType have additional references which are defined in Table 48.

Table 47 – IGasChromatographDeviceConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

ValveName

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ046#001

ValveSwitchingCyclesCounter

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ007#001

TotalAreaMeasuredPeaks

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ043#001

BaselineNoise

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ036#001

The child Nodes of the IGasChromatographDeviceConditionSetType have additional Attribute values defined in Table 48.

Table 48 – IGasChromatographDeviceConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

TotalAreaMeasuredPeaks

0.0

TotalAreaMeasuredPeaks

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705741328

DisplayName: %

Description: percent

BaselineNoise

0.0

BaselineNoise

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705749524

DisplayName: mVDescription: millivolt

The IFtnirOrFtirDeviceConditionSetType provides the interface to Fourier Transform Near-Infrared Spectroscopy or Fourier Transform Infrared Spectroscopy device specific condition variables and is formally defined in Table 49.

Table 49 – IFtnirOrFtirDeviceConditionSetType definition

Attribute

Value

BrowseName

IFtnirOrFtirDeviceConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasProperty

Variable

Watchdog

0:Boolean

0:PropertyType

O

0:HasProperty

Variable

RemainingDataStorageCapacity

0:Float

0:PropertyType

O

Conformance Units

PA-DIM FtnirOrFtirSpectrometerType

PA-DIM FtnirOrFtirSpectrometerType Watchdog

PA-DIM FtnirOrFtirSpectrometerType RemainingDataStorageCapacity

Watchdog is defined by IRDI as ABP996#002 which states “existence of a function for failure detection of installed hardware and software”

RemainingDataStorageCapacity is defined by IRDI as ABQ039#001 which states “amount of memory remaining for storage of device data, measured in terabytes”.

The components of IFtnirOrFtirDeviceConditionSetType have additional references which are defined in Table 50.

Table 50 – IFtnirOrFtirDeviceConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

Watchdog

0:HasDictionaryEntry

True

3:0112/2///61987#ABP996#002

RemainingDataStorageCapacity

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ039#001

The child Nodes of the IFtnirOrFtirDeviceConditionSetType have additional Attribute values defined in Table 51.

Table 51 – IFtnirOrFtirDeviceConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

RemainingDataStorageCapacity

0.0

The IDiodeArrayDeviceConditionSetType provides the interface to Diode array spectrometer device specific condition variables and is formally defined in Table 52.

Table 52 – IDiodeArrayDeviceConditionSetType definition

Attribute

Value

BrowseName

IDiodeArrayDeviceConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasProperty

Variable

Watchdog

0:Boolean

0:PropertyType

O

0:HasProperty

Variable

RemainingDataStorageCapacity

0:Float

0:PropertyType

O

Conformance Units

PA-DIM DiodeArraySpectrometerType

PA-DIM DiodeArraySpectrometerType Watchdog

PA-DIM DiodeArraySpectrometerType RemainingDataStorageCapacity

Watchdog is defined by IRDI as ABP996#002 which states “existence of a function for failure detection of installed hardware and software”

RemainingDataStorageCapacity is defined by IRDI as ABQ039#001 which states “amount of memory remaining for storage of device data, measured in terabytes”.

The components of IDiodeArrayDeviceConditionSetType have additional references which are defined in Table 53.

Table 53 – IDiodeArrayDeviceConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

Watchdog

0:HasDictionaryEntry

True

3:0112/2///61987#ABP996#002

RemainingDataStorageCapacity

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ039#001

The child Nodes of the IDiodeArrayDeviceConditionSetType have additional Attribute values defined in Table 54.

Table 54 – IDiodeArrayDeviceConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

RemainingDataStorageCapacity

0.0

The IRamanDeviceConditionSetType provides the interface to Raman spectrometer device specific condition variables and is formally defined in Table 55.

Table 55 – IRamanDeviceConditionSetType definition

Attribute

Value

BrowseName

IRamanDeviceConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasProperty

Variable

Watchdog

0:Boolean

0:PropertyType

O

0:HasProperty

Variable

RemainingDataStorageCapacity

0:Float

0:PropertyType

O

Conformance Units

PA-DIM RamanSpectrometerType

PA-DIM RamanSpectrometerType Watchdog

PA-DIM RamanSpectrometerType RemainingDataStorageCapacity

Watchdog is defined by IRDI as ABP996#002 which states “existence of a function for failure detection of installed hardware and software”

RemainingDataStorageCapacity is defined by IRDI as ABQ039#001 which states “amount of memory remaining for storage of device data, measured in terabytes”.

The components of IRamanDeviceConditionSetType have additional references which are defined in Table 56.

Table 56 – IRamanDeviceConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

Watchdog

0:HasDictionaryEntry

True

3:0112/2///61987#ABP996#002

RemainingDataStorageCapacity

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ039#001

The child Nodes of the IRamanDeviceConditionSetType have additional Attribute values defined in Table 57.

Table 57 – IRamanDeviceConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

RemainingDataStorageCapacity

0.0

The INonDispersiveInfraredSignalConditionSetType provides the interface to NDIR measurement signal specific condition variables and is formally defined in Table 58.

Table 58 – INonDispersiveInfraredSignalConditionSetType definition

Attribute

Value

BrowseName

INonDispersiveInfraredSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

ChopperFrequencyDeviation

0:Float

0:BaseAnalogType

O

0:HasComponent

Variable

AbsoluteSampleGasPressure

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SampleCellTemperature

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SourceResidualLife

0:Float

0:PropertyType

O

Conformance Units

PA-DIM NonDispersiveInfraredSignalType ChopperFrequencyDeviation

PA-DIM NonDispersiveInfraredSignalType

PA-DIM NonDispersiveInfraredSignalType AbsoluteSampleGasPressure

ChopperFrequencyDeviation is defined by IRDI as ABP553#001 which states “relative change in the chopper frequency of a detector during a measurement”.

AbsoluteSampleGasPressure is defined by IRDI as ABP560#001 which states “absolute pressure of sample gas inside a detection system”.

SampleCellTemperature is defined by IRDI as ABP556#001 which states “measured temperature of the sample cell”.

SourceResidualLife is defined by IRDI as ABP552#001 which states “degradation of a radiation source expressed as a value between 1 (good) and 0 (bad)”.

The components of INonDispersiveInfraredSignalConditionSetType have additional references which are defined in Table 59.

Table 59 – INonDispersiveInfraredSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

ChopperFrequencyDeviation

0:HasDictionaryEntry

True

3:0112/2///61987#ABP553#001

ChopperFrequencyDeviation

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

AbsoluteSampleGasPressure

0:HasDictionaryEntry

True

3:0112/2///61987#ABP560#001

AbsoluteSampleGasPressure

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SampleCellTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP556#001

SampleCellTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SourceResidualLife

0:HasDictionaryEntry

True

3:0112/2///61987#ABP552#001

The child Nodes of the INonDispersiveInfraredSignalConditionSetType have additional Attribute values defined in Table 60.

Table 60 – INonDispersiveInfraredSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

ChopperFrequencyDeviation

0.0

ChopperFrequencyDeviation

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705741328

DisplayName: %

Description: percent

AbsoluteSampleGasPressure

0.0

AbsoluteSampleGasPressure

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705749552DisplayName: mbarDescription: millibar

SampleCellTemperature

0.0

SampleCellTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

SourceResidualLife

1.0

The ITocSignalConditionSetType provides the interface to TOC measurement signal specific condition variables and is formally defined in Table 61.

Table 61 – ITocSignalConditionSetType definition

Attribute

Value

BrowseName

ITocSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

ChopperFrequencyDeviation

0:Float

0:BaseAnalogType

O

0:HasComponent

Variable

RelativeReagentLevel

0:Float{Any}

0:AnalogUnitType

O

0:HasComponent

Variable

SampleCellTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

DetectorZeroSignal

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SourceResidualLife

0:Float

0:PropertyType

O

0:HasComponent

Variable

AbsoluteSampleGasPressure

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SampleGasVolumeFlow

0:Float

0:AnalogUnitType

O

Conformance Units

PA-DIM TocSignalType

PA-DIM TocSignalType ChopperFrequencyDeviation

PA-DIM TocSignalType RelativeReagentLevel

PA-DIM TocSignalType AbsoluteSampleGasPressure

PA-DIM TocSignalType SampleGasVolumeFlow

ChopperFrequencyDeviation is defined by IRDI as ABP553#001 which states “relative change in the chopper frequency of a detector during a measurement”.

RelativeReagentLevel is defined by IRDI as ABP557#001 which states “relative filling level of auxiliary reagent”.

SampleCellTemperature is defined by IRDI as ABP556#001 which states “measured temperature of the sample cell”.

DetectorZeroSignal is defined by IRDI as ABP551#001 which states “offset signal of the detector prior to the injection of the sample”.

SourceResidualLife is defined by IRDI as ABP552#001 which states “degradation of a radiation source expressed as a value between 1 (good) and 0 (bad)”.

AbsoluteSampleGasPressure is defined by IRDI as ABP560#001 which states “absolute pressure of sample gas inside a detection system”.

SampleGasVolumeFlow is defined by IRDI as ABP562#001 which states “volume flow of a sample gas through a detection system”.

The components of ITocSignalConditionSetType have additional references which are defined in Table 62.

Table 62 – ITocSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

ChopperFrequencyDeviation

0:HasDictionaryEntry

True

3:0112/2///61987#ABP553#001

ChopperFrequencyDeviation

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

RelativeReagentLevel

0:HasDictionaryEntry

True

3:0112/2///61987#ABP557#001

RelativeReagentLevel

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SampleCellTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP556#001

SampleCellTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

DetectorZeroSignal

0:HasDictionaryEntry

True

3:0112/2///61987#ABP551#001

DetectorZeroSignal

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SourceResidualLife

0:HasDictionaryEntry

True

3:0112/2///61987#ABP552#001

AbsoluteSampleGasPressure

0:HasDictionaryEntry

True

3:0112/2///61987#ABP560#001

AbsoluteSampleGasPressure

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SampleGasVolumeFlow

0:HasDictionaryEntry

True

3:0112/2///61987#ABP562#001

SampleGasVolumeFlow

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

The child Nodes of the ITocSignalConditionSetType have additional Attribute values defined in Table 63.

Table 63 – ITocSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

ChopperFrequencyDeviation

0.0

ChopperFrequencyDeviation

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705741328

DisplayName: %

Description: percent

RelativeReagentLevel

0.0

RelativeReagentLevel

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705741328

DisplayName: %

Description: percent

SampleCellTemperature

0.0

SampleCellTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

DetectorZeroSignal

0.0

DetectorZeroSignal

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705848917

DisplayName: ppm

Description: parts per million

SourceResidualLife

1.0

AbsoluteSampleGasPressure

0.0

AbsoluteSampleGasPressure

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705749552DisplayName: mbarDescription: millibar

SampleGasVolumeFlow

0.0

SampleGasVolumeFlow

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705747637

DisplayName: l/h

Description: litre per hour

The IParamagneticSignalConditionSetType provides the interface to paramagnetic measurement signal specific condition variables and is formally defined in Table 64.

Table 64 – IParamagneticSignalConditionSetType definition

Attribute

Value

BrowseName

IParamagneticSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

SampleTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

Conformance Units

PA-DIM ParamagneticSignalType

SampleTemperature is defined by IRDI as ABP575#001 which states “temperature of the sample at the point of measurement”.

SensingElementTemperature is defined by IRDI as ABP565#001 which states “temperature measured at a sensing element”.

The components of IParamagneticSignalConditionSetType have additional references which are defined in Table 65.

Table 65 – IParamagneticSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

SampleTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP575#001

SampleTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

SensingElementTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

The child Nodes of the IParamagneticSignalConditionSetType have additional Attribute values defined in Table 66.

Table 66 – IParamagneticSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

SampleTemperature

0.0

SampleTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

SensingElementTemperature

0.0

SensingElementTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

The IThermalConductivitySignalConditionSetType provides the interface to thermal conductivity measurement signal specific condition variables and is formally defined in Table 67.

Table 67 – IThermalConductivitySignalConditionSetType definition

Attribute

Value

BrowseName

IThermalConductivitySignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

SampleTemperature

0:Float

0:AnalogUnitType

O

Conformance Units

PA-DIM ThermalConductivitySignalType

SampleTemperature is defined by IRDI as ABP575#001 which states “temperature of the sample at the point of measurement”.

The components of IThermalConductivitySignalConditionSetType have additional references which are defined in Table 68.

Table 68 – IThermalConductivitySignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

SampleTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP575#001

SampleTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

The child Nodes of the IThermalConductivitySignalConditionSetType have additional Attribute values defined in Table 69.

Table 69 – IThermalConductivitySignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

SampleTemperature

0.0

SampleTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

The ITunableDiodeLaserSignalConditionSetType provides the interface to TDL measurement signal specific condition variables and is formally defined in Table 70.

Table 70 – ITunableDiodeLaserSignalConditionSetType definition

Attribute

Value

BrowseName

ITunableDiodeLaserSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

AbsoluteSampleGasPressure

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SampleTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

TransmissionRatio

0:Float

0:DataItemType

O

0:HasComponent

Variable

SignalNoiseRatio

0:Float

0:DataItemType

O

0:HasComponent

Variable

LaserTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SignalFitQuality

0:Float

0:DataItemType

O

Conformance Units

PA-DIM TunableDiodeLaserSignalType

PA-DIM TunableDiodeLaserSignalType SignalFitQuality

PA-DIM TunableDiodeLaserSignalType SignalNoiseRatio

PA-DIM TunableDiodeLaserSignalType TransmissionRatio

PA-DIM TunableDiodeLaserSignalType LaserTemperature

PA-DIM TunableDiodeLaserSignalType AbsoluteSampleGasPressure

AbsoluteSampleGasPressure is defined by IRDI as ABP560#001 which states “absolute pressure of sample gas inside a detection system”.

SampleTemperature is defined by IRDI as ABP575#001 which states “temperature of the sample at the point of measurement”.

TransmissionRatio is defined by IRDI as ABP582#001 which states “ratio of the value of a specified radiation quantity in the centre of a beam of specified radiation quality and under specified geometrical conditions after passage through a material to the value which would be present at the same position without this material in the beam”.

SignalNoiseRatio is defined by IRDI as ABP581#001 which states “linear ratio of the signal level to the noise level as measured under specified conditions”.

LaserTemperature is defined by IRDI as ABP583#001 which states “measured temperature of the element that defines the wavelength of a laser”.

SignalFitQuality is defined by IRDI as ABP580#001 which states “degree of correlation between the calculated and the measured absorption signal”.

The components of ITunableDiodeLaserSignalConditionSetType have additional references which are defined in Table 71.

Table 71 – ITunableDiodeLaserSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

AbsoluteSampleGasPressure

0:HasDictionaryEntry

True

3:0112/2///61987#ABP560#001

AbsoluteSampleGasPressure

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SampleTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP575#001

SampleTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

TransmissionRatio

0:HasDictionaryEntry

True

3:0112/2///61987#ABP582#001

SignalNoiseRatio

0:HasDictionaryEntry

True

3:0112/2///61987#ABP581#001

LaserTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP583#001

LaserTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SignalFitQuality

0:HasDictionaryEntry

True

3:0112/2///61987#ABP580#001

The child Nodes of the ITunableDiodeLaserSignalConditionSetType have additional Attribute values defined in Table 72.

Table 72 – ITunableDiodeLaserSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

AbsoluteSampleGasPressure

0.0

AbsoluteSampleGasPressure

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705749552DisplayName: mbarDescription: millibar

SampleTemperature

0.0

SampleTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

TransmissionRatio

0.0

SignalNoiseRatio

0.0

LaserTemperature

0.0

LaserTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

SignalFitQuality

0.0

The IZirconiumDioxideSignalConditionSetType provides the interface to Zirconium dioxide measurement signal specific condition variables and is formally defined in Table 73.

Table 73 – IZirconiumDioxideSignalConditionSetType definition

Attribute

Value

BrowseName

IZirconiumDioxideSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

RelativeHeatOutput

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

CellResistance

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SensingElementResidualLife

0:Float

0:PropertyType

O

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SampleGasVolumeFlow

0:Float

0:AnalogUnitType

O

Conformance Units

PA-DIM ZirconiumDioxideSignalType

PA-DIM ZirconiumDioxideSignalType RelativeHeatOutput

PA-DIM ZirconiumDioxideSignalType CellResistance

PA-DIM ZirconiumDioxideSignalType SensingElementResidualLife

PA-DIM ZirconiumDioxideSignalType SampleGasVolumeFlow

RelativeHeatOutput is defined by IRDI as ABP585#001 which states “relative heat output referred to the maximum heat output to keep the sensor at its setpoint temperature during operation”.

SensingElementResidualLife is defined by IRDI as ABP584#001 which states "degradation of a sensing element expressed as a value between 1 (good) and 0 (bad)".

SensingElementTemperature is defined by IRDI as ABP565#001 which states “temperature measured at a sensing element”.

SampleGasVolumeFlow is defined by IRDI as ABP562#001 which states “volume flow of a sample gas through a detection system”.

The components of IZirconiumDioxideSignalConditionSetType have additional references which are defined in Table 74.

Table 74 – IZirconiumDioxideSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

RelativeHeatOutput

0:HasDictionaryEntry

True

3:0112/2///61987#ABP585#001

RelativeHeatOutput

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

CellResistance

0:HasDictionaryEntry

True

3:0112/2///61987#ABP596#001

SensingElementResidualLife

0:HasDictionaryEntry

True

3:0112/2///61987#ABP584#001

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

SensingElementTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SampleGasVolumeFlow

0:HasDictionaryEntry

True

3:0112/2///61987#ABP562#001

SampleGasVolumeFlow

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

The child Nodes of the IZirconiumDioxideSignalConditionSetType have additional Attribute values defined in Table 75.

Table 75 – IZirconiumDioxideSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

RelativeHeatOutput

0.0

RelativeHeatOutput

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705741328

DisplayName: %

Description: percent

CellResistance

0.0

SensingElementResidualLife

1.0

SensingElementTemperature

0.0

SensingElementTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

SampleGasVolumeFlow

0.0

SampleGasVolumeFlow

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705747637DisplayName: l/hDescription: litre per hour

The IPhSignalConditionSetType provides the interface to pH measurement signal specific condition variables and is formally defined in Table 76.

Table 76 – IPhSignalConditionSetType definition

Attribute

Value

BrowseName

IPhSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

PhMeasuringMethod

0:UInt32

0:MultiStateDictionaryEntryDiscreteType

O

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SensorNextCalibration

0:UInt32

0:AnalogUnitType

O

0:HasComponent

Variable

SensingElementImpedance

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SensorReferenceImpedance

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SensorCleaningsCounter

0:UInt32

0:PropertyType

O

0:HasProperty

Variable

SensorSterilisationsCounter

0:UInt32

0:PropertyType

O

Conformance Units

PA-DIM PhSignalType

PA-DIM PhSignalType SensorNextCalibration

PA-DIM PhSignalType SensingElementImpedance

PA-DIM PhSignalType SensorReferenceImpedance

PA-DIM PhSignalType SensorCleaningsCounter

PA-DIM PhSignalType SensorSterilisationsCounter

PhMeasuringMethod is defined by IRDI as ABP640#002 which states “physical measuring method of a pH sensor”.

SensingElementTemperature is defined by IRDI as ABP565#001 which states “temperature measured at a sensing element”.

SensorNextCalibration is defined by IRDI as ABP566#001 which states “time that can elapse until the next calibration, calculated from the configured calibration interval or estimated by the device”.

SensingElementImpedance is defined by IRDI as ABP570#001 which states “absolute value of impedance for a pH sensing element, compensated for a temperature of 25°C”.

SensorReferenceImpedance is defined by IRDI as ABP571#001 which states “absolute value of impedance for a pH reference system, compensated for a temperature of 25°C”.

SensorCleaningsCounter is defined by IRDI as ABP546#001 which states “number of times a sensor has been cleaned in place”.

SensorSterilisationsCounter is defined by IRDI as ABP547#001 which states “number of times a sensor has been sterilized in place”.

The components of IPhSignalConditionSetType have additional references which are defined in Table 77.

Table 77 – IPhSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

PhMeasuringMethod

0:HasDictionaryEntry

True

3:0112/2///61987#ABP640#002

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

SensingElementTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorNextCalibration

0:HasDictionaryEntry

True

3:0112/2///61987#ABP566#001

SensorNextCalibration

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensingElementImpedance

0:HasDictionaryEntry

True

3:0112/2///61987#ABP570#001

SensingElementImpedance

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorReferenceImpedance

0:HasDictionaryEntry

True

3:0112/2///61987#ABP571#001

SensorReferenceImpedance

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorCleaningsCounter

0:HasDictionaryEntry

True

3:0112/2///61987#ABP546#001

SensorSterilisationsCounter

0:HasDictionaryEntry

True

3:0112/2///61987#ABP547#001

The child Nodes of the IPhSignalConditionSetType have additional Attribute values defined in Table 78.

Table 78 – IPhSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

PhMeasuringMethod

0

PhMeasuringMethod

0:ValueAsDictionaryEntries

ns=3;s=0112/2///61987#ABP718#001

PhMeasuringMethod

0:ValueAsText

glass electrode

SensingElementTemperature

0.0

SensingElementTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °C

Description: degree Celsius

SensorNextCalibration

0

SensorNextCalibration

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705745431

DisplayName: d

Description: day

SensingElementImpedance

0.0

SensingElementImpedance

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705741367

DisplayName: Ω

Description: ohm

SensorReferenceImpedance

0.0

SensorReferenceImpedance

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720

UnitId: 705741367

DisplayName: Ω

Description: ohm

SensorCleaningsCounter

0

SensorSterilisationsCounter

0

The IConductivitySignalConditionSetType provides the interface to conductivity measurement signal specific condition variables and is formally defined in Table 79.

Table 79 – IConductivitySignalConditionSetType definition

Attribute

Value

BrowseName

IConductivitySignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

ConductivityMeasuringMethod

0:UInt32

0:MultiStateDictionaryEntryDiscreteType

O

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

TemperatureCompensationStyle

0:UInt32

0:MultiStateDictionaryEntryDiscreteType

O

0:HasProperty

Variable

SensorCleaningsCounter

0:UInt32

0:PropertyType

O

0:HasProperty

Variable

SensorSterilisationsCounter

0:UInt32

0:PropertyType

O

Conformance Units

PA-DIM PhSignalType

PA-DIM ConductivitySignalType SensorCleaningsCounter

PA-DIM ConductivitySignalType SensorSterilisationsCounter

ConductivityMeasuringMethod is defined by IRDI as ABP641#002 which states “physical measuring method of a conductivity sensor”.

SensingElementTemperature is defined by IRDI as ABP565#001 which states “temperature measured at a sensing element”.

TemperatureCompensationStyle is defined by IRDI as ABP642#002 which states “method of temperature compensation that is offered by the device”.

SensorCleaningsCounter is defined by IRDI as ABP546#001 which states “number of times a sensor has been cleaned in place”.

SensorSterilisationsCounter is defined by IRDI as ABP547#001 which states “number of times a sensor has been sterilized in place”.

The components of IConductivitySignalConditionSetType have additional references which are defined in Table 80.

Table 80 – IConductivitySignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

ConductivityMeasuringMethod

0:HasDictionaryEntry

True

3:0112/2///61987#ABP641#002

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

SensingElementTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

TemperatureCompensationStyle

0:HasDictionaryEntry

True

3:0112/2///61987#ABP642#002

SensorCleaningsCounter

0:HasDictionaryEntry

True

3:0112/2///61987#ABP546#001

SensorSterilisationsCounter

0:HasDictionaryEntry

True

3:0112/2///61987#ABP547#001

The child Nodes of the IConductivitySignalConditionSetType have additional Attribute values defined in Table 81.

Table 81 – IConductivitySignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

ConductivityMeasuringMethod

0

ConductivityMeasuringMethod

0:ValueAsDictionaryEntries

ns=3;s=0112/2///61987#ABP721#001

ConductivityMeasuringMethod

0:ValueAsText

inductive

SensingElementTemperature

0.0

SensingElementTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °CDescription: degree Celsius

TemperatureCompensationStyle

0

TemperatureCompensationStyle

0:ValueAsDictionaryEntries

ns=3;s=0112/2///61987#ABP724#001

TemperatureCompensationStyle

0:ValueAsText

no temperature compensation

SensorCleaningsCounter

0

SensorSterilisationsCounter

0

The IAmperometricSignalConditionSetType provides the interface to amperometric measurement signal specific condition variables and is formally defined in Table 82.

Table 82 – IAmperometricSignalConditionSetType definition

Attribute

Value

BrowseName

IAmperometricSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SensorNextCalibration

0:UInt32

0:AnalogUnitType

O

0:HasProperty

Variable

SensorCleaningsCounter

0:UInt32

0:PropertyType

O

0:HasProperty

Variable

SensorSterilisationsCounter

0:UInt32

0:PropertyType

O

Conformance Units

PA-DIM AmperometricSignalType

PA-DIM AmperometricSignalType SensorNextCalibration

PA-DIM AmperometricSignalType SensorCleaningsCounter

PA-DIM AmperometricSignalType SensorSterilisationsCounter

SensingElementTemperature is defined by IRDI as ABP565#001 which states “temperature measured at a sensing element”.

SensorNextCalibration is defined by IRDI as ABP566#001 which states “time that can elapse until the next calibration, calculated from the configured calibration interval or estimated by the device”.

SensorCleaningsCounter is defined by IRDI as ABP546#001 which states “number of times a sensor has been cleaned in place”.

SensorSterilisationsCounter is defined by IRDI as ABP547#001 which states “number of times a sensor has been sterilized in place”.

The components of IAmperometricSignalConditionSetType have additional references which are defined in Table 83.

Table 83 – IAmperometricSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

SensingElementTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorNextCalibration

0:HasDictionaryEntry

True

3:0112/2///61987#ABP566#001

SensorNextCalibration

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorCleaningsCounter

0:HasDictionaryEntry

True

3:0112/2///61987#ABP546#001

SensorSterilisationsCounter

0:HasDictionaryEntry

True

3:0112/2///61987#ABP547#001

The child Nodes of the IAmperometricSignalConditionSetType have additional Attribute values defined in Table 84.

Table 84 – IAmperometricSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

SensingElementTemperature

0.0

SensingElementTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °C

Description: degree Celsius

SensorNextCalibration

0

SensorNextCalibration

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705745431DisplayName: dDescription: day

SensorCleaningsCounter

0

SensorSterilisationsCounter

0

The IAmperometricGasDetectorSignalConditionSetType provides the interface to Amperometric Electrochemical signal specific condition variables and is formally defined in Table 85

Table 85 – IAmperometricGasDetectorSignalConditionSetType definition

Attribute

Value

BrowseName

IAmperometricGasDetectorSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SensorNextCalibrationFixed

0:Float

0:PropertyType

O

0:HasProperty

Variable

SensorNextCalibrationDynamic

0:Float

0:PropertyType

O

0:HasProperty

Variable

PowerOnDurationSensor

0:Duration

0:PropertyType

O

0:HasProperty

Variable

SensingElementResidualLife

0:Float

0:PropertyType

O

0:HasProperty

Variable

RelativeGasFlowRate

0:Float

0:PropertyType

O

0:HasProperty

Variable

ConsumedSensorCapacity

0:Float

0:PropertyType

O

0:HasProperty

Variable

RangeExceedancePeakValue

0:Float

0:PropertyType

O

0:HasProperty

Variable

RangeExceedanceDuration

0: Duration

0:PropertyType

O

0:HasProperty

Variable

SensingElementResidualSensitivity

0:Float

0:PropertyType

O

Conformance Units

PA-DIM AmperometricGasDetectorSignalType

PA-DIM AmperometricGasDetectorSignalType SensorNextCalibrationFixed

PA-DIM AmperometricGasDetectorSignalType SensorNextCalibrationDynamic

PA-DIM AmperometricGasDetectorSignalType PowerOnDurationSensor

PA-DIM AmperometricGasDetectorSignalType SensingElementResidualLife

PA-DIM AmperometricGasDetectorSignalType RelativeGasFlowRate

PA-DIM AmperometricGasDetectorSignalType ConsumedSensorCapacity

PA-DIM AmperometricGasDetectorSignalType RangeExceedance

PA-DIM AmperometricGasDetectorSignalType SensingElementResidualSensitivity

SensingElementTemperature is defined by IRDI as ABP565#001 which states "temperature measured at a sensing element".

SensorNextCalibrationFixed is defined by IRDI as ABQ016#001 which states "time expressed in days that can elapse until the next calibration, calculated from the configured calibration interval".

SensorNextCalibrationDynamic is defined by IRDI as ABQ017#001 which states "time expressed in days that can elapse until the next calibration, estimated from operational or historical information".

PowerOnDurationSensor is defined by IRDI as ABQ010#001 which states "summed duration of time intervals for which the sensor was in an operating powered state".

SensingElementResidualLife is defined by IRDI as ABP584#001 which states "degradation of a sensing element expressed as a value between 1 (good) and 0 (bad)".

RelativeGasFlowRate is defined by IRDI as ABQ011#001 which states "flow rate of gas expressed as a value between 100 (good) and 0 (bad)".

ConsumedSensorCapacity is defined by IRDI as ABQ018#001 which states "accumulated gas dosage expressed in concentration multiplied by time of exposure".

RangeExceedancePeakValue is defined by IRDI as ABQ019#001 which states "extrapolated maximum gas concentration upon overload".

RangeExceedanceDuration is defined by IRDI as ABQ020#001 which states "accumulated duration of measurement time in overload condition".

SensingElementResidualSensitivity is defined by IRDI as ABQ040#001 which states "degradation of a sensing element expressed as a value between 1 (good) and 0 (bad) calculated during its calibration".

The components of IAmperometricGasDetectorSignalConditionSetType have additional references which are defined in Table 86.

Table 86 – IAmperometricGasDetectorSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

SensorNextCalibrationFixed

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ016#001

SensorNextCalibrationDynamic

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ017#001

PowerOnDurationSensor

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ010#001

SensingElementResidualLife

0:HasDictionaryEntry

True

3:0112/2///61987#ABP584#001

RelativeGasFlowRate

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ011#001

ConsumedSensorCapacity

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ018#001

RangeExceedancePeakValue

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ019#001

RangeExceedanceDuration

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ020#001

SensingElementResidualSensitivity

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ040#001

The child Nodes of the IAmperometricGasDetectorSignalConditionSetType have additional Attribute values defined in Table 87.

Table 87 IAmperometricGasDetectorSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

SensingElementTemperature

0

SensorNextCalibrationFixed

0

SensorNextCalibrationDynamic

0

PowerOnDurationSensor

0

SensingElementResidualLife

1

RelativeGasFlowRate

0

ConsumedSensorCapacity

0

RangeExceedancePeakValue

0

RangeExceedanceDuration

0

SensingElementResidualSensitivity

1

The IOpticalFluorescenseQuenchingSignalConditionSetType provides the interface to optical fluorescence quenching measurement signal specific condition variables and is formally defined in Table 88.

Table 88 – IOpticalFluorescenseQuenchingSignalConditionSetType definition

Attribute

Value

BrowseName

IOpticalFluorescenseQuenchingSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

SensorNextCalibration

0:UInt32

0:AnalogUnitType

O

0:HasProperty

Variable

SensorCleaningsCounter

0:UInt32

0:PropertyType

O

0:HasProperty

Variable

SensorSterilisationsCounter

0:UInt32

0:PropertyType

O

Conformance Units

PA-DIM OpticalFluorescenseQuenchingSignalType

PA-DIM OpticalFluorescenseQuenchingSignalType SensorNextCalibration

PA-DIM OpticalFluorescenseQuenchingSignalType SensorCleaningsCounter

PA-DIM OpticalFluorescenseQuenchingSignalType SensorSterilisationsCounter

SensingElementTemperature is defined by IRDI as ABP565#001 which states “temperature measured at a sensing element”.

SensorNextCalibration is defined by IRDI as ABP566#001 which states “time that can elapse until the next calibration, calculated from the configured calibration interval or estimated by the device”.

SensorCleaningsCounter is defined by IRDI as ABP546#001 which states “number of times a sensor has been cleaned in place”.

SensorSterilisationsCounter is defined by IRDI as ABP547#001 which states “number of times a sensor has been sterilized in place”.

The components of IOpticalFluorescenseQuenchingSignalConditionSetType have additional references which are defined in Table 89.

Table 89 – IOpticalFluorescenseQuenchingSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

SensingElementTemperature

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorNextCalibration

0:HasDictionaryEntry

True

3:0112/2///61987#ABP566#001

SensorNextCalibration

0:EngineeringUnits

0:HasDictionaryEntry

True

3:0112/2///61987#ABA968#004

SensorCleaningsCounter

0:HasDictionaryEntry

True

3:0112/2///61987#ABP546#001

SensorSterilisationsCounter

0:HasDictionaryEntry

True

3:0112/2///61987#ABP547#001

The child Nodes of the IOpticalFluorescenseQuenchingSignalConditionSetType have additional Attribute values defined in Table 90.

Table 90 – IOpticalFluorescenseQuenchingSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

SensingElementTemperature

0.0

SensingElementTemperature

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705741427 DisplayName: °C

Description: degree Celsius

SensorNextCalibration

0

SensorNextCalibration

0:EngineeringUnits

NamespaceUri: http://www.opcfoundation.org/UA/units/cdd/IEC62720UnitId: 705745431DisplayName: dDescription: day

SensorCleaningsCounter

0

SensorSterilisationsCounter

0

The I GasChromatographSignalConditionSetType provides the interface to gaschromatograph measurement signal specific condition variables and is formally defined in Table 91

Table 91 – IGasChromatographSignalConditionSetType definition

Attribute

Value

BrowseName

IGasChromatographSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

PeakWidth

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

PeakHeight

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

PeakArea

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

TailingFactor

0:Float

0:PropertyType

O

0:HasComponent

Variable

ExpectedRetentionTime

0:Float

0:AnalogUnitType

O

0:HasComponent

Variable

ActualRetentionTime

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

InjectionTime

0:DateTime

0:PropertyType

O

0:HasProperty

Variable

ComponentName

0:String

0:PropertyType

O

Conformance Units

PA-DIM GasChromatographSignalType

PA-DIM GasChromatographSignalType Peak

PA-DIM GasChromatographSignalType RetentionTime

PA-DIM GasChromatographSignalType InjectionTime

PA-DIM GasChromatographSignalType ComponentName

PeakWidth is defined by IRDI as ABQ022#001 which states “width of a chromatogram peak in time units, measured at 10% of peak height”.

PeakHeight is defined by IRDI as ABQ023#001 which states “magnitude of a Process GC output signal in units defined by the manufacturer, measured from the peak tip perpendicular to the baseline”.

PeakArea is defined by IRDI as ABQ042#001 which states “integral of the area under the output peak of a chromatogram signal in units defined by the manufacturer”.

TailingFactor is defined by IRDI as ABQ033#001 which states “asymmetry of a substance peak in a chromatogram expressed as the ratio of the back part to the front part of the peak, referred to the peak maximum, at 10 % peak height above the baseline”.

ExpectedRetentionTime is defined by IRDI as ABQ034#001 which states “anticipated time a component needs between injection into the column and detection of the peak”.

ActualRetentionTime is defined by IRDI as ABQ035#001 which states “measured time a component needs between injection into the column and detection of the peak”.

InjectionTime is defined by IRDI as ABQ006#001 which states “time stamp of sample injection to the chromatograph”.

ComponentName is defined by IRDI as ABQ045#001 which states “name of the medium”.

The components of IGasChromatographSignalConditionSetType have additional references which are defined in Table 92.

Table 92 – IGasChromatographSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

PeakWidth

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ022#001

PeakHeight

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ023#001

PeakArea

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ042#001

TailingFactor

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ033#001

ExpectedRetentionTime

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ034#001

ActualRetentionTime

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ035#001

InjectionTime

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ006#001

ComponentName

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ045#001

The child Nodes of the IGasChromatographSignalConditionSetType have additional Attribute values defined in Table 93.

Table 93 – IGasChromatographSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

PeakWidth

0

PeakHeight

0

PeakArea

0

TailingFactor

1.0

ExpectedRetentionTime

0

ActualRetentionTime

0

InjectionTime

1/1/1601 12:00:00 AM

ComponentName

The IFtnirOrFtirSignalConditionSetType provides the interface to FT NIR or FT IR signal specific condition variables and is formally defined in Table 94

Table 94 – IFtnirOrFtirSignalConditionSetType definition

Attribute

Value

BrowseName

IFtnirOrFtirSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

TransmissionRatio

0:Float

0:DataItemType

O

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

MahalanobisDistance

0:Float

0:PropertyType

O

0:HasProperty

Variable

SpectralResidual

0:Float

0:PropertyType

O

0:HasProperty

Variable

ElectronicsReadNoise

0:Float

0:PropertyType

O

0:HasProperty

Variable

LaserResidualLife

0:Float

0:PropertyType

O

Conformance Units

PA-DIM FtnirOrFtirSignalType

PA-DIM FtnirOrFtirSignalType TransmissionRatio

PA-DIM FtnirOrFtirSignalType MahalanobisDistance

PA-DIM FtnirOrFtirSignalType SpectralResidual

PA-DIM FtnirOrFtirSignalType ElectronicsReadNoise

PA-DIM FtnirOrFtirSignalType LaserResidualLife

TransmissionRatio is defined by IRDI as ABP582#001 which states "ratio of the value of a specified radiation quantity in the centre of a beam of specified radiation quality and under specified geometrical conditions after passage through a material to the value which would be present at the same position without this material in the beam".

SensingElementTemperature is defined by IRDI as ABP565#001 which states “temperature measured at a sensing element”.

MahalanobisDistance is defined by IRDI as ABQ037#001 which states “measure of the distance between a point P and a distribution D”.

SpectralResidual is defined by IRDI as ABQ038#001 which states “difference between the actual data and the data reconstructed by factor decomposition”.

ElectronicsReadNoise is defined by IRDI as ABQ057#001 which states “total dark noise of the detector and spectrometer electronics, measured relative to the dynamic range of the spectrometer”.

LaserResidualLife is defined by IRDI as ABQ044#001 which states “degradation of a laser expressed as a value between 1 (good) and 0 (bad)”.

The components of IFtnirOrFtirSignalConditionSetType have additional references which are defined in Table 95.

Table 95 – IFtnirOrFtirSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

TransmissionRatio

0:HasDictionaryEntry

True

3:0112/2///61987#ABP582#001

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

MahalanobisDistance

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ037#001

SpectralResidual

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ038#001

ElectronicsReadNoise

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ057#001

LaserResidualLife

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ044#001

The child Nodes of the IFtnirOrFtirSignalConditionSetType have additional Attribute values defined in Table 96.

Table 96 – IFtnirOrFtirSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

TransmissionRatio

0.0

SensingElementTemperature

0.0

MahalanobisDistance

0.0

SpectralResidual

0.0

ElectronicsReadNoise

0.0

LaserResidualLife

1.0

The IDiodeArraySignalConditionSetType provides the interface to Diode Array signal specific condition variables and is formally defined in Table 97

Table 97 – IDiodeArraySignalConditionSetType definition

Attribute

Value

BrowseName

IDiodeArraySignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasProperty

Variable

SourceResidualLife

0:Float

0:PropertyType

O

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

MahalanobisDistance

0:Float

0:PropertyType

O

0:HasProperty

Variable

SpectralResidual

0:Float

0:PropertyType

O

0:HasProperty

Variable

ElectronicsReadNoise

0:Float

0:PropertyType

O

Conformance Units

PA-DIM DiodeArraySignalType

PA-DIM DiodeArraySignalType SourceResidualLife

PA-DIM DiodeArraySignalType MahalanobisDistance

PA-DIM DiodeArraySignalType SpectralResidual

PA-DIM DiodeArraySignalType ElectronicsReadNoise

SourceResidualLife is defined by IRDI as ABP552#001 which states “degradation of a radiation source expressed as a value between 1 (good) and 0 (bad)”.

SensingElementTemperature is defined by IRDI as ABP565#001 which states “temperature measured at a sensing element”.

MahalanobisDistance is defined by IRDI as ABQ037#001 which states “measure of the distance between a point P and a distribution D”.

SpectralResidual is defined by IRDI as ABQ038#001 which states “difference between the actual data and the data reconstructed by factor decomposition”.

The components of IDiodeArraySignalConditionSetType have additional references which are defined in Table 98.

Table 98 – IDiodeArraySignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

SourceResidualLife

0:HasDictionaryEntry

True

3:0112/2///61987#ABP552#001

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

MahalanobisDistance

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ037#001

SpectralResidual

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ038#001

ElectronicsReadNoise

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ057#001

The child Nodes of the IFtnirOrFtirSignalConditionSetType have additional Attribute values defined in Table 99.

Table 99 IDiodeArraySignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

SourceResidualLife

1.0

SensingElementTemperature

0

MahalanobisDistance

0

SpectralResidual

0

ElectronicsReadNoise

0

The IRamanSignalConditionSetType provides the interface to Raman signal specific condition variables and is formally defined in Table 100

Table 100 – IRamanSignalConditionSetType definition

Attribute

Value

BrowseName

IRamanSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasProperty

Variable

SourceResidualLife

0:Float

0:PropertyType

O

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

MahalanobisDistance

0:Float

0:PropertyType

O

0:HasProperty

Variable

SpectralResidual

0:Float

0:PropertyType

O

0:HasProperty

Variable

ElectronicsReadNoise

0:Float

0:PropertyType

O

Conformance Units

PA-DIM RamanSignalType

PA-DIM RamanSignalType SourceResidualLife

PA-DIM RamanSignalType SensingElementTemperature

PA-DIM RamanSignalType MahalanobisDistance

PA-DIM RamanSignalType SpectralResidual

PA-DIM RamanSignalType ElectronicsReadNoise

TransmissionRatio is defined by IRDI as ABP582#001 which states "ratio of the value of a specified radiation quantity in the centre of a beam of specified radiation quality and under specified geometrical conditions after passage through a material to the value which would be present at the same position without this material in the beam".

SensingElementTemperature is defined by IRDI as ABP565#001 which states “temperature measured at a sensing element”.

MahalanobisDistance is defined by IRDI as ABQ037#001 which states “measure of the distance between a point P and a distribution D”.

SpectralResidual is defined by IRDI as ABQ038#001 which states “difference between the actual data and the data reconstructed by factor decomposition”.

ElectronicsReadNoise is defined by IRDI as ABQ057#001 which states “total dark noise of the detector and spectrometer electronics, measured relative to the dynamic range of the spectrometer”.

The components of IRamanSignalConditionSetType have additional references which are defined in Table 101.

Table 101 – IRamanSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

SourceResidualLife

0:HasDictionaryEntry

True

3:0112/2///61987#ABP552#001

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

MahalanobisDistance

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ037#001

SpectralResidual

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ038#001

ElectronicsReadNoise

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ057#001

The child Nodes of the IFtnirOrFtirSignalConditionSetType have additional Attribute values defined in Table 102.

Table 102 – IRamanSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

SourceResidualLife

1.0

SensingElementTemperature

0.0

MahalanobisDistance

0.0

SpectralResidual

0.0

ElectronicsReadNoise

0.0

The IInfraredSignalConditionSetType provides the interface to Infrared signal specific condition variables and is formally defined in Table 103

Table 103 – IInfraredSignalConditionSetType definition

Attribute

Value

BrowseName

IInfraredSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SourceResidualLife

0:Float

0:PropertyType

O

0:HasProperty

Variable

TransmissionRatio

0:Float

0:PropertyType

O

0:HasProperty

Variable

SensorNextCalibrationFixed

0:Float

0:PropertyType

O

0:HasProperty

Variable

SensorNextCalibrationDynamic

0:Float

0:PropertyType

O

0:HasProperty

Variable

PowerOnDurationSensor

0: Duration

0:PropertyType

O

0:HasProperty

Variable

SensingElementResidualLife

0:Float

0:PropertyType

O

0:HasProperty

Variable

RelativeGasFlowRate

0:Float

0:PropertyType

O

0:HasProperty

Variable

SensingElementResidualSensitivity

0:Float

0:PropertyType

O

Conformance Units

PA-DIM InfraredSignalType

PA-DIM InfraredSignalType SourceResidualLife

PA-DIM InfraredSignalType TransmissionRatio

PA-DIM InfraredSignalType SensorNextCalibrationFixed

PA-DIM InfraredSignalType SensorNextCalibrationDynamic

PA-DIM InfraredSignalType PowerOnDurationSensor

PA-DIM InfraredSignalType SensingElementResidualLife

SensingElementTemperature is defined by IRDI as ABP565#001 which states "temperature measured at a sensing element".

SourceResidualLife is defined by IRDI as ABQ041#001 which states "degradation of an infrared radiation source expressed as a value between 1 (good) and 0 (bad)".

TransmissionRatio is defined by IRDI as ABP582#001 which states "ratio of the value of a specified radiation quantity in the centre of a beam of specified radiation quality and under specified geometrical conditions after passage through a material to the value which would be present at the same position without this material in the beam".

SensorNextCalibrationFixed is defined by IRDI as ABQ016#001 which states "time expressed in days that can elapse until the next calibration, calculated from the configured calibration interval".

SensorNextCalibrationDynamic is defined by IRDI as ABQ017#001 which states "time expressed in days that can elapse until the next calibration, estimated from operational or historical information".

PowerOnDurationSensor is defined by IRDI as ABQ010#001 which states "summed duration of time intervals for which the sensor was in an operating powered state".

SensingElementResidualLife is defined by IRDI as ABQ040#001 which states "degradation of a sensing element expressed as a value between 1 (good) and 0 (bad) calculated during its calibration".

RelativeGasFlowRate is defined by IRDI as ABQ011#001 which states "flow rate of gas expressed as a value between 100 (good) and 0 (bad)".

SensingElementResidualSensitivity is defined by IRDI as ABQ040#001 which states "degradation of a sensing element expressed as a value between 1 (good) and 0 (bad) calculated during its calibration".

The components of IInfraredSignalConditionSetType have additional references which are defined in Table 104.

Table 104 – IInfraredSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

SourceResidualLife

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ041#001

TransmissionRatio

0:HasDictionaryEntry

True

3:0112/2///61987#ABP582#001

SensorNextCalibrationFixed

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ016#001

SensorNextCalibrationDynamic

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ017#001

PowerOnDurationSensor

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ010#001

SensingElementResidualLife

0:HasDictionaryEntry

True

3:0112/2///61987#ABP584#001

RelativeGasFlowRate

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ011#001

SensingElementResidualSensitivity

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ040#001

The child Nodes of the IInfraredSignalConditionSetType have additional Attribute values defined in Table 105.

Table 105 IInfraredSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

SensingElementTemperature

0

SourceResidualLife

1.0

TransmissionRatio

0

SensorNextCalibrationFixed

0

SensorNextCalibrationDynamic

0

PowerOnDurationSensor

0

SensingElementResidualLife

1.0

RelativeGasFlowRate

0

SensingElementResidualSensitivity

1.0

The I CatalyticBeadSignalConditionSetType provides the interface to Catalytic Bead signal specific condition variables and is formally defined in Table 106

Table 106 – ICatalyticBeadSignalConditionSetType definition

Attribute

Value

BrowseName

ICatalyticBeadSignalConditionSetType

IsAbstract

True

References

NodeClass

BrowseName

DataType

TypeDefinition

Other

Subtype of 0:BaseInterfaceType defined in OPC 10000-5, i.e. inheriting the InstanceDeclarations of that Node

0:HasComponent

Variable

SensingElementTemperature

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SensorNextCalibrationFixed

0:Float

0:PropertyType

O

0:HasProperty

Variable

SensorNextCalibrationDynamic

0:Float

0:PropertyType

O

0:HasProperty

Variable

PowerOnDurationSensor

0:Duration

0:PropertyType

O

0:HasProperty

Variable

SensingElementResidualLife

0:Float

0:PropertyType

O

0:HasProperty

Variable

RelativeGasFlowRate

0:Float

0:PropertyType

O

0:HasComponent

Variable

SensorValue

0:Float

0:AnalogUnitType

O

0:HasProperty

Variable

SensingElementResidualSensitivity

0:Float

0:PropertyType

O

Conformance Units

PA-DIM CatalyticBeadSignalType

PA-DIM CatalyticBeadSignalType SensorNextCalibrationFixed

PA-DIM CatalyticBeadSignalType SensorNextCalibrationDynamic

PA-DIM CatalyticBeadSignalType PowerOnDurationSensor

PA-DIM CatalyticBeadSignalType SensingElementResidualLife

PA-DIM CatalyticBeadSignalType RelativeGasFlowRate

PA-DIM CatalyticBeadSignalType SensorValue

PA-DIM CatalyticBeadSignalType SensingElementResidualSensitivity

SensingElementTemperature is defined by IRDI as ABP565#001 which states "temperature measured at a sensing element".

SensorNextCalibrationFixed is defined by IRDI as ABQ016#001 which states "time expressed in days that can elapse until the next calibration, calculated from the configured calibration interval".

SensorNextCalibrationDynamic is defined by IRDI as ABQ017#001 which states "time expressed in days that can elapse until the next calibration, estimated from operational or historical information".

PowerOnDurationSensor is defined by IRDI as ABQ010#001 which states "summed duration of time intervals for which the sensor was in an operating powered state".

SensingElementResidualLife is defined by IRDI as ABP584#001 which states "degradation of a sensing element expressed as a value between 1 (good) and 0 (bad)".

RelativeGasFlowRate is defined by IRDI as ABQ011#001 which states "flow rate of gas expressed as a value between 100 (good) and 0 (bad)".

SensingValue is defined by IRDI as ABQ021#001 which states "measured voltage across the Wheatstone bridge upon calibration".

SensingElementResidualSensitivity is defined by IRDI as ABQ040#001 which states "degradation of a sensing element expressed as a value between 1 (good) and 0 (bad) calculated during its calibration".

The components of ICatalyticBeadSignalType SignalConditionSetType have additional references which are defined in Table 107.

Table 107 – ICatalyticBeadSignalConditionSetType additional References

SourceBrowsePath

Reference Type

Is Forward

TargetBrowsePath

SensingElementTemperature

0:HasDictionaryEntry

True

3:0112/2///61987#ABP565#001

SensorNextCalibrationFixed

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ016#001

SensorNextCalibrationDynamic

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ017#001

PowerOnDurationSensor

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ010#001

SensingElementResidualLife

0:HasDictionaryEntry

True

3:0112/2///61987#ABP584#001

RelativeGasFlowRate

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ011#001

SensorValue

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ021#001

SensingElementResidualSensitivity

0:HasDictionaryEntry

True

3:0112/2///61987#ABQ040#001

The child Nodes of the IAmperometricGasDetectorSignalConditionSetType have additional Attribute values defined in Table 108.

Table 108 I CatalyticBeadSignalConditionSetType Attribute values for child Nodes

BrowsePath

Value Attribute

SensingElementTemperature

0

SensorNextCalibrationFixed

0

SensorNextCalibrationDynamic

0

PowerOnDurationSensor

0

SensingElementResidualLife

1

RelativeGasFlowRate

0

SensorValue

0

SensingElementResidualSensitivity

1