Name | Data Type | Default Value | Qualifiers |
Name | Data Type | Value |
Accuracy | sint32 | |
Deprecated | string | No value |
Description | string | Indicates the accuracy of the Sensor for the measured property. Its value is recorded as plus/minus hundredths of a percent. Accuracy, along with Resolution, is used to calculate the actual value of the measured physical property. Accuracy may vary depending on whether the Device is linear over its dynamic range. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.19 |
Override | string | Accuracy |
PUnit | string | percent * 10^-2 |
Units | string | Hundredths of Percent |
BaseUnits | uint16 | 2 |
Deprecated | string | No value |
Description | string | The base unit of the values returned by this Sensor. All the values returned by this Sensor are represented in the units obtained by (BaseUnits * 10 raised to the power of the UnitModifier). For example, if BaseUnits is Volts and the UnitModifier is -6, then the units of the values returned are MicroVolts. However, if the RateUnits property is set to a value other than "None", then the units are further qualified as rate units. In the above example, if RateUnits is set to "Per Second", then the values returned by the Sensor are in MicroVolts/Second. The units apply to all numeric properties of the Sensor, unless explicitly overridden by the Units qualifier. |
ModelCorrespondence | string | CIM_NumericSensor.UnitModifier, CIM_NumericSensor.RateUnits |
Override | string | BaseUnits |
ValueMap | string | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 63, 64, 65, 66 |
Values | string | Unknown, Other, Degrees C, Degrees F, Degrees K, Volts, Amps, Watts, Joules, Coulombs, VA, Nits, Lumens, Lux, Candelas, kPa, PSI, Newtons, CFM, RPM, Hertz, Seconds, Minutes, Hours, Days, Weeks, Mils, Inches, Feet, Cubic Inches, Cubic Feet, Meters, Cubic Centimeters, Cubic Meters, Liters, Fluid Ounces, Radians, Steradians, Revolutions, Cycles, Gravities, Ounces, Pounds, Foot-Pounds, Ounce-Inches, Gauss, Gilberts, Henries, Farads, Ohms, Siemens, Moles, Becquerels, PPM (parts/million), Decibels, DbA, DbC, Grays, Sieverts, Color Temperature Degrees K, Bits, Bytes, Words (data), DoubleWords, QuadWords, Percentage, Pascals |
CurrentReading | sint32 | |
Deprecated | string | No value |
Description | string | The current value indicated by the Sensor. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.5 |
Override | string | CurrentReading |
LowerThresholdCritical | sint32 | |
Deprecated | string | No value |
Description | string | The Sensor's threshold values specify the ranges (min and max values) for determining whether the Sensor is operating under Normal, NonCritical, Critical or Fatal conditions. If the CurrentReading is between LowerThresholdCritical and Lower ThresholdFatal, then the CurrentState is Critical. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.13 |
Override | string | LowerThresholdCritical |
Write | boolean | true |
LowerThresholdFatal | sint32 | |
Deprecated | string | No value |
Description | string | The Sensor's threshold values specify the ranges (min and max values) for determining whether the Sensor is operating under Normal, NonCritical, Critical or Fatal conditions. If the CurrentReading is below LowerThresholdFatal, then the Current State is Fatal. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.15 |
Override | string | LowerThresholdFatal |
Write | boolean | true |
LowerThresholdNonCritical | sint32 | |
Deprecated | string | No value |
Description | string | The Sensor's threshold values specify the ranges (min and max values) for determining whether the Sensor is operating under Normal, NonCritical, Critical or Fatal conditions. If Current Reading is between LowerThresholdNonCritical and Upper ThresholdNonCritical, then the Sensor is reporting a normal value. If CurrentReading is between LowerThresholdNonCritical and LowerThresholdCritical, then the CurrentState is NonCritical. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.11 |
Override | string | LowerThresholdNonCritical |
Write | boolean | true |
MaxReadable | sint32 | |
Deprecated | string | No value |
Description | string | MaxReadable indicates the largest value of the measured property that can be read by the NumericSensor. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.9 |
Override | string | MaxReadable |
MinReadable | sint32 | |
Deprecated | string | No value |
Description | string | MinReadable indicates the smallest value of the measured property that can be read by the NumericSensor. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.10 |
Override | string | MinReadable |
NominalReading | sint32 | |
Deprecated | string | No value |
Description | string | NominalReading indicates the 'normal' or expected value for the NumericSensor. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.6 |
Override | string | NominalReading |
NormalMax | sint32 | |
Deprecated | string | No value |
Description | string | NormalMax provides guidance for the user as to the normal maximum range for the NumericSensor. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.7 |
Override | string | NormalMax |
NormalMin | sint32 | |
Deprecated | string | No value |
Description | string | NormalMin provides guidance for the user as to the normal minimum range for the NumericSensor. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.8 |
Override | string | NormalMin |
RateUnits | uint16 | 0 |
Deprecated | string | No value |
Description | string | Specifies if the units returned by this Sensor are rate units. All the values returned by this Sensor are represented in the units obtained by (BaseUnits * 10 raised to the power of the UnitModifier). This is true unless this property (RateUnits) has a value different than "None". For example, if BaseUnits is Volts and the UnitModifier is -6, then the units of the values returned are MicroVolts. But, if the RateUnits property is set to a value other than "None", then the units are further qualified as rate units. In the above example, if RateUnits is set to "Per Second", then the values returned by the Sensor are in MicroVolts/Second. The units apply to all numeric properties of the Sensor, unless explicitly overridden by the Units qualifier. Any implementation of CurrentReading should be qualified with either a Counter or a Gauge qualifier, depending on the characteristics of the sensor being modeled. |
ModelCorrespondence | string | CIM_NumericSensor.UnitModifier, CIM_NumericSensor.BaseUnits |
Override | string | RateUnits |
ValueMap | string | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9 |
Values | string | None, Per MicroSecond, Per MilliSecond, Per Second, Per Minute, Per Hour, Per Day, Per Week, Per Month, Per Year |
Resolution | uint32 | |
Deprecated | string | No value |
Description | string | Resolution indicates the ability of the Sensor to resolve differences in the measured property. The units for this measurement are determined by BaseUnit*UnitModifier/RateUnit. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.17 |
Override | string | Resolution |
PUnit | string | degree celsius * 10^-2 |
Units | string | Hundredths of Degrees C |
SensorType | uint16 | 2 |
Deprecated | string | No value |
Description | string | The Type of the Sensor, e.g. Voltage or Temperature Sensor. If the type is set to "Other", then the OtherSensorType Description can be used to further identify the type, or if the Sensor has numeric readings, then the type of the Sensor can be implicitly determined by the Units. A description of the different Sensor types is as follows: A Temperature Sensor measures the environmental temperature. Voltage and Current Sensors measure electrical voltage and current readings. A Tachometer measures speed/revolutions of a Device. For example, a Fan Device can have an associated Tachometer which measures its speed. A Counter is a general purpose Sensor that measures some numerical property of a Device. A Counter value can be cleared, but it never decreases. A Switch Sensor has states like Open/Close, On/Off, or Up/Down. A Lock has states of Locked/Unlocked. Humidity, Smoke Detection and Air Flow Sensors measure the equivalent environmental characteristics. A Presence Sensor detects the presence of a PhysicalElement. A Power Consumption Sensor measures the instantaneous power consumed by a managed element. A Power Production Sensor measures the instantaneous power produced by a managed element such as a power supply or a voltage regulator. A pressure sensor is used to report pressure. Intrusion sensor reports an intrusion of an enclosure regardless whether it was authorized or not. |
ModelCorrespondence | string | CIM_Sensor.OtherSensorTypeDescription |
Override | string | SensorType |
ValueMap | string | 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, .., 32768..65535 |
Values | string | Unknown, Other, Temperature, Voltage, Current, Tachometer, Counter, Switch, Lock, Humidity, Smoke Detection, Presence, Air Flow, Power Consumption, Power Production, Pressure, Intrusion, DMTF Reserved, Vendor Reserved |
Tolerance | sint32 | |
Deprecated | string | No value |
Description | string | This property is being deprecated in lieu of using the Resolution and Accuracy properties.
Indicates the tolerance of the Sensor for the measured property. Tolerance, along with Resolution and Accuracy, is used to calculate the actual value of the measured physical property. Tolerance may vary depending on whether the Device is linear over its dynamic range. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.18 |
Override | string | Tolerance |
UnitModifier | sint32 | -1 |
Deprecated | string | No value |
Description | string | The unit multiplier for the values returned by this Sensor. All the values returned by this Sensor are represented in the units obtained by (BaseUnits * 10 raised to the power of the UnitModifier). For example, if BaseUnits is Volts and the Unit Modifier is -6, then the units of the values returned are MicroVolts. However, if the RateUnits property is set to a value other than "None", then the units are further qualified as rate units. In the above example, if RateUnits is set to "Per Second", then the values returned by the Sensor are in MicroVolts/Second. The units apply to all numeric properties of the Sensor, unless explicitly overridden by the Units qualifier. |
ModelCorrespondence | string | CIM_NumericSensor.BaseUnits, CIM_NumericSensor.RateUnits |
Override | string | UnitModifier |
UpperThresholdCritical | sint32 | |
Deprecated | string | No value |
Description | string | The Sensor's threshold values specify the ranges (min and max values) for determining whether the Sensor is operating under Normal, NonCritical, Critical or Fatal conditions. If the CurrentReading is between UpperThresholdCritical and Upper ThresholdFatal, then the CurrentState is Critical. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.14 |
Override | string | UpperThresholdCritical |
Write | boolean | true |
UpperThresholdFatal | sint32 | |
Deprecated | string | No value |
Description | string | The Sensor's threshold values specify the ranges (min and max values) for determining whether the Sensor is operating under Normal, NonCritical, Critical or Fatal conditions. If the CurrentReading is above UpperThresholdFatal, then the Current State is Fatal. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.16 |
Override | string | UpperThresholdFatal |
Write | boolean | true |
UpperThresholdNonCritical | sint32 | |
Deprecated | string | No value |
Description | string | The Sensor's threshold values specify the ranges (min and max values) for determining whether the Sensor is operating under Normal, NonCritical, Critical or Fatal conditions. If the CurrentReading is between LowerThresholdNonCritical and UpperThresholdNonCritical, then the Sensor is reporting a normal value. If the CurrentReading is between UpperThreshold NonCritical and UpperThresholdCritical, then the CurrentState is NonCritical. |
MappingStrings | string | MIF.DMTF|Temperature Probe|002.12 |
Override | string | UpperThresholdNonCritical |
Write | boolean | true |