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LIEBERT-GP-POWER-MIB

AI MIB Summary

The LIEBERT-GP-POWER-MIB enables SNMP monitoring of Liebert GP-series power distribution units and UPS systems, exposing critical metrics such as input/output voltage, current, frequency, load percentage, battery status, and alarm conditions. This module facilitates real-time telemetry collection for power infrastructure health assessment and fault detection within data center environments.

The MIB module used to register Liebert POWER related SNMP OIDs. Copyright 2000-2008 Liebert Corporation. All rights reserved. Reproduction of this document is authorized on the condition that the forgoing copyright notice is included. This Specification is supplied 'AS IS' and Liebert Corporation makes no warranty, either express or implied, as to the use, operation, condition, or performance of the Specification.
Main OID:
liebertGlobalProductsPowerModule.1.3.6.1.4.1.476.1.42.1.6.1
258
Objects
Active
Status
2
Dependencies

Imported Objects

Objects

258 total
Object Name
liebertGlobalProductsPowerModuleThe MIB module used to register Liebert POWER related SNMP OIDs. Copyright 2000-2008 Liebert Corporation. All rights reserved. Reproduction of this document is authorized on the condition that the forgoing copyright notice is included. This Specification is supplied 'AS IS' and Liebert Corporation makes no warranty, either express or implied, as to the use, operation, condition, or performance of the Specification.
MODULE-IDENTITY
.1.3.6.1.4.1.476.1.42.1.6.1
lgpPwrBatteryThis sub-tree is used to register Liebert Power Battery object identifiers.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.1
lgpPwrNumberInstalledBatteryModulesThe number of battery modules installed in the device.ro
Integer32
.1.3.6.1.4.1.476.1.42.3.5.1.1
lgpPwrNumberFailedBatteryModulesThe number of battery modules in the device that have failed.ro
Integer32
.1.3.6.1.4.1.476.1.42.3.5.1.2
lgpPwrNumberRedundantBatteryModulesThe number of redundant battery modules in the device.ro
Integer32
.1.3.6.1.4.1.476.1.42.3.5.1.3
lgpPwrNumberActiveBatteryModulesThe number of active battery modules in the device.ro
Integer32
.1.3.6.1.4.1.476.1.42.3.5.1.4
lgpPwrConfigLowBatteryWarningTimeThe value of the device's estimated minutes of remaining battery at which a lgpEventLowBatteryWarning notification will be sent.rw
Integer32 UNITS "minutes"
.1.3.6.1.4.1.476.1.42.3.5.1.5
lgpPwrNumberBatteryModuleWarningsThe number of battery modules in the device that have a warning.ro
Integer32
.1.3.6.1.4.1.476.1.42.3.5.1.6
lgpPwrBatteryCountThe number of batteries installed.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.1.7
lgpPwrBatteryTestResultThe outcome of the previous battery test.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.1.8
lgpPwrNominalBatteryCapacityThe nominal battery capacity of the system (in minutes) at full load.rw
Integer32 UNITS "minutes"
.1.3.6.1.4.1.476.1.42.3.5.1.9
lgpPwrBatteryFloatVoltageThe battery float voltage of the system.rw
Integer32 UNITS "Volt"
.1.3.6.1.4.1.476.1.42.3.5.1.10
lgpPwrBatteryEndOfDischargeVoltageThe battery voltage threshold at which the batteries are considered completely discharged.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.1.11
lgpPwrAutomaticBatteryTestIntervalThe automatic battery test interval.rw
Integer32 UNITS "hours"
.1.3.6.1.4.1.476.1.42.3.5.1.12
lgpPwrAutomaticBatteryTestCountdownThe time remaining before the next battery test.rw
Integer32 UNITS "minutes"
.1.3.6.1.4.1.476.1.42.3.5.1.13
lgpPwrBatteryChargeStatusThe present state of the system's battery charge. A value of 'charging' indicates the batteries are currently charging. A value of 'discharging' indicates the batteries are currently discharging. A value of 'fullycharged' indicates the batteries are charged to their full capacity. A value of 'notfullycharged' indicates the battery charge is neither fully charged, charging or discharging.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.1.14
lgpPwrBatteryLifeEnhancerThe state of the battery life enhancer. When 'on', it will preserve battery life.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.1.15
lgpPwrBatteryChargerThe state of the battery charger.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.1.16
lgpPwrBatteryChargeModeThe mode of the battery charger: 'float' charging or 'equalize' charging.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.1.17
lgpPwrBatteryTimeRemainingAn estimate of the time to battery charge depletion under the present load conditions if the utility power is off and remains off, or if it were to be lost and remain off. NOTE: A UPS is expected to provide a battery time remaining value when not operating on battery. However, if the system is not capable of providing this information, then this point will return 65535 to indicate that the value is unavailable.ro
Integer32 UNITS "minutes"
.1.3.6.1.4.1.476.1.42.3.5.1.18
lgpPwrBatteryCapacityThe present percentage of battery capacity.ro
Integer32 UNITS "percent"
.1.3.6.1.4.1.476.1.42.3.5.1.19
lgpPwrBatteryCabinetThis sub-tree contains items related to battery cabinets.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.1.20
lgpPwrBatteryCabinetCountThe number of battery cabinets installed with this device. Note some devices may not permit writing a value to this object.rw
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.1.20.1
lgpPwrBatteryCabinetTypeThe type of battery cabinet(s) installed on this device. Enumeration definitions: notSpecified - The type has not been specified in the device's configuration. internal - Battery cabinets are internal to the device. external - Device has external battery cabinets installed. lrt - Long Run Time cabinets. Note some devices may not permit writing a value to this object.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.1.20.2
lgpPwrBatteryCabinetRatedCapacityBattery cabinet rated capacity (tenths of Amp-hours). This assumes that each cabinet is of the same type and capacity. This is not a sum of the rating for all attached cabinets. Note some devices may not permit writing a value to this object.rw
Integer32 UNITS "0.1 Amp-hour"
.1.3.6.1.4.1.476.1.42.3.5.1.20.3
lgpPwrBatteryLeadAcidCellCountBattery cell count - lead-acid. The number of cells that comprise the lead acid battery string.rw
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.1.20.4
lgpPwrBatteryNiCadCellCountBattery cell count - nickel-cadmium. The number of cells that comprise the nickel-cadmium battery string.rw
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.1.20.5
lgpPwrBatteryAmpHoursConsumedThe cumulative battery Amp-hours withdrawn over the life of the battery. This value persists across reboots. Typically, this value is reset back to zero when the batteries are replaced.rw
Integer32 UNITS "Amp-hour"
.1.3.6.1.4.1.476.1.42.3.5.1.21
lgpPwrBatteryAmpHoursDischargeConsumedThe battery Amp-hours withdrawn during the current/latest discharge. This value does not persist across reboots.rw
Integer32 UNITS "Amp-hour"
.1.3.6.1.4.1.476.1.42.3.5.1.22
lgpPwrBatteryLastDischargeTimeThe date and time of the last battery discharge. Typically this is the time when the discharge starts. This value persists across reboots. The date and time are determined in seconds since the epoch on January 1, 1970.rw
Unsigned32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.1.23
lgpPwrBatteryLastCommissionTimeThe date and time when the battery system was put into service. This information persists across system reboot events. It is the responsibility of Service to reset this date/time when the batteries are replaced. The date and time are determined in seconds since the epoch on January 1, 1970.rw
Unsigned32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.1.24
lgpPwrBatteryPresentDischargeTimeThe total time spent on battery during the current or last discharge. NOTE: While not discharging, some systems may display zero instead of the last discharge.ro
Integer32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.1.25
lgpPwrBatteryCapacityStatusThe indication of the capacity remaining in the UPS system's batteries. NOTE: In a single-module system, this point is intended to have the same behavior as the RFC1628 point upsBatteryStatus.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.1.26
lgpPwrBatteryCircuitBreakerStateThe state of the Battery Circuit Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.1.27
lgpPwrMeasurementsThis sub-tree registers Liebert Power Measurement object identifiers. The sub-tree contains tables and well known power measurement points.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2
lgpPwrWellKnownMeasurementPointsThis sub-tree registers well known Liebert Power Measurement Points. The object identifier names usually imply locations where the measurement is taken -- such as 'input', 'output' and 'bypass'.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1
lgpPwrSource1InputThis sub-tree is used to register a source 1 input as a well known measurement point. It is intended that no sub-trees be created below this node. Power input to the managed device from power source 1. Many power systems contain more than one input source and many of them have more than one measurement point per input source. This identifier represents one input source for the system but does not necessarily represent the 'first' one. The input sources' numbering with respect to 'lgpPwrSource1Input' etc. may depend on the physical wiring of the system when it was installed.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1.1
lgpPwrSource2InputThis sub-tree is used to register a source 2 input as a well known measurement point. It is intended that no sub-trees be created below this node. Power input to the managed device from power source 2. Many power systems contain more than one input source and many of them have more than one measurement point per input source. This identifier represents one input source for the system but does not necessarily represent the 'first' one. The input sources' numbering with respect to 'lgpPwrSource2Input' etc. may depend on the physical wiring of the system when it was installed.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1.2
lgpPwrSourcePdu1InputThis sub-tree is used to register a source PDU 1 input as a well known measurement point. It is intended that no sub-trees be created below this node. Power input to the managed device from power distribution unit 1. Many power systems contain more than one input source and many of them have more than one measurement point per input source. This identifier represents one input source for the system but does not necessarily represent the 'first' one. The input sources' numbering with respect to 'lgpPwrSourcePdu1Input' etc. may depend on the physical wiring of the system when it was installed.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1.3
lgpPwrSourcePdu2InputThis sub-tree is used to register a source PDU 2 input as a well known measurement point. It is intended that no sub-trees be created below this node. Power input to the managed device from power distribution unit 1. Many power systems contain more than one input source and many of them have more than one measurement point per input source. This identifier represents one input source for the system but does not necessarily represent the 'first' one. The input sources' numbering with respect to 'lgpPwrSourcePdu2Input' etc. may depend on the physical wiring of the system when it was installed.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1.4
lgpPwrOutputToLoadThis sub-tree is used to register the output to the critical load as a well known measurement point. It is intended that no sub-trees be created below this node.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1.5
lgpPwrMeasBatteryThis sub-tree is used to register a battery as a well known measurement point. It is intended that no sub-trees be created below this node.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1.6
lgpPwrMeasBypassThis sub-tree is used to register a bypass as a well known measurement point. It is intended that no sub-trees be created below this node.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1.7
lgpPwrMeasDcBusThis sub-tree is used to register a DC bus as a well known measurement point. It is intended that no sub-trees be created below this node.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1.8
lgpPwrMeasSystemOutputThis sub-tree is used to register the output of a multi-module system as a well known measurement point. It is intended that no sub-trees be created below this node. This identifier represents the power related data of the system.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1.9
lgpPwrMeasBatteryCabinetThis sub-tree is used to register the voltage between the most negative and the most postive terminals of a battery cabinet. To determine the cabinet being described in a multi-cabinet system, this point implements an additional two indexes. The first index describes the module the cabinet is located in. The second index describes the cabinet number. In an SMS(Single-Module System) the first index is always 1. Example: lgpPwrMeasBatteryCabinet.2.4 'lgpPwrMeasBatteryCabinet' = Point is a battery cabinet. '.2' = Cabinet is in the second module. '.4' = Cabinet number 4
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.1.10
lgpPwrMeasurementPointTableThis table contains a list of AC power measurement point entries. The table contains zero, one, or many rows, depending upon the number of power related measurement points available. The NMS cannot create or delete rows from the table. The rows are created by the agent based upon the capabilities of the managed device. Each row in the table represents a series of measurements on a given point or location within the system. Measurement points/locations are identified by the object identifier 'lgpPwrMeasurementPointId' in the 'LgpPwrMeasurementPointEntry' object. The actual measurement being taken at that identified point is identified by the other corresponding columns in the LgpPwrMeasurementPointEntry for the particular row of the table.
SEQUENCE OF LgpPwrMeasurementPointEntry
.1.3.6.1.4.1.476.1.42.3.5.2.2
lgpPwrMeasurementPointEntryThis entry defines the measurements to be populated in the various columns of the 'lgpPwrMeasurementPointTable'.
LgpPwrMeasurementPointEntry
.1.3.6.1.4.1.476.1.42.3.5.2.2.1
lgpPwrMeasurementPointIndexThis is the index that indicates the row of the 'lgpPwrMeasurementPointTable' for a power measurement point.
Unsigned32
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.1
lgpPwrMeasurementPointIdAn OID representing a well known measurement point. These object identifiers indicate a point or location of power measurement in a power system. The OID's name usually implies a location of the measurement point such as 'input', 'output', 'bypass' etc.ro
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.2
lgpPwrMeasurementPointNumLinesThe number of lines on the indicated power measurement point. (i.e. the number of phases on the power source being measured.)ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.3
lgpPwrMeasurementPointNomVoltsThe magnitude of the nominal voltage on the power source being measured.ro
Integer32 UNITS "Volt"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.4
lgpPwrMeasurementPointNomFrequencyThe nominal or configured/expected frequency for the power source indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS "Hertz"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.5
lgpPwrMeasurementPointFrequencyThe present (actual) frequency for the power source indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS "Hertz"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.6
lgpPwrMeasurementPointApparentPowerThe present apparent AC power for the power source indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS "Volt-Amp"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.7
lgpPwrMeasurementPointTruePowerThe present AC power for the power source indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS "Watt"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.8
lgpPwrMeasurementPointPowerFactorThe present Power Factor for the power source indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS ".01 Power Factor"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.9
lgpPwrMeasurementPointWattHoursThe present number of Watt Hours for the power source indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS "Watt-Hour"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.10
lgpPwrMeasurementPointVAPercentThe percentage of the rated apparent AC power of the power source indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS "0.1 Percent"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.11
lgpPwrMeasurementPointNeutralCurrentThe present neutral current of the power point indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS "Amp"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.12
lgpPwrMeasurementPointGroundCurrentThe present ground current of the power point indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS "0.1 Amp"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.13
lgpPwrMeasurementPointNomCurrentThe nominal or configured/expected current of the power point indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS "0.1 Amp"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.14
lgpPwrMeasurementPointNomPowerFactorThe nominal or configured/expected power factor of the power point indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.ro
Integer32 UNITS ".01 Power Factor"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.15
lgpPwrMeasurementPointNomVAThe nominal or configured/expected apparent AC power for the power source indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.rw
Integer32 UNITS "Volt-Amp"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.16
lgpPwrMeasurementPointNomWThe nominal or configured/expected true AC power for the power source indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable.rw
Integer32 UNITS "Watt"
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.17
lgpPwrMeasurementPointPowerFactorTagThe present description of the Power Factor for the power source indicated by 'lgpPwrMeasurementPointId' in the corresponding row in the lgpPwrMeasurementPointTable. If Leading, the load is said to be capacitive and the phase of the current leads the voltage. If Lagging, the load is said to be inductive and the phase of the current lags the voltage.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.2.2.1.19
lgpPwrLineMeasurementTableA list of power measurements for each phase/line for a given power measurement point/location in the 'lgpPwrMeasurementPointTable'. The lgpPwrMeasurementPointIndex in this table corresponds to the index in the lgpPwrMeasurementPointTable. This table contains zero, one, or many rows, depending upon the number of power line source objects available. The NMS cannot create or delete rows from the table. The rows are created by the agent based upon the capabilities of the managed device.
SEQUENCE OF LgpPwrLineMeasurementEntry
.1.3.6.1.4.1.476.1.42.3.5.2.3
lgpPwrLineMeasurementEntryThis entry defines the contents of the columns for the table 'lgpPwrLineMeasurementTable'.
LgpPwrLineMeasurementEntry
.1.3.6.1.4.1.476.1.42.3.5.2.3.1
lgpPwrMeasurementPtIndexThis is the index indicating the row of the table 'lgpPwrMeasurementPointTable' for a power measurement point.
Unsigned32
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.1
lgpPwrLineMeasurementIndexThis is the index indicating the row of the table 'lgpPwrLineMeasurementTable' for a power measurement point.
Unsigned32
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.2
lgpPwrMeasurementPointAn OID representing a well known measurement point. These object identifiers indicate a point or location of power measurement in a power system. The OID name usually implies a location of the measurement point such as 'input', 'output', 'bypass', etc.ro
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.3
lgpPwrLineMeasurementVoltsLLThe present Line-to-Line voltage measurement for the indicated source. The line being measured is given by the lgpPwrLineMeasurementIndex [1 = AB, 2 = BC, 3 = CA].ro
Integer32 UNITS "Volt"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.4
lgpPwrLineMeasurementVoltsLNThe present Line-to-neutral voltage measurement for the indicated source. The line being measured is given by the lgpPwrLineMeasurementIndex where [1 = A, 2 = B, 3 = C].ro
Integer32 UNITS "Volt"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.5
lgpPwrLineMeasurementCurrentThe present current measurement for the indicated source. The line being measured is given by the 'lgpPwrLineMeasurementIndex' where [1 = A, 2 = B, 3 = C].ro
Integer32 UNITS "Amp"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.6
lgpPwrLineMeasurementCapacityThe percentage of the power capacity presently being used on this line.ro
Integer32 UNITS "percent"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.7
lgpPwrLineMeasurementVAThe present apparent AC line power.ro
Integer32 UNITS "Volt-Amp"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.8
lgpPwrLineMeasurementTruePowerThe present AC line power measured in watts.ro
Integer32 UNITS "Watt"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.9
lgpPwrLineMeasurementVoltageTHDThe present total harmonic distortion on the AC line voltage.ro
Integer32 UNITS "0.1 Percent"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.10
lgpPwrLineMeasurementCurrentTHDThe present total harmonic distortion on the AC line current.ro
Integer32 UNITS "0.1 Percent"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.11
lgpPwrLineMeasurementKFactorCurrentThe present line K Factor.ro
Integer32 UNITS "0.1 K Factor"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.12
lgpPwrLineMeasurementCrestFactorCurrentThe present crest factor of the line current.ro
Integer32 UNITS "0.1 Crest Factor"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.13
lgpPwrLineMeasurementPowerFactorThe present Power Factor for the line.ro
Integer32 UNITS "0.01 Power Factor"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.14
lgpPwrLineMeasurementPowerFactorTagThe present description of the Power Factor for the line. If Leading, the load is said to be capacitive and the phase of the current leads the voltage. If Lagging, the load is said to be inductive and the phase of the current lags the voltage.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.15
lgpPwrLineMeasurementMaxVoltsThe maximum voltage measurement recorded for the indicated source since the command 'lgpPwrStatisticsReset' was executed.ro
Integer32 UNITS "Volt"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.16
lgpPwrLineMeasurementMinVoltsThe minimum voltage measurement recorded for the indicated source since the command 'lgpPwrStatisticsReset' was executed.ro
Integer32 UNITS "Volt"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.17
lgpPwrLineMeasurementVARThe present reactive AC line power of the power source indicated by 'lgpPwrMeasurementPoint'.ro
Integer32 UNITS "Volt-Amp-Reactive"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.18
lgpPwrLineMeasurementPercentLoadThe present percent load of the AC line power.ro
Integer32 UNITS "percent"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.19
lgpPwrLineMeasurementVoltsThe present voltage measurement for the indicated source.ro
Integer32 UNITS "Volt"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.20
lgpPwrLineMeasurementVACapacityThe percentage of the apparent power capacity presently being used on this line.ro
Integer32 UNITS "percent"
.1.3.6.1.4.1.476.1.42.3.5.2.3.1.21
lgpPwrDcMeasurementPointTableThis table contains a list of DC power measurement point entries. The table contains zero, one, or many rows, depending upon the number of power related measurement points available. The NMS cannot create or delete rows from the table. The rows are created by the agent based upon the capabilities of the managed device. Each row in the table represents a series of measurements on a given point or location within the system. Measurement points/locations are identified by the object identifier 'lgpPwrDcMeasurementPointId' in the 'LgpPwrDcMeasurementPointEntry' object. The actual measurement being taken at that identified point is identified by the other corresponding columns in the LgpPwrDcMeasurementPointEntry for the particular row of the table.
SEQUENCE OF LgpPwrDcMeasurementPointEntry
.1.3.6.1.4.1.476.1.42.3.5.2.4
lgpPwrDcMeasurementPointEntryThis entry defines the measurements to be populated in the various columns of the 'lgpPwrDcMeasurementPointTable'.
LgpPwrDcMeasurementPointEntry
.1.3.6.1.4.1.476.1.42.3.5.2.4.1
lgpPwrDcMeasurementPointIndexThis is the index that indicates the row of the 'lgpPwrMeasurementPointTable' for a power measurement point.
Unsigned32
.1.3.6.1.4.1.476.1.42.3.5.2.4.1.1
lgpPwrDcMeasurementPointIdAn OID representing a well known measurement point. These object identifiers indicate a point or location of power measurement in a power system. The OID's name usually implies a location of the measurement point such as 'input', 'output', 'bypass' etc.ro
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.4.1.2
lgpPwrDcMeasurementPointSubIDThe identifier used to differentiate between identical thresholds for a given point index and point ID in the DC measurements table.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.2.4.1.3
lgpPwrDcMeasurementPointVoltsThe present DC voltage for the power source indicated by 'lgpPwrDcMeasurementPointId' in the corresponding row in the lgpPwrDcMeasurementPointTable.ro
Integer32 UNITS "Volt"
.1.3.6.1.4.1.476.1.42.3.5.2.4.1.4
lgpPwrDcMeasurementPointCurrentThe present DC current for the power source indicated by 'lgpPwrDcMeasurementPointId' in the corresponding row in the lgpPwrDcMeasurementPointTable.ro
Integer32 UNITS "Amp"
.1.3.6.1.4.1.476.1.42.3.5.2.4.1.5
lgpPwrDcMeasurementPointNomVoltsThe nominal(configured/expected) DC voltage for the power source indicated by 'lgpPwrDcMeasurementPointId' in the corresponding row in the lgpPwrDcMeasurementPointTable.ro
Integer32 UNITS "Volt"
.1.3.6.1.4.1.476.1.42.3.5.2.4.1.6
lgpPwrDcMeasurementPointTruePowerThe present DC power for the power source indicated by 'lgpPwrDcMeasurementPointId' in the corresponding row in the lgpPwrDcMeasurementPointTable.ro
Integer32 UNITS "Watt"
.1.3.6.1.4.1.476.1.42.3.5.2.4.1.7
lgpPwrWellKnownMeasurementTypesThis sub-tree registers well known Liebert Power Measurement Types. The object identifier names usually encompass units of measure, lines of reference, and device location. The OID's name usually implies a measurement type such as 'voltsAC', 'current', 'voltsDc', 'VoltsLL', etc.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.5
lgpPwrVoltsAcThis identifier represents an AC voltage.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.5.1
lgpPwrVoltsDcThis identifier represents a DC voltage.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.5.2
lgpPwrAmpsNeutralThis identifier represents a current measurement in Amps on the neutral line.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.2.5.3
lgpPwrStatusThis sub-tree registers Liebert Power Status object identifiers. This is the location of power related status information that does not fit into a more specific category such as the lgpPwrConversion sub-tree.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.3
lgpPwrTransferCountNumber of times that the output load has been transferred between the available input sources.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.3.1
lgpPwrAutoTransferTimerThe required wait time between output load auto transfer attempts between available input sources.ro
Integer32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.3.2
lgpPwrAutoReTransferEnabledThe ability to retransfer the output load automatically to the well known measurement source from the 'lgpPwrWellKnownMeasurements' sub-tree that is the preferred input source of the systemro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.3
lgpPwrSyncPhaseAngleThe phase angle difference of source 1 in relation to source 2.ro
Integer32(-3600..3600) UNITS "0.1 Degrees"
.1.3.6.1.4.1.476.1.42.3.5.3.4
lgpPwrParallelSystemOutputToLoadSourceThe source supporting the parallel system's load.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.5
lgpPwrDcToDcConverterThe state of the DC to DC converter.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.6
lgpPwrOutputToLoadOnInverterThe present source of output power is the Inverter.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.7
lgpPwrBatteryChargeCompensatingThe system is adjusting the battery charging algorithm to accommodate for the battery temperature.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.8
lgpPwrInverterReadyThe ability of the inverter to support the output load of the system.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.9
lgpPwrOutputToLoadOnBypassThe present source of output power is the Bypass.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.10
lgpPwrBoostThe present state of the boost circuitryro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.11
lgpPwrBuckThe present state of the buck circuitryro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.12
lgpPwrShutdownOverTemperatureThe system has previously shutdown due to an over temperature condition.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.13
lgpPwrShutdownOverloadThe system has previously shutdown due to an over load condition.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.14
lgpPwrShutdownDcBusOverloadThe system has previously shutdown due to a DC bus over load condition.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.15
lgpPwrShutdownOutputShortThe system has previously shutdown due to an output short condition.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.16
lgpPwrShutdownLineSwapThe system has previously shutdown due to a condition where the line and neutral were reversed.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.17
lgpPwrShutdownLowBatteryThe system has previously shutdown due to a low battery condition.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.18
lgpPwrShutdownRemoteThe system has previously shutdown due to a remote shutdown command.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.19
lgpPwrShutdownInputUnderVoltageThe system has previously shutdown due to an under voltage condition during startup.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.20
lgpPwrShutdownPowerFactorCorrectionFailureThe system has previously shutdown due to a power factor correction startup failure.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.21
lgpPwrShutdownHardwareThe system has previously shutdown due external shutdown signal.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.22
lgpPwrRedundantSubModuleThe system has a redundant battery module installed.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.23
lgpPwrBypassReadyThe ability of the bypass to support the output load of the system. If Yes, the bypass is available to transfer to.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.24
lgpPwrGeneratorStatusThe state of the system generator.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.25
lgpPwrRotaryBreakerStatusThe state of the system rotary breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.26
lgpPwrPowerFactorCorrectionThe state of the power factor correction circuitry of the system.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.27
lgpPwrBypassSyncDiffThe phase angle difference between the inverter output and bypass source. A positive value means the inverter leads the bypass source. A negative value means the inverter lags the bypass source.ro
Integer32 UNITS "0.1 Degrees"
.1.3.6.1.4.1.476.1.42.3.5.3.28
lgpPwrBypassOverloadShutdownTimeThe calculated time remaining before bypass static switch shutdown due to the present overload condition. If the bypass is not in an overload condition, this object returns -1.ro
Integer32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.3.29
lgpPwrInverterOverloadShutdownTimeThe calculated time remaining before inverter shutdown. The calculated time of inverter operation remaining for the present overload event. Note: If the inverter is not experiencing an overload event this point will return 65535 indicating this value is unavailable.ro
Integer32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.3.30
lgpPwrStateOutputSourceThe UPS's output power source (inverter, bypass, or none). NOTE: It is possible that the load still has power from the Maintenance Bypass.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.31
lgpPwrStateInputSourceThe system input power source (none, utility, generator).ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.32
lgpPwrStateInputQualificationThe current state of the system input. The unit may or may not operate normally under 'marginalLow' and 'marginalHigh' states.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.33
lgpPwrStateBypassStaticSwitchStateThe current state of the bypass static switch.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.34
lgpPwrStateBypassQualificationThe current operational state of the bypass static switch. The unit may or may not operate normally under 'marginalLow' and 'marginalHigh' states.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.35
lgpPwrStateDCBusQualificationThe current operational state of the DC bus. The unit may or may not operate normally under 'marginalLow' and 'marginalHigh' states.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.36
lgpPwrStateOutQualificationThe current operational state of the output. The unit may or may not operate normally under 'marginalLow' and 'marginalHigh' states.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.37
lgpPwrStateInverterQualificationThe current operational state of the inverter. The unit may or may not operate normally under 'marginalLow' and 'marginalHigh' states.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.38
lgpPwrStateInverterStateThe current state of the inverter.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.39
lgpPwrStateRectifierStateThe current state of the rectifier.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.40
lgpPwrStateModuleGroupThis group contains UPS module information.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.3.41
lgpPwrStateUpsModuleCountNumber of UPS modules in the system. In a single module system, this value is one.rw
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.3.41.1
lgpPwrStateUpsModuleRedundantCountNumber of redundant UPS modules in the system. In a single module system, the value is zero. This value is dependent upon the present load and the number of modules (i.e. the value may change during normal operation based upon a load change). This value represents the number of extra modules above the minimum needed to support the load.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.3.41.2
lgpPwrStateBackfeedBrkrStateThe state of the Static Bypass Switch Line Disconnect Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.42
lgpPwrStateLoadDisconnectStateThe state of the Static Bypass Switch Load Disconnect Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.43
lgpPwrStateInputBrkrStateThe state of the Input Disconnect Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.44
lgpPwrStateTrapFilterBrkrStateThe state of the Trap Filter Disconnect Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.45
lgpPwrStateInvOutputBrkrStateThe state of the Inverter Output Disconnect Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.46
lgpPwrStateIntBypassBrkrStateThe state of the Internal Bypass Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.47
lgpPwrStateBypassIsolBrkrStateThe state of the Bypass Isolation Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.48
lgpPwrStateRectifierIsolBrkrStateThe state of the Rectifier Isolation Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.49
lgpPwrStateMaintBypassBrkrStateThe state of the Maintenance Bypass Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.50
lgpPwrStateMaintIsolBrkrStateThe state of the Maintenance Isolation Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.51
lgpPwrStateOutStaticSwStateThe state of the Output Series Static Switch.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.52
lgpPwrStateModuleOutBrkrStateThe state of the Module Output Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.53
lgpPwrBypassReXfrRemainTimeThe time remaining before an inverter overload or inverter fault can be cleared and auto retransfer from the bypass to the inverter can take place. Note: If an inverter overload or fault is not taking place, this point will return 65535.ro
Integer32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.3.54
lgpPwrStateUpsOutputSourceThe present source of output power. The enumeration none(2) indicates that there is no source of output power (and therefore no output power), for example, the system has opened the output breaker. NOTE: In a single-module system, this point is intended to have the same behavior as the RFC1628 point upsOutputSource.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.55
lgpPwrStateLoadBusSynchronizationThe state of the Load Bus Synchronizer (LBS).ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.56
lgpPwrStateCircuitBrkrStateGroupThis group contains Static Switch circuit breaker state information.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.3.57
lgpPwrStateSource1InputBrkrStateThe states of Source 1 Input Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.57.1
lgpPwrStateSource2InputBrkrStateThe states of Source 2 Input Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.57.2
lgpPwrStateSource1BypassBrkrStateThe states of Source 1 Bypass Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.57.3
lgpPwrStateSource2BypassBrkrStateThe states of Source 2 Bypass Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.57.4
lgpPwrStateOutputBrkrStateThe states of Output Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.57.5
lgpPwrStateAuxOutputBrkrStateThe states of Auxiliary Output Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.57.6
lgpPwrStateSource1PduInputBrkrStateThe states of Source 1 PDU Input Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.57.7
lgpPwrStateSource2PduInputBrkrStateThe states of Source 2 PDU Input Breaker.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.57.8
lgpPwrEconomicOperationThe present state of ECO mode operation, on(1) if system is on bypass due to ECO mode operation, off(0) any other time.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.3.58
lgpPwrSettingsThis sub-tree registers Liebert Power Static Switch object identifiers.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.4
lgpPwrPreferredSourceThe well known measurement source from the 'lgpPwrWellKnownMeasurements' sub-tree that is the preferred input source of the system.ro
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.4.1
lgpPwrLoadOnSourceThe well known measurement source from the 'lgpPwrWellKnownMeasurements' sub-tree that is currently powering the output (load).ro
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.4.2
lgpPwrNominalVoltageDeviationThe nominal voltage deviation between the well known measurement source lgpPwrSource1Input and lgpPwrSource2Input.ro
Integer32 UNITS "Volt"
.1.3.6.1.4.1.476.1.42.3.5.4.3
lgpPwrNominalVoltageDeviationPercentThe percentage of the nominal voltage deviation between the well known measurement source lgpPwrSource1Input and lgpPwrSource2Input.ro
Integer32 UNITS "percent"
.1.3.6.1.4.1.476.1.42.3.5.4.4
lgpPwrPhaseDifferenceLimitThe maximum phase difference (between the well known input sources ) in which a transfer to an available input source is permitted.ro
Integer32 UNITS "0.1 Degrees"
.1.3.6.1.4.1.476.1.42.3.5.4.5
lgpPwrFrequencyDeviationLimitThe maximum frequency deviation (between the well known input sources ) in which a transfer to an available input source is permitted.ro
Integer32 UNITS "0.1 Hertz"
.1.3.6.1.4.1.476.1.42.3.5.4.6
lgpPwrThresholdTableA list of power thresholds for a given power measurement at a point/location in the system. The lgpPwrThresholdType in this table corresponds to the type of measurement the high and low thresholds applies to. This table contains zero, one, or many rows, depending upon the number of 'lgpPwrThresholdPoint' and 'lgpPwrThresholdSubID' available in the table. The NMS cannot create or delete rows from the table. The rows are created by the agent based upon the capabilities of the managed device.
SEQUENCE OF LgpPwrThresholdEntry
.1.3.6.1.4.1.476.1.42.3.5.4.7
lgpPwrThresholdEntryThis entry defines the contents of the columns for the table 'lgpPwrThresholdTable'.
LgpPwrThresholdEntry
.1.3.6.1.4.1.476.1.42.3.5.4.7.1
lgpPwrThresholdIndexThis is the index indicating the row of the table 'lgpPwrLineMeasurementTable' for a power measurement point.
Unsigned32
.1.3.6.1.4.1.476.1.42.3.5.4.7.1.1
lgpPwrThresholdPointAn OID representing a well known measurement point. These object identifiers indicate a point or location of power measurement in a power system. The OID's name usually implies a location of the measurement point such as 'input', 'output', 'bypass' etc.ro
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.4.7.1.2
lgpPwrThresholdSubIDThis is a sub identifier for the 'lgpPwrThresholdPoint'. It indicates the instance number of the well known threshold point.ro
Unsigned32
.1.3.6.1.4.1.476.1.42.3.5.4.7.1.3
lgpPwrThresholdTypeAn OID representing a well known measurement type. These object identifiers indicate the type of measurement referenced by the row of the table. These object identifiers can encompass units of measure, lines of reference, and device location. The OID's name usually implies a measurement type such as 'voltsAc', 'current', 'voltsDc', 'VoltsLL', etc.ro
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.4.7.1.4
lgpPwrThresholdHighWarningThe high warning threshold of a type of measurement designated by the 'lgpPwrThresholdType' at a location designated by the 'lgpPwrThresholdPoint'. If multiple thresholds are available at a single 'lgpPwrThresholdPoint', of the same 'lgpPwrThresholdType', then the 'lgpPwrThresholdSubID' will differentiate between them. When this threshold is met, the agent will send a notification.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.4.7.1.5
lgpPwrThresholdHighFailureThe high failure threshold of a type of measurement designated by the 'lgpPwrThresholdType' at a location designated by the 'lgpPwrThresholdPoint'. If multiple thresholds are available at a single 'lgpPwrThresholdPoint', of the same 'lgpPwrThresholdType', then the 'lgpPwrThresholdSubID' will differentiate between them. When this threshold is met, the agent will send a notification.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.4.7.1.6
lgpPwrThresholdLowWarningThe low warning threshold of a type of measurement designated by the 'lgpPwrThresholdType' at a location designated by the 'lgpPwrThresholdPoint'. If multiple thresholds are available at a single 'lgpPwrThresholdPoint', of the same 'lgpPwrThresholdType', then the 'lgpPwrThresholdSubID' will differentiate between them. When this threshold is met, the agent will send a notification.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.4.7.1.7
lgpPwrThresholdLowFailureThe low failure threshold of a type of measurement designated by the 'lgpPwrThresholdType' at a location designated by the 'lgpPwrThresholdPoint'. If multiple thresholds are available at a single 'lgpPwrThresholdPoint', of the same 'lgpPwrThresholdType', then the 'lgpPwrThresholdSubID' will differentiate between them. When this threshold is met, the agent will send a notification.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.4.7.1.8
lgpPwrUpsAutoRestartThe device will automatically restart when utility power is restored following a battery discharge.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.4.8
lgpPwrUpsAutoRestartDelayThe device will automatically delay a certain number of seconds and then restart after utility power is restored following a battery discharge. The number of seconds to delay is subject to the precision of the device and should be kept to 10 second intervals.rw
Integer32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.4.9
lgpPwrAutoRestartBatteryChargeThresholdThe battery charge percentage required before the device can automatically restart.rw
Integer32 UNITS "percent"
.1.3.6.1.4.1.476.1.42.3.5.4.10
lgpPwrParallelModuleCountThe number of modules in the parallel system.rw
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.4.11
lgpPwrParallelRedundancyCountThe number of redundant modules in the parallel system.rw
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.4.12
lgpPwrLoadBusSyncModeThe configuration of Load Bus Synchronization (LBS) between independent systems.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.4.13
lgpPwrEconomicOperationModeThe configuration of the economic operation mode of the system.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.4.14
lgpPwrAutomaticBatteryTestAutomatic battery test option. If enabled, the battery will be tested on a fixed interval. If disabled, the battery test must be initiated by a battery test command. The interval at which a battery test is performed is defined by 'lgpPwrAutomaticBatteryTestInterval'.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.4.15
lgpPwrMinimumRedundantPowerModuleThe minimum number of redundant power modules that must be present before sending a loss of power redundancy alarm. If 0, there is no redundant power functionality.rw
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.4.16
lgpPwrMinimumRedundantBatteryModuleThe minimum number of redundant battery modules that must be present before sending an alarm. If 0, the redundant battery module alarm is disabled.rw
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.4.17
lgpPwrOutputToLoadUserOverloadLimitThis is the user specified maximum load the device can support without sending an alarm.rw
Integer32 UNITS "Volt-Amp"
.1.3.6.1.4.1.476.1.42.3.5.4.18
lgpPwrNoLoadWarningLimitThe minimum current draw on the output in which the device considers there to be a load present on the output. The condition lgpConditionWarningNoLoadDetected will be triggered if the output current falls below this value. If this value is '-1' then the lgpConditionNoLoadDetectedWarning condition is 'disabled'.rw
Integer32 UNITS "Amp"
.1.3.6.1.4.1.476.1.42.3.5.4.19
lgpPwrNoLoadWarningDelayThe amount of time to delay before annunciation of the condition lgpConditionNoLoadDetectedWarning after the output current load falls below the threshold lgpPwrOutputNoLoadWarningLimit.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.4.20
lgpPwrEconomicOperationModeControlThe configuration of the economic operation mode of the system. Note that this supersedes lgpPwrEconomicOperationMode in newer devices.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.4.21
lgpPwrConversionThis sub-tree is used to register Liebert Power Conversion object identifiers.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.5
lgpPwrNumberInstalledPowerModulesThe number of power modules installed in the device.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.5.1
lgpPwrNumberFailedPowerModulesThe number of power modules in the device that have failed.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.5.2
lgpPwrNumberRedundantPowerModulesThe number of redundant power modules installed in the device.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.5.3
lgpPwrNumberActivePowerModulesThe number of active power modules in the device.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.5.4
lgpPwrNumberPowerModuleWarningsThe number of power modules in the device that have a warning.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.5.6
lgpPwrUpsInverterStandbyThe output to the load is supported by the bypass and the inverter is on standby.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.5.7
lgpPwrControlThis sub-tree is used to register Liebert Power Control object identifiers.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.6
lgpPwrWellKnownControlPointsThis sub-tree registers well known Liebert Power Control Points. The object identifier names usually imply locations where control of a device is available -- such 'output' or 'load circuits'.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.6.1
lgpPwrLoadCircuitThe managed device's controllable load circuit. Many power systems contain more than one load circuit. This identifier represents one load circuit for the system but does not necessarily represent the 'first' one. The load circuits' numbering with respect to 'lgpPwrLoadCircuit1' etc. may depend on the physical wiring of the system when it was installed.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.6.1.1
lgpPwrLoadCircuitTableA list of load circuits that can be controlled(opened or closed). The NMS cannot create or delete rows from the table. The rows are created by the agent based upon the capabilities of the managed device.
SEQUENCE OF LgpPwrLoadCircuitEntry
.1.3.6.1.4.1.476.1.42.3.5.6.2
lgpPwrLoadCircuitEntryThis entry defines the contents of the columns for the table 'lgpPwrLoadCircuitTable'.
LgpPwrLoadCircuitEntry
.1.3.6.1.4.1.476.1.42.3.5.6.2.1
lgpPwrLoadCircuitIndexThis is the index indicating the row of the table 'lgpPwrLoadCircuitTable'.
Unsigned32
.1.3.6.1.4.1.476.1.42.3.5.6.2.1.1
lgpPwrLoadCircuitIdAn OID representing a well known load circuit identifier. These load circuit identifiers indicate the name or type of load circuit reference in the table.ro
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.6.2.1.2
lgpPwrLoadCircuitSubIDThis is a sub identifier for the 'lgpPwrLoadCircuitId'. It indicates the hardware identifier of the load control circuit.ro
Unsigned32
.1.3.6.1.4.1.476.1.42.3.5.6.2.1.3
lgpPwrLoadCircuitStateThis identifier indicates the state of the load circuit. When read, only a closed or open response will be returned. When written to, the state of the circuit will transition to desired state.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.6.2.1.4
lgpPwrLoadCircuitStateAndControlThis identifier indicates the state of the load circuit. When read, only a closed or open response will be returned. When written to, the state of the circuit will transition to desired state.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.6.2.1.5
lgpPwrAlarmSilenceAudible Alarm Silence Command. This command turns off the device's audible alarm. It will not affect the status of the alarm(s) that caused the audible alarm. This command should be sent with a parameter of 1. This variable doesn't return a value when read.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.6.3
lgpPwrBatteryTestBattery Test Command. This command will initiate a battery test if one is not already in progress, or abort the current test if it is in progress.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.6.4
lgpPwrUpsAbortCommandUPS Abort command. This command will abort the pending command on the device. There is no guarantee a client using the abort command will cancel a command sent moments before from the same client. Another client could initiate a command and change what command is actually pending on the device. This command should be sent with a parameter of 1. This variable doesn't return a value when read.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.6.5
lgpPwrTransferToBypassTransfer to Bypass Command. This command will initiate a transfer of the load to the bypass of the system. This command should be sent with a parameter of 1. This variable doesn't return a value when read.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.6.6
lgpPwrTransferToInverterTransfer to Inverter Command. This command will initiate a transfer of the load to the inverter of the system. This command should be sent with a parameter of 1. This variable doesn't return a value when read.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.6.7
lgpPwrOutputOnDelayOutput On Delay Command. This command will turn on the output of the device after a user specified delay. The number of seconds to delay is subject to the precision of the device and should be kept to 10 second intervals.rw
Integer32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.6.8
lgpPwrOutputOffDelayWithRestartOutput Off Delay with Restart Command. This command will turn off the output of the device after a user specified delay. The number of seconds to delay is subject to the precision of the device and should be kept to 10 second intervals. The device will then turn the output on again after a specified amount of time.rw
Integer32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.6.9
lgpPwrOutputOffDelayWithoutRestartOutput Off Delay without Restart Command. This command will turn off the output of the device after a specified delay. The number of seconds to delay is subject to the precision of the device and should be kept to 10 second intervals. The device will NOT automatically turn the output on following this command.rw
Integer32 UNITS "seconds"
.1.3.6.1.4.1.476.1.42.3.5.6.10
lgpPwrTopologyThis sub-tree is used to register Liebert Power Topology object identifiers.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.7
lgpPwrUpsTopOfflineThe UPS has an offline topology. Under normal operating conditions, AC power from the utility passes straight through the UPS to the critical load. The inverter is used to convert the DC power from the battery to create AC power to support the load when the utility fails. Normally the inverter is operating in the stand-by mode, keeping the batteries charged. Should the utility power go out of specification, the inverter will power the load by drawing energy from the battery.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.1
lgpPwrUpsTopLineInteractiveThe UPS has a line-interactive topology. This topology resembles the offline product, but inserts a transformer or inductor in series between the utility power source and the load. This inline inductor enables the UPS inverter to interact with incoming power and provide a measure of power conditioning to the load. This buck-and-boost circuitry helps with high and low input voltage conditions.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.2
lgpPwrUPSTopDualInputThe system has separate input sources for the bypass and inverter.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.3
lgpPwrTopFrequencyConverterThe system has a frequency converter.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.4
lgpPwrTopVoltageConverterThe system has a voltage converter.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.5
lgpPwrTopMaximumFrameCapacityThe maximum device system capacity.rw
Integer32 UNITS "Volt-Amp"
.1.3.6.1.4.1.476.1.42.3.5.7.6
lgpPwrTopRedundantControlModulesThe device has a redundant control module installed.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.7
lgpPwrInputIsolationTransformerInstalledIndicates whether the input isolation transformer is installed.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.8
lgpPwrStateStaticSwitchTypeStatic switch type (N/A, continous duty, or momentary duty).ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.9
lgpPwrStateModuleTypeUPS module type. SMS -- Single Module System 1 + 1 -- Redundant system for capacity 1 + N -- Distributed multi-module system N + 1 -- A multi-module system with one bypass for the system SCC -- System Control Cabinet used in an N+1 system to provide a single bypass for the system. MSS -- Main Static Switchro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.10
lgpPwrStateBypassInputConfigBypass input wire physical wiring configuration. singlePhase2WireL1WithReturn Single phase input with 2 wires (Line 1, and Return). twoPhase2WireL1L2 Two phase input with 2 wires (Line 1, and Line 2). twoPhase3WireL1L2WithNeutral Two phase input with 3 wires (Line 1, Line 2, and Neutral) threePhase3WireL1L2L3 Three phase input with 3 wires (Line 1, Line 2, and Line 3) threePhase4WireL1L2L3WithNeutral Three phase input with 4 wires (Line 1, Line 2, Line 3, and Neutral).ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.11
lgpPwrStateOutputConfigOutput wire physical wiring configuration. singlePhase2WireL1WithReturn Single phase output with 2 wires (Line 1, and Return). twoPhase2WireL1L2 Two phase output with 2 wires (Line 1, and Line 2). twoPhase3WireL1L2WithNeutral Two phase output with 3 wires (Line 1, Line 2, and Neutral) threePhase3WireL1L2L3 Three phase output with 3 wires (Line 1, Line 2, and Line 3) threePhase4WireL1L2L3WithNeutral Three phase output with 4 wires (Line 1, Line 2, Line 3, and Neutral).ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.12
lgpPwrRectifierPassiveFilterInstalledIndicates whether the rectifier passive filter is installed.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.13
lgpPwrRectifierTrapInstalledIndicates whether the rectifier input passive filter is installed.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.14
lgpPwrRectifierActiveFilterInstalledIndicates whether the rectifier active filter is installed.ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.7.15
lgpPwrStatisticThis sub-tree is used to register Liebert Power Statistic object identifiers.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.8
lgpPwrBrownOutCountThe number of occurrences where the input line voltage has fallen below a pre-determined threshold for a specified amount of time. This number resets when the command 'lgpPwrStatisticsReset' is executed.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.8.1
lgpPwrBlackOutCountThe number of occurrences where there is a total loss of electric power. This number resets when the command 'lgpPwrStatisticsReset' is executed.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.8.2
lgpPwrTransientCountThe number of occurrences where the input line voltage spikes above a pre-determined threshold for a specified amount of time. This number resets when the command 'lgpPwrStatisticsReset' is executed.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.8.3
lgpPwrBatteryDischargeCountThe number of battery discharges since the last reset.ro
Integer32 UNITS "Count"
.1.3.6.1.4.1.476.1.42.3.5.8.4
lgpPwrBatteryDischargeTimeThe total accumulated time spent on battery since the last reset.ro
Integer32 UNITS "minutes"
.1.3.6.1.4.1.476.1.42.3.5.8.5
lgpPwrBatteryAmpHoursThe total accumulated Amp-hours removed from the battery since last reset.ro
Integer32 UNITS "Amp-hour"
.1.3.6.1.4.1.476.1.42.3.5.8.6
lgpPwrBatteryWattHoursThe total accumulated Watt-Hours removed from the battery since last reset. This command should be sent with a parameter of 1. This variable doesn't return a value when read.ro
Integer32 UNITS "Watt-Hour"
.1.3.6.1.4.1.476.1.42.3.5.8.7
lgpPwrBatteryStatisticsResetBattery statistics clear command. The command to reset all battery statistics stored by the device. This command should be sent with a parameter of 1. This variable doesn't return a value when read.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.8.8
lgpPwrStatisticsResetReset Power Statistics Command. This command will reset the power statistics stored in the system. This command should be sent with a parameter of 1. This variable doesn't return a value when read.rw
Integer32
.1.3.6.1.4.1.476.1.42.3.5.8.9
lgpPwrConfigThis sub-tree is used to register Liebert Power Configuration Object identifiers.
OBJECT IDENTIFIER
.1.3.6.1.4.1.476.1.42.3.5.9
lgpPwrSysCapacityThe current device system capacity.rw
Integer32 UNITS "Volt-Amp"
.1.3.6.1.4.1.476.1.42.3.5.9.1
lgpPwrUPSModuleModeThe module mode of the UPS.rw
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.9.2
lgpPwrMaxRatedCurrentSystem output maximum amperage rating. The maximum rated amperage for the system. This value is based upon the model type and is typically limited by the wiring, breakers, power devices, etc.ro
Integer32 UNITS "Amp"
.1.3.6.1.4.1.476.1.42.3.5.9.3
lgpPwrRectifierPulseCountRectifier pulse count per waveform cycle (6-, 12-, 18-, or 24-pulse).ro
Enumeration
.1.3.6.1.4.1.476.1.42.3.5.9.4