RARITAN-PX2-PDU2-MIB

MIB Reference — IPNetwork Monitor

All MIBsRARITAN-PX2-PDU2-MIB

Organization: Raritan

Last Updated: 2016-12-02

Category: UPS and Power

Description:

Manages Raritan PX2 intelligent PDU outlet switching, power monitoring, and environmental sensors.

Imported Objects

From INET-ADDRESS-MIB

InetAddress
InetAddressType
InetPortNumber

From RFC1213-MIB

sysContact
sysLocation
sysName

From SNMPv2-CONF

MODULE-COMPLIANCE
NOTIFICATION-GROUP
OBJECT-GROUP

From SNMPv2-SMI

Integer32
IpAddress
MODULE-IDENTITY
NOTIFICATION-TYPE
OBJECT-TYPE
Unsigned32
enterprises

From SNMPv2-TC

DisplayString
MacAddress
RowPointer
TEXTUAL-CONVENTION
TruthValue

What Is RARITAN-PX2-PDU2-MIB?

RARITAN-PX2-PDU2-MIB is a vendor-specific MIB from Raritan for its Dominion PX2 (PX G2) family of intelligent power distribution units (PDUs), covering outlet switching control, power monitoring, and environmental sensor integration. It exposes hardware identification data (manufacturer, model, serial number, rated voltage/current/frequency/VA) alongside real-time power metrics and outlet-level control/status, plus support for attached environmental sensors such as temperature and humidity probes. This is a core hardware and power-status monitoring MIB: administrators use it to track whether individual outlets are powered on/off, monitor real-time load against rated capacity to avoid overloading a circuit, and receive traps for threshold violations or PDU faults. It defines its own private trap infrastructure (trapInformation/traps) rather than depending on external standard MIBs, though it conceptually parallels the IETF PDU-related MIB structure. It is deployed in data centers and server rooms wherever Raritan PX2 rack PDUs provide monitored/switched power to IT equipment. Engineers can download the RARITAN-PX2-PDU2-MIB file directly to load it into their MIB browser.

IPNetwork Monitor allows you to monitor SNMP objects defined in RARITAN-PX2-PDU2-MIB. Use the built-in SNMP Monitoring Browser to explore available variables, view their current values and descriptions, and select the objects you want to monitor. You can then create SNMP monitors, configure thresholds, and receive alerts when monitored values change.

What Can Be Monitored

  • outlet on/off status
  • real-time power/current draw
  • rated voltage/current/VA capacity
  • PDU identification (model, serial)
  • environmental sensor readings (temperature/humidity)
  • threshold-violation traps

Supported Devices

  • Raritan Dominion PX2 (PX G2) intelligent rack PDUs

Monitoring Examples

An operator would poll nameplateTable/nameplateEntry, indexed by pduId, to confirm pduRatedCurrent and pduRatedVA nameplate limits, then compare against live outlet or inlet power readings to detect a PDU approaching its rated capacity. Raritan's trap subsystem would fire a notification from the traps/trapInformation branch if an outlet's current draw crosses a configured threshold, alerting staff before a circuit breaker trips.

OIDs
OID symbolicOID numericTypeAccessDescription
raritan1.3.6.1.4.1.13742This MIB describes the SNMP functions of the Dominion PX G2 Power Distribution Unit by Raritan Computer.
pdu21.3.6.1.4.1.13742.6
traps1.3.6.1.4.1.13742.6.0
trapInformation1.3.6.1.4.1.13742.6.0.0
trapInformationTable1.3.6.1.4.1.13742.6.0.0.1not-accessibleA list of Trap Information entries. The number of entries is given by the value of pduCount.
trapInformationEntry1.3.6.1.4.1.13742.6.0.0.1.1not-accessibleAn entry containing objects used in traps.
STR userName1.3.6.1.4.1.13742.6.0.0.1.1.2DisplayStringread-onlyThe user currently logged in.
STR targetUser1.3.6.1.4.1.13742.6.0.0.1.1.3DisplayStringread-onlyThe user added, deleted, or modified.
STR imageVersion1.3.6.1.4.1.13742.6.0.0.1.1.5DisplayStringread-onlyThe version of the upgrade image.
STR roleName1.3.6.1.4.1.13742.6.0.0.1.1.6DisplayStringread-onlyThe role added, deleted, or modified.
STR smtpMessageRecipients1.3.6.1.4.1.13742.6.0.0.1.1.7DisplayStringread-onlyComma separated list of SMTP Message recipients
STR smtpServer1.3.6.1.4.1.13742.6.0.0.1.1.8DisplayStringread-onlyThe IP address/host name of the SMTP server
SEN oldSensorState1.3.6.1.4.1.13742.6.0.0.2SensorStateEnumerationaccessible-for-notifyThe old sensor state used in Sensor State Transition traps.
I32 pduNumber1.3.6.1.4.1.13742.6.0.0.3Integer32accessible-for-notifyA unique value for each PDU. Its value ranges between 1 and the value of pduCount.
I32 inletPoleNumber1.3.6.1.4.1.13742.6.0.0.5Integer32accessible-for-notifyA unique value for each inlet Pole. Its value ranges between 1 and the value of inletPoleCount.
I32 outletPoleNumber1.3.6.1.4.1.13742.6.0.0.7Integer32accessible-for-notifyA unique value for each outlet Pole. Its value ranges between 1 and the value of outletPoleCount.
I32 externalSensorNumber1.3.6.1.4.1.13742.6.0.0.8Integer32accessible-for-notifyA unique value for each external sensor. Its value ranges between 1 and the value of externalSensorCount.
SEN typeOfSensor1.3.6.1.4.1.13742.6.0.0.10SensorTypeEnumerationaccessible-for-notifyThe type of sensor.
STR errorDescription1.3.6.1.4.1.13742.6.0.0.11DisplayStringaccessible-for-notifyDescription of the Error
DEV deviceChangedParameter1.3.6.1.4.1.13742.6.0.0.12DeviceIdentificationParameterEnumerationaccessible-for-notifyDescription of the parameter(s) that changed.
STR changedParameterNewValue1.3.6.1.4.1.13742.6.0.0.13DisplayStringaccessible-for-notifyThe new value of the changed parameter
T/F lhxSupportEnabled1.3.6.1.4.1.13742.6.0.0.14TruthValueaccessible-for-notifyThe new enabled state for Schroff LHX Support.
STR webcamModel1.3.6.1.4.1.13742.6.0.0.15DisplayStringaccessible-for-notifyThe model of the Webcam
STR webcamConnectionPort1.3.6.1.4.1.13742.6.0.0.16DisplayStringaccessible-for-notifyThe port to which the Webcam is connected
INE agentInetPortNumber1.3.6.1.4.1.13742.6.0.0.18InetPortNumberaccessible-for-notifyThe UDP port number used for accessing the SNMP agent on the device. Examples: If deviceCascadeType is portForwarding, then master: 50500 slave 1:50501 slave 2: 50502 ...... If cascading mode is not portForwarding and default (Standard) ports are being used, then port: 161
STR peripheralDeviceRomcode1.3.6.1.4.1.13742.6.0.0.19DisplayStringaccessible-for-notifyThe Romcode of an peripheral device
PER peripheralDeviceFirmwareUpdateState1.3.6.1.4.1.13742.6.0.0.20PeripheralDeviceFirmwareUpdateStateEnumerationaccessible-for-notifyThe firmware update state of an peripheral device
I32 circuitNumber1.3.6.1.4.1.13742.6.0.0.21Integer32accessible-for-notifyA unique value for each circuit. circuitId is defined as follows. circuitID = 1000*(panelId) + circuitPosition Examples: 1045 is the the circuit on panel 1 with lowest circuit position equal to 45 4067 is the the circuit on panel 4 with lowest circuit position equal to 67.
I32 circuitPoleNumber1.3.6.1.4.1.13742.6.0.0.22Integer32accessible-for-notifyA unique value for each circuit Pole.
STR phoneNumber1.3.6.1.4.1.13742.6.0.0.23DisplayStringaccessible-for-notifyThe phone number of e.g. an SMS receiver.
NTF systemStarted1.3.6.1.4.1.13742.6.0.1The system has started.
NTF systemReset1.3.6.1.4.1.13742.6.0.2The system was reset. The conditions under which this trap is sent include, but are not limited to, the following. using the GUI - Maintenance->Reset Unit using the CLI - reset pdu unit
NTF userLogin1.3.6.1.4.1.13742.6.0.3A user logged in.
NTF userLogout1.3.6.1.4.1.13742.6.0.4A user logged out.
NTF userAuthenticationFailure1.3.6.1.4.1.13742.6.0.5A user authentication attempt failed.
NTF userSessionTimeout1.3.6.1.4.1.13742.6.0.8A user session timed out.
NTF userAdded1.3.6.1.4.1.13742.6.0.11A user was added to the system.
NTF userModified1.3.6.1.4.1.13742.6.0.12A user was modified.
NTF userDeleted1.3.6.1.4.1.13742.6.0.13A user was deleted from the system.
NTF roleAdded1.3.6.1.4.1.13742.6.0.14A role was added to the system.
NTF roleModified1.3.6.1.4.1.13742.6.0.15A role was modified.
NTF roleDeleted1.3.6.1.4.1.13742.6.0.16A role was deleted from the system.
NTF deviceUpdateStarted1.3.6.1.4.1.13742.6.0.20The device update has started.
NTF deviceUpdateCompleted1.3.6.1.4.1.13742.6.0.21The device update has completed.
NTF userBlocked1.3.6.1.4.1.13742.6.0.22A blocked user tried to log in.
NTF powerControl1.3.6.1.4.1.13742.6.0.23An outlet switching operation has been performed. Note that measurementsOutletSensorState represents the state of the outlet at the time the trap was sent. This may be different from the final state of the outlet. For instance, if the outlet is cycled and the outlet cycle delay is 20 seconds, this variable will indicate OFF although the final state of the outlet will be ON. The final state of the outlet will be indicated in the outletSensorStateChange trap for the outlet onOff sensor.
NTF userPasswordChanged1.3.6.1.4.1.13742.6.0.24User password was changed.
NTF passwordSettingsChanged1.3.6.1.4.1.13742.6.0.28Strong password settings changed.
NTF firmwareValidationFailed1.3.6.1.4.1.13742.6.0.38Firmware validation failed.
NTF logFileCleared1.3.6.1.4.1.13742.6.0.41The log file has been cleared.
NTF bulkConfigurationSaved1.3.6.1.4.1.13742.6.0.53Bulk Configuration saved.
NTF bulkConfigurationCopied1.3.6.1.4.1.13742.6.0.54Bulk Configuration copied to the device.
NTF pduSensorStateChange1.3.6.1.4.1.13742.6.0.60PDU Sensor State Change. Which value field to use depends on the metadata of the sensor. measurementsUnitSensorValue is undefined for sensors which can have negative readings, measurementsUnitSensorSignedValue is undefined for sensors whose range exceeds the Integer32 range. Both fields do not apply to sensors without numerical readings.
NTF inletSensorStateChange1.3.6.1.4.1.13742.6.0.61Inlet Sensor State Change. Which value field to use depends on the metadata of the sensor. measurementsInletSensorValue is undefined for sensors which can have negative readings, measurementsInletSensorSignedValue is undefined for sensors whose range exceeds the Integer32 range. Both fields do not apply to sensors without numerical readings. For an rcmState sensor transitioning to the fail state, the value is the residual current just before the sensor transitioned to the fail state i.e. if typeOfSensor = rcmState and measurementsInletSensorState = fail, then measurementsInletSensorValue = the residual current just before the sensor transitioned to the fail state
NTF inletPoleSensorStateChange1.3.6.1.4.1.13742.6.0.62Inlet Pole Sensor State Change. Which value field to use depends on the metadata of the sensor. measurementsInletPoleSensorValue is undefined for sensors which can have negative readings, measurementsInletPoleSensorSignedValue is undefined for sensors whose range exceeds the Integer32 range. Both fields do not apply to sensors without numerical readings.
NTF outletSensorStateChange1.3.6.1.4.1.13742.6.0.63Outlet Sensor State Change. Which value field to use depends on the metadata of the sensor. measurementsOutletSensorValue is undefined for sensors which can have negative readings, measurementsOutletSensorSignedValue is undefined for sensors whose range exceeds the Integer32 range. Both fields do not apply to sensors without numerical readings.
NTF outletPoleSensorStateChange1.3.6.1.4.1.13742.6.0.64Outlet Pole Sensor State Change. Which value field to use depends on the metadata of the sensor. measurementsOutletPoleSensorValue is undefined for sensors which can have negative readings, measurementsOutletPoleSensorSignedValue is undefined for sensors whose range exceeds the Integer32 range. Both fields do not apply to sensors without numerical readings.
NTF overCurrentProtectorSensorStateChange1.3.6.1.4.1.13742.6.0.65Overcurrent Protector Sensor State Change. Which value field to use depends on the metadata of the sensor. measurementsOverCurrentProtectorSensorValue is undefined for sensors which can have negative readings, measurementsOverCurrentProtectorSensorSignedValue is undefined for sensors whose range exceeds the Integer32 range. Both fields do not apply to sensors without numerical readings.
NTF externalSensorStateChange1.3.6.1.4.1.13742.6.0.66External Sensor State Change.
NTF smtpMessageTransmissionFailure1.3.6.1.4.1.13742.6.0.67SMTP message transmission failure
NTF ldapError1.3.6.1.4.1.13742.6.0.68LDAP Error occurred; errorDescription describes the error
NTF deviceUpdateFailed1.3.6.1.4.1.13742.6.0.70The device update has failed.
NTF loadSheddingModeEntered1.3.6.1.4.1.13742.6.0.71The PX has enetered Load Shedding Mode
NTF loadSheddingModeExited1.3.6.1.4.1.13742.6.0.72The PX has exited Load Shedding Mode
NTF pingServerEnabled1.3.6.1.4.1.13742.6.0.73The ping feature has been enabled
NTF pingServerDisabled1.3.6.1.4.1.13742.6.0.74The ping feature has been disabled
NTF serverNotReachable1.3.6.1.4.1.13742.6.0.75The server is not reachable
NTF serverReachable1.3.6.1.4.1.13742.6.0.76The server is reachable
NTF rfCodeTagConnected1.3.6.1.4.1.13742.6.0.77The RF Code Tag is Connected
NTF rfCodeTagDisconnected1.3.6.1.4.1.13742.6.0.78The RF Code Tag is Disconnected
NTF deviceIdentificationChanged1.3.6.1.4.1.13742.6.0.79Device identification has changed
NTF usbSlaveConnected1.3.6.1.4.1.13742.6.0.80Connectivity to downstream slave has been established. It applies to the following interfaces: USB Ethernet This trap is sent only if deviceCascadeType is portForwarding
NTF usbSlaveDisconnected1.3.6.1.4.1.13742.6.0.81Connectivity to downstream slave has been lost It applies to the following interfaces: USB Ethernet This trap is sent only if deviceCascadeType is portForwarding
NTF lhxSupportChanged1.3.6.1.4.1.13742.6.0.82The Schroff LHX Support has been either enabled or disabled.
NTF userAcceptedRestrictedServiceAgreement1.3.6.1.4.1.13742.6.0.83The user accepted the Restricted Service Agreement.
NTF userDeclinedRestrictedServiceAgreement1.3.6.1.4.1.13742.6.0.84The user declined the Restricted Service Agreement.
NTF wireSensorStateChange1.3.6.1.4.1.13742.6.0.85Wire Sensor State Change.
NTF transferSwitchSensorStateChange1.3.6.1.4.1.13742.6.0.86Transfer Switch Sensor State Change. Which value field to use depends on the metadata of the sensor. measurementsTransferSwitchSensorValue is undefined for sensors which can have negative readings, measurementsTransferSwitchSensorSignedValue is undefined for sensors whose range exceeds the Integer32 range. Both fields do not apply to sensors without numerical readings.
NTF deviceSettingsSaved1.3.6.1.4.1.13742.6.0.88Device Settings have been saved.
NTF deviceSettingsRestored1.3.6.1.4.1.13742.6.0.89Device Settings have been restored.
NTF webcamInserted1.3.6.1.4.1.13742.6.0.90A webcam has been inserted
NTF webcamRemoved1.3.6.1.4.1.13742.6.0.91A webcam has been removed
NTF inletEnabled1.3.6.1.4.1.13742.6.0.92PDU operation has been enabled for an inlet
NTF inletDisabled1.3.6.1.4.1.13742.6.0.93PDU operation has been disabled for an inlet
NTF serverConnectivityUnrecoverable1.3.6.1.4.1.13742.6.0.94The connection to the server could not be recovered
NTF radiusError1.3.6.1.4.1.13742.6.0.95LDAP Error occurred; errorDescription describes the error
NTF serverReachabilityError1.3.6.1.4.1.13742.6.0.96Server Reachability Error occurred; errorDescription describes the error. This trap is sent when the Error state is entered. Reasons for transitioning to the Error state include the following: Unable to resolve the server hostname.
NTF inletSensorReset1.3.6.1.4.1.13742.6.0.97An inlet sensor was reset.
NTF outletSensorReset1.3.6.1.4.1.13742.6.0.98An outlet sensor was reset.
NTF unknownPeripheralDeviceAttached1.3.6.1.4.1.13742.6.0.99An unknown peripheral device was attached.
NTF peripheralDeviceFirmwareUpdate1.3.6.1.4.1.13742.6.0.100The firmware update state of a peripheral device changed while performing update to peripheralDevicePackageFirmwareVersion.
NTF unitSensorReset1.3.6.1.4.1.13742.6.0.101A global sensor was reset.
NTF unitSensorStateChange1.3.6.1.4.1.13742.6.0.102Unit Sensor State Change. Which value field to use depends on the metadata of the sensor. measurementsUnitSensorValue is undefined for sensors which can have negative readings, measurementsUnitSensorSignedValue is undefined for sensors whose range exceeds the Integer32 range. Both fields do not apply to sensors without numerical readings.
NTF circuitSensorStateChange1.3.6.1.4.1.13742.6.0.103circuit Sensor State Change. Which value field to use depends on the metadata of the sensor. measurementsOutletSensorValue is undefined for sensors which can have negative readings, measurementsCircuitSensorSignedValue is undefined for sensors whose range exceeds the Integer32 range. Both fields do not apply to sensors without numerical readings.
NTF circuitPoleSensorStateChange1.3.6.1.4.1.13742.6.0.104Circuit Pole Sensor State Change. Which value field to use depends on the metadata of the sensor. measurementsOutletPoleSensorValue is undefined for sensors which can have negative readings, measurementsCircuitPoleSensorSignedValue is undefined for sensors whose range exceeds the Integer32 range. Both fields do not apply to sensors without numerical readings.
NTF circuitAdded1.3.6.1.4.1.13742.6.0.105A Circuit has been added
NTF circuitDeleted1.3.6.1.4.1.13742.6.0.106A Circuit has been deleted
NTF circuitModified1.3.6.1.4.1.13742.6.0.107A Circuit has been modified
NTF circuitSensorReset1.3.6.1.4.1.13742.6.0.108An ciruit sensor was reset.
NTF powerMeterAdded1.3.6.1.4.1.13742.6.0.109A Power Meter has been added
NTF powerMeterDeleted1.3.6.1.4.1.13742.6.0.110A Power Meter has been deleted
NTF powerMeterModified1.3.6.1.4.1.13742.6.0.111A Power Meter has been modified
NTF smsMessageTransmissionFailure1.3.6.1.4.1.13742.6.0.112Sending an SMS message failed.
board1.3.6.1.4.1.13742.6.1
environmental1.3.6.1.4.1.13742.6.2
configuration1.3.6.1.4.1.13742.6.3
I32 pduCount1.3.6.1.4.1.13742.6.3.1Integer32read-onlyFor a PX2/3 and transfer switch, pduCount = 1 For a BCM2, pduCount = number of power meters + 1 (for the main controller)
unit1.3.6.1.4.1.13742.6.3.2
nameplateTable1.3.6.1.4.1.13742.6.3.2.1not-accessibleA list of PDU nameplate entries. The number of entries is given by the value of pduCount.
nameplateEntry1.3.6.1.4.1.13742.6.3.2.1.1not-accessibleAn entry providing PDU nameplate information.
I32 pduId1.3.6.1.4.1.13742.6.3.2.1.1.1Integer32not-accessibleA unique value for each PDU/Power meter. PX2/3 and transfer switch: pduiId = 1 BCM2: main controller: pduId = 0 power meter: pduId = rotary switch setting for the power meter It is the same as the MeterID in the GUI Example: a power meter, rotary switch setting = 5, pduId = 5 a panel (power meter + branch metering), rotary switch setting = 23, pduId = 23
STR pduManufacturer1.3.6.1.4.1.13742.6.3.2.1.1.2DisplayStringread-onlyThe PDU manaufacturer.
STR pduModel1.3.6.1.4.1.13742.6.3.2.1.1.3DisplayStringread-onlyThe PDU model.
STR pduSerialNumber1.3.6.1.4.1.13742.6.3.2.1.1.4DisplayStringread-onlyThe PDU serial Number.
STR pduRatedVoltage1.3.6.1.4.1.13742.6.3.2.1.1.5DisplayStringread-onlyThe PDU voltage rating.
STR pduRatedCurrent1.3.6.1.4.1.13742.6.3.2.1.1.6DisplayStringread-onlyThe PDU current rating.
STR pduRatedFrequency1.3.6.1.4.1.13742.6.3.2.1.1.7DisplayStringread-onlyThe PDU frequency rating.
STR pduRatedVA1.3.6.1.4.1.13742.6.3.2.1.1.8DisplayStringread-onlyThe PDU VA (VoltAmps) rating.
URL pduImage1.3.6.1.4.1.13742.6.3.2.1.1.9URLread-onlyThe URL of the wiring diagram for this PDU.
unitConfigurationTable1.3.6.1.4.1.13742.6.3.2.2not-accessibleA list of PDU configuration entries. The number of entries is given by the value of pduCount.
unitConfigurationEntry1.3.6.1.4.1.13742.6.3.2.2.1not-accessibleAn entry containing configuration objects for a particular PDU.
I32 inletCount1.3.6.1.4.1.13742.6.3.2.2.1.2Integer32read-onlyThe number of inlets.
I32 overCurrentProtectorCount1.3.6.1.4.1.13742.6.3.2.2.1.3Integer32read-onlyThe number of overcurrent protectors.
I32 outletCount1.3.6.1.4.1.13742.6.3.2.2.1.4Integer32read-onlyThe number of outlets.
I32 inletControllerCount1.3.6.1.4.1.13742.6.3.2.2.1.5Integer32read-onlyThe number of inlet controllers.
I32 outletControllerCount1.3.6.1.4.1.13742.6.3.2.2.1.6Integer32read-onlyThe number of outlet controllers.
I32 externalSensorCount1.3.6.1.4.1.13742.6.3.2.2.1.7Integer32read-onlyThe number of external sensors.
IP pxIPAddress1.3.6.1.4.1.13742.6.3.2.2.1.8IpAddressread-onlyThe current IP address. A value of 0.0.0.0 indicates an error or an unset option.
IP netmask1.3.6.1.4.1.13742.6.3.2.2.1.9IpAddressread-onlyThe current netmask. A value of 0.0.0.0 indicates an error or an unset option.
IP gateway1.3.6.1.4.1.13742.6.3.2.2.1.10IpAddressread-onlyThe current gateway. A value of 0.0.0.0 indicates an error or an unset option.
MAC pxMACAddress1.3.6.1.4.1.13742.6.3.2.2.1.11MacAddressread-onlyThe current MAC address. if bridge interface is enabled, then equal to the MAC address of Ethernet 1, else if Ethernet 1 is enabled, then equal to the MAC address of Ethernet 1 else if Ethernet 2 is enabled, then equal to the MAC address of Ethernet 2 else if Wlan is enabled, then equal to the MAC address of Wlan else return SNMP_ERR_NOSUCHNAME
STR utcOffset1.3.6.1.4.1.13742.6.3.2.2.1.12DisplayStringread-onlyThe current UTC offset.
STR pduName1.3.6.1.4.1.13742.6.3.2.2.1.13DisplayStringread-writeThe user-defined name for the PDU.
NUM networkInterfaceType1.3.6.1.4.1.13742.6.3.2.2.1.14NetworkInterfaceTypeEnumerationread-onlyThe network interface type: wired or wireless. If only the Wireless interface is enabled, then equal to wireless else equal to wired
EXT externalSensorsZCoordinateUnits1.3.6.1.4.1.13742.6.3.2.2.1.34ExternalSensorsZCoordinateUnitsEnumerationread-writeExternal Sensor Z Coordinate units: Freeform Text or Rack Units (U) Default is U.
BIT unitDeviceCapabilities1.3.6.1.4.1.13742.6.3.2.2.1.35Bitsread-onlyA bit string which indicates which unit sensors are available.
U32 outletSequencingDelay1.3.6.1.4.1.13742.6.3.2.2.1.36Unsigned32read-writeIt is deprecated. This is an alias for inrushGuardDelay
U32 globalOutletPowerCyclingPowerOffPeriod1.3.6.1.4.1.13742.6.3.2.2.1.37Unsigned32read-writeThe power-off period when an outlet is cycled; applies to all outlets unless overridden at the outlet level; specified in seconds; 1 <= value <= 3600 seconds.
GLO globalOutletStateOnStartup1.3.6.1.4.1.13742.6.3.2.2.1.38GlobalOutletStateOnStartupEnumerationread-writeThe outlet state on device startup; applies to all outlets unless overridden at the outlet level. Note that this value is ignored if relayBehaviorOnPowerLoss is set to latching.
STR outletPowerupSequence1.3.6.1.4.1.13742.6.3.2.2.1.39DisplayStringread-writeThe sequence in which will the outlets will be switched on under the following conditions. 1) Switch all outlets on operation is executed 2) Power to the PDU is cycled String must consist of a comma separated sequence of the outlet numbers and all outlet numbers must be included. The numbers entered must be a permutation of the numbers 1,2,3,-outletnumber. Example for a 12 outlet PDU: 1,12,3,5,6,7,10,2,4,11,9,8. The per outlet sequence delays are defined as outletSequenceDelay in the outletConfigurationTable
U32 pduPowerCyclingPowerOffPeriod1.3.6.1.4.1.13742.6.3.2.2.1.40Unsigned32read-writeWhen power to the PX is cycled (either manually or because of a temporary power loss), this number determines how many seconds the PX will wait before it provides power to the outlets. specified in seconds: 1 <= value <= 3600 seconds. Note that this value is ignored if relayBehaviorOnPowerLoss is set to latching.
DAI pduDaisychainMemberType1.3.6.1.4.1.13742.6.3.2.2.1.41DaisychainMemberTypeEnumerationread-onlyThe daisy chain member type.
I32 managedExternalSensorCount1.3.6.1.4.1.13742.6.3.2.2.1.42Integer32read-onlyThe number of managed external sensors
IPt pxInetAddressType1.3.6.1.4.1.13742.6.3.2.2.1.50InetAddressTyperead-onlyThe type of address format This object is deprecated in favor of ipAddressTable from the IP-MIB (rfc4293).
IP pxInetIPAddress1.3.6.1.4.1.13742.6.3.2.2.1.51InetAddressread-onlyThe current IP address. A value of 0.0.0.0 indicates an error or an unset option. This object is deprecated in favor of ipAddressTable from the IP-MIB (rfc4293). For IPv6, its value is 0.0.0.0
IP pxInetNetmask1.3.6.1.4.1.13742.6.3.2.2.1.52InetAddressread-onlyThe current netmask. A value of 0.0.0.0 indicates an error or an unset option. This object is deprecated in favor of ipAddressTable from the IP-MIB (rfc4293). For IPv6, its value is 0.0.0.0
IP pxInetGateway1.3.6.1.4.1.13742.6.3.2.2.1.53InetAddressread-onlyThe current gateway. A value of 0.0.0.0 indicates an error or an unset option. This object is deprecated in favor of ipAddressTable from the IP-MIB (rfc4293). For IPv6, its value is 0.0.0.0
T/F loadShedding1.3.6.1.4.1.13742.6.3.2.2.1.55TruthValueread-writeEnter/Exit Load Shedding Mode
I32 serverCount1.3.6.1.4.1.13742.6.3.2.2.1.56Integer32read-onlyThe number of servers
U32 inrushGuardDelay1.3.6.1.4.1.13742.6.3.2.2.1.57Unsigned32read-writeThe time interval between switching on two outlets; specified in milliseconds; 100 <= value <= 100000 milliseconds.
T/F cascadedDeviceConnected1.3.6.1.4.1.13742.6.3.2.2.1.58TruthValueread-onlyIndicates whether another PX2 is connected using an USB cable to the USB-A port of this PX2 in a cascaded configuration. true: Connected false: Not Connected
T/F synchronizeWithNTPServer1.3.6.1.4.1.13742.6.3.2.2.1.59TruthValueread-writeWill time be obtained using NTP? true: time will be obtained using NTP servers false: time will not be obtained using NTP servers Deafault is false.
T/F useDHCPProvidedNTPServer1.3.6.1.4.1.13742.6.3.2.2.1.60TruthValueread-write**NOTE:This object is obsolete. Its functionality has been replaced by the following. If at least one of firstNTPServerAddress and secondNTPServerAddress has been configured then the Static NTP Servers shall become the Active NTP Servers else the DHCP provided NTP Servers shall become the Active NTP Servers
IPt firstNTPServerAddressType1.3.6.1.4.1.13742.6.3.2.2.1.61InetAddressTyperead-writeRepresents the type of the corresponding instance of firstNTPServerAddress object. When setting this value, be sure that firstNTPServerAddress is of this address type, e.g. by setting both of them.
IP firstNTPServerAddress1.3.6.1.4.1.13742.6.3.2.2.1.62InetAddressread-writeThe address of the primary ntp server. When setting this value, be sure that it is of the type specified in firstNTPServerAddressType, e.g. by setting both of them.
IPt secondNTPServerAddressType1.3.6.1.4.1.13742.6.3.2.2.1.63InetAddressTyperead-writeRepresents the type of the corresponding instance of secondNTPServerAddress object. When setting this value, be sure that secondNTPServerAddress is of this address type, e.g. by setting both of them. Default is ipv4
IP secondNTPServerAddress1.3.6.1.4.1.13742.6.3.2.2.1.64InetAddressread-writeThe address of the second ntp server. When setting this value, be sure that it is of the type specified in secondNTPServerAddressType, e.g. by setting both of them.
I32 wireCount1.3.6.1.4.1.13742.6.3.2.2.1.65Integer32read-onlyThe number of wires.
I32 transferSwitchCount1.3.6.1.4.1.13742.6.3.2.2.1.66Integer32read-onlyThe number of transfer switches.
PRO productType1.3.6.1.4.1.13742.6.3.2.2.1.67ProductTypeEnumerationread-onlyThe product type. Is this product a PDU, STS, BCM,...?
I32 meteringControllerCount1.3.6.1.4.1.13742.6.3.2.2.1.68Integer32read-onlyThe number of metering controllers.
REL relayBehaviorOnPowerLoss1.3.6.1.4.1.13742.6.3.2.2.1.69RelayPowerLossBehaviorEnumerationread-writeThe relay behavior on power loss.
DEV deviceCascadeType1.3.6.1.4.1.13742.6.3.2.2.1.70DeviceCascadeTypeEnumerationread-writeThe configured type of cascading: default is none. If device is a standalone device, then equal to none else if device is part of a cascade using bridging, then equal to bridging else if device is part of a cascade using port forwarding, then equal to portForwarding
I32 deviceCascadePosition1.3.6.1.4.1.13742.6.3.2.2.1.71Integer32read-onlyThe position of the device in the cascaded chain. if deviceCascadeType is none or bridging, then equal to 0 else if deviceCascadeType is portForwarding, then equal to the position of the device in the cascaded chain 0: master >= 1: slaves
T/F peripheralDevicesAutoManagement1.3.6.1.4.1.13742.6.3.2.2.1.72TruthValueread-writeAuto-management enabled state for peripheral devices.
T/F frontPanelOutletSwitching1.3.6.1.4.1.13742.6.3.2.2.1.73TruthValueread-writeEnables/disables switching of outlets using the PDU front panel.
T/F frontPanelRCMSelfTest1.3.6.1.4.1.13742.6.3.2.2.1.74TruthValueread-writeEnables/disables front panel RCM self-test.
T/F frontPanelActuatorControl1.3.6.1.4.1.13742.6.3.2.2.1.75TruthValueread-writeEnables/disables front panel peripheral actuator control.
I32 circuitCount1.3.6.1.4.1.13742.6.3.2.2.1.76Integer32read-onlyThe number of user configured circuits in the panel.
I32 activeDNSServerCount1.3.6.1.4.1.13742.6.3.2.2.1.77Integer32read-onlyThe number of active DNS Servers
I32 activeNTPServerCount1.3.6.1.4.1.13742.6.3.2.2.1.78Integer32read-onlyThe number of active NTP Servers
controllerConfigurationTable1.3.6.1.4.1.13742.6.3.2.3not-accessibleA list of entries for the boards in each PDU. The number of entries is given by the value of inletControllerCount + outletControllerCount + 1 (for main controller board).
controllerConfigurationEntry1.3.6.1.4.1.13742.6.3.2.3.1not-accessibleAn entry containing objects for a controller.
BOA boardType1.3.6.1.4.1.13742.6.3.2.3.1.1BoardTypeEnumerationnot-accessibleThe type of board.
I32 boardIndex1.3.6.1.4.1.13742.6.3.2.3.1.2Integer32not-accessibleA unique value for each controller. Its value ranges between 1 and the value of inletControllerCount + outletControllerCount + 1.
STR boardVersion1.3.6.1.4.1.13742.6.3.2.3.1.4DisplayStringread-onlyThe board hardware version.
STR boardFirmwareVersion1.3.6.1.4.1.13742.6.3.2.3.1.6DisplayStringread-onlyThe firmware version.
U32 boardFirmwareTimeStamp1.3.6.1.4.1.13742.6.3.2.3.1.8Unsigned32read-onlyThe time when the board firmware was updated in UNIX(epoch)time. It is measured in seconds relative to January 1, 1970 (midnight UTC/GMT), i.e a value of 0 indicates January 1, 1970 (midnight UTC/GMT).
logConfigurationTable1.3.6.1.4.1.13742.6.3.2.4not-accessibleA table of parameters for the data logging feature. The number of entries is given by the value of pduCount.
logConfigurationEntry1.3.6.1.4.1.13742.6.3.2.4.1not-accessibleAn entry containing data logging parameters for a particular PDU.
T/F dataLogging1.3.6.1.4.1.13742.6.3.2.4.1.1TruthValueread-writeData Retrieval: enabled/disabled.
I32 measurementPeriod1.3.6.1.4.1.13742.6.3.2.4.1.2Integer32read-onlyData Collection periodicity. This is the periodicity of the data collected by the PX. This value is fixed at 1 second.
I32 measurementsPerLogEntry1.3.6.1.4.1.13742.6.3.2.4.1.3Integer32read-writeThe number of measurements used for each entry in the log.
I32 logSize1.3.6.1.4.1.13742.6.3.2.4.1.4Integer32read-onlyThe number of entries in the log.
T/F dataLoggingEnableForAllSensors1.3.6.1.4.1.13742.6.3.2.4.1.5TruthValueread-writeOperation to control data logging for all sensors. If this OID is set to true, then all xxxSensorLogAvailable are set to true If this OID is set to false, then all xxxSensorLogAvailable are set to false
unitSensorConfigurationTable1.3.6.1.4.1.13742.6.3.2.5not-accessibleA list of unit level sensors for a PDU.
unitSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.2.5.1not-accessibleAn entry containing unit sensor parameters.
SEN sensorType1.3.6.1.4.1.13742.6.3.2.5.1.1SensorTypeEnumerationnot-accessibleThe type of sensor.
T/F unitSensorLogAvailable1.3.6.1.4.1.13742.6.3.2.5.1.4TruthValueread-writeIs logging enabled for the sensor?
SEN unitSensorUnits1.3.6.1.4.1.13742.6.3.2.5.1.6SensorUnitsEnumerationread-onlyThe units in which the sensor data is reported.
U32 unitSensorDecimalDigits1.3.6.1.4.1.13742.6.3.2.5.1.7Unsigned32read-onlyThe number of digits displayed to the right of the decimal point.
HUN unitSensorAccuracy1.3.6.1.4.1.13742.6.3.2.5.1.8HundredthsOfAPercentageread-onlyThe accuracy: how close (in percent) the measurement is to the actual value.
U32 unitSensorResolution1.3.6.1.4.1.13742.6.3.2.5.1.9Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01.
U32 unitSensorTolerance1.3.6.1.4.1.13742.6.3.2.5.1.10Unsigned32read-onlyThe resolution: the difference between a sensor value and the actual value The value of this OID variable should be scaled by (unitSensorDecimalDigits + 1). For example, if the value is 50 and unitSensorDecimalDigits is 2, then actual value is 0.05.
U32 unitSensorMaximum1.3.6.1.4.1.13742.6.3.2.5.1.11Unsigned32read-onlyThe largest possible reading as an unsigned integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled maximum exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 unitSensorMinimum1.3.6.1.4.1.13742.6.3.2.5.1.12Unsigned32read-onlyThe smallest possible reading as an unsigned integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 unitSensorHysteresis1.3.6.1.4.1.13742.6.3.2.5.1.13Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading.
U32 unitSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.2.5.1.14Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. This parameter does not apply to sensors without numerical reading.
U32 unitSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.2.5.1.21Unsigned32read-writeThe lower critical threshold as an unsigned integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 unitSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.2.5.1.22Unsigned32read-writeThe lower warning threshold as an unsigned integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 unitSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.2.5.1.23Unsigned32read-writeThe upper critical threshold as an unsigned integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 unitSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.2.5.1.24Unsigned32read-writeThe upper warning threshold as an unsigned integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
BIT unitSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.2.5.1.25Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to sensors without numerical reading.
I32 unitSensorSignedMaximum1.3.6.1.4.1.13742.6.3.2.5.1.26Integer32read-onlyThe largest possible reading as a signed integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 unitSensorSignedMinimum1.3.6.1.4.1.13742.6.3.2.5.1.27Integer32read-onlyThe smallest possible reading as a signed integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. This value determines whether to use the signed or unsigned threshold and value columns: If the minimum is below zero the sensor can have negative readings and the signed columns should be used. This parameter does not apply to sensors without numerical reading.
I32 unitSensorSignedLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.2.5.1.28Integer32read-writeThe lower critical threshold as a signed integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 unitSensorSignedLowerWarningThreshold1.3.6.1.4.1.13742.6.3.2.5.1.29Integer32read-writeThe lower warning threshold as a signed integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 unitSensorSignedUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.2.5.1.30Integer32read-writeThe upper critical threshold as a signed integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 unitSensorSignedUpperWarningThreshold1.3.6.1.4.1.13742.6.3.2.5.1.31Integer32read-writeThe upper warning threshold as a signed integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
activeDNSServerTable1.3.6.1.4.1.13742.6.3.2.6not-accessibleA list of active DNS server entries. The number of rows in the table is given by the value of activeDNSServerCount (from unitConfigurationTable). If activeDNSServerCount = 0, then the table is empty.
activeDNSServerEntry1.3.6.1.4.1.13742.6.3.2.6.1not-accessibleAn entry containing the active DNS servers for a particular PDU.
I32 activeDNSServerIndex1.3.6.1.4.1.13742.6.3.2.6.1.2Integer32not-accessibleA unique value for a dns Server. Its value ranges between 1 and activeDNSServerCount.
IPt activeDNSServerAddressType1.3.6.1.4.1.13742.6.3.2.6.1.3InetAddressTyperead-onlyRepresents the type of the corresponding instance of activeDNSServerAddress object.
IP activeDNSServerAddress1.3.6.1.4.1.13742.6.3.2.6.1.4InetAddressread-onlyThe address of the dns server.
ADR activeDNSServerAddressSource1.3.6.1.4.1.13742.6.3.2.6.1.5AddressSourceEnumerationread-onlyHow was the address obtained: static, dhcp, dhcpv6? No longer used; Always set to static
activeNTPServerTable1.3.6.1.4.1.13742.6.3.2.7not-accessibleA list of active NTP server entries. The number of rows in the table is given by the value of activeNTPServerCount (from unitConfigurationTable). If activeNTPServerCount = 0, then the table is empty.
activeNTPServerEntry1.3.6.1.4.1.13742.6.3.2.7.1not-accessibleAn entry containing the active NTP servers for a particular PDU.
I32 activeNTPServerIndex1.3.6.1.4.1.13742.6.3.2.7.1.2Integer32not-accessibleA unique value for a ntp Server. Its value ranges between 1 and activeNTPServerCount.
IPt activeNTPServerAddressType1.3.6.1.4.1.13742.6.3.2.7.1.3InetAddressTyperead-onlyRepresents the type of the corresponding instance of activeNTPServerAddress object, e.g. IPv4, IPv6, DNS Name
IP activeNTPServerAddress1.3.6.1.4.1.13742.6.3.2.7.1.4InetAddressread-onlyThe address of the NTP server.
ADR activeNTPServerAddressSource1.3.6.1.4.1.13742.6.3.2.7.1.5AddressSourceEnumerationread-onlyHow was the address obtained: static, dhcp, dhcpv6? No longer used; Always set to static
inlets1.3.6.1.4.1.13742.6.3.3
inletConfigurationTable1.3.6.1.4.1.13742.6.3.3.3not-accessibleA list of inlet configuration entries. The number of entries is given by the value of inletCount for the PDU.
inletConfigurationEntry1.3.6.1.4.1.13742.6.3.3.3.1not-accessibleAn entry containing parametersfor a particular inlet.
I32 inletId1.3.6.1.4.1.13742.6.3.3.3.1.1Integer32not-accessibleA unique value for each inlet. Its value ranges between 1 and the value of inletCount.
STR inletLabel1.3.6.1.4.1.13742.6.3.3.3.1.2DisplayStringread-onlyThe label on the PDU identifying the inlet.
STR inletName1.3.6.1.4.1.13742.6.3.3.3.1.3DisplayStringread-writeThe user-defined name.
PLU inletPlug1.3.6.1.4.1.13742.6.3.3.3.1.4PlugTypeEnumerationread-onlyThe type of plug/receptacle wired to the inlet.
I32 inletPoleCount1.3.6.1.4.1.13742.6.3.3.3.1.5Integer32read-onlyThe number of poles. PDU: 2 for 1-phase circuits 3 for 3-phase DELTA wired models; 4 for 3-phase WYE wired models; Pole 4 is neutral; Note that sensors are not supported for neutral poles; Power Meter: 5: Pole 1 is Phase A Pole 2 is Phase B Pole 3 is Phase C Pole 4 is Neutral Pole 5 is Earth
STR inletRatedVoltage1.3.6.1.4.1.13742.6.3.3.3.1.6DisplayStringread-onlyThe inlet voltage rating.
STR inletRatedCurrent1.3.6.1.4.1.13742.6.3.3.3.1.7DisplayStringread-onlyThe inlet current rating.
STR inletRatedFrequency1.3.6.1.4.1.13742.6.3.3.3.1.8DisplayStringread-onlyThe inlet frequency rating. Deprecated: use pduRatedFrequency for unit nameplate information.
STR inletRatedVA1.3.6.1.4.1.13742.6.3.3.3.1.9DisplayStringread-onlyThe inlet VA (VoltAmps) rating. Deprecated: use pduRatedVA for unit nameplate information.
BIT inletDeviceCapabilities1.3.6.1.4.1.13742.6.3.3.3.1.10Bitsread-onlyA bit string which indicates which inlet sensors are available.
BIT inletPoleCapabilities1.3.6.1.4.1.13742.6.3.3.3.1.11Bitsread-onlyA bit string which indicates which inletpole sensors are available.
STR inletPlugDescriptor1.3.6.1.4.1.13742.6.3.3.3.1.12DisplayStringread-onlyDescription of the Plug
T/F inletEnableState1.3.6.1.4.1.13742.6.3.3.3.1.13TruthValueread-writeIs this PDU operation is enabled for this inlet? When PDU operation is disabled the sensors for this inlet and all children will no longer be updated, and outlet switching is no longer allowed. This is only meaningful for multi-inlet units if one inlet is temporarily expected to be powered down. Disabling the inlet of a single-inlet unit is forbidden and any attempt to do so will result in an error.
U32 inletRCMResidualOperatingCurrent1.3.6.1.4.1.13742.6.3.3.3.1.14Unsigned32read-writeThe Residual Operating Current (Threshold) for the RCM State sensor. For inlets without an RCM, any attempt to access this OID will return NoSuchInstance error. The value of this OID is in milliamps.
inletSensorConfigurationTable1.3.6.1.4.1.13742.6.3.3.4not-accessibleA list of configuration entries for an inlet sensor.
inletSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.3.4.1not-accessibleAn entry containing objects for configuring an inlet sensor.
T/F inletSensorLogAvailable1.3.6.1.4.1.13742.6.3.3.4.1.4TruthValueread-writeIs logging enabled for the sensor?
SEN inletSensorUnits1.3.6.1.4.1.13742.6.3.3.4.1.6SensorUnitsEnumerationread-onlyThe base units. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorDecimalDigits1.3.6.1.4.1.13742.6.3.3.4.1.7Unsigned32read-onlyThe number of digits displayed to the right of the decimal point. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
HUN inletSensorAccuracy1.3.6.1.4.1.13742.6.3.3.4.1.8HundredthsOfAPercentageread-onlyThe accuracy: how close (in percent) the measurement is to the actual value. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorResolution1.3.6.1.4.1.13742.6.3.3.4.1.9Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorTolerance1.3.6.1.4.1.13742.6.3.3.4.1.10Unsigned32read-onlyThe resolution: the difference between a sensor value and the actual value The value of this OID variable should be scaled by (inletSensorDecimalDigits + 1). For example, if the value is 50 and inletSensorDecimalDigits is 2, then actual value is 0.05. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorMaximum1.3.6.1.4.1.13742.6.3.3.4.1.11Unsigned32read-onlyThe largest possible reading as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled maximum exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorMinimum1.3.6.1.4.1.13742.6.3.3.4.1.12Unsigned32read-onlyThe smallest possible reading as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorHysteresis1.3.6.1.4.1.13742.6.3.3.4.1.13Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.3.4.1.14Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.3.4.1.21Unsigned32read-writeThe lower critical threshold as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.3.4.1.22Unsigned32read-writeThe lower warning threshold as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.3.4.1.23Unsigned32read-writeThe upper critical threshold as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 inletSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.3.4.1.24Unsigned32read-writeThe upper warning threshold as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
BIT inletSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.3.4.1.25Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 inletSensorSignedMaximum1.3.6.1.4.1.13742.6.3.3.4.1.26Integer32read-onlyThe largest possible reading as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 inletSensorSignedMinimum1.3.6.1.4.1.13742.6.3.3.4.1.27Integer32read-onlyThe smallest possible reading as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value determines whether to use the signed or unsigned threshold and value columns: If the minimum is below zero the sensor can have negative readings and the signed columns should be used. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 inletSensorSignedLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.3.4.1.28Integer32read-writeThe lower critical threshold as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 inletSensorSignedLowerWarningThreshold1.3.6.1.4.1.13742.6.3.3.4.1.29Integer32read-writeThe lower warning threshold as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 inletSensorSignedUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.3.4.1.30Integer32read-writeThe upper critical threshold as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 inletSensorSignedUpperWarningThreshold1.3.6.1.4.1.13742.6.3.3.4.1.31Integer32read-writeThe upper warning threshold as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
inletPoleConfigurationTable1.3.6.1.4.1.13742.6.3.3.5not-accessibleA list of inlet pole configuration entries. The number of entries is given by the value of inletPoleCount for the PDU.
inletPoleConfigurationEntry1.3.6.1.4.1.13742.6.3.3.5.1not-accessibleAn entry containing parametersfor a particular inlet pole.
LIN inletPoleLine1.3.6.1.4.1.13742.6.3.3.5.1.1LineEnumerationread-onlyThe Phase for this inlet Pole.
I32 inletPoleNode1.3.6.1.4.1.13742.6.3.3.5.1.2Integer32read-onlyThe node to which this inlet pole is connected
inletPoleSensorConfigurationTable1.3.6.1.4.1.13742.6.3.3.6not-accessibleA list of configuration entries for an inlet pole sensor.
inletPoleSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.3.6.1not-accessibleAn entry containing objects for configuring an inlet pole sensor.
I32 inletPoleIndex1.3.6.1.4.1.13742.6.3.3.6.1.1Integer32not-accessibleA unique value for each inlet Pole. Its value ranges between 1 and the value of inletPoleCount.
T/F inletPoleSensorLogAvailable1.3.6.1.4.1.13742.6.3.3.6.1.4TruthValueread-writeIs logging enabled for the sensor?
SEN inletPoleSensorUnits1.3.6.1.4.1.13742.6.3.3.6.1.6SensorUnitsEnumerationread-onlyThe base units. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorDecimalDigits1.3.6.1.4.1.13742.6.3.3.6.1.7Unsigned32read-onlyThe number of digits displayed to the right of the decimal point. This parameter does not apply to sensors without numerical reading.
HUN inletPoleSensorAccuracy1.3.6.1.4.1.13742.6.3.3.6.1.8HundredthsOfAPercentageread-onlyThe accuracy: how close (in percent) the measurement is to the actual value. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorResolution1.3.6.1.4.1.13742.6.3.3.6.1.9Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorTolerance1.3.6.1.4.1.13742.6.3.3.6.1.10Unsigned32read-onlyThe resolution: the difference between a sensor value and the actual value The value of this OID variable should be scaled by (inletPoleSensorDecimalDigits + 1). For example, if the value is 50 and inletPoleSensorDecimalDigits is 2, then actual value is 0.05. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorMaximum1.3.6.1.4.1.13742.6.3.3.6.1.11Unsigned32read-onlyThe largest possible reading as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled maximum exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorMinimum1.3.6.1.4.1.13742.6.3.3.6.1.12Unsigned32read-onlyThe smallest possible reading as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorHysteresis1.3.6.1.4.1.13742.6.3.3.6.1.13Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.3.6.1.14Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.3.6.1.21Unsigned32read-writeThe lower critical threshold as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.3.6.1.22Unsigned32read-writeThe lower warning threshold as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.3.6.1.23Unsigned32read-writeThe upper critical threshold as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 inletPoleSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.3.6.1.24Unsigned32read-writeThe upper warning threshold as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
BIT inletPoleSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.3.6.1.25Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to sensors without numerical reading.
I32 inletPoleSensorSignedMaximum1.3.6.1.4.1.13742.6.3.3.6.1.26Integer32read-onlyThe largest possible reading as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 inletPoleSensorSignedMinimum1.3.6.1.4.1.13742.6.3.3.6.1.27Integer32read-onlyThe smallest possible reading as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value determines whether to use the signed or unsigned threshold and value columns: If the minimum is below zero the sensor can have negative readings and the signed columns should be used. This parameter does not apply to sensors without numerical reading.
I32 inletPoleSensorSignedLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.3.6.1.28Integer32read-writeThe lower critical threshold as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 inletPoleSensorSignedLowerWarningThreshold1.3.6.1.4.1.13742.6.3.3.6.1.29Integer32read-writeThe lower warning threshold as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 inletPoleSensorSignedUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.3.6.1.30Integer32read-writeThe upper critical threshold as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 inletPoleSensorSignedUpperWarningThreshold1.3.6.1.4.1.13742.6.3.3.6.1.31Integer32read-writeThe upper warning threshold as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
overCurrentProtector1.3.6.1.4.1.13742.6.3.4
overCurrentProtectorConfigurationTable1.3.6.1.4.1.13742.6.3.4.3not-accessibleA list of overCurrentProtector configuration entries. The number of entries is given by the value of overCurrentProtectorCount for the PDU.
overCurrentProtectorConfigurationEntry1.3.6.1.4.1.13742.6.3.4.3.1not-accessibleAn entry containing objects for a particular overCurrentProtector.
I32 overCurrentProtectorIndex1.3.6.1.4.1.13742.6.3.4.3.1.1Integer32not-accessibleA unique value for each overcurrent protector. Its value ranges between 1 and the value of overCurrentProtectorCount.
STR overCurrentProtectorLabel1.3.6.1.4.1.13742.6.3.4.3.1.2DisplayStringread-onlyThe label on the PDU identifying the overcurrent protector.
STR overCurrentProtectorName1.3.6.1.4.1.13742.6.3.4.3.1.3DisplayStringread-writeThe user-defined name.
OVE overCurrentProtectorType1.3.6.1.4.1.13742.6.3.4.3.1.4OverCurrentProtectorTypeEnumerationread-onlyThe type of overcurrent protector.
STR overCurrentProtectorRatedCurrent1.3.6.1.4.1.13742.6.3.4.3.1.5DisplayStringread-onlyThe current rating.
I32 overCurrentProtectorPoleCount1.3.6.1.4.1.13742.6.3.4.3.1.6Integer32read-onlyThe number of overCurrentProtector poles.
BIT overCurrentProtectorCapabilities1.3.6.1.4.1.13742.6.3.4.3.1.9Bitsread-onlyA bit string which indicates which overcurrent protector sensors are available.
NUM overCurrentProtectorPowerSource1.3.6.1.4.1.13742.6.3.4.3.1.10RowPointerread-onlyThis object allows discovery of how the PDU is wired. It indicates the overCurrentProtector's power source which can one of the following: overCurrentProtector transfer switch inlet If the power source is an OverCurrentProtector, it contains the OID of an overCurrentProtectorLabel in the overCurrentProtectorConfiguration Table. The index of the OID can then be used to reference other objects in the overCurrentProtectorConfigurationTable. If the power source is an inlet, it contains the OID of an inletLabel in the inletConfigurationTable. The index of the OID can then be used to reference other objects in the inletConfigurationTable. If the power source is a transferSwitch, it contains the OID of a transferSwitchLabel in the transferSwitchConfiguration Table. The index of the OID can then be used to reference other objects in the transferSwitchConfigurationTable.
overCurrentProtectorSensorConfigurationTable1.3.6.1.4.1.13742.6.3.4.4not-accessibleA list of overCurrentProtectorSensor configuration entries.
overCurrentProtectorSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.4.4.1not-accessibleAn overCurrentProtectorSensor entry containing objects for a particular overCurrentProtector Sensor.
T/F overCurrentProtectorSensorLogAvailable1.3.6.1.4.1.13742.6.3.4.4.1.4TruthValueread-writeIs logging available for this sensor?
SEN overCurrentProtectorSensorUnits1.3.6.1.4.1.13742.6.3.4.4.1.6SensorUnitsEnumerationread-onlyThe base units This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorDecimalDigits1.3.6.1.4.1.13742.6.3.4.4.1.7Unsigned32read-onlyThe number of digits displayed to the right of the decimal point. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
HUN overCurrentProtectorSensorAccuracy1.3.6.1.4.1.13742.6.3.4.4.1.8HundredthsOfAPercentageread-onlyThe accuracy: how close (in percent) the measurement is to the actual value This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorResolution1.3.6.1.4.1.13742.6.3.4.4.1.9Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorTolerance1.3.6.1.4.1.13742.6.3.4.4.1.10Unsigned32read-onlyThe resolution: the difference between a sensor value and the actual value The value of this OID variable should be scaled by (overCurrentProtectorSensorDecimalDigits + 1). For example, if the value is 50 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.05. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorMaximum1.3.6.1.4.1.13742.6.3.4.4.1.11Unsigned32read-onlyThe largest possible reading as an unsigned integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled maximum exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorMinimum1.3.6.1.4.1.13742.6.3.4.4.1.12Unsigned32read-onlyThe smallest possible reading as an unsigned integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorHysteresis1.3.6.1.4.1.13742.6.3.4.4.1.13Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.4.4.1.14Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.4.4.1.21Unsigned32read-writeThe lower critical threshold as an unsigned integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.4.4.1.22Unsigned32read-writeThe lower warning threshold as an unsigned integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.4.4.1.23Unsigned32read-writeThe upper critical threshold as an unsigned integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 overCurrentProtectorSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.4.4.1.24Unsigned32read-writeThe upper warning threshold as an unsigned integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
BIT overCurrentProtectorSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.4.4.1.25Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
I32 overCurrentProtectorSensorSignedMaximum1.3.6.1.4.1.13742.6.3.4.4.1.26Integer32read-onlyThe largest possible reading as a signed integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
I32 overCurrentProtectorSensorSignedMinimum1.3.6.1.4.1.13742.6.3.4.4.1.27Integer32read-onlyThe smallest possible reading as a signed integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This value determines whether to use the signed or unsigned threshold and value columns: If the minimum is below zero the sensor can have negative readings and the signed columns should be used. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
I32 overCurrentProtectorSensorSignedLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.4.4.1.28Integer32read-writeThe lower critical threshold as a signed integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
I32 overCurrentProtectorSensorSignedLowerWarningThreshold1.3.6.1.4.1.13742.6.3.4.4.1.29Integer32read-writeThe lower warning threshold as a signed integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
I32 overCurrentProtectorSensorSignedUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.4.4.1.30Integer32read-writeThe upper critical threshold as a signed integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
I32 overCurrentProtectorSensorSignedUpperWarningThreshold1.3.6.1.4.1.13742.6.3.4.4.1.31Integer32read-writeThe upper warning threshold as a signed integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
overCurrentProtectorPoleConfigurationTable1.3.6.1.4.1.13742.6.3.4.5not-accessibleA list of overCurrentProtector pole configuration entries. The number of entries is given by the value of overCurrentProtectorPoleCount for the PDU.
overCurrentProtectorPoleConfigurationEntry1.3.6.1.4.1.13742.6.3.4.5.1not-accessibleAn entry containing parametersfor a particular overCurrentProtector pole.
I32 overCurrentProtectorPoleIndex1.3.6.1.4.1.13742.6.3.4.5.1.1Integer32not-accessibleA unique value for each overCurrentProtector Pole. Its value ranges between 1 and the value of overCurrentProtectorPoleCount.
LIN overCurrentProtectorPoleLine1.3.6.1.4.1.13742.6.3.4.5.1.2LineEnumerationread-onlyThe Phase for this overCurrentProtector Pole.
I32 overCurrentProtectorPoleInNode1.3.6.1.4.1.13742.6.3.4.5.1.3Integer32read-onlyThe node to which this overCurrentProtector pole input is connected
I32 overCurrentProtectorPoleOutNode1.3.6.1.4.1.13742.6.3.4.5.1.4Integer32read-onlyThe node to which this overCurrentProtector pole output is connected
outlets1.3.6.1.4.1.13742.6.3.5
outletConfigurationTable1.3.6.1.4.1.13742.6.3.5.3not-accessibleA list of outlet configuration entries. The number of entries is given by the value of outletCount for the PDU.
outletConfigurationEntry1.3.6.1.4.1.13742.6.3.5.3.1not-accessibleAn outlet entry containing parameters for a particular outlet.
I32 outletId1.3.6.1.4.1.13742.6.3.5.3.1.1Integer32not-accessibleA unique value for each outlet. Its value ranges between 1 and the value of outletCount.
STR outletLabel1.3.6.1.4.1.13742.6.3.5.3.1.2DisplayStringread-onlyThe label on the PDU identifying the outlet.
STR outletName1.3.6.1.4.1.13742.6.3.5.3.1.3DisplayStringread-writeThe user-defined name.
REC outletReceptacle1.3.6.1.4.1.13742.6.3.5.3.1.4ReceptacleTypeEnumerationread-onlyThe plug.
I32 outletPoleCount1.3.6.1.4.1.13742.6.3.5.3.1.5Integer32read-onlyThe number of poles.
STR outletRatedVoltage1.3.6.1.4.1.13742.6.3.5.3.1.6DisplayStringread-onlyThe outlet voltage rating.
STR outletRatedCurrent1.3.6.1.4.1.13742.6.3.5.3.1.7DisplayStringread-onlyThe outlet current rating.
STR outletRatedVA1.3.6.1.4.1.13742.6.3.5.3.1.8DisplayStringread-onlyThe outlet VA (VoltAmps) rating.
BIT outletDeviceCapabilities1.3.6.1.4.1.13742.6.3.5.3.1.10Bitsread-onlyA bit string which indicates which outlet sensors are available.
BIT outletPoleCapabilities1.3.6.1.4.1.13742.6.3.5.3.1.11Bitsread-onlyA bit string which indicates which outlet pole sensors are available.
U32 outletPowerCyclingPowerOffPeriod1.3.6.1.4.1.13742.6.3.5.3.1.12Unsigned32read-writeThe power-off period when an outlet is cycled; overrides the global value; specified in seconds; 1 <= value <= 3600 seconds.
OUT outletStateOnStartup1.3.6.1.4.1.13742.6.3.5.3.1.13OutletStateOnStartupEnumerationread-writeThe outlet state on device startup; overrides the global value. Note that this value is ignored if relayBehaviorOnPowerLoss is set to latching.
T/F outletUseGlobalPowerCyclingPowerOffPeriod1.3.6.1.4.1.13742.6.3.5.3.1.14TruthValueread-writeIf this true, then use globalOutletPowerCyclingPowerOffPeriod.
T/F outletSwitchable1.3.6.1.4.1.13742.6.3.5.3.1.28TruthValueread-onlyIs this outlet switchable?
STR outletReceptacleDescriptor1.3.6.1.4.1.13742.6.3.5.3.1.29DisplayStringread-onlyDescription of the Receptacle
T/F outletNonCritical1.3.6.1.4.1.13742.6.3.5.3.1.30TruthValueread-writeIs this outlet non-critical?
U32 outletSequenceDelay1.3.6.1.4.1.13742.6.3.5.3.1.32Unsigned32read-writeThe time interval between switching on this outlet and the next outlet in the outlet sequence. This applies to the following operations. 1) Switch all outlets on operation is executed 2) Power to the PDU is cycledThis applies only when all outlets are being switched on or cycled. It is specified in seconds; 0 <= value <= 3600 seconds. The actual time interval used can never be less than the inrushGuardDelay defined in the unitConfigurationTable. Examples: 1) inrush Guard Delay is 2 seconds and outletSequenceDelay is 5 seconds. The time interval will be 5 seconds 2) inrush Guard Delay is 5 seconds and outletSequenceDelay is 2 seconds. The time interval will be 5 seconds
NUM outletPowerSource1.3.6.1.4.1.13742.6.3.5.3.1.33RowPointerread-onlyThis object allows discovery of how the PDU is wired. It indicates the outlet's power source which can one of the following: overCurrentProtector transfer switch inlet If the power source is an OverCurrentProtector, it contains the OID of an overCurrentProtectorLabel in the overCurrentProtectorConfiguration Table. The index of the OID can then be used to reference other objects in the overCurrentProtectorConfigurationTable. If the power source is an inlet, it contains the OID of an inletLabel in the inletConfigurationTable. The index of the OID can then be used to reference other objects in the inletConfigurationTable. If the power source is a transferSwitch, it contains the OID of a transferSwitchLabel in the transferSwitchConfiguration Table. The index of the OID can then be used to reference other objects in the transferSwitchConfigurationTable.
outletSensorConfigurationTable1.3.6.1.4.1.13742.6.3.5.4not-accessibleA list of outlet configuration entries. The number of entries is given by the value of outletCount for the PDU.
outletSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.5.4.1not-accessibleAn entry containing parameters for an outlet sensor.
T/F outletSensorLogAvailable1.3.6.1.4.1.13742.6.3.5.4.1.4TruthValueread-writeIs logging available for this sensor?
SEN outletSensorUnits1.3.6.1.4.1.13742.6.3.5.4.1.6SensorUnitsEnumerationread-onlyThe base units. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorDecimalDigits1.3.6.1.4.1.13742.6.3.5.4.1.7Unsigned32read-onlyThe number of digits displayed to the right of the decimal point This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
HUN outletSensorAccuracy1.3.6.1.4.1.13742.6.3.5.4.1.8HundredthsOfAPercentageread-onlyThe accuracy: how close (in percent) the measurement is to the actual value This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorResolution1.3.6.1.4.1.13742.6.3.5.4.1.9Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorTolerance1.3.6.1.4.1.13742.6.3.5.4.1.10Unsigned32read-onlyThe resolution: the difference between a sensor value and the actual value The value of this OID variable should be scaled by (outletSensorDecimalDigits + 1). For example, if the value is 50 and outletSensorDecimalDigits is 2, then actual value is 0.05. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorMaximum1.3.6.1.4.1.13742.6.3.5.4.1.11Unsigned32read-onlyThe largest possible reading as an unsigned integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled maximum exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorMinimum1.3.6.1.4.1.13742.6.3.5.4.1.12Unsigned32read-onlyThe smallest possible reading as an unsigned integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorHysteresis1.3.6.1.4.1.13742.6.3.5.4.1.13Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.5.4.1.14Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.5.4.1.21Unsigned32read-writeThe lower critical threshold as an unsigned integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.5.4.1.22Unsigned32read-writeThe lower warning threshold as an unsigned integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.5.4.1.23Unsigned32read-writeThe upper critical threshold as an unsigned integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 outletSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.5.4.1.24Unsigned32read-writeThe upper warning threshold as an unsigned integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
BIT outletSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.5.4.1.25Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
I32 outletSensorSignedMaximum1.3.6.1.4.1.13742.6.3.5.4.1.26Integer32read-onlyThe largest possible reading as a signed integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
I32 outletSensorSignedMinimum1.3.6.1.4.1.13742.6.3.5.4.1.27Integer32read-onlyThe smallest possible reading as a signed integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This value determines whether to use the signed or unsigned threshold and value columns: If the minimum is below zero the sensor can have negative readings and the signed columns should be used. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
I32 outletSensorSignedLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.5.4.1.28Integer32read-writeThe lower critical threshold as a signed integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
I32 outletSensorSignedLowerWarningThreshold1.3.6.1.4.1.13742.6.3.5.4.1.29Integer32read-writeThe lower warning threshold as a signed integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
I32 outletSensorSignedUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.5.4.1.30Integer32read-writeThe upper critical threshold as a signed integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
I32 outletSensorSignedUpperWarningThreshold1.3.6.1.4.1.13742.6.3.5.4.1.31Integer32read-writeThe upper warning threshold as a signed integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
outletPoleConfigurationTable1.3.6.1.4.1.13742.6.3.5.5not-accessibleA list of outlet pole configuration entries. The number of entries is given by the value of outletPoleCount for the PDU.
outletPoleConfigurationEntry1.3.6.1.4.1.13742.6.3.5.5.1not-accessibleAn entry containing parametersfor a particular outlet pole.
LIN outletPoleLine1.3.6.1.4.1.13742.6.3.5.5.1.1LineEnumerationread-onlyThe Phase for this inlet Pole.
I32 outletPoleNode1.3.6.1.4.1.13742.6.3.5.5.1.2Integer32read-onlyThe node to which this outlet pole is connected
outletPoleSensorConfigurationTable1.3.6.1.4.1.13742.6.3.5.6not-accessibleA list of outlet pole sensor configuration entries. The number of entries is given by the value of outletPoleCount.
outletPoleSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.5.6.1not-accessibleAn entry containing objects for configuring an outlet pole sensor.
I32 outletPoleIndex1.3.6.1.4.1.13742.6.3.5.6.1.1Integer32not-accessibleA unique value for each outlet Pole. Its value ranges between 1 and the value of outletPoleCount.
T/F outletPoleSensorLogAvailable1.3.6.1.4.1.13742.6.3.5.6.1.4TruthValueread-writeIs logging enabled for the sensor?
SEN outletPoleSensorUnits1.3.6.1.4.1.13742.6.3.5.6.1.6SensorUnitsEnumerationread-onlyThe base units. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorDecimalDigits1.3.6.1.4.1.13742.6.3.5.6.1.7Unsigned32read-onlyThe number of digits displayed to the right of the decimal point. This parameter does not apply to sensors without numerical reading.
HUN outletPoleSensorAccuracy1.3.6.1.4.1.13742.6.3.5.6.1.8HundredthsOfAPercentageread-onlyThe accuracy: how close (in percent) the measurement is to the actual value. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorResolution1.3.6.1.4.1.13742.6.3.5.6.1.9Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 50 and outletPoleSensorDecimalDigits is 2, then actual value is 0.05. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorTolerance1.3.6.1.4.1.13742.6.3.5.6.1.10Unsigned32read-onlyThe resolution: the difference between a sensor value and the actual value The value of this OID variable should be scaled by (outletPoleSensorDecimalDigits + 1). For example, if the value is 50 and outletPoleSensorDecimalDigits is 2, then actual value is 0.05. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorMaximum1.3.6.1.4.1.13742.6.3.5.6.1.11Unsigned32read-onlyThe largest possible reading as an unsigned integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled maximum exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorMinimum1.3.6.1.4.1.13742.6.3.5.6.1.12Unsigned32read-onlyThe smallest possible reading as an unsigned integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorHysteresis1.3.6.1.4.1.13742.6.3.5.6.1.13Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.5.6.1.14Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.5.6.1.21Unsigned32read-writeThe lower critical threshold as an unsigned integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.5.6.1.22Unsigned32read-writeThe lower warning threshold as an unsigned integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.5.6.1.23Unsigned32read-writeThe upper critical threshold as an unsigned integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 outletPoleSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.5.6.1.24Unsigned32read-writeThe upper warning threshold as an unsigned integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
BIT outletPoleSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.5.6.1.25Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to sensors without numerical reading.
I32 outletPoleSensorSignedMaximum1.3.6.1.4.1.13742.6.3.5.6.1.26Integer32read-onlyThe largest possible reading as a signed integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 outletPoleSensorSignedMinimum1.3.6.1.4.1.13742.6.3.5.6.1.27Integer32read-onlyThe smallest possible reading as a signed integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value determines whether to use the signed or unsigned threshold and value columns: If the minimum is below zero the sensor can have negative readings and the signed columns should be used. This parameter does not apply to sensors without numerical reading.
I32 outletPoleSensorSignedLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.5.6.1.28Integer32read-writeThe lower critical threshold as a signed integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 outletPoleSensorSignedLowerWarningThreshold1.3.6.1.4.1.13742.6.3.5.6.1.29Integer32read-writeThe lower warning threshold as a signed integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 outletPoleSensorSignedUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.5.6.1.30Integer32read-writeThe upper critical threshold as a signed integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 outletPoleSensorSignedUpperWarningThreshold1.3.6.1.4.1.13742.6.3.5.6.1.31Integer32read-writeThe upper warning threshold as a signed integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
externalSensors1.3.6.1.4.1.13742.6.3.6
externalSensorConfigurationTable1.3.6.1.4.1.13742.6.3.6.3not-accessibleA list of externalSensor configuration entries. The number of entries is given by the value of externalSensorCount for the PDU.
externalSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.6.3.1not-accessibleAn entry containing parameters for an external sensor.
I32 sensorID1.3.6.1.4.1.13742.6.3.6.3.1.1Integer32not-accessibleA unique value for each sensor. Its value ranges between 1 and the value of externalSensorCount.
SEN externalSensorType1.3.6.1.4.1.13742.6.3.6.3.1.2SensorTypeEnumerationread-onlyThe type of sensor.
STR externalSensorSerialNumber1.3.6.1.4.1.13742.6.3.6.3.1.3DisplayStringread-onlyThe sensor serial number.
STR externalSensorName1.3.6.1.4.1.13742.6.3.6.3.1.4DisplayStringread-writeThe user-defined name.
STR externalSensorDescription1.3.6.1.4.1.13742.6.3.6.3.1.5DisplayStringread-writeThe user-defined description.
STR externalSensorXCoordinate1.3.6.1.4.1.13742.6.3.6.3.1.6DisplayStringread-writeThe X coordinate.
STR externalSensorYCoordinate1.3.6.1.4.1.13742.6.3.6.3.1.7DisplayStringread-writeThe Y coordinate.
STR externalSensorZCoordinate1.3.6.1.4.1.13742.6.3.6.3.1.8DisplayStringread-writeThe Z coordinate.
I32 externalSensorChannelNumber1.3.6.1.4.1.13742.6.3.6.3.1.9Integer32read-onlyThe channel number, applies only to contact sensors; -1 for other sensors
SEN externalOnOffSensorSubtype1.3.6.1.4.1.13742.6.3.6.3.1.10SensorTypeEnumerationread-writeThe subtype of the binary sensor
T/F externalSensorLogAvailable1.3.6.1.4.1.13742.6.3.6.3.1.14TruthValueread-writeIs logging available for this sensor?
SEN externalSensorUnits1.3.6.1.4.1.13742.6.3.6.3.1.16SensorUnitsEnumerationread-onlyThe base units This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
U32 externalSensorDecimalDigits1.3.6.1.4.1.13742.6.3.6.3.1.17Unsigned32read-onlyThe number of digits displayed to the right of the decimal point This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
HUN externalSensorAccuracy1.3.6.1.4.1.13742.6.3.6.3.1.18HundredthsOfAPercentageread-onlyThe accuracy: how close (in percent) the measurement is to the actual value This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
U32 externalSensorResolution1.3.6.1.4.1.13742.6.3.6.3.1.19Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
U32 externalSensorTolerance1.3.6.1.4.1.13742.6.3.6.3.1.20Unsigned32read-onlyThe resolution: the difference between a sensor value and the actual value The value of this OID variable should be scaled by (externalSensorDecimalDigits + 1). For example, if the value is 50 and externalSensorDecimalDigits is 2, then actual value is 0.05. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
I32 externalSensorMaximum1.3.6.1.4.1.13742.6.3.6.3.1.21Integer32read-onlyThe largest possible value The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
I32 externalSensorMinimum1.3.6.1.4.1.13742.6.3.6.3.1.22Integer32read-onlyThe smallest possible value The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
U32 externalSensorHysteresis1.3.6.1.4.1.13742.6.3.6.3.1.23Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
U32 externalSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.6.3.1.24Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. At present, this value cannot be written (set)
I32 externalSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.6.3.1.31Integer32read-writeThe lower critical threshold The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
I32 externalSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.6.3.1.32Integer32read-writeThe lower non-critical (warning) threshold The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
I32 externalSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.6.3.1.33Integer32read-writeThe upper critical threshold The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
I32 externalSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.6.3.1.34Integer32read-writeThe upper non-critical (warning) threshold The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
BIT externalSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.6.3.1.35Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors
T/F externalSensorIsActuator1.3.6.1.4.1.13742.6.3.6.3.1.36TruthValueread-onlyIs this an actuator? True: It is an actuator False: It is not an actuator
STR externalSensorPosition1.3.6.1.4.1.13742.6.3.6.3.1.37DisplayStringread-onlyThe position of the sensor. The format is a semicolon separated list of Keyword:value pairs - Keyword1:Value1;Keyword2:value2;... Keyword can be one of the following: ONBOARD, DEVICE-1WIREPORT, HUBPORT, CHAIN-POSITION Examples 1) Onboard Sensor ONBOARD:CC1 2) Old sensor connected to device 1-wire port DEVICE-1WIREPORT:2 3) New style sensor connected to device 1-wire port DEVICE-1WIREPORT:2;CHAIN-POSITION:3 4) New style sensor connected to hub port 3 DEVICE-1WIREPORT:2;CHAIN-POSITION:1;HUBPORT:3;CHAIN-POSITION:1 5) Old style sensor connected to end of new style sensor chain DEVICE-1WIREPORT:2;
T/F externalSensorUseDefaultThresholds1.3.6.1.4.1.13742.6.3.6.3.1.38TruthValueread-writeUse default thresholds for this sensor? True: Use Default thresholds for this sensor False: Do not Use Default thresholds for this sensor
I32 externalSensorAlarmedToNormalDelay1.3.6.1.4.1.13742.6.3.6.3.1.39Integer32read-writeThe delay in seconds for transitions from the alarmed state to the normal state. If the sensor type is motionDetection, then it can set to a value greater >= 0 For all other sensor types, the value is 0 and cannot be set to any other value.
externalSensorTypeDefaultThresholdsTable1.3.6.1.4.1.13742.6.3.6.4not-accessibleA list of entries listing the default thresholds for each sensor type.
externalSensorTypeDefaultThresholdsEntry1.3.6.1.4.1.13742.6.3.6.4.1not-accessibleAn entry containing default thresholds for a sensor type.
U32 externalSensorTypeDefaultHysteresis1.3.6.1.4.1.13742.6.3.6.4.1.3Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
U32 externalSensorTypeDefaultStateChangeDelay1.3.6.1.4.1.13742.6.3.6.4.1.4Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. At present, this value cannot be written (set)
I32 externalSensorTypeDefaultLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.6.4.1.5Integer32read-writeThe lower critical threshold The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
I32 externalSensorTypeDefaultLowerWarningThreshold1.3.6.1.4.1.13742.6.3.6.4.1.6Integer32read-writeThe lower non-critical (warning) threshold The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
I32 externalSensorTypeDefaultUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.6.4.1.7Integer32read-writeThe upper critical threshold The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
I32 externalSensorTypeDefaultUpperWarningThreshold1.3.6.1.4.1.13742.6.3.6.4.1.8Integer32read-writeThe upper non-critical (warning) threshold The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors.
BIT externalSensorTypeDefaultEnabledThresholds1.3.6.1.4.1.13742.6.3.6.4.1.9Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to onOff, trip, waterDetection, smokeDetection sensors
peripheralDevicePackageTable1.3.6.1.4.1.13742.6.3.6.5not-accessibleA list of entries for the peripheral Device Packages connected to each PDU. The number of entries is given by the value of peripheralDevicePackagesCount.
peripheralDevicePackageEntry1.3.6.1.4.1.13742.6.3.6.5.1not-accessibleAn entry containing objects for a controller.
I32 peripheralDevicePackageId1.3.6.1.4.1.13742.6.3.6.5.1.1Integer32not-accessibleA unique value for each peripheral device package.
STR peripheralDevicePackageSerialNumber1.3.6.1.4.1.13742.6.3.6.5.1.3DisplayStringread-onlyThe peripheral device package serial number.
STR peripheralDevicePackageModel1.3.6.1.4.1.13742.6.3.6.5.1.4DisplayStringread-onlyThe peripheral device package model. Examples are DX-D2C6, DPX2-T1, DPX2-T1H1, DPX2-T2H1, DPX2-T3H1
STR peripheralDevicePackageFirmwareVersion1.3.6.1.4.1.13742.6.3.6.5.1.5DisplayStringread-onlyThe peripheral device package firmware version.
STR peripheralDevicePackageMinFirmwareVersion1.3.6.1.4.1.13742.6.3.6.5.1.6DisplayStringread-onlyThe peripheral device package minimum firmware version. This field may be empty. If it is not empty, then it shall not be possible to downgrade the peripheral device firmware to a version < minimum firmware version number.
U32 peripheralDevicePackageFirmwareTimeStamp1.3.6.1.4.1.13742.6.3.6.5.1.7Unsigned32read-onlyThe time when the peripheralDevicePackage firmware was updated in UNIX(epoch)time. It is measured in seconds relative to January 1, 1970 (midnight UTC/GMT), i.e a value of 0 indicates January 1, 1970 (midnight UTC/GMT).
STR peripheralDevicePackagePosition1.3.6.1.4.1.13742.6.3.6.5.1.8DisplayStringread-onlyThe position of the package. The format is a semicolon separated list of Keyword:value pairs - Keyword1:Value1;Keyword2:value2;... Keyword can be one of the following: ONBOARD, DEVICE-1WIREPORT, HUBPORT, CHAIN-POSITION Examples 1) Onboard Sensor ONBOARD:CC1 2) Old sensor connected to device 1-wire port DEVICE-1WIREPORT:2 3) New style sensor connected to device 1-wire port DEVICE-1WIREPORT:2;CHAIN-POSITION:3 4) New style sensor connected to hub port 3 DEVICE-1WIREPORT:2;CHAIN-POSITION:1;HUBPORT:3;CHAIN-POSITION:1 5) Old style sensor connected to end of new style sensor chain DEVICE-1WIREPORT:2;
STR peripheralDevicePackageState1.3.6.1.4.1.13742.6.3.6.5.1.9DisplayStringread-onlyThe state of the package.
serverReachability1.3.6.1.4.1.13742.6.3.7
serverReachabilityTable1.3.6.1.4.1.13742.6.3.7.3not-accessibleA list of server entries. The number of entries is given by the value of serverCount for the PDU.
serverReachabilityEntry1.3.6.1.4.1.13742.6.3.7.3.1not-accessibleAn entry containing parameters for a server.
I32 serverID1.3.6.1.4.1.13742.6.3.7.3.1.1Integer32not-accessibleA unique value for each server. Its value ranges between 1 and the value of serverCount for that PDU
STR serverIPAddress1.3.6.1.4.1.13742.6.3.7.3.1.3DisplayStringread-onlyThe IP Address/host name of the server
T/F serverPingEnabled1.3.6.1.4.1.13742.6.3.7.3.1.4TruthValueread-writeIs ping enabled for this server?
wires1.3.6.1.4.1.13742.6.3.8
wireConfigurationTable1.3.6.1.4.1.13742.6.3.8.3not-accessibleA list of wire configuration entries. The number of entries is given by the value of wireCount for the PDU.
wireConfigurationEntry1.3.6.1.4.1.13742.6.3.8.3.1not-accessibleAn entry containing objects for a particular wire.
I32 wireId1.3.6.1.4.1.13742.6.3.8.3.1.1Integer32not-accessibleA unique value for each wire. Its value ranges between 1 and the value of wireCount.
STR wireLabel1.3.6.1.4.1.13742.6.3.8.3.1.2DisplayStringread-onlyThe label on the PDU identifying the wire.
BIT wireCapabilities1.3.6.1.4.1.13742.6.3.8.3.1.3Bitsread-onlyA bit string which indicates which wire sensors are available.
NUM wirePowerSource1.3.6.1.4.1.13742.6.3.8.3.1.4RowPointerread-onlyThis object allows discovery of how the PDU is wired. It indicates the wire's power source which can one of the following: overCurrentProtector transfer switch inlet If the power source is an OverCurrentProtector, it contains the OID of an overCurrentProtectorLabel in the overCurrentProtectorConfiguration Table. The index of the OID can then be used to reference other objects in the overCurrentProtectorConfigurationTable. If the power source is an inlet, it contains the OID of an inletLabel in the inletConfigurationTable. The index of the OID can then be used to reference other objects in the inletConfigurationTable. If the power source is a transferSwitch, it contains the OID of a transferSwitchLabel in the transferSwitchConfiguration Table. The index of the OID can then be used to reference other objects in the transferSwitchConfigurationTable.
wireSensorConfigurationTable1.3.6.1.4.1.13742.6.3.8.4not-accessibleA list of wireSensor configuration entries.
wireSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.8.4.1not-accessibleAn wireSensor entry containing objects for a particular wire Sensor.
T/F wireSensorLogAvailable1.3.6.1.4.1.13742.6.3.8.4.1.4TruthValueread-writeIs logging available for this sensor?
SEN wireSensorUnits1.3.6.1.4.1.13742.6.3.8.4.1.6SensorUnitsEnumerationread-onlyThe base units
U32 wireSensorDecimalDigits1.3.6.1.4.1.13742.6.3.8.4.1.7Unsigned32read-onlyThe number of digits displayed to the right of the decimal point.
HUN wireSensorAccuracy1.3.6.1.4.1.13742.6.3.8.4.1.8HundredthsOfAPercentageread-onlyThe accuracy: how close (in percent) the measurement is to the actual value
U32 wireSensorResolution1.3.6.1.4.1.13742.6.3.8.4.1.9Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01.
U32 wireSensorTolerance1.3.6.1.4.1.13742.6.3.8.4.1.10Unsigned32read-onlyThe resolution: the difference between a sensor value and the actual value The value of this OID variable should be scaled by (wireSensorDecimalDigits + 1). For example, if the value is 50 and wireSensorDecimalDigits is 2, then actual value is 0.05.
U32 wireSensorMaximum1.3.6.1.4.1.13742.6.3.8.4.1.11Unsigned32read-onlyThe largest possible value The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01.
U32 wireSensorMinimum1.3.6.1.4.1.13742.6.3.8.4.1.12Unsigned32read-onlyThe smallest possible value The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01.
U32 wireSensorHysteresis1.3.6.1.4.1.13742.6.3.8.4.1.13Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01.
U32 wireSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.8.4.1.14Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. At present, this value cannot be written (set)
U32 wireSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.8.4.1.21Unsigned32read-writeThe lower critical threshold The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01.
U32 wireSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.8.4.1.22Unsigned32read-writeThe lower non-critical (warning) threshold The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01.
U32 wireSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.8.4.1.23Unsigned32read-writeThe upper critical threshold The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01.
U32 wireSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.8.4.1.24Unsigned32read-writeThe upper non-critical (warning) threshold The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01.
BIT wireSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.8.4.1.25Bitsread-writeA bit string which indicates which thresholds are enabled.
transferSwitch1.3.6.1.4.1.13742.6.3.9
transferSwitchConfigurationTable1.3.6.1.4.1.13742.6.3.9.3not-accessibleA list of transfer switch configuration entries. The number of entries is given by the value of transferSwitchCount.
transferSwitchConfigurationEntry1.3.6.1.4.1.13742.6.3.9.3.1not-accessibleAn entry containing objects for a particular transferSwitch.
I32 transferSwitchId1.3.6.1.4.1.13742.6.3.9.3.1.1Integer32not-accessibleA unique value for each transfer switch. Its value ranges between 1 and the value of transferSwitchCount.
STR transferSwitchLabel1.3.6.1.4.1.13742.6.3.9.3.1.2DisplayStringread-onlyThe label on the PDU identifying the TS.
STR transferSwitchName1.3.6.1.4.1.13742.6.3.9.3.1.3DisplayStringread-writeThe user-defined name of the transferSwitch.
I32 transferSwitchPreferredInlet1.3.6.1.4.1.13742.6.3.9.3.1.4Integer32read-onlyThe preferred Inlet. The TS powers the outlet from the preferred inlet when acceptable power is available from the preferred inlet.
I32 transferSwitchPoleCount1.3.6.1.4.1.13742.6.3.9.3.1.5Integer32read-onlyThe number of poles.
T/F transferSwitchAutoReTransferEnabled1.3.6.1.4.1.13742.6.3.9.3.1.20TruthValueread-writeThe TS can be configured to automatically retransfer back to the preferred inlet when power is restored. Re-transfer only occurs if this variable is true.
U32 transferSwitchAutoReTransferWaitTime1.3.6.1.4.1.13742.6.3.9.3.1.21Unsigned32read-writeThe Auto Re-Transfer Wait Time. Re-transfer occurs this many seconds after the condition causing the original transfer has been corrected.
T/F transferSwitchAutoReTransferRequiresPhaseSync1.3.6.1.4.1.13742.6.3.9.3.1.22TruthValueread-writeIf this parameter is False, then do not retransfer if there is a PHASE_SYNC_FAULT in effect. A PHASE_SYNC_FAULT occurs when the phase difference between the inlets is too high.
T/F transferSwitchFrontPanelManualTransferButtonEnabled1.3.6.1.4.1.13742.6.3.9.3.1.23TruthValueread-writeIf this parameter is false, then manual transfers caused by pressing the front panel switch are disabled.
BIT transferSwitchCapabilities1.3.6.1.4.1.13742.6.3.9.3.1.24Bitsread-onlyA bit string which indicates which sensors are available for the transfer switch.
NUM transferSwitchPowerSource11.3.6.1.4.1.13742.6.3.9.3.1.31RowPointerread-onlyThis object allows discovery of how the PDU is wired. It indicates the transferSwitch's first power source which can one of the following: overCurrentProtector transfer switch inlet If the power source is an OverCurrentProtector, it contains the OID of an overCurrentProtectorLabel in the overCurrentProtectorConfiguration Table. The index of the OID can then be used to reference other objects in the overCurrentProtectorConfigurationTable. If the power source is an inlet, it contains the OID of an inletLabel in the inletConfigurationTable. The index of the OID can then be used to reference other objects in the inletConfigurationTable. If the power source is a transferSwitch, it contains the OID of a transferSwitchLabel in the transferSwitchConfiguration Table. The index of the OID can then be used to reference other objects in the transferSwitchConfigurationTable.
NUM transferSwitchPowerSource21.3.6.1.4.1.13742.6.3.9.3.1.32RowPointerread-onlyThis object allows discovery of how the PDU is wired. It indicates the transferSwitch's second power source which can one of the following: overCurrentProtector transfer switch inlet If the power source is an OverCurrentProtector, it contains the OID of an overCurrentProtectorLabel in the overCurrentProtectorConfiguration Table. The index of the OID can then be used to reference other objects in the overCurrentProtectorConfigurationTable. If the power source is an inlet, it contains the OID of an inletLabel in the inletConfigurationTable. The index of the OID can then be used to reference other objects in the inletConfigurationTable. If the power source is a transferSwitch, it contains the OID of a transferSwitchLabel in the transferSwitchConfiguration Table. The index of the OID can then be used to reference other objects in the transferSwitchConfigurationTable
transferSwitchSensorConfigurationTable1.3.6.1.4.1.13742.6.3.9.4not-accessibleA list of transfer switch sensor configuration entries.
transferSwitchSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.9.4.1not-accessibleAn entry containing parameters for a transfer switch sensor.
T/F transferSwitchSensorLogAvailable1.3.6.1.4.1.13742.6.3.9.4.1.4TruthValueread-writeIs logging available for this sensor?
SEN transferSwitchSensorUnits1.3.6.1.4.1.13742.6.3.9.4.1.6SensorUnitsEnumerationread-onlyThe base units. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorDecimalDigits1.3.6.1.4.1.13742.6.3.9.4.1.7Unsigned32read-onlyThe number of digits displayed to the right of the decimal point This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
HUN transferSwitchSensorAccuracy1.3.6.1.4.1.13742.6.3.9.4.1.8HundredthsOfAPercentageread-onlyThe accuracy: how close (in percent) the measurement is to the actual value This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorResolution1.3.6.1.4.1.13742.6.3.9.4.1.9Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorTolerance1.3.6.1.4.1.13742.6.3.9.4.1.10Unsigned32read-onlyThe resolution: the difference between a sensor value and the actual value The value of this OID variable should be scaled by (transferSwitchSensorDecimalDigits + 1). For example, if the value is 50 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.05. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorMaximum1.3.6.1.4.1.13742.6.3.9.4.1.11Unsigned32read-onlyThe largest possible reading as an unsigned integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled maximum exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorMinimum1.3.6.1.4.1.13742.6.3.9.4.1.12Unsigned32read-onlyThe smallest possible reading as an unsigned integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorHysteresis1.3.6.1.4.1.13742.6.3.9.4.1.13Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.9.4.1.14Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.9.4.1.21Unsigned32read-writeThe lower critical threshold as an unsigned integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.9.4.1.22Unsigned32read-writeThe lower warning threshold as an unsigned integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.9.4.1.23Unsigned32read-writeThe upper critical threshold as an unsigned integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 transferSwitchSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.9.4.1.24Unsigned32read-writeThe upper warning threshold as an unsigned integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
BIT transferSwitchSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.9.4.1.25Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
I32 transferSwitchSensorSignedMaximum1.3.6.1.4.1.13742.6.3.9.4.1.26Integer32read-onlyThe largest possible reading as a signed integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
I32 transferSwitchSensorSignedMinimum1.3.6.1.4.1.13742.6.3.9.4.1.27Integer32read-onlyThe smallest possible reading as a signed integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This value determines whether to use the signed or unsigned threshold and value columns: If the minimum is below zero the sensor can have negative readings and the signed columns should be used. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
I32 transferSwitchSensorSignedLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.9.4.1.28Integer32read-writeThe lower critical threshold as a signed integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
I32 transferSwitchSensorSignedLowerWarningThreshold1.3.6.1.4.1.13742.6.3.9.4.1.29Integer32read-writeThe lower warning threshold as a signed integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
I32 transferSwitchSensorSignedUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.9.4.1.30Integer32read-writeThe upper critical threshold as a signed integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
I32 transferSwitchSensorSignedUpperWarningThreshold1.3.6.1.4.1.13742.6.3.9.4.1.31Integer32read-writeThe upper warning threshold as a signed integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
transferSwitchPoleConfigurationTable1.3.6.1.4.1.13742.6.3.9.5not-accessibleA list of transferSwitch pole configuration entries. The number of entries is given by the value of transferSwitchPoleCount.
transferSwitchPoleConfigurationEntry1.3.6.1.4.1.13742.6.3.9.5.1not-accessibleAn entry containing parametersfor a particular outlet pole.
I32 transferSwitchPoleIndex1.3.6.1.4.1.13742.6.3.9.5.1.1Integer32not-accessibleA unique value for each transferSwitch Pole. Its value ranges between 1 and the value of transferSwitchPoleCount.
LIN transferSwitchPoleLine1.3.6.1.4.1.13742.6.3.9.5.1.2LineEnumerationread-onlyThe Phase for this transferSwitch Pole.
I32 transferSwitchPoleIn1Node1.3.6.1.4.1.13742.6.3.9.5.1.3Integer32read-onlyThe node to which this transferSwitch pole Input 1 is connected
I32 transferSwitchPoleIn2Node1.3.6.1.4.1.13742.6.3.9.5.1.4Integer32read-onlyThe node to which this transferSwitch pole Input 2 is connected
I32 transferSwitchPoleOutNode1.3.6.1.4.1.13742.6.3.9.5.1.5Integer32read-onlyThe node to which this transferSwitch pole Output is connected
powerMeter1.3.6.1.4.1.13742.6.3.10
powerMeterConfigurationTable1.3.6.1.4.1.13742.6.3.10.2not-accessibleA list of power meter and panel configuration entries.
powerMeterConfigurationEntry1.3.6.1.4.1.13742.6.3.10.2.1not-accessibleAn entry containing configuration objects for power meters and panels.
U32 powerMeterPhaseCTRating1.3.6.1.4.1.13742.6.3.10.2.1.2Unsigned32read-writeThe rating of the Phase CT in A, or 0 if the CT is disabled. At present, read-only access; see MIN-ACCESS in MODULE-COMPLIANCE ModulecomplianceRev2
U32 powerMeterNeutralCTRating1.3.6.1.4.1.13742.6.3.10.2.1.3Unsigned32read-writeThe rating of the Neutral CT in A, or 0 if the CT is disabled. At present, read-only access; see MIN-ACCESS in MODULE-COMPLIANCE ModulecomplianceRev2
U32 powerMeterEarthCTRating1.3.6.1.4.1.13742.6.3.10.2.1.4Unsigned32read-writeThe rating of the Earth CT in A, or 0 if the CT is disabled. At present, read-only access; see MIN-ACCESS in MODULE-COMPLIANCE ModulecomplianceRev2
U32 powerMeterBranchCount1.3.6.1.4.1.13742.6.3.10.2.1.5Unsigned32read-onlyThe maximum number of circuits supported by the panel. (The number of user configured circuits is in unitConfigurationTable(pduId).circuitCount.) It can be used to distinguish between power meters and panels. If value > 0, then panel (BCM) else power meter
I32 powerMeterPanelPositions1.3.6.1.4.1.13742.6.3.10.2.1.6Integer32read-onlyThe number of circuit positions in the panel. Its value is specified by the user when configuring a panel
PAN powerMeterPanelLayout1.3.6.1.4.1.13742.6.3.10.2.1.7PanelLayoutEnumerationread-onlyvalid only for panels (powerMeterCircuitPositionCount > 0); invalid for power meters (powerMeterCircuitPositionCount = 0): value returned is invalid(-1). The panel circuit position layout: single column, two columns.
PAN powerMeterPanelNumbering1.3.6.1.4.1.13742.6.3.10.2.1.8PanelNumberingEnumerationread-onlyvalid only for panels (powerMeterCircuitPositionCount > 0); invalid for power meters (powerMeterCircuitPositionCount = 0): value returned is invalid(-1). The panel circuit position numbering scheme: odd/even, sequential.
POW powerMeterType1.3.6.1.4.1.13742.6.3.10.2.1.9PowerMeterTypeEnumerationread-onlyThe power meter type: 3-phase, single-phase, split-phase.
circuit1.3.6.1.4.1.13742.6.3.11
circuitConfigurationTable1.3.6.1.4.1.13742.6.3.11.2not-accessibleA list of circuit configuration entries. The number of entries is given by the value of panelCircuitPositionCount.
circuitConfigurationEntry1.3.6.1.4.1.13742.6.3.11.2.1not-accessibleAn entry containing configuration objects for the circuit.
I32 circuitId1.3.6.1.4.1.13742.6.3.11.2.1.1Integer32not-accessibleA unique value for each circuit. circuitId is defined as follows. It is the circuit position in the panel
I32 circuitPoleCount1.3.6.1.4.1.13742.6.3.11.2.1.2Integer32read-onlyThe number of circuit positions (poles) in the circuit.
STR circuitName1.3.6.1.4.1.13742.6.3.11.2.1.3DisplayStringread-writeThe user-defined name for the circuit. At present, read-only access; see MIN-ACCESS in MODULE-COMPLIANCE ModulecomplianceRev2
CIR circuitType1.3.6.1.4.1.13742.6.3.11.2.1.4CircuitTypeEnumerationread-onlyThe type of circuit: singlePhaseL_L, singlePhaseL_N, twoPhase,threePhase
U32 circuitRatedCurrent1.3.6.1.4.1.13742.6.3.11.2.1.5Unsigned32read-writeThe rating of the breaker for the circuit in A. At present, read-only access; see MIN-ACCESS in MODULE-COMPLIANCE ModulecomplianceRev2
U32 circuitCTRating1.3.6.1.4.1.13742.6.3.11.2.1.6Unsigned32read-writeThe rating of the CTs metering this circuit in A. At present, read-only access; see MIN-ACCESS in MODULE-COMPLIANCE ModulecomplianceRev2
BIT circuitCapabilities1.3.6.1.4.1.13742.6.3.11.2.1.7Bitsread-onlyA bit string which indicates which sensors are available for the circuit.
BIT circuitPoleCapabilities1.3.6.1.4.1.13742.6.3.11.2.1.8Bitsread-onlyA bit string which indicates which sensors are available for the circuit pole.
NUM circuitPowerSource1.3.6.1.4.1.13742.6.3.11.2.1.9RowPointerread-onlyThis object allows discovery of how the circuit is wired. It indicates the circuit's power source which can one of the following: Inlet It contains the OID of an inletLabel in the inletConfigurationTable. The index of the OID can then be used to reference other objects in the inletConfigurationTable.
circuitPoleConfigurationTable1.3.6.1.4.1.13742.6.3.11.3not-accessibleA list of Panel Circuit Pole configuration entries. The number of entries is given by the value of circuitPoleCount for the circuit.
circuitPoleConfigurationEntry1.3.6.1.4.1.13742.6.3.11.3.1not-accessibleAn entry containing configuration objects for the circuit poles.
I32 circuitPoleId1.3.6.1.4.1.13742.6.3.11.3.1.1Integer32not-accessibleA unique value for each circuit Pole. Its value ranges between 1 and the value of circuitPoleCount.
I32 circuitPolePanelPosition1.3.6.1.4.1.13742.6.3.11.3.1.2Integer32read-onlyThe circuit position for this pole.
I32 circuitPoleCTNumber1.3.6.1.4.1.13742.6.3.11.3.1.3Integer32read-writeThe CT Number for this circuit Pole, or 0 if no CT is present. At present, read-only access; see MIN-ACCESS in MODULE-COMPLIANCE ModulecomplianceRev2
PHA circuitPolePhase1.3.6.1.4.1.13742.6.3.11.3.1.4PhaseEnumerationread-writeThe Phase for this circuit Pole. At present, read-only access; see MIN-ACCESS in MODULE-COMPLIANCE ModulecomplianceRev2
circuitSensorConfigurationTable1.3.6.1.4.1.13742.6.3.11.4not-accessibleA list of configuration entries for an inlet sensor.
circuitSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.11.4.1not-accessibleAn entry containing objects for configuring an inlet sensor.
T/F circuitSensorLogAvailable1.3.6.1.4.1.13742.6.3.11.4.1.4TruthValueread-writeIs logging enabled for the sensor?
SEN circuitSensorUnits1.3.6.1.4.1.13742.6.3.11.4.1.6SensorUnitsEnumerationread-onlyThe base units. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 circuitSensorDecimalDigits1.3.6.1.4.1.13742.6.3.11.4.1.7Unsigned32read-onlyThe number of digits displayed to the right of the decimal point. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 circuitSensorResolution1.3.6.1.4.1.13742.6.3.11.4.1.9Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 circuitSensorMaximum1.3.6.1.4.1.13742.6.3.11.4.1.11Unsigned32read-onlyThe largest possible reading as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled maximum exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 circuitSensorMinimum1.3.6.1.4.1.13742.6.3.11.4.1.12Unsigned32read-onlyThe smallest possible reading as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 circuitSensorHysteresis1.3.6.1.4.1.13742.6.3.11.4.1.13Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 circuitSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.11.4.1.14Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 circuitSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.11.4.1.21Unsigned32read-writeThe lower critical threshold as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 circuitSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.11.4.1.22Unsigned32read-writeThe lower warning threshold as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 circuitSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.11.4.1.23Unsigned32read-writeThe upper critical threshold as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 circuitSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.11.4.1.24Unsigned32read-writeThe upper warning threshold as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
BIT circuitSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.11.4.1.25Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 circuitSensorSignedMaximum1.3.6.1.4.1.13742.6.3.11.4.1.26Integer32read-onlyThe largest possible reading as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 circuitSensorSignedMinimum1.3.6.1.4.1.13742.6.3.11.4.1.27Integer32read-onlyThe smallest possible reading as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value determines whether to use the signed or unsigned threshold and value columns: If the minimum is below zero the sensor can have negative readings and the signed columns should be used. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 circuitSensorSignedLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.11.4.1.28Integer32read-writeThe lower critical threshold as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 circuitSensorSignedLowerWarningThreshold1.3.6.1.4.1.13742.6.3.11.4.1.29Integer32read-writeThe lower warning threshold as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 circuitSensorSignedUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.11.4.1.30Integer32read-writeThe upper critical threshold as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
I32 circuitSensorSignedUpperWarningThreshold1.3.6.1.4.1.13742.6.3.11.4.1.31Integer32read-writeThe upper warning threshold as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
circuitPoleSensorConfigurationTable1.3.6.1.4.1.13742.6.3.11.6not-accessibleA list of configuration entries for a circuit's pole sensors.
circuitPoleSensorConfigurationEntry1.3.6.1.4.1.13742.6.3.11.6.1not-accessibleAn entry containing objects for configuring an inlet pole sensor.
T/F circuitPoleSensorLogAvailable1.3.6.1.4.1.13742.6.3.11.6.1.4TruthValueread-writeIs logging enabled for the sensor?
SEN circuitPoleSensorUnits1.3.6.1.4.1.13742.6.3.11.6.1.6SensorUnitsEnumerationread-onlyThe base units. This parameter does not apply to sensors without numerical reading.
U32 circuitPoleSensorDecimalDigits1.3.6.1.4.1.13742.6.3.11.6.1.7Unsigned32read-onlyThe number of digits displayed to the right of the decimal point. This parameter does not apply to sensors without numerical reading.
U32 circuitPoleSensorResolution1.3.6.1.4.1.13742.6.3.11.6.1.9Unsigned32read-onlyThe resolution: the minimum difference between any two measured values The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading.
U32 circuitPoleSensorMaximum1.3.6.1.4.1.13742.6.3.11.6.1.11Unsigned32read-onlyThe largest possible reading as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled maximum exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 circuitPoleSensorMinimum1.3.6.1.4.1.13742.6.3.11.6.1.12Unsigned32read-onlyThe smallest possible reading as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 circuitPoleSensorHysteresis1.3.6.1.4.1.13742.6.3.11.6.1.13Unsigned32read-writeThe hysteresis used for deassertions The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading.
U32 circuitPoleSensorStateChangeDelay1.3.6.1.4.1.13742.6.3.11.6.1.14Unsigned32read-writeThe delay measured in samples before a state is asserted. If the value is zero, then the state is asserted as soon as it is detected; if it is non-zero, say n, then the assertion condition must exist for n+1 consecutive samples before the corresponding assertion event is reported. This parameter does not apply to sensors without numerical reading.
U32 circuitPoleSensorLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.11.6.1.21Unsigned32read-writeThe lower critical threshold as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 circuitPoleSensorLowerWarningThreshold1.3.6.1.4.1.13742.6.3.11.6.1.22Unsigned32read-writeThe lower warning threshold as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 circuitPoleSensorUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.11.6.1.23Unsigned32read-writeThe upper critical threshold as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 circuitPoleSensorUpperWarningThreshold1.3.6.1.4.1.13742.6.3.11.6.1.24Unsigned32read-writeThe upper warning threshold as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is clamped if the scaled threshold exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
BIT circuitPoleSensorEnabledThresholds1.3.6.1.4.1.13742.6.3.11.6.1.25Bitsread-writeA bit string which indicates which thresholds are enabled. This parameter does not apply to sensors without numerical reading.
I32 circuitPoleSensorSignedMaximum1.3.6.1.4.1.13742.6.3.11.6.1.26Integer32read-onlyThe largest possible reading as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 circuitPoleSensorSignedMinimum1.3.6.1.4.1.13742.6.3.11.6.1.27Integer32read-onlyThe smallest possible reading as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value determines whether to use the signed or unsigned threshold and value columns: If the minimum is below zero the sensor can have negative readings and the signed columns should be used. This parameter does not apply to sensors without numerical reading.
I32 circuitPoleSensorSignedLowerCriticalThreshold1.3.6.1.4.1.13742.6.3.11.6.1.28Integer32read-writeThe lower critical threshold as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 circuitPoleSensorSignedLowerWarningThreshold1.3.6.1.4.1.13742.6.3.11.6.1.29Integer32read-writeThe lower warning threshold as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 circuitPoleSensorSignedUpperCriticalThreshold1.3.6.1.4.1.13742.6.3.11.6.1.30Integer32read-writeThe upper critical threshold as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
I32 circuitPoleSensorSignedUpperWarningThreshold1.3.6.1.4.1.13742.6.3.11.6.1.31Integer32read-writeThe upper warning threshold as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. The value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
control1.3.6.1.4.1.13742.6.4
outletControl1.3.6.1.4.1.13742.6.4.1
outletSwitchControlTable1.3.6.1.4.1.13742.6.4.1.2not-accessibleA list of outlets for a PDU. The number of entries is given by the value of outletCount.
outletSwitchControlEntry1.3.6.1.4.1.13742.6.4.1.2.1not-accessibleAn entry for implementing switching operations on an outlet.
OUT switchingOperation1.3.6.1.4.1.13742.6.4.1.2.1.2OutletSwitchingOperationsEnumerationread-writeThe switching operation.
SEN outletSwitchingState1.3.6.1.4.1.13742.6.4.1.2.1.3SensorStateEnumerationread-onlyThe outlet state at present
U32 outletSwitchingTimeStamp1.3.6.1.4.1.13742.6.4.1.2.1.4Unsigned32read-onlyThe timestamp indicating when the outlet was last switched
externalSensorControl1.3.6.1.4.1.13742.6.4.2
transferSwitchControl1.3.6.1.4.1.13742.6.4.3
transferSwitchControlTable1.3.6.1.4.1.13742.6.4.3.1not-accessibleA list of transfer switches for a PDU. The number of entries is given by the value of transferSwitchCount.
transferSwitchControlEntry1.3.6.1.4.1.13742.6.4.3.1.1not-accessibleAn entry for implementing switching operations on a transfer switch.
I32 transferSwitchActiveInlet1.3.6.1.4.1.13742.6.4.3.1.1.1Integer32read-onlyThe index of the currently active inlet.
I32 transferSwitchTransferToInlet1.3.6.1.4.1.13742.6.4.3.1.1.2Integer32read-writeSelect the active inlet. If the new inlet is available, it will become both active and preferred, otherwise an inconsistentValue error will be returned. By default the switching operation will fail if the phase difference between the inlets is too large. In this case the switch can be forced by writing transferSwitchAlarmOverride as True in the same request. This variable will always read as 0.
T/F transferSwitchAlarmOverride1.3.6.1.4.1.13742.6.4.3.1.1.3TruthValueread-writeForce transfer even if the phase difference between the inlets is too large. This may only be written together with transferSwitchTransferToInlet, otherwise an inconsistentValue error will be returned. Always reads as false.
TRA transferSwitchLastTransferReason1.3.6.1.4.1.13742.6.4.3.1.1.4TransferSwitchTransferReasonEnumerationread-onlyThe reason for the most recent transfer
actuatorControl1.3.6.1.4.1.13742.6.4.4
actuatorControlTable1.3.6.1.4.1.13742.6.4.4.2not-accessibleA list of actuators for a PDU.
actuatorControlEntry1.3.6.1.4.1.13742.6.4.4.2.1not-accessibleAn entry for implementing user-initiated state changes for an actuator.
SEN actuatorState1.3.6.1.4.1.13742.6.4.4.2.1.2SensorStateEnumerationread-writeThe actuator state. A Get operation retrieves the state of the actuator. A Set operation changes the stae of the sensor. The valid states for set operations are on and Off. Attempting to set the state to any other value will generate an error.
rcmControl1.3.6.1.4.1.13742.6.4.5
rcmSelfTestTable1.3.6.1.4.1.13742.6.4.5.2not-accessibleA list of RCMs.
rcmSelfTestEntry1.3.6.1.4.1.13742.6.4.5.2.1not-accessibleAn entry for implementing self test of an RCM.
SEN rcmState1.3.6.1.4.1.13742.6.4.5.2.1.2SensorStateEnumerationread-writeThe rcm state. A Get operation retrieves the state of the RCM State Sensor. A Set operation changes the state of the sensor. The valid state for set operations is selfTest. When rcmState is set to selfTest, self test of the RCM starts. Attempting to set the state to any other value will generate an error. If the current state is selfTest, then an attempt to set the value to selfTest will be ignored.
inletSensorControl1.3.6.1.4.1.13742.6.4.6
inletSensorControlTable1.3.6.1.4.1.13742.6.4.6.1not-accessibleA list of control entries for the inlet sensors of a PDU. The set of valid indexes is defined by the value of inletCount and the inletDeviceCapabilities entry for the selected inlet.
inletSensorControlEntry1.3.6.1.4.1.13742.6.4.6.1.1not-accessibleAn entry used for controlling an inlet sensor.
I32 inletSensorResetValue1.3.6.1.4.1.13742.6.4.6.1.1.1Integer32read-writeWriting to this variable sets a new value for the addressed sensor. Only accumulating sensors (e.g. energy counters) can be reset, and currently the only supported value is 0. Writing any other value returns an error. This variable will always read as 0.
outletSensorControl1.3.6.1.4.1.13742.6.4.7
outletSensorControlTable1.3.6.1.4.1.13742.6.4.7.1not-accessibleA list of control entries for the outlet sensors of a PDU. The set of valid indexes is defined by the value of outletCount and the outletDeviceCapabilities entry for the selected outlet.
outletSensorControlEntry1.3.6.1.4.1.13742.6.4.7.1.1not-accessibleAn entry used for controlling an outlet sensor.
I32 outletSensorResetValue1.3.6.1.4.1.13742.6.4.7.1.1.1Integer32read-writeWriting to this variable sets a new value for the addressed sensor. Only accumulating sensors (e.g. energy counters) can be reset, and currently the only supported value is 0. Writing any other value returns an error. This variable will always read as 0.
unitSensorControl1.3.6.1.4.1.13742.6.4.8
unitSensorControlTable1.3.6.1.4.1.13742.6.4.8.1not-accessibleA list of control entries for the global sensors of a PDU. The set of valid indexes is defined by the value of pduCount and the pduDeviceCapabilities entry.
unitSensorControlEntry1.3.6.1.4.1.13742.6.4.8.1.1not-accessibleAn entry used for controlling an global sensor.
I32 unitSensorResetValue1.3.6.1.4.1.13742.6.4.8.1.1.1Integer32read-writeWriting to this variable sets a new value for the addressed sensor. Only accumulating sensors (e.g. energy counters) can be reset, and currently the only supported value is 0. Writing any other value returns an error. This variable will always read as 0. This object applies only to multi-inlet PDUs.
circuitSensorControl1.3.6.1.4.1.13742.6.4.9
circuitSensorControlTable1.3.6.1.4.1.13742.6.4.9.1not-accessibleA list of control entries for the circuit sensors of a BCM2. The maximum number of entries is given by the value of panelCircuitPositionCount.
circuitSensorControlEntry1.3.6.1.4.1.13742.6.4.9.1.1not-accessibleAn entry used for controlling an circuit sensor.
I32 circuitSensorResetValue1.3.6.1.4.1.13742.6.4.9.1.1.1Integer32read-writeWriting to this variable sets a new value for the addressed sensor. Only accumulating sensors (e.g. energy counters) can be reset, and currently the only supported value is 0. Writing any other value returns an error. This variable will always read as 0.
measurements1.3.6.1.4.1.13742.6.5
measurementsUnit1.3.6.1.4.1.13742.6.5.1
unitSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.1.3not-accessibleA list of unit sensor entries.
unitSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.1.3.1not-accessibleAn entry containing measurement objects for an unit sensor.
T/F measurementsUnitSensorIsAvailable1.3.6.1.4.1.13742.6.5.1.3.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsUnitSensorState1.3.6.1.4.1.13742.6.5.1.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 measurementsUnitSensorValue1.3.6.1.4.1.13742.6.5.1.3.1.4Unsigned32read-onlyThe sensor reading as an unsigned integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. power supply status sensors.
U32 measurementsUnitSensorTimeStamp1.3.6.1.4.1.13742.6.5.1.3.1.5Unsigned32read-onlyThe timestamp.
I32 measurementsUnitSensorSignedValue1.3.6.1.4.1.13742.6.5.1.3.1.6Integer32read-onlyThe sensor reading as a signed integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. power supply status sensors.
measurementsInlet1.3.6.1.4.1.13742.6.5.2
inletSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.2.3not-accessibleA list of inlet sensor entries. The number of entries is given by the value of inletCount for the PDU.
inletSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.2.3.1not-accessibleAn entry containing measurement objects for an inlet sensor.
T/F measurementsInletSensorIsAvailable1.3.6.1.4.1.13742.6.5.2.3.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsInletSensorState1.3.6.1.4.1.13742.6.5.2.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 measurementsInletSensorValue1.3.6.1.4.1.13742.6.5.2.3.1.4Unsigned32read-onlyThe sensor reading as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 measurementsInletSensorTimeStamp1.3.6.1.4.1.13742.6.5.2.3.1.5Unsigned32read-onlyThe timestamp.
I32 measurementsInletSensorSignedValue1.3.6.1.4.1.13742.6.5.2.3.1.6Integer32read-onlyThe sensor reading as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
inletPoleSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.2.4not-accessibleA list of inletPole sensor entries. The number of entries is given by the value of inletPoleCount for the inlet.
inletPoleSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.2.4.1not-accessibleAn entry containing measurement objects for an inletPole sensor.
T/F measurementsInletPoleSensorIsAvailable1.3.6.1.4.1.13742.6.5.2.4.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsInletPoleSensorState1.3.6.1.4.1.13742.6.5.2.4.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 measurementsInletPoleSensorValue1.3.6.1.4.1.13742.6.5.2.4.1.4Unsigned32read-onlyThe sensor reading as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 measurementsInletPoleSensorTimeStamp1.3.6.1.4.1.13742.6.5.2.4.1.5Unsigned32read-onlyThe timestamp.
I32 measurementsInletPoleSensorSignedValue1.3.6.1.4.1.13742.6.5.2.4.1.6Integer32read-onlyThe sensor reading as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
measurementsOverCurrentProtector1.3.6.1.4.1.13742.6.5.3
overCurrentProtectorSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.3.3not-accessibleA list of overCurrentProtector sensor entries. The number of entries is given by the value of overCurrentProtectorCount for the PDU.
overCurrentProtectorSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.3.3.1not-accessibleAn entry containing measurement objects for an overCurrentProtector.
T/F measurementsOverCurrentProtectorSensorIsAvailable1.3.6.1.4.1.13742.6.5.3.3.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsOverCurrentProtectorSensorState1.3.6.1.4.1.13742.6.5.3.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 measurementsOverCurrentProtectorSensorValue1.3.6.1.4.1.13742.6.5.3.3.1.4Unsigned32read-onlyThe sensor reading as an unsigned integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
U32 measurementsOverCurrentProtectorSensorTimeStamp1.3.6.1.4.1.13742.6.5.3.3.1.5Unsigned32read-onlyThe timestamp.
I32 measurementsOverCurrentProtectorSensorSignedValue1.3.6.1.4.1.13742.6.5.3.3.1.6Integer32read-onlyThe sensor reading as a signed integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. trip sensors.
measurementsOutlet1.3.6.1.4.1.13742.6.5.4
outletSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.4.3not-accessibleA list of outlet sensor entries. The number of entries is given by the value of outletCount for the PDU.
outletSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.4.3.1not-accessibleAn entry containing measurement objects for an outlet sensor.
T/F measurementsOutletSensorIsAvailable1.3.6.1.4.1.13742.6.5.4.3.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsOutletSensorState1.3.6.1.4.1.13742.6.5.4.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 measurementsOutletSensorValue1.3.6.1.4.1.13742.6.5.4.3.1.4Unsigned32read-onlyThe sensor reading as an unsigned integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
U32 measurementsOutletSensorTimeStamp1.3.6.1.4.1.13742.6.5.4.3.1.5Unsigned32read-onlyThe timestamp.
I32 measurementsOutletSensorSignedValue1.3.6.1.4.1.13742.6.5.4.3.1.6Integer32read-onlyThe sensor reading as a signed integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. outlet state sensors.
outletPoleSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.4.4not-accessibleA list of outletPole sensor entries. The number of entries is given by the value of outletPoletCount for the outlet.
outletPoleSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.4.4.1not-accessibleAn entry containing measurement objects for an outletPole sensor.
T/F measurementsOutletPoleSensorIsAvailable1.3.6.1.4.1.13742.6.5.4.4.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsOutletPoleSensorState1.3.6.1.4.1.13742.6.5.4.4.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 measurementsOutletPoleSensorValue1.3.6.1.4.1.13742.6.5.4.4.1.4Unsigned32read-onlyThe sensor reading as an unsigned integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 50 and outletPoleSensorDecimalDigits is 2, then actual value is 0.05. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading.
U32 measurementsOutletPoleSensorTimeStamp1.3.6.1.4.1.13742.6.5.4.4.1.5Unsigned32read-onlyThe timestamp.
I32 measurementsOutletPoleSensorSignedValue1.3.6.1.4.1.13742.6.5.4.4.1.6Integer32read-onlyThe sensor reading as a signed integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 50 and outletPoleSensorDecimalDigits is 2, then actual value is 0.05. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading.
measurementsExternalSensor1.3.6.1.4.1.13742.6.5.5
externalSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.5.3not-accessibleA list of external sensor entries. The number of entries is given by the value of externalSensorCount for the PDU.
externalSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.5.3.1not-accessibleAn entry containing measurement objects for an external sensor.
T/F measurementsExternalSensorIsAvailable1.3.6.1.4.1.13742.6.5.5.3.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsExternalSensorState1.3.6.1.4.1.13742.6.5.5.3.1.3SensorStateEnumerationread-onlyThe sensor state.
I32 measurementsExternalSensorValue1.3.6.1.4.1.13742.6.5.5.3.1.4Integer32read-onlyThe sensor reading as a signed integer. The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01. This parameter does not apply to sensors without numerical reading, e.g. contact closure or smoke detection sensors.
U32 measurementsExternalSensorTimeStamp1.3.6.1.4.1.13742.6.5.5.3.1.5Unsigned32read-onlyThe sensor reading timestamp.
measurementsWire1.3.6.1.4.1.13742.6.5.6
wireSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.6.3not-accessibleA list of wire sensor entries. The number of entries is given by the value of wireCount for the PDU.
wireSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.6.3.1not-accessibleAn entry containing measurement objects for a wire.
T/F measurementsWireSensorIsAvailable1.3.6.1.4.1.13742.6.5.6.3.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsWireSensorState1.3.6.1.4.1.13742.6.5.6.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 measurementsWireSensorValue1.3.6.1.4.1.13742.6.5.6.3.1.4Unsigned32read-onlyThe sensor value. The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the value exceeds 4294967295 This parameter does not apply to sensors without numerical reading.
U32 measurementsWireSensorTimeStamp1.3.6.1.4.1.13742.6.5.6.3.1.5Unsigned32read-onlyThe timestamp.
measurementsTransferSwitch1.3.6.1.4.1.13742.6.5.7
transferSwitchSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.7.3not-accessibleA list of transfer switch sensor entries. The number of entries is given by the value of transferSwitchCount for the PDU.
transferSwitchSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.7.3.1not-accessibleAn entry containing measurement objects for a transfer switch.
T/F measurementsTransferSwitchSensorIsAvailable1.3.6.1.4.1.13742.6.5.7.3.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsTransferSwitchSensorState1.3.6.1.4.1.13742.6.5.7.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 measurementsTransferSwitchSensorValue1.3.6.1.4.1.13742.6.5.7.3.1.4Unsigned32read-onlyThe sensor reading as an unsigned integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
U32 measurementsTransferSwitchSensorTimeStamp1.3.6.1.4.1.13742.6.5.7.3.1.5Unsigned32read-onlyThe timestamp.
I32 measurementsTransferSwitchSensorSignedValue1.3.6.1.4.1.13742.6.5.7.3.1.6Integer32read-onlyThe sensor reading as a signed integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. operational state or switch fault sensors.
measurementsCircuit1.3.6.1.4.1.13742.6.5.8
circuitSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.8.3not-accessibleA list of circuit sensor entries.
circuitSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.8.3.1not-accessibleAn entry containing measurement objects for circuit sensor.
T/F measurementsCircuitSensorIsAvailable1.3.6.1.4.1.13742.6.5.8.3.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsCircuitSensorState1.3.6.1.4.1.13742.6.5.8.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 measurementsCircuitSensorValue1.3.6.1.4.1.13742.6.5.8.3.1.4Unsigned32read-onlyThe sensor reading as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 measurementsCircuitSensorTimeStamp1.3.6.1.4.1.13742.6.5.8.3.1.5Unsigned32read-onlyThe timestamp.
I32 measurementsCircuitSensorSignedValue1.3.6.1.4.1.13742.6.5.8.3.1.6Integer32read-onlyThe sensor reading as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
circuitPoleSensorMeasurementsTable1.3.6.1.4.1.13742.6.5.8.4not-accessibleA list of panel circuit pole sensor entries. The number of entries is given by the value of inletCount for the PDU.
circuitPoleSensorMeasurementsEntry1.3.6.1.4.1.13742.6.5.8.4.1not-accessibleAn entry containing measurement objects for a circuit pole sensor.
T/F measurementsCircuitPoleSensorIsAvailable1.3.6.1.4.1.13742.6.5.8.4.1.2TruthValueread-onlyIs the sensor available?
SEN measurementsCircuitPoleSensorState1.3.6.1.4.1.13742.6.5.8.4.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 measurementsCircuitPoleSensorValue1.3.6.1.4.1.13742.6.5.8.4.1.4Unsigned32read-onlyThe sensor reading as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings. This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
U32 measurementsCircuitPoleSensorTimeStamp1.3.6.1.4.1.13742.6.5.8.4.1.5Unsigned32read-onlyThe timestamp.
I32 measurementsCircuitPoleSensorSignedValue1.3.6.1.4.1.13742.6.5.8.4.1.6Integer32read-onlyThe sensor reading as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647). This parameter does not apply to sensors without numerical reading, e.g. surge protector status sensors.
log1.3.6.1.4.1.13742.6.6
logUnit1.3.6.1.4.1.13742.6.6.1
logIndexTable1.3.6.1.4.1.13742.6.6.1.1not-accessibleA table of log entries.
logIndexEntry1.3.6.1.4.1.13742.6.6.1.1.1not-accessibleAn entry in the log containing sensor data.
I32 oldestLogID1.3.6.1.4.1.13742.6.6.1.1.1.2Integer32read-onlyThe index of the oldest data in the buffer for this PDU.
I32 newestLogID1.3.6.1.4.1.13742.6.6.1.1.1.3Integer32read-onlyThe index of the newest data in the buffer for this PDU.
logTimeStampTable1.3.6.1.4.1.13742.6.6.1.2not-accessibleA list of entries containing the timestamps of the entries in the log.
logTimeStampEntry1.3.6.1.4.1.13742.6.6.1.2.1not-accessibleAn entry containing the timestamp for log entries.
I32 logIndex1.3.6.1.4.1.13742.6.6.1.2.1.1Integer32not-accessibleA unique value for each entry in the log. Its value ranges between 1 and the value of logSize.
U32 logTimeStamp1.3.6.1.4.1.13742.6.6.1.2.1.2Unsigned32read-onlyThe time when the data was collected. It is measured in seconds relative to January 1, 1970 (midnight UTC/GMT), i.e a value of 0 indicates January 1, 1970 (midnight UTC/GMT).
unitSensorLogTable1.3.6.1.4.1.13742.6.6.1.3not-accessibleA list of unit sensor entries in the log.
unitSensorLogEntry1.3.6.1.4.1.13742.6.6.1.3.1not-accessibleAn entry containing log objects for an unit sensor.
T/F logUnitSensorDataAvailable1.3.6.1.4.1.13742.6.6.1.3.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logUnitSensorState1.3.6.1.4.1.13742.6.6.1.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 logUnitSensorAvgValue1.3.6.1.4.1.13742.6.6.1.3.1.4Unsigned32read-onlyThe average sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logUnitSensorMaxValue1.3.6.1.4.1.13742.6.6.1.3.1.5Unsigned32read-onlyThe maximum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logUnitSensorMinValue1.3.6.1.4.1.13742.6.6.1.3.1.6Unsigned32read-onlyThe minimum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
I32 logUnitSensorSignedAvgValue1.3.6.1.4.1.13742.6.6.1.3.1.7Integer32read-onlyThe average sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logUnitSensorSignedMaxValue1.3.6.1.4.1.13742.6.6.1.3.1.8Integer32read-onlyThe maximum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logUnitSensorSignedMinValue1.3.6.1.4.1.13742.6.6.1.3.1.9Integer32read-onlyThe minimum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by unitSensorDecimalDigits. For example, if the value is 1 and unitSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
logInlet1.3.6.1.4.1.13742.6.6.2
inletSensorLogTable1.3.6.1.4.1.13742.6.6.2.3not-accessibleA list of inlet sensor entries. The number of entries is given by the value of inletCount for the PDU.
inletSensorLogEntry1.3.6.1.4.1.13742.6.6.2.3.1not-accessibleAn entry containing log objects for an inlet sensor.
T/F logInletSensorDataAvailable1.3.6.1.4.1.13742.6.6.2.3.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logInletSensorState1.3.6.1.4.1.13742.6.6.2.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 logInletSensorAvgValue1.3.6.1.4.1.13742.6.6.2.3.1.4Unsigned32read-onlyThe average sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logInletSensorMaxValue1.3.6.1.4.1.13742.6.6.2.3.1.5Unsigned32read-onlyThe maximum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logInletSensorMinValue1.3.6.1.4.1.13742.6.6.2.3.1.6Unsigned32read-onlyThe minimum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
I32 logInletSensorSignedAvgValue1.3.6.1.4.1.13742.6.6.2.3.1.7Integer32read-onlyThe average sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logInletSensorSignedMaxValue1.3.6.1.4.1.13742.6.6.2.3.1.8Integer32read-onlyThe maximum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logInletSensorSignedMinValue1.3.6.1.4.1.13742.6.6.2.3.1.9Integer32read-onlyThe minimum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
inletPoleSensorLogTable1.3.6.1.4.1.13742.6.6.2.4not-accessibleA list of inletPole sensor entries. The number of entries is given by the value of inletPoleCount for the inlet.
inletPoleSensorLogEntry1.3.6.1.4.1.13742.6.6.2.4.1not-accessibleAn entry containing log objects for an inletPole sensor.
T/F logInletPoleSensorDataAvailable1.3.6.1.4.1.13742.6.6.2.4.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logInletPoleSensorState1.3.6.1.4.1.13742.6.6.2.4.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 logInletPoleSensorAvgValue1.3.6.1.4.1.13742.6.6.2.4.1.4Unsigned32read-onlyThe average sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logInletPoleSensorMaxValue1.3.6.1.4.1.13742.6.6.2.4.1.5Unsigned32read-onlyThe maximum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logInletPoleSensorMinValue1.3.6.1.4.1.13742.6.6.2.4.1.6Unsigned32read-onlyThe minimum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
I32 logInletPoleSensorSignedAvgValue1.3.6.1.4.1.13742.6.6.2.4.1.7Integer32read-onlyThe average sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logInletPoleSensorSignedMaxValue1.3.6.1.4.1.13742.6.6.2.4.1.8Integer32read-onlyThe maximum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logInletPoleSensorSignedMinValue1.3.6.1.4.1.13742.6.6.2.4.1.9Integer32read-onlyThe minimum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletPoleSensorDecimalDigits. For example, if the value is 1 and inletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
logOverCurrentProtector1.3.6.1.4.1.13742.6.6.3
overCurrentProtectorSensorLogTable1.3.6.1.4.1.13742.6.6.3.3not-accessibleA list of overCurrentProtector sensor entries. The number of entries is given by the value of overCurrentProtectorCount for the PDU.
overCurrentProtectorSensorLogEntry1.3.6.1.4.1.13742.6.6.3.3.1not-accessibleAn entry containing log objects for an overCurrentProtector sensor.
T/F logOverCurrentProtectorSensorDataAvailable1.3.6.1.4.1.13742.6.6.3.3.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logOverCurrentProtectorSensorState1.3.6.1.4.1.13742.6.6.3.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 logOverCurrentProtectorSensorAvgValue1.3.6.1.4.1.13742.6.6.3.3.1.4Unsigned32read-onlyThe average sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logOverCurrentProtectorSensorMaxValue1.3.6.1.4.1.13742.6.6.3.3.1.5Unsigned32read-onlyThe maximum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logOverCurrentProtectorSensorMinValue1.3.6.1.4.1.13742.6.6.3.3.1.6Unsigned32read-onlyThe minimum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
I32 logOverCurrentProtectorSensorSignedAvgValue1.3.6.1.4.1.13742.6.6.3.3.1.7Integer32read-onlyThe average sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logOverCurrentProtectorSensorSignedMaxValue1.3.6.1.4.1.13742.6.6.3.3.1.8Integer32read-onlyThe maximum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logOverCurrentProtectorSensorSignedMinValue1.3.6.1.4.1.13742.6.6.3.3.1.9Integer32read-onlyThe minimum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by overCurrentProtectorSensorDecimalDigits. For example, if the value is 1 and overCurrentProtectorSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
logOutlet1.3.6.1.4.1.13742.6.6.4
outletSensorLogTable1.3.6.1.4.1.13742.6.6.4.3not-accessibleA list of outlet sensor entries. The number of entries is given by the value of outletCount for the PDU.
outletSensorLogEntry1.3.6.1.4.1.13742.6.6.4.3.1not-accessibleAn entry containing log objects for an outlet sensor.
T/F logOutletSensorDataAvailable1.3.6.1.4.1.13742.6.6.4.3.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logOutletSensorState1.3.6.1.4.1.13742.6.6.4.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 logOutletSensorAvgValue1.3.6.1.4.1.13742.6.6.4.3.1.4Unsigned32read-onlyThe average sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logOutletSensorMaxValue1.3.6.1.4.1.13742.6.6.4.3.1.5Unsigned32read-onlyThe maximum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logOutletSensorMinValue1.3.6.1.4.1.13742.6.6.4.3.1.6Unsigned32read-onlyThe minimum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
I32 logOutletSensorSignedAvgValue1.3.6.1.4.1.13742.6.6.4.3.1.7Integer32read-onlyThe average sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logOutletSensorSignedMaxValue1.3.6.1.4.1.13742.6.6.4.3.1.8Integer32read-onlyThe maximum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logOutletSensorSignedMinValue1.3.6.1.4.1.13742.6.6.4.3.1.9Integer32read-onlyThe minimum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by outletSensorDecimalDigits. For example, if the value is 1 and outletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
outletPoleSensorLogTable1.3.6.1.4.1.13742.6.6.4.4not-accessibleA list of outletPole sensor entries. The number of entries is given by the value of outletPoleCount for the outlet.
outletPoleSensorLogEntry1.3.6.1.4.1.13742.6.6.4.4.1not-accessibleAn entry containing log objects for an outletPole sensor.
T/F logOutletPoleSensorDataAvailable1.3.6.1.4.1.13742.6.6.4.4.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logOutletPoleSensorState1.3.6.1.4.1.13742.6.6.4.4.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 logOutletPoleSensorAvgValue1.3.6.1.4.1.13742.6.6.4.4.1.4Unsigned32read-onlyThe average sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logOutletPoleSensorMaxValue1.3.6.1.4.1.13742.6.6.4.4.1.5Unsigned32read-onlyThe maximum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logOutletPoleSensorMinValue1.3.6.1.4.1.13742.6.6.4.4.1.6Unsigned32read-onlyThe minimum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
I32 logOutletPoleSensorSignedAvgValue1.3.6.1.4.1.13742.6.6.4.4.1.7Integer32read-onlyThe average sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logOutletPoleSensorSignedMaxValue1.3.6.1.4.1.13742.6.6.4.4.1.8Integer32read-onlyThe maximum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logOutletPoleSensorSignedMinValue1.3.6.1.4.1.13742.6.6.4.4.1.9Integer32read-onlyThe minimum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by outletPoleSensorDecimalDigits. For example, if the value is 1 and outletPoleSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
logExternalSensor1.3.6.1.4.1.13742.6.6.5
externalSensorLogTable1.3.6.1.4.1.13742.6.6.5.3not-accessibleA list of external sensor entries. The number of entries is given by the value of externalSensorCount for the PDU.
externalSensorLogEntry1.3.6.1.4.1.13742.6.6.5.3.1not-accessibleAn entry containing log objects for an external sensor.
T/F logExternalSensorDataAvailable1.3.6.1.4.1.13742.6.6.5.3.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logExternalSensorState1.3.6.1.4.1.13742.6.6.5.3.1.3SensorStateEnumerationread-onlyThe sensor state.
I32 logExternalSensorAvgValue1.3.6.1.4.1.13742.6.6.5.3.1.4Integer32read-onlyThe sensor reading average value. The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01.
I32 logExternalSensorMaxValue1.3.6.1.4.1.13742.6.6.5.3.1.5Integer32read-onlyThe sensor reading maximum value. The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01.
I32 logExternalSensorMinValue1.3.6.1.4.1.13742.6.6.5.3.1.6Integer32read-onlyThe sensor reading minimum value. The value of this OID variable should be scaled by externalSensorDecimalDigits. For example, if the value is 1 and externalSensorDecimalDigits is 2, then actual value is 0.01.
logWire1.3.6.1.4.1.13742.6.6.6
wireSensorLogTable1.3.6.1.4.1.13742.6.6.6.3not-accessibleA list of wire sensor entries. The number of entries is given by the value of wireCount for the PDU.
wireSensorLogEntry1.3.6.1.4.1.13742.6.6.6.3.1not-accessibleAn entry containing log objects for a wire sensor.
T/F logWireSensorDataAvailable1.3.6.1.4.1.13742.6.6.6.3.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logWireSensorState1.3.6.1.4.1.13742.6.6.6.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 logWireSensorAvgValue1.3.6.1.4.1.13742.6.6.6.3.1.4Unsigned32read-onlyThe sensor reading average value. The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the value exceeds 4294967295
U32 logWireSensorMaxValue1.3.6.1.4.1.13742.6.6.6.3.1.5Unsigned32read-onlyThe sensor reading maximum value. The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the value exceeds 4294967295
U32 logWireSensorMinValue1.3.6.1.4.1.13742.6.6.6.3.1.6Unsigned32read-onlyThe sensor reading minimum value. The value of this OID variable should be scaled by wireSensorDecimalDigits. For example, if the value is 1 and wireSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the value exceeds 4294967295.
logTransferSwitch1.3.6.1.4.1.13742.6.6.7
transferSwitchSensorLogTable1.3.6.1.4.1.13742.6.6.7.3not-accessibleA list of Transfer Switch sensor entries. The number of entries is given by the value of transferSwitchCount for the PDU.
transferSwitchSensorLogEntry1.3.6.1.4.1.13742.6.6.7.3.1not-accessibleAn entry containing log objects for a transfer switch sensor.
T/F logTransferSwitchSensorDataAvailable1.3.6.1.4.1.13742.6.6.7.3.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logTransferSwitchSensorState1.3.6.1.4.1.13742.6.6.7.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 logTransferSwitchSensorAvgValue1.3.6.1.4.1.13742.6.6.7.3.1.4Unsigned32read-onlyThe average sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logTransferSwitchSensorMaxValue1.3.6.1.4.1.13742.6.6.7.3.1.5Unsigned32read-onlyThe maximum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logTransferSwitchSensorMinValue1.3.6.1.4.1.13742.6.6.7.3.1.6Unsigned32read-onlyThe minimum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
I32 logTransferSwitchSensorSignedAvgValue1.3.6.1.4.1.13742.6.6.7.3.1.7Integer32read-onlyThe average sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logTransferSwitchSensorSignedMaxValue1.3.6.1.4.1.13742.6.6.7.3.1.8Integer32read-onlyThe maximum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logTransferSwitchSensorSignedMinValue1.3.6.1.4.1.13742.6.6.7.3.1.9Integer32read-onlyThe minimum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by transferSwitchSensorDecimalDigits. For example, if the value is 1 and transferSwitchSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
logCircuit1.3.6.1.4.1.13742.6.6.8
circuitSensorLogTable1.3.6.1.4.1.13742.6.6.8.3not-accessibleA list of Circuit sensor log entries. The number of entries is given by the value of panelinletCount for the Floor PDU.
circuitSensorLogEntry1.3.6.1.4.1.13742.6.6.8.3.1not-accessibleAn entry containing log objects for a circuit sensor.
T/F logCircuitSensorDataAvailable1.3.6.1.4.1.13742.6.6.8.3.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logCircuitSensorState1.3.6.1.4.1.13742.6.6.8.3.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 logCircuitSensorAvgValue1.3.6.1.4.1.13742.6.6.8.3.1.4Unsigned32read-onlyThe average sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logCircuitSensorMaxValue1.3.6.1.4.1.13742.6.6.8.3.1.5Unsigned32read-onlyThe maximum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logCircuitSensorMinValue1.3.6.1.4.1.13742.6.6.8.3.1.6Unsigned32read-onlyThe minimum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
I32 logCircuitSensorSignedAvgValue1.3.6.1.4.1.13742.6.6.8.3.1.7Integer32read-onlyThe average sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logCircuitSensorSignedMaxValue1.3.6.1.4.1.13742.6.6.8.3.1.8Integer32read-onlyThe maximum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logCircuitSensorSignedMinValue1.3.6.1.4.1.13742.6.6.8.3.1.9Integer32read-onlyThe minimum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
circuitPoleSensorLogTable1.3.6.1.4.1.13742.6.6.8.5not-accessibleA list of circuit pole sensor log entries. The number of entries is given by the value of panelCircuitPoleCount for the circut.
circuitPoleSensorLogEntry1.3.6.1.4.1.13742.6.6.8.5.1not-accessibleAn entry containing log objects for a circuit pole sensor.
T/F logCircuitPoleSensorDataAvailable1.3.6.1.4.1.13742.6.6.8.5.1.2TruthValueread-onlyIs data available for this sensor during this measurement period?
SEN logCircuitPoleSensorState1.3.6.1.4.1.13742.6.6.8.5.1.3SensorStateEnumerationread-onlyThe sensor state.
U32 logCircuitPoleSensorAvgValue1.3.6.1.4.1.13742.6.6.8.5.1.4Unsigned32read-onlyThe average sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logCircuitPoleSensorMaxValue1.3.6.1.4.1.13742.6.6.8.5.1.5Unsigned32read-onlyThe maximum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
U32 logCircuitPoleSensorMinValue1.3.6.1.4.1.13742.6.6.8.5.1.6Unsigned32read-onlyThe minimum sensor reading for the log period as an unsigned integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value will wrap around if the scaled sensor reading exceeds 4294967295. It is undefined for sensors which can have negative readings.
I32 logCircuitPoleSensorSignedAvgValue1.3.6.1.4.1.13742.6.6.8.5.1.7Integer32read-onlyThe average sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logCircuitPoleSensorSignedMaxValue1.3.6.1.4.1.13742.6.6.8.5.1.8Integer32read-onlyThe maximum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
I32 logCircuitPoleSensorSignedMinValue1.3.6.1.4.1.13742.6.6.8.5.1.9Integer32read-onlyThe minimum sensor reading for the log period as a signed integer. The value of this OID variable should be scaled by inletSensorDecimalDigits. For example, if the value is 1 and inletSensorDecimalDigits is 2, then actual value is 0.01. This value is undefined for sensors whose range exceeds the Integer32 range (-2147483648 .. 2147483647).
compliances1.3.6.1.4.1.13742.6.9.1
complianceRev11.3.6.1.4.1.13742.6.9.1.1The requirements for conformance to the PDU2-MIB.
complianceRev21.3.6.1.4.1.13742.6.9.1.2The requirements for conformance to the PDU2-MIB.
groups1.3.6.1.4.1.13742.6.9.2
configGroup1.3.6.1.4.1.13742.6.9.2.1A collection of objects representing configuration data.
logGroup1.3.6.1.4.1.13742.6.9.2.2A collection of objects providing logging (history of readings) capabilities about the PDU.
measurementsGroup1.3.6.1.4.1.13742.6.9.2.3A collection of objects providing measurements (most recent data) capabilities. about the PDU.
controlGroup1.3.6.1.4.1.13742.6.9.2.4A collection of objects providing the ability to control various components of a PDU.
trapInformationGroup1.3.6.1.4.1.13742.6.9.2.5A collection of objects providing information in the traps.
trapsGroup1.3.6.1.4.1.13742.6.9.2.9A collection of traps.
reliabilityGroup1.3.6.1.4.1.13742.6.9.2.10A collection of objects providing reliability data.
ipAddressGroup1.3.6.1.4.1.13742.6.9.2.12A collection of objects representing configuration data.
oldConfigGroup1.3.6.1.4.1.13742.6.9.2.13A collection of objects representing old (deprecated) configuration data.
oldLogGroup1.3.6.1.4.1.13742.6.9.2.14A collection of objects representing old (deprecated) logging data.
oldMeasurementsGroup1.3.6.1.4.1.13742.6.9.2.15A collection of objects representing old (deprecated) measurement data.
oldTrapsGroup1.3.6.1.4.1.13742.6.9.2.16A collection of objects representing old (deprecated) traps.
obsoleteObjectsGroup1.3.6.1.4.1.13742.6.9.2.20A collection of obsolete objects.
reliability1.3.6.1.4.1.13742.6.10
reliabilityData1.3.6.1.4.1.13742.6.10.1
I32 reliabilityDataTableSequenceNumber1.3.6.1.4.1.13742.6.10.1.1Integer32read-onlyThe sequence number for updates to the reliability data table
reliabilityDataTable1.3.6.1.4.1.13742.6.10.1.2not-accessibleA list of PDU reliability data entries.
reliabilityDataEntry1.3.6.1.4.1.13742.6.10.1.2.1not-accessibleAn entry containing reliability data for a particular PDU.
I32 reliabilityIndex1.3.6.1.4.1.13742.6.10.1.2.1.1Integer32not-accessibleIndex of the entry in the table.
STR reliabilityId1.3.6.1.4.1.13742.6.10.1.2.1.2DisplayStringread-onlyUnique ID of the entry. POH Power on hours. CB..TRIPCNT Trip count of circuit breaker with label . CTRL...MASTER.CSUMERRLASTHOUR Number of checksum errors in slave (controller board) to master (CPU board) communication in the last hour on controller with serial number and bus address . CTRL...SLAVE.CSUMERRLASTHOUR Number of checksum errors in master (CPU board) to slave (controller board) communication in the last hour on controller with serial number and bus address . CTRL...TOUTLASTHOUR Number of communication timeouts to controller with serial number and bus address in the last hour. CTRL...RLY..CYCLECNT Number of cycles the relay on the controller board with serial number and bus address has made. A cycle is an off->on followed by an on->off event later. The count is increased on the off->on transition. CTRL...RLY..FAILLASTHOUR Number of failed switching operations on relay on the controller board with serial number and bus address in the last hour. It depends on the specific controller board hardware and what error conditions are detected.
U32 reliabilityDataValue1.3.6.1.4.1.13742.6.10.1.2.1.3Unsigned32read-onlyThe normalized value
U32 reliabilityDataMaxPossible1.3.6.1.4.1.13742.6.10.1.2.1.4Unsigned32read-onlyThe maximum possible normalized value
U32 reliabilityDataWorstValue1.3.6.1.4.1.13742.6.10.1.2.1.5Unsigned32read-onlyThe worst normalized value seen so far
U32 reliabilityDataThreshold1.3.6.1.4.1.13742.6.10.1.2.1.6Unsigned32read-onlyThe normalized Threshold value
U32 reliabilityDataRawUpperBytes1.3.6.1.4.1.13742.6.10.1.2.1.7Unsigned32read-onlyThe Upper 4 bytes of the raw ( not normalized) data. reliabilityDataRawUpperBytes and reliabilityDataRawLowerBytes should be combined and interpreted as a signed 64-bit value
U32 reliabilityDataRawLowerBytes1.3.6.1.4.1.13742.6.10.1.2.1.8Unsigned32read-onlyThe lower 4 bytes of the raw ( not normalized) data. reliabilityDataRawUpperBytes and reliabilityDataRawLowerBytes should be combined and interpreted as a signed 64-bit value
BIT reliabilityDataFlags1.3.6.1.4.1.13742.6.10.1.2.1.9Bitsread-onlyFlags
reliabilityErrorLog1.3.6.1.4.1.13742.6.10.2
reliabilityErrorLogTable1.3.6.1.4.1.13742.6.10.2.2not-accessibleA list of PDU reliability ErrorLog entries.
reliabilityErrorLogEntry1.3.6.1.4.1.13742.6.10.2.2.1not-accessibleAn entry containing reliability ErrorLog data for a particular PDU.
I32 reliabilityErrorLogIndex1.3.6.1.4.1.13742.6.10.2.2.1.1Integer32not-accessibleIndex of the entry in the table.
STR reliabilityErrorLogId1.3.6.1.4.1.13742.6.10.2.2.1.2DisplayStringread-onlyUnique ID of the entry. POH Power on hours. CB..TRIPCNT Trip count of circuit breaker with label . CTRL...MASTER.CSUMERRLASTHOUR Number of checksum errors in slave (controller board) to master (CPU board) communication in the last hour on controller with serial number and bus address . CTRL...SLAVE.CSUMERRLASTHOUR Number of checksum errors in master (CPU board) to slave (controller board) communication in the last hour on controller with serial number and bus address . CTRL...TOUTLASTHOUR Number of communication timeouts to controller with serial number and bus address in the last hour. CTRL...RLY..CYCLECNT Number of cycles the relay on the controller board with serial number and bus address has made. A cycle is an off->on followed by an on->off event later. The count is increased on the off->on transition. CTRL...RLY..FAILLASTHOUR Number of failed switching operations on relay on the controller board with serial number and bus address in the last hour. It depends on the specific controller board hardware and what error conditions are detected.
U32 reliabilityErrorLogValue1.3.6.1.4.1.13742.6.10.2.2.1.3Unsigned32read-onlyThe normalized value
U32 reliabilityErrorLogThreshold1.3.6.1.4.1.13742.6.10.2.2.1.6Unsigned32read-onlyThe normalized Threshold value
U32 reliabilityErrorLogRawUpperBytes1.3.6.1.4.1.13742.6.10.2.2.1.7Unsigned32read-onlyThe Upper 4 bytes of the raw ( not normalized) data. reliabilityDataRawUpperBytes and reliabilityDataRawLowerBytes should be combined and interpreted as a signed 64-bit value
U32 reliabilityErrorLogRawLowerBytes1.3.6.1.4.1.13742.6.10.2.2.1.8Unsigned32read-onlyThe lower 4 bytes of the raw ( not normalized) data. reliabilityDataRawUpperBytes and reliabilityDataRawLowerBytes should be combined and interpreted as a signed 64-bit value
U32 reliabilityErrorLogPOH1.3.6.1.4.1.13742.6.10.2.2.1.9Unsigned32read-onlyThe time of occurrence of the event measured from the last time the PDU was powered on
U32 reliabilityErrorLogTime1.3.6.1.4.1.13742.6.10.2.2.1.10Unsigned32read-onlyThe UTC time of occurrence of the event

RFC description

Management Information Base for Raritan power distribution units (PX2, PX3, PX4 series) providing SNMP access to operational data, sensor measurements, environmental monitoring, and alert notifications for intelligent PDUs.

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Download RARITAN-PX2-PDU2-MIB