ADVA-FSPR7-MIB

MIB Reference — IPNetwork Monitor · Updated September 09, 2026

All MIBsADVA-FSPR7-MIB

Organization: ADVA Optical Networking

Last Updated: 2014-10-15

Category: Optical and WDM, Vendor: ADVA Optical

Description: Supplies a broad set of management objects for the ADVA Optical Networking FSP R7 platform, including shelf, card, and port configuration.

Start monitoring vendor-neutral, standards-based MIB, any SNMPv3-capable network device (SNMP engine identity/boot/clock status) with a free 30-day trial of IPNetwork Monitor. Import MIBs, browse SNMP OIDs, create custom SNMP monitors, configure alerts, and monitor any SNMP-enabled network device from a single console.

What Is ADVA-FSPR7-MIB?

The ADVA-FSPR7-MIB is a vendor-specific module from ADVA Optical Networking that models the physical entity hierarchy — shelves, slots, ports, and extension units — of the FSP 3000 R7 optical transport platform. It exposes a container hierarchy of shelf/slot/port/extension identifiers along with the equipment class, AID string, and equipment state for each physical unit in the chassis. It is used chiefly to monitor hardware status: presence and operational/equipment state of shelves, line cards, and pluggable modules, letting an operator confirm each physical container in the platform is correctly provisioned and healthy. Each ADVA-FSPR7-MIB OID under the shelf/slot/port container hierarchy maps directly to a physical unit in the chassis, letting an operator correlate an equipment-state alarm back to an exact location during a card swap. It parallels the IETF Entity MIB (RFC 4133) conceptually but implements ADVA's own proprietary container/entity model instead of depending on it directly. It's typically deployed by service providers and enterprises running ADVA FSP R7 DWDM/optical transport shelves in metro or long-haul optical networks.

IPNetwork Monitor allows you to monitor SNMP objects defined in ADVA-FSPR7-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.

Supported Devices

  • Adtran (formerly ADVA) FSP 3000 R8 — current multi-layer DWDM/OTN optical transport platform, the successor generation to the FSP 3000 R7 shelf this MIB covers

Monitoring Examples

An operator would walk containerShelfTable, indexed by containerShelfShelfNo/SlotNo/PortNo/ExtNo, to enumerate every physical container in the shelf and read containerShelfEquipmentState to see whether a given slot is equipped, unequipped, or in a fault state. containerShelfClassName and containerShelfAidString identify the type and access identifier of each card or port, which is cross-referenced against inventory records during a card swap. A containerShelfEquipmentState showing fault or mismatch for a slot typically indicates a failed card or a card/firmware type mismatch with what was provisioned.

What Can Be Monitored

  • shelf/slot/port equipment presence
  • equipment state (in-service/fault/mismatch)
  • card/module class and AID identification
  • chassis inventory hierarchy
Imported Objects

From ADVA-FSPR7-TC-MIB

ApsRevertMode
ApsType
ConnectionNotation
EntityClassName
EntityType
EquipmentState
FfpType
FspR7APSCommand
FspR7AdminState
FspR7AidType
FspR7AlarmListType
FspR7AlarmProfileList
FspR7AlsMode
FspR7AppType
FspR7ApsChannel
FspR7AseTabOpr
FspR7AutoThresReset
FspR7BERThreshold
FspR7BERThresholdSection
FspR7Baund
FspR7BidirectionalChannel
FspR7Bitrate
FspR7CapInventory
FspR7Category
FspR7CertApply
FspR7ChannelBandwidth
FspR7ChannelIdentifier
FspR7ChannelIdentifierCaps
FspR7ChannelNumber
FspR7ChannelNumberCaps
FspR7ChannelSpacing
FspR7CodeGain
FspR7ColumnMark
FspR7Conn
FspR7ConnectState
FspR7ConnectorType
FspR7CpAuthType
FspR7DCFiberType
FspR7DeploymentScenario
FspR7DisableEnable
FspR7DispersionCompensation
FspR7DispersionConfig
FspR7DispersionModes
FspR7EdfaOutputPowerRating
FspR7EnableDisable
FspR7EncapsulationMethod
FspR7EntitySecondaryStates
FspR7EntityType
FspR7EocProtAvailability
FspR7EqlzAdminState
FspR7EquipmentAssignState
FspR7ErrorFwdMode
FspR7FDStatusCaps
FspR7FanMode
FspR7FanProfile
FspR7FecType
FspR7FiberBrand
FspR7FiberDetect
FspR7FlowControlMode
FspR7FltrCableType
FspR7ForceConfig
FspR7ForcedStatus
FspR7FrameFormat
FspR7FunctionCrs
FspR7Gain
FspR7GainRange
FspR7GropticsType
FspR7IPv6Type
FspR7InitEqualization
FspR7InterfaceFunction
FspR7InterfaceType
FspR7InvertTelemetryInputLogic
FspR7IpMode
FspR7IpType
FspR7Ipv6Address
FspR7KeyLength
FspR7LacpMode
FspR7LacpTimeout
FspR7LagFendState
FspR7LagIdFend
FspR7LagPortType
FspR7LagPorts
FspR7LagStandby
FspR7LagState
FspR7LagSysIdFend
FspR7LaneGroupInventory
FspR7LaserDelayTimer
FspR7LaserForcedOperation
FspR7LineCoding
FspR7LossAttenuation
FspR7ManualAuto
FspR7Mapping
FspR7MaxBitErrorRate
FspR7MonLevel
FspR7MuxMethod
FspR7NCTRouteType
FspR7NCTraceId
FspR7NdpCleanup
FspR7NewSshHostKey
FspR7NoYes
FspR7NtpAdminState
FspR7NtpSyncStatus
FspR7NtpTest
FspR7NtpTestStatus
FspR7NumberOfChannels
FspR7NumberOfChannelsProv
FspR7OdtuType
FspR7OperState
FspR7OptUpdate
FspR7OpticalBand
FspR7OpticalFiberType
FspR7OpticalGroup
FspR7OpticalInterfaceReach
FspR7OpticalInterfaceReachCaps
FspR7OpticalLanes
FspR7OpticalMultiplexLevel
FspR7OpticalSubBand
FspR7OpuPayloadType
FspR7OscChannel
FspR7OscUsage
FspR7OspfMode
FspR7OtdrPeriod
FspR7PRBSTest
FspR7ParityBit
FspR7PathNode
FspR7PathProt
FspR7PlugDataRate
FspR7PlugDataRateCaps
FspR7PmReset
FspR7PmSnapshotParameterTypes
FspR7PmSnapshotStatus
FspR7PortBehaviour
FspR7PortMode
FspR7PortRole
FspR7PrbsPmReset
FspR7ProtectionRole
FspR7ProtectionType
FspR7Protocol
FspR7PsuOutputPower
FspR7RedLinedState
FspR7RenewMode
FspR7RlsMan
FspR7RoadmNumber
FspR7Scrambling
FspR7ScuRing
FspR7SignalDirection
FspR7SingleFiberLocation
FspR7SnmpHexString
FspR7SnmpLongString
FspR7SshHostKeyEncryptAlgorithm
FspR7SshHostKeyLength
FspR7Stages
FspR7StartPmSnapshot
FspR7StateConnection
FspR7Stuff
FspR7SupplyType
FspR7SwitchOverCause
FspR7TelemetryOutput
FspR7TifOutputReset
FspR7TiltSet
FspR7Topology
FspR7TopologyType
FspR7TrafficDirection
FspR7TransmissionMode
FspR7TrapModeLegacy
FspR7TurnupConfig
FspR7TxOffOnTm
FspR7TypeConnection
FspR7TypeCrs
FspR7UntaggedFrames
FspR7VSessChangeReason
FspR7VSessStatus
FspR7VSessWriteAccess
FspR7ValidityPeriod
FspR7VoaMode
FspR7XfpDecisionThres
FspR7YcableType
FspR7YesNo
Grade

From ADVA-MIB

ApsDirection
ApsHoldoffTime
AssignmentState
EnableState
EntityClass
EthDuplexMode
FspR7EquipmentType
FspR7EquipmentTypeCaps
LoopConfig
OhTerminationLevel
OtnPayloadType
OtnTcmLevel
ProtectionMech
ServiceAffecting
ServiceImpairment
SonetTimingSource
SonetTraceForm
SourceIpAddress
TimMode
TrapAlarmSeverity
VirtualContainerType
fspR7OBJECT-IDENTITY

From SNMP-FRAMEWORK-MIB

SnmpAdminString

From SNMPv2-CONF

MODULE-COMPLIANCE
NOTIFICATION-GROUP
OBJECT-GROUP

From SNMPv2-SMI

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

From SNMPv2-TC

DateAndTime
MacAddress
RowPointer
RowStatus
TruthValue

How to Use in IPNetwork Monitor

Example using physicalPortLaserTemp OID:

Select an Adtran (formerly ADVA) FSP 3000 R8 as the target host to create a monitor — the SNMP service should be up and running on it. Click New Monitor, then check SNMP Custom on the Favorites tab, click Next, and confirm the host. On the next page, click Select... to open the built-in SNMP MIB Browser and type physicalPortLaserTemp into the Find box to locate it in the OID tree, selecting the specific row/instance you want to monitor since this is a table column, then select it and click OK. It reports the optical transceiver laser's temperature, in tenths of a degree Celsius, for a specific port. On the monitor's Main parameters page you can set the target's SNMP port (default 161), credentials, polling interval, and other settings — see the SNMP Monitor help for details. On the State conditions and Alerting tabs, configure when the monitor should change state and trigger an alert; since this is an Integer32-type OID, Value bounds is the most useful condition here — trigger an alert if the reported value exceeds 700 (i.e. 70.0°C), since sustained high laser temperature often precedes optical transceiver degradation or failure. Click Finish to create the monitor; you can adjust any parameter later.

See also: terminationPointInputPower, terminationPointOutputPower

OIDs

RFC description

Provides comprehensive management objects for the ADVA Optical Networking FSP R7 platform including shelf, card, and port configuration.

Start monitoring ADVA (Adtran) FSP 3000 R7/R8 optical transport platform with a free 30-day trial of IPNetwork Monitor. Import MIBs, browse SNMP OIDs, create custom SNMP monitors, configure alerts, and monitor any SNMP-enabled network device from a single console.

Download ADVA-FSPR7-MIB