NBS-SFF-MIB
AI MIB Summary
The NBS-SFF-MIB module enables the monitoring of Small Form-Factor Pluggable (SFF) transceiver parameters, including optical power levels, temperature, bias current, and voltage, by implementing the SFF Multi-Source Agreement (MSA) standards for network interface hardware. This MIB facilitates the retrieval of real-time physical layer diagnostics and alarm states for SFF-compliant optical modules within NBS-managed network equipment.
MIB for representing SFF MSA standards
Main OID:
nbsSffMib.1.3.6.1.4.1.629.204
126
Objects
Active
Status
4
Dependencies
Imported Objects
Objects
126 total| Object Name |
|---|
nbsSffMibMIB for representing SFF MSA standards MODULE-IDENTITY .1.3.6.1.4.1.629.204 |
nbsSffObjectsall MIB objects in nbsSFF MIB. OBJECT IDENTIFIER .1.3.6.1.4.1.629.204.1 |
nbsSffMsaGrpAll SFF MSA objects. OBJECT IDENTIFIER .1.3.6.1.4.1.629.204.1.1 |
nbsSffMsaTableOperations, Administration, and Management information SEQUENCE OF NbsSffMsaEntry .1.3.6.1.4.1.629.204.1.1.1 |
nbsSffMsaEntryRepresents a SFF MSA details of a port. NbsSffMsaEntry .1.3.6.1.4.1.629.204.1.1.1.1 |
nbsSffMsaPhysicalIfIndexifIndex from MIB2 INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.1 |
nbsSffMsaIdentifierThe MSA Identifier as reported in the MSA memory map, +1. Some of these MSA Identifiers are also represented in nbsCmmcPortType from the NBS-CMMC-MIB: nbsSffMsaIdentifier nbsCmmcPortType ------------------- --------------- gbic (2) gbic (147) sfpTransceiver (4) sfp (125) xfp (7) xfp (197) qsfp (13) qsfp (219) qsfp+ (14) qsfp (219) cfp (15) cfp (221) cxp (16) cxp (220) mrvCxp (130) cxp (220)ro Enumeration .1.3.6.1.4.1.629.204.1.1.1.1.2 |
nbsSffMsaExtIdentifierThe field should be set to 04h for all SFP modules indicating serial ID module definition. Not supported value: 0ro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.3 |
nbsSffMsaOpticalConnectorThe Optical Connector as reported in the MSA memory map, +1. Here is the list of values: 1 - unknown 2 - SC 3 - Fiber Channel Style 1 copper connector 4 - Fiber Channel Style 2 copper connector 5 - BNC/TNC 6 - Fiber Channel coaxial headers 7 - Fiberjack 8 - LC 9 - MT-RJ 10 - MU 11 - SG 12 - Optical pigtail 13 - MPO Parllel Optic 14 to 32 - Reserved 33 - HSSDC II 34 - Copper pigtail 35 - RJ45 36 to 128 - Reserved -- start InfiniBand Annex A6 (CXP) 48 (30h: Passive Copper Cable Assembly) 49 (31h: Active Copper Cable Assembly (ref. Byte 147)) 50 (32h: Active Optical Cable Assembly) 51 (33h: Optical Transceiver w/ optical connector) -- end InfiniBand Annex A6 (CXP) 129 - firewireA (MRV Specific) 130 - cuRJ45 (MRV Specific) 131 - cuRJ45 with LEDs (MRV Specific) 132 - coaxBNC (MRV Specific) 133 - sataDevicePlug (MRV Specific) 134 - sataHostPlug (MRV Specific) 135 - miniCoax (MRV Specific) 136 to 256 - Vendor specificro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.4 |
nbsSffMsaTransceiverCodesThe following bit significant indicators define the electronic or optical interfaces that are supported by the SFP transceiver. At least one bit shall be set in this field. For Fibre Channel SFPs, the Fibre Channel speed, transmission media, transmitter technology, and distance capability shall all be indicated. Reserved Standard Compliance Codes BitIndex Byte Bit Description 3 0-7 Reserved 4 4-7 Reserved SONET Compliance codes 12 4 3 - Reserved 13 4 2 - OC48 Long reach 14 4 1 - OC48 Intermediate reach 15 4 0 - OC48 Short reach 16 5 7 - Reserved 17 5 6 - OC 12 Single mode long reach 18 5 5 - OC 12 Single mode inter reach 19 5 4 - OC 12 Multi-mode short reach 20 5 3 - Reserved 21 5 2 - OC 3 Single mode long reach 22 5 1 - OC 3 Single mode inter reach 23 5 0 - OC 3 Multi-mode short reach Gigabit Ethernet Compliance codes 24-27 6 4-7 - Reserved 28 6 3 - 1000BASE-T 29 6 2 - 1000BASE-CX 30 6 1 - 1000BASE-LX 31 6 0 - 1000BASE-SX Fiber Channel link length 32 7 7 - Very long distance 33 7 6 - Short distance 34 7 5 - Intermediate distance 35 7 4 - Long distance Fibre Channel transmitter technology 36-37 7 2 to 3 - Reserved 38 7 1 - Longwave laser 39 7 0 - Electrical inter-enclosure 40 8 7 - Electrical intra-enclosure 41 8 6 - Shortwave laster without OFC 42 8 5 - Shortwave laster with OFC 43 8 4 - Longwave laser 44-47 8 0 to 3 - Reserved Fiber channel transmission media 48 9 7 - Twin Axial pair 49 9 6 - Shielded Twisted Pair 50 9 5 - Miniature coax 51 9 4 - Video coax 52 9 3 - Multi-mode, 62.5m 53 9 2 - Multi-mode, 50 m 54 9 1 - Reserved 55 9 0 - Single Mode Fiber channel speed 56-58 10 5-7 - Reserved 59 10 4 - 400 MBps 60 10 3 - Reserved 61 10 2 - 200 MBps 62 10 1 - Reserved 63 10 0 - 100 MBpsro OCTET STRING .1.3.6.1.4.1.629.204.1.1.1.1.5 |
nbsSffMsaSerialEncodingThe encoding value indicates the serial encoding mechanism that is the nominal design target of the particular transceiver. The value shall be contained in the serial data. For XFPs this object must return notSupported, and user should refer to these MIB objects nbsXfpSerialEncodingRZ nbsXfpSerialEncodingNRZ nbsXfpSerialEncodingSonetScrm nbsXfpSerialEncoding8B10B nbsXfpSerialEncoding64Bro Enumeration .1.3.6.1.4.1.629.204.1.1.1.1.6 |
nbsSffMsaNominalBitRateThe nominal bit rate (BR, nominal) is specified in units of 100 Megabits per second, rounded off to the nearest 100 Megabits per second. The bit rate includes those bits necessary to encode and delimit the signal as well as those bits carrying data information. A value of 0 indicates that the bit rate is not specified and must be determined from the transceiver technology. The actual information transfer rate will depend on the encoding of the data, as defined by the encoding value.ro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.7 |
nbsSffMsaLinkLengthSmfKmThis value specifies the link length that is supported by the transceiver while operating in compliance with the applicable standards using single mode fiber. The value is in units of kilometers. A value of 255 means that the transceiver supports a link length greater than 254 km. A value of zero means that the transceiver does not support single mode fiber or that the length information must be determined from the transceiver technology. XFP uses this object for the same purpose.ro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.8 |
nbsSffMsaLinkLengthSmf100mThis value specifies the link length that is supported by the transceiver while operating in compliance with the applicable standards using single mode fiber. The value is in units of 100 meters. A value of 255 means that the transceiver supports a link length greater than 25.4 km. A value of zero means that the transceiver does not support single mode fiber or that the length information must be determined from the transceiver technology.ro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.9 |
nbsSffMsaLinkLengthMmf10mThis value specifies link length that is supported by the transceiver while operating in compliance with applicable standards using 50 micron multimode OM2 [500MHz*km at 850nm,] fiber. The value is in units of 10 meters. A value of 255 means that the transceiver supports a link length greater than 2.54 km. A value of zero means that the transceiver does not support 50 micron multimode fiber or that the length information must be determined from the transceiver technology.ro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.10 |
nbsSffMsaLinkLength625Mmf10mThis value specifies link length that is supported by the transceiver while operating in compliance with applicable standards using 62.5 micron multimode OM1 [200 MHz*km at 850nm, 500 MHz*km at 1310nm] fiber. The value is in units of 10 meters. A value of 255 means that the transceiver supports a link length greater than 2.54 km. A value of zero means that the transceiver does not support 62.5 micron multimode fiber or that the length information must determined from the transceiver technology. It is common for a multimode transceiver to support OM1, OM2 and OM3 fiber.ro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.11 |
nbsSffMsaCopperLinkLengthThis value specifies the minimum link length that is supported by the transceiver while operating in compliance with the applicable standards using copper cable. The value is in units of 1 meter. A value of 255 means that the transceiver supports a link length greater than 254 meters. A value of zero means that the transceiver does not support copper cables or that the length information must be determined from the transceiver technology. Further information about the cable design, equalization, and connectors is usually required to guarantee meeting a particular length requirement.ro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.12 |
nbsSffMsaVendorNameThe vendor name is a 16 character field that contains ASCII characters, The vendor name shall be the full name of the corporation, a commonly accepted abbreviation of the name of the corporation, the SCSI company code for the corporation, or the stock exchange code for the corporation. At least one of the vendor name or the vendor OUI fields shall contain valid serial data.ro DisplayString .1.3.6.1.4.1.629.204.1.1.1.1.13 |
nbsSffMsaVendorOUIThe vendor organizationally unique identifier field (vendor OUI) is a 3-byte field that contains the IEEE Company Identifier for the vendor. A value of all zero in the 3-byte field indicates that the Vendor OUI is unspecified.ro OCTET STRING .1.3.6.1.4.1.629.204.1.1.1.1.14 |
nbsSffMsaVendorPartNumberThe vendor part number (vendor PN) is a 16-byte field that contains ASCII characters, left-aligned, defining the vendor part number or product name. Unlike the MSA standard, agent returns size 0 string if the part number is unspecified and there will be no white space padding.ro DisplayString .1.3.6.1.4.1.629.204.1.1.1.1.15 |
nbsSffMsaVendorRevisionThe vendor revision number (vendor rev) is a 4-byte field that contains ASCII characters, defining the vendor's product revision number. Unlike the MSA standard, agent returns size 0 string if the part number is unspecified and there will be no white space padding. This is a two byte string for XFP, four bytes for others.ro DisplayString .1.3.6.1.4.1.629.204.1.1.1.1.16 |
nbsSffMsaBaseChecksumMatchThe check code is a one byte code that can be used to verify that the first 64 (0-63) bytes of serial information in the SFP transceiver is valid.Returns yes if checksum matches, no if checksum doesn't match. For XFPs, The check code shall be the low order 8 bits of the sum of the contents of all the bytes from byte 128 to byte 190, inclusive.ro Enumeration .1.3.6.1.4.1.629.204.1.1.1.1.17 |
nbsSffMsaLossOfSignalImplementedByte 65 Bit 1. Signal as defined in the specificationro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.18 |
nbsSffMsaLossOfSignalInvertedByte 65 Bit 2. Signal as defined in the specificationro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.19 |
nbsSffMsaTxFaultByte 65 Bit 3.TX_FAULT signal implemented. Reset definition in Section III and Laser Fault condition, Generated by laser safety system.ro Enumeration .1.3.6.1.4.1.629.204.1.1.1.1.20 |
nbsSffMsaTxDisableByte 65 Bit 4.TX_DISABLE is implemented and disables the serial output.ro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.21 |
nbsSffMsaRateSelectImplementedByte 65 Bit 5.If this bit is set then active control of the rate select pin is required to change rates. If bit is not set, no control of pin is required. In all cases, compliance with multiple rate standards should be determined by Transceiver codes in bytes 4,5,6, and 10. See table 3.4ro Enumeration .1.3.6.1.4.1.629.204.1.1.1.1.22 |
nbsSffMsaMaxBitRateThe upper bit rate limit at which the SFP transceiver will still meet its specifications (BR, max) is specified in units of 1% above the nominal bit rate. A value of zero indicates that this field is not specified.ro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.23 |
nbsSffMsaMinBitRateThe lower bit rate limit at which the SFP transceiver will still meet its specifications (BR, min) is specified in units of 1% below the nominal bit rate. A value of zero indicates that this field is not specified.ro INTEGER .1.3.6.1.4.1.629.204.1.1.1.1.24 |
nbsSffMsaVendorSerialNumberThe vendor serial number (vendor SN) is a 16 character field that contains ASCII characters, left-aligned and padded on the right with ASCII spaces (20h), defining the vendor's serial number for the SFP transceiver. A value of all zero in the 16-byte field indicates that the vendor SN is unspecified.ro DisplayString .1.3.6.1.4.1.629.204.1.1.1.1.25 |
nbsSffMsaVendorDateCodeThe date code is an 8-byte field that contains the vendor's date code in ASCII characters. The date code is mandatory.ro DisplayString .1.3.6.1.4.1.629.204.1.1.1.1.26 |
nbsSffMsaExtChecksumMatchThe check code is a one byte code that can be used to verify that the first 32 bytes of extended serial information in the SFP transceiver is valid. The check code shall be the low order 8 bits of the sum of the contents of all the bytes from byte 64 to byte 94, inclusive.ro Enumeration .1.3.6.1.4.1.629.204.1.1.1.1.27 |
nbsSffWdmGrpAll DWDM MSA objects. OBJECT IDENTIFIER .1.3.6.1.4.1.629.204.1.2 |
nbsSffWdmTableOperations, Administration, and Management information SEQUENCE OF NbsSffWdmEntry .1.3.6.1.4.1.629.204.1.2.1 |
nbsSffWdmEntryRepresents WDM properties of a port. NbsSffWdmEntry .1.3.6.1.4.1.629.204.1.2.1.1 |
nbsSffWdmClassOfPowerExtended identifier of class of Power.ro Enumeration .1.3.6.1.4.1.629.204.1.2.1.1.1 |
nbsSffWdmClassOfTemperatureExtended identifier of class of Temperature. class0 - Temperature in [-5, 70C] class1 - Temperature in [-40, 85C] class2 - reserved class3 - defined by MIB objects nbsSffDwdmMaxCaseTemperature & nbsSffDwdmMinCaseTemperaturero Enumeration .1.3.6.1.4.1.629.204.1.2.1.1.2 |
nbsSffWdmClassOfWdmExtended identifier of class of WDM. 1 - No WDM 2 - CWDM 3 - DWDM 4 - Reservedro Enumeration .1.3.6.1.4.1.629.204.1.2.1.1.3 |
nbsSffWdmOpticalReachThis value specifies the link length in kilometers that is supported by the transceiver while operating in compliance with the applicable standards using single mode fiber.ro INTEGER .1.3.6.1.4.1.629.204.1.2.1.1.4 |
nbsSffWdmMaxCaseTemperatureThis field defines the maximum operating case temperature in Celsius. For WDMs, this value is in byte 15 in A0h, For XFPs, this value is in byte 190.ro INTEGER (-2147483647..2147483647) .1.3.6.1.4.1.629.204.1.2.1.1.5 |
nbsSffWdmMinCaseTemperatureThis field defines the minimum operating case temperature in Celsius.ro INTEGER (-2147483647..2147483647) .1.3.6.1.4.1.629.204.1.2.1.1.6 |
nbsSffWdmMaxSupplyCurrentThis field defines the maximum supply current, in milli Amps, which the module will consume under worst case conditions.ro INTEGER .1.3.6.1.4.1.629.204.1.2.1.1.7 |
nbsSffWdmNumberOfChannelsThis specifies the tuning range from 1 to 63, where 1 indicates this module is not tunable by user commands.ro INTEGER .1.3.6.1.4.1.629.204.1.2.1.1.8 |
nbsSffWdmChannelSpacingThis field identifies the densest channel spacing the module is compatible with and the number of channels over which the module may be tuned by user command.ro Enumeration .1.3.6.1.4.1.629.204.1.2.1.1.9 |
nbsSffWdmVariableDecisionThresholdDWDM Variable Decission Threshold.ro Enumeration .1.3.6.1.4.1.629.204.1.2.1.1.10 |
nbsSffWdmWavelengthMonitorTypeDWDM Wavelength monitor type in A2 byte.ro Enumeration .1.3.6.1.4.1.629.204.1.2.1.1.11 |
nbsSffWdmExtTransmitPowerTypeDWDM Extended Transmit Power Type.ro Enumeration .1.3.6.1.4.1.629.204.1.2.1.1.12 |
nbsSffWdmVariableOpticalAttenuatorDWDM Variable Optical Atttenuator.ro Enumeration .1.3.6.1.4.1.629.204.1.2.1.1.13 |
nbsSffWdmPilotToneFunctionalityDWDM Pilot Tone Functionality.ro Enumeration .1.3.6.1.4.1.629.204.1.2.1.1.14 |
nbsSffWdmOptionalInterruptPinDWDM Optional Interrupt Pin.ro Enumeration .1.3.6.1.4.1.629.204.1.2.1.1.15 |
nbsSffWdmLaserWavelengthNominal transmitter output wavelength. For SFPs, per Specification for DWDM SFP Transceiver, section 2.2.1, The laser wavelength is equal to the 16 bit integer value in nm (16 bit value with byte 60 as high order byte and byte 61 as low order byte) and with the fractional part of the wavelength in units of 0.01nm (byte 62). For XFPs,per specification for INF8077i, see section 5.33ro DisplayString .1.3.6.1.4.1.629.204.1.2.1.1.16 |
nbsSffWdmFrequencyNominal transmitter frequency, in MHzro NbsTcMHz (NBS-MIB) .1.3.6.1.4.1.629.204.1.2.1.1.17 |
nbsSffWdmChannelBandITU Channel Bandro NbsCmmcChannelBand (NBS-CMMCENUM-MIB) .1.3.6.1.4.1.629.204.1.2.1.1.18 |
nbsSffWdmChannelNumberITU Channel Numberro INTEGER .1.3.6.1.4.1.629.204.1.2.1.1.19 |
nbsSffDiagnosticsGrpAll Diagnostics objects. OBJECT IDENTIFIER .1.3.6.1.4.1.629.204.1.3 |
nbsSffDiagsTableOperations, Administration, and Management information SEQUENCE OF NbsSffDiagsEntry .1.3.6.1.4.1.629.204.1.3.1 |
nbsSffDiagsEntryRepresents Digital Diagnostics of a port. NbsSffDiagsEntry .1.3.6.1.4.1.629.204.1.3.1.1 |
nbsSffDiagsRateIdentifierThe rate identifier byte refers to several (optional) industry standard definitions of Rate_Select or Application_Select control behaviors, intended to manage transceiver optimization for multiple operating rates.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.1 |
nbsSffDiagsLinkLengthOm3This value specifies link length that is supported by the transceiver while operating in compliance with applicable standards using 50 micron multimode OM3 [2000 MHz*km] fiber. The value is in units of 10 meters. A value of 255 means that the transceiver supports a link length greater than 2.54 km. A value of zero means that the transceiver does not support 50 micron multimode fiber or that the length information must be determined from the transceiver technology.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.2 |
nbsSffDiagsLaserWavelengthNominal transmitter output wavelength at room temperature. 16 bit value with byte 60 as high order byte and byte 61 as low order byte. The laser wavelength is equal to the the 16 bit integer value in nm. This field allows the user to read the laser wavelength directly, so it is not necessary to infer it from the transceiver Code for Electronic Compatibility (bytes 3 to 10). This also allows specification of wavelengths not covered in bytes 3 to 10, such as those used in coarse WDM systems.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.3 |
nbsSffDiagsLROutputImplementedByte 64, bit 0. Value of 1 identifies a conventional limiting (or unspecified) receiver output. Value of 2 identifies a linear receiver output.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.4 |
nbsSffDiagsPowerLevelDeclarationByte 64, bit 1. Value 1 identifies Power Level 1 (or unspecified) requirements. Value 2 identifies a Power Level2 requirements.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.5 |
nbsSffDiagsCooledTranDeclarationByte 64, bit 2. Value 1 identifies a conventional uncooled (or unspecified) laser implementation. Value 2 identifies a cooled laser transmitter implementation.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.6 |
nbsSffDiagsAddressChangeRequiredByte 92, bit 2 indicates whether or not it is necessary for the host to perform an address change sequence before accessing information at 2-wire serial address A2h. If this bit is not set, the host may simply read from either address, A0h or A2h, by using that value in the address byte during the 2-wire communication sequence. If the bit is set, the defined sequence must be executed prior to accessing information at address A2h.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.7 |
nbsSffDiagsPowerMeasurementTypeByte 92, bit 3 indicates whether the received power measurement represents average input optical power or OMA. If the bit is set, average power is monitored. If it is not, OMA is monitored. For XFPs, the address location would be byte 220, bit 3ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.8 |
nbsSffDiagsExternallyCalibratedByte 92, bit 4 Externally Calibrated Two calibration options are possible if bit 6 has been set indicating that digital diagnostic monitoring has been implemented. If bit 4 is set, the reported values are A/D counts which must be converted to real world units using calibration values read using 2 wire serial address 1010001X (A2h) from bytes 56 to 95.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.9 |
nbsSffDiagsInternallyCalibratedByte 92, bit 5 Internally Calibrated. Two calibration options are possible if bit 6 has been set indicating that digital diagnostic monitoring has been implemented. If bit 5, Internally calibrated is set, the transceiver directly reports calibrated values in units of current, power etc.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.10 |
nbsSffDiagsDDMonitoringImplementedByte 92, bit 6. If this bit is set indicating that digital diagnostic monitoring has been implemented, received power monitoring, transmitted power monitoring, bias current monitoring, supply voltage monitoring and temperature monitoring must all be implemented. Additionally, alarm and warning thresholds must be written as specified in this document at locations 00 to 55 on 2 wire serial address 1010001X (A2h)ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.11 |
nbsSffDiagsOptRateSelectControlByte 93 bit 1. Optional Rate Select control implemented per SFF-8431. Sets to 1 if not implemented, 2 if implemented.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.12 |
nbsSffDiagsOptAppSelectControlBased on byte 93 bit 2. Optional Application Select control implemented per SFF-8079. Sets to 1 if not implemented, 2 if implemented.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.13 |
nbsSffDiagsOptSoftRSControlMonBased on byte 93 bit 3. Optional soft RATE_SELECT control and monitoring implemented. Sets to 1 if not implemented, 2 if implemented.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.14 |
nbsSffDiagsOptSoftRxLoSMonitoringBased on byte 93 bit 4. Optional soft RX_LOS monitoring implemented. Sets to 1 if not implemented, 2 if implemented.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.15 |
nbsSffDiagsOptSoftTxFaultMonitoringBased on byte 93 bit 5. Optional soft TX_FAULT monitoring implemented. Sets to 1 if not implemented, 2 if implemented.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.16 |
nbsSffDiagsOptSoftTxDisableBased on byte 93 bit 6. Optional soft TX_DISABLE control and monitoring implemented.Sets to 1 if not implemented, 2 if implemented.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.17 |
nbsSffDiagsOptAlarmWarningFlagsBased on byte 93 bit 7. Optional Alarm/warning flags implemented for all monitored quantities.Sets to 1 if not implemented, 2 if implemented. See Table 3.18ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.18 |
nbsSffDiags8472ComplianceByte 94 contains an unsigned integer that indicates which feature set(s) are implemented in the transceiver.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.19 |
nbsSffDiagsTemperatureModule temperature in centigradese.ro INTEGER (-2147483647..2147483647) .1.3.6.1.4.1.629.204.1.3.1.1.20 |
nbsSffDiagsTempLowAlarmPredefined temperature for low alarm threshold in Centigrades.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.21 |
nbsSffDiagsTempLowWarnPredefined temperature for low warning threshold in Centigradesro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.22 |
nbsSffDiagsTempHighWarnPredefined temperature for high warning threshold in Centigradesro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.23 |
nbsSffDiagsTempHighAlarmPredefined temperature for high alarm threshold in Centigradesro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.24 |
nbsSffDiagsVoltageInternally measured supply voltage in transceiver in the units of Volts. Bytes 98 & 99 of Address A2hro DisplayString .1.3.6.1.4.1.629.204.1.3.1.1.25 |
nbsSffDiagsVoltLowAlarmPredefined voltage for low alarm threshold in the units of Volts.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.26 |
nbsSffDiagsVoltLowWarnPredefined voltage for low warning threshold in the units of Volts.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.27 |
nbsSffDiagsVoltHighWarnPredefined voltage for high warning threshold in the units of Volts.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.28 |
nbsSffDiagsVoltHighAlarmPredefined voltage for high alarm threshold in the units of Volts.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.29 |
nbsSffDiagsBiasCurrentInternally measured TX Bias Current in the units of mA. Bytes 100 & 101 of Address A2hro DisplayString .1.3.6.1.4.1.629.204.1.3.1.1.30 |
nbsSffDiagsBiasLowAlarmPredefined bias current for low alarm threshold in the units of mAro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.31 |
nbsSffDiagsBiasLowWarnPredefined bias current for low warning threshold in the units of mAro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.32 |
nbsSffDiagsBiasHighWarnPredefined bias current for high warning threshold in the units of mAro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.33 |
nbsSffDiagsBiasHighAlarmPredefined bias current for high alarm threshold in the units of mAro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.34 |
nbsSffDiagsTxPowerMeasured TX output power in the units of dBm.ro DisplayString .1.3.6.1.4.1.629.204.1.3.1.1.35 |
nbsSffDiagsTxPowerLowAlarmPredefined Tx output power for low alarm threshold in the units of dBm.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.36 |
nbsSffDiagsTxPowerLowWarnPredefined Tx output power for low warning threshold in the units of dBm.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.37 |
nbsSffDiagsTxPowerHighWarnPredefined Tx output power for high warning threshold in the units of dBm.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.38 |
nbsSffDiagsTxPowerHighAlarmPredefined Tx output power for high alarm threshold in the units of dBm.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.39 |
nbsSffDiagsRxPowerMeasured received optical power. Received power, RX_PWR, is given in uW by the following equation: Rx_PWR (uW) = Rx_PWR(4) * Rx_PWR AD 4 (16 bit unsigned integer) + Rx_PWR(3) * Rx_PWR AD 3 (16 bit unsigned integer) + Rx_PWR(2) * Rx_PWR AD 2 (16 bit unsigned integer) + Rx_PWR(1) * Rx_PWR AD (16 bit unsigned integer) + Rx_PWR(0)ro DisplayString .1.3.6.1.4.1.629.204.1.3.1.1.40 |
nbsSffDiagsRxPowerLowAlarmPredefined Rx input power for low alarm threshold in the units of dBm.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.41 |
nbsSffDiagsRxPowerLowWarnPredefined Rx input power for low warning threshold in the units of dBm.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.42 |
nbsSffDiagsRxPowerHighWarnPredefined Rx input power for high warning threshold in the units of dBm.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.43 |
nbsSffDiagsRxPowerHighAlarmPredefined Rx input power for high alarm threshold in the units of dBm.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.44 |
nbsSffDiagsDataReadyBarStateIndicates transceiver has achieved power up and data is ready. Bit remains high until data is ready to be read at which time the device sets the bit low. Byte 110, bit 0 of A2hro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.45 |
nbsSffDiagsRxLosStateDigital state of the RX_LOS Output Pin. Updated within 100ms of change on pin. Byte 110, bit 1 of A2hro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.46 |
nbsSffDiagsTxFaultStateDigital state of the TX Fault Output Pin. Updated within 100ms of change on pin. Byte 110, bit 2 of A2hro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.47 |
nbsSffDiagsSoftRateSelectRead/write bit that allows software rate select control. Writing 1 selects full bandwidth operation. This bit is OR'd with the hard Rate_Select, AS(0) or RS(0) pin value. See Table 3.11 for timing requirements. Default at power up is logic zero/low. If Soft Rate Select is not implemented, the transceiver ignores the value of this bit. Note: Specific transceiver behaviors of this bit are identified in Table 3.6a and referenced documents. See Table 3.18a, byte 118, bit 3 for Soft RS(1) Select. Byte 110, bit 3 of A2hro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.48 |
nbsSffDiagsRateSelectState0Digital state of the SFP Rate_Select Input Pin. Updated within 100ms of change on pin. Note: This pin is also known as AS(0) in SFF-8079 and RS(0) in SFF-8431. Byte 110, bit 4 of A2hro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.49 |
nbsSffDiagsRS1StateReserved for digital state of input pin AS(1) per SFF-8079 and RS(1) per SFF-8431. Updated within 100ms of change on pin. See A2h Byte 118, Bit 3 for Soft RS(1) Select control information. Byte 110, bit 5 of A2hro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.50 |
nbsSffDiagsSoftTxDisableSelectRead/write bit that allows software disable of laser. Writing 1 disables laser. See Table 3.11 for enable/ disable timing requirements. This bit is OR d with the hard TX_DISABLE pin value. Note, per SFP MSA TX_DISABLE pin is default enabled unless pulled low by hardware. If Soft TX Disable is not implemented, the transceiver ignores the value of this bit. Default power up value is zero/low. Byte 110, bit 6 of A2hro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.51 |
nbsSffDiagsTxDisableStateDigital state of the TX Disable Input Pin. Updated within 100ms of change on pin.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.52 |
nbsSffDiagsBiasCurrentSlopeFixed decimal (unsigned) calibration data, laser bias current measured in mA.ro DisplayString .1.3.6.1.4.1.629.204.1.3.1.1.53 |
nbsSffDiagsBiasCurrentOffsetFixed decimal (signed two's complement) calibration data, laser bias current measured in mA.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.54 |
nbsSffDiagsTxPowerSlopeFixed decimal (unsigned) calibration data, transmitter coupled output power in the units of dBm.ro DisplayString .1.3.6.1.4.1.629.204.1.3.1.1.55 |
nbsSffDiagsTxPowerOffsetFixed decimal (signed two's complement) calibration data, transmitter coupled output power in the units of dBm.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.56 |
nbsSffDiagsTemperatureSlopeFixed decimal (unsigned) calibration data, internal module temperature in Cro DisplayString .1.3.6.1.4.1.629.204.1.3.1.1.57 |
nbsSffDiagsTemperatureOffsetFixed decimal (signed two's complement) calibration data, internal module temperature in Cro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.58 |
nbsSffDiagsVoltageSlopeFixed decimal (unsigned) calibration data, internal module supply voltage in Volts.ro DisplayString .1.3.6.1.4.1.629.204.1.3.1.1.59 |
nbsSffDiagsVoltageOffsetFixed decimal (signed two's complement) calibration data, internal module supply voltage in Volts.ro INTEGER .1.3.6.1.4.1.629.204.1.3.1.1.60 |
nbsSffDiagsPowerLevelSelectReserved for SFF-8431 Power Level (maximum power dissipation) enable. Value of zero disables Power Level 2 (1.0 Watt max). Value of one enables Power Level 2 (1.5 Watt max). Refer to Table 3.7 for Power Level declaration. Refer to Table 3.11 for timing.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.61 |
nbsSffDiagsPowerLevelOpStateReserved for SFF-8431 Power Level (maximum power dissipation) status.Value of zero indicates Power Level 1 operation (1.0 Watt max) Value of one indicates Power Level 2 operation (1.5 Watt max).Refer to Table 3.7 for Power Level declaration. Refer to Table 3.11 for timing.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.62 |
nbsSffDiagsSoftRSSelectRead/write bit that allows software Tx rate control. Writing 1 selects full speed Tx operation. This bit is OR d with the hard RS(1) pin value.See Table 3.11 for timing requirements. Default at power up is logic zero/low. If Soft RS(1) is not implemented, the transceiver ignores the value of this bit. Note: Specific transceiver behaviors of this bit are identified in Table 3.6a and referenced documents. See Table 3.17, byte 110, bit 3 for Soft RS(0) Select.ro Enumeration .1.3.6.1.4.1.629.204.1.3.1.1.63 |
nbsSffMsxGrpAll SFF MSA Extension objects. OBJECT IDENTIFIER .1.3.6.1.4.1.629.204.1.4 |
nbsSffMsxTableSizeThe number of entries in nbsSffMsxTablero Unsigned32 .1.3.6.1.4.1.629.204.1.4.1 |
nbsSffMsxTableNon-standardized extensions to the Multi-Source Agreement SEQUENCE OF NbsSffMsxEntry .1.3.6.1.4.1.629.204.1.4.2 |
nbsSffMsxEntryPluggable Transceiver information and settings yet to be standardized NbsSffMsxEntry .1.3.6.1.4.1.629.204.1.4.2.1 |
nbsSffMsxPhysicalIfIndexMIB2 ifIndex of this portro INTEGER .1.3.6.1.4.1.629.204.1.4.2.1.1 |
nbsSffMsxHasSgmiiPhySome Gigabit Ethernet compatible SFP transeivers, such as SFP-FDSGMII-M and SFP-FDSGMII-LR, have a built-in SGMII PHY. Those that do require special autonegotiation processing, without which autonegotiation will fail and the port will be unable to pass traffic. If the SFP has a built-in SGMII PHY, the user should set this to yes(3).rw Enumeration .1.3.6.1.4.1.629.204.1.4.2.1.2 |