MIBs Depot

CAMBIUM-PTP800-MIB

Registered at
1.3.6.1.4.1.17713.8
Last updated
2014-02-28 15:18
Organization
Cambium Networks Ltd.
Revisions
2014-02-28 15:18, 2012-04-20 12:27, 2011-08-19 12:29, 2011-03-16 17:23, 2010-09-30 16:29, 2010-07-30 13:07, 2010-05-27 19:52, 2010-03-31 13:09, 2010-01-04 18:33, 2009-10-21 14:26
Namespace
cambium
Source file
CAMBIUM-PTP800-MIB
Digest
sha256:5917b32143143a61a41f6e4f57a16a2206bdc5d725e17b1020e72d66c114c65b

Description

MIB for licenced microwave point to point wireless ethernet bridge.

Contact

Post: Simon Whitaker Cambium Networks Ltd. Unit B2, Linhay Business Park, Eastern Road, Ashburton, Devon. TQ13 7UP United Kingdom Phone: +44 (0) 1364 655 500 Email: simon.whitaker@cambiumnetworks.com

Imports

FromSymbols
INET-ADDRESS-MIBInetAddress, InetAddressType
SNMPv2-CONFMODULE-COMPLIANCE, NOTIFICATION-GROUP, OBJECT-GROUP
SNMPv2-SMICounter64, Integer32, IpAddress, MODULE-IDENTITY, NOTIFICATION-TYPE, OBJECT-IDENTITY, OBJECT-TYPE, enterprises, iso
SNMPv2-TCDisplayString, TEXTUAL-CONVENTION

Imported by

Nothing in this corpus imports this module.

Load order

Every file a consumer needs in order to load this module, dependencies first.

CAMBIUM-PTP800-MIB
INET-ADDRESS-MIB
SNMPv2-CONF
SNMPv2-SMI
SNMPv2-TC

Objects

NameOIDSyntaxAccessStatus
ptp
OBJECT-IDENTITY
1.3.6.1.4.1.17713.1
ptmp
OBJECT-IDENTITY
1.3.6.1.4.1.17713.2
ptp800
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8
bridge
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.4
localPacketFiltering
OBJECT-TYPE
Controls the filtering of Ethernet frames that have been sourced from the CMU management agent. When Local Packet Filtering is disabled, such frames are transmitted at the Wireless Interface and either the Management Port for Out-of-Band operation or the Data Port for In-Band operation. This is regardless of whether the port has been learned for the destination address. When Local Packet Filtering is enabled, such frames are only transmitted at the port which has been learned for the destination address
1.3.6.1.4.1.17713.8.4.1INTEGER {disabled(0), enabled(1)}read-writecurrent
configuration
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.5
iPv4Address
OBJECT-TYPE
Internet protocol (IPv4) address. This address is used by the family of Internet protocols to uniquely identify the unit on a network.
1.3.6.1.4.1.17713.8.5.1IpAddressread-writecurrent
subnetMask
OBJECT-TYPE
A subnet allows the flow of network traffic between hosts to be segregated based on a network configuration. By organizing hosts into logical groups, subnetting can improve network security and performance
1.3.6.1.4.1.17713.8.5.2IpAddressread-writecurrent
gatewayIPAddress
OBJECT-TYPE
The IPv4 address of a device on the current network that acts as an IPv4 network gateway. A gateway acts as an entrance / exit to packets from / to other networks.
1.3.6.1.4.1.17713.8.5.3IpAddressread-writecurrent
maximumTransmitPower
OBJECT-TYPE
Maximum transmit power the wireless unit is permitted to use when establishing and maintaining the wireless link, expressed in tenths of a dBm. Note that when an IRFU is connected rather than an ODU, the transmit power refers to the power at the transceiver output and not the IRFU antenna port. See the User Guide for more details
1.3.6.1.4.1.17713.8.5.6INTEGER (-1000..370)read-onlycurrent
antennaGain
OBJECT-TYPE
Antenna Gain. Expressed in 10ths of dBi.
1.3.6.1.4.1.17713.8.5.7INTEGER (0..610)read-writecurrent
rFFeederLoss
OBJECT-TYPE
Insertion loss of the microwave connection between the RFU and the antenna. The feeder loss should be 0 dB for the standard 1 + 0 direct mount configuration. Expressed in 10ths of dB.
1.3.6.1.4.1.17713.8.5.8INTEGER (0..255)read-onlycurrent
remoteIPAddress
OBJECT-TYPE
IP Address of the peer wireless unit
1.3.6.1.4.1.17713.8.5.12IpAddressread-onlycurrent
remoteMACAddress
OBJECT-TYPE
MAC Address of the peer wireless unit
1.3.6.1.4.1.17713.8.5.13OCTET STRING (SIZE(6))read-onlycurrent
enableTransmission
OBJECT-TYPE
Permits the transmitter to radiate. Once the unit is installed and configured, use this to enable the transmitter
1.3.6.1.4.1.17713.8.5.14INTEGER {enabled(0), muted(1)}read-writecurrent
aTPCEnable
OBJECT-TYPE
Enables Automatic Transmitter Power Control (ATPC). NOTE: Use of ATPC is mandatory in some regions. When ATPC is enabled, the transmit power is dynamically adjusted to optimize link performance. The transmit power will always be adjusted within the constraints set by Maximum Transmit Power. When ATPC is disabled, the transmit power will be fixed at the level set by Maximum Transmit Power. When adaptive modulation is enabled, this setting can limit the capacity of the system by capping the modulation to a mode which is consistent with the configured Maximum Transmit Power.
1.3.6.1.4.1.17713.8.5.15INTEGER {disabled(0), enabled(1)}read-onlycurrent
iFCableLength
OBJECT-TYPE
IF Cable Length in cm - please refer to the user manual for more information on the recommended cable type.
1.3.6.1.4.1.17713.8.5.16INTEGER (0..19000)read-onlycurrent
linkName
OBJECT-TYPE
Name of the PTP link allocated by the System Administrator. Used to establish a connection with the correct PTP wireless unit at the other end of the link. NOTE: The link name MUST be the same at both ends of the PTP link.
1.3.6.1.4.1.17713.8.5.17DisplayString (SIZE(0..63))read-onlycurrent
siteName
OBJECT-TYPE
This field is allocated by the system administrator and contains a description of the site name together with any additional notes
1.3.6.1.4.1.17713.8.5.18DisplayString (SIZE(0..63))read-writecurrent
diverseAntennaGain
OBJECT-TYPE
Diverse Antenna Receive Gain. Expressed in 10ths of dBi.
1.3.6.1.4.1.17713.8.5.19INTEGER (0..610)read-writecurrent
diverseRfFeederLoss
OBJECT-TYPE
Insertion loss of the microwave connection between the RFU and the diverse antenna. Expressed in 10ths of dB.
1.3.6.1.4.1.17713.8.5.20INTEGER (0..255)read-writecurrent
iPv6Address
OBJECT-TYPE
Internet protocol (IPv6) address. This address is used by the family of Internet protocols to uniquely identify the unit on a network.
1.3.6.1.4.1.17713.8.5.21DisplayString (SIZE(0..39))read-writecurrent
iPVersion
OBJECT-TYPE
IP protocol selection. Choice of IPv4, IPv6 or Dual.
1.3.6.1.4.1.17713.8.5.22INTEGER {iPv4(0), iPv6(1), dualIPv4andIPv6(2)}read-writecurrent
iPv6AutoConfiguredLinkLocalAddress
OBJECT-TYPE
The auto configured link local IPv6 address
1.3.6.1.4.1.17713.8.5.23DisplayString (SIZE(0..39))read-onlycurrent
iPv6PrefixLength
OBJECT-TYPE
IPv6 prefix length
1.3.6.1.4.1.17713.8.5.24INTEGER (0..128)read-writecurrent
iPv6GatewayAddress
OBJECT-TYPE
The IPv6 address of a device on the current network that is currently acting as an IPv6 network gateway. A gateway acts as an entrance / exit to packets from / to other networks.
1.3.6.1.4.1.17713.8.5.25DisplayString (SIZE(0..39))read-writecurrent
remoteInternetAddressType
OBJECT-TYPE
The type of Internet address specified by the associated remoteInternetAddressType.
1.3.6.1.4.1.17713.8.5.26INTEGER {unknown(0), ipv4(1), ipv6(2), ipv4z(3), ipv6z(4), unknown6(5), unknown7(6), unknown8(7), unknown9(8), unknown10(9), unknown11(10), unknown12(11), unknown13(12), unknown14(13), unknown15(14), unknown16(15), dns(16)}read-onlycurrent
remoteInternetAddress
OBJECT-TYPE
INET address used to identify the peer wireless unit
1.3.6.1.4.1.17713.8.5.27InetAddressread-onlycurrent
ethernet
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.6
dataPortCopperAutoNegotiation
OBJECT-TYPE
This controls whether the configuration of the copper data Ethernet interface is automatically negotiated or forced. WARNING: ONLY USE FORCED AS A LAST RESORT. To operate an Ethernet link at a fixed speed, leave auto negotiation enabled and limit the Auto Neg Advertisement to the desired speed. Only force Ethernet configuration as a last resort if constrained auto negotiation fails. NB: Auto-MDI/MDIX is disabled when Forced is set, and the unit defaults to MDIX, so the correct straight through or crossover cable will be required to establish a connection. NB: both ends of an Ethernet link must be configured identically, as Forced and auto negotiation are NOT compatible. A mixed configuration will cause a duplex mismatch
1.3.6.1.4.1.17713.8.6.1INTEGER {disabled(0), enabled(1)}read-writecurrent
dataPortCopperAutoNegAdvertisement
OBJECT-TYPE
This sets the different configurations of the copper data Ethernet interface that will be advertised during auto negotiation. WARNING: Duplex mismatch may result if both ends of the Ethernet link do not have the same settings. Do not use auto negotiation together with a fixed setting at the Ethernet link partner (other end of the link). WARNING: Make sure that you select option(s) that you know your connected equipment can cater for!
1.3.6.1.4.1.17713.8.6.2Bits {neg100MbpsFullDuplex(6), neg1000MbpsFullDuplex(7)}read-writecurrent
dataPortStatus
OBJECT-TYPE
Current status of the data Ethernet link. NB: a change of state may generate an SNMP trap and/or SMTP email alert
1.3.6.1.4.1.17713.8.6.4INTEGER {down(0), copperLinkUp(1), fiberLinkUp(2), fiberYInactive(3)}read-onlycurrent
dataPortSpeedAndDuplex
OBJECT-TYPE
The current speed and duplex of the data Ethernet link
1.3.6.1.4.1.17713.8.6.5INTEGER {speed1000MbpsFullDuplex(0), speed100MbpsFullDuplex(1), unknown(3)}read-onlycurrent
dataPortWirelessDownAlert
OBJECT-TYPE
When enabled, this causes the data Ethernet link to be dropped briefly when the wireless link drops. This is so that spanning tree algorithms can quickly detect that there is a problem
1.3.6.1.4.1.17713.8.6.6INTEGER {disabled(0), enabled(1)}read-writecurrent
useVLANForManagementInterfaces
OBJECT-TYPE
This controls whether the management interfaces (WWW/SNMP/SMTP/SNTP) use VLAN tags or not
1.3.6.1.4.1.17713.8.6.7INTEGER {noVLANTagging(0), iEEE8021QTaggedCTagType8100(1), iEEE8021adTaggedSTagorBTagType88a8(2)}read-writecurrent
vLANManagementPriority
OBJECT-TYPE
This VLAN Priority (0-7) will be included in packets generated by the management interfaces
1.3.6.1.4.1.17713.8.6.8INTEGER (0..7)read-writecurrent
vLANManagementVIDValidation
OBJECT-TYPE
If enabled, the management interfaces will only respond to Ethernet packets tagged with the configured VLAN Management VID, otherwise packets with any VID will be accepted
1.3.6.1.4.1.17713.8.6.9INTEGER {disabled(0), enabled(1)}read-writecurrent
vLANManagementVID
OBJECT-TYPE
This VLAN VID (0-4094) will be included in packets generated by the management interfaces
1.3.6.1.4.1.17713.8.6.11INTEGER (0..4094)read-writecurrent
ethernetPriorityTableNumber
OBJECT-TYPE
Number of entries in the ethernetPriorityTable.
1.3.6.1.4.1.17713.8.6.14INTEGER (9)read-onlycurrent
ethernetPriorityTable
OBJECT-TYPE
A priority queue mapping table. This is a list of packet queues indexed by Ethernet priority.
1.3.6.1.4.1.17713.8.6.15not-accessiblecurrent
ethernetPriorityTableEntry
OBJECT-TYPE
Table EthernetPriorityTable
1.3.6.1.4.1.17713.8.6.15.1not-accessiblecurrent
ethernetPriorityQueueMapping
OBJECT-TYPE
Configures the classification of this Ethernet priority (also known as IEEE 802.1p value) to an egress queue at the wireless port.
1.3.6.1.4.1.17713.8.6.15.1.1INTEGER {q0(0), q1(1), q2(2), q3(3), q4(4), q5(5), q6(6), q7(7)}read-writecurrent
ethernetPriorityTableIndex
OBJECT-TYPE
Ethernet priority flag, used to index values in the ethernetPriorityTable.
1.3.6.1.4.1.17713.8.6.15.1.2INTEGER {p0(1), p1(2), p2(3), p3(4), p4(5), p5(6), p6(7), p7(8), untagged(9)}not-accessiblecurrent
managementPortAutoNegotiation
OBJECT-TYPE
This controls whether the configuration of the out-of-band management Ethernet interface is automatically negotiated or forced. WARNING: ONLY USE FORCED AS A LAST RESORT. To operate an Ethernet link at a fixed speed, leave auto negotiation enabled and limit the Auto Neg Advertisement to the desired speed. Only force Ethernet configuration as a last resort if constrained auto negotiation fails. NB: Auto-MDI/MDIX is disabled when Forced is set, and the unit defaults to MDIX, so the correct straight through or crossover cable will be required to establish a connection. NB: both ends of an Ethernet link must be configured identically, as Forced and auto negotiation are NOT compatible. A mixed configuration will cause a duplex mismatch
1.3.6.1.4.1.17713.8.6.16INTEGER {disabled(0), enabled(1)}read-writecurrent
managementPortAutoNegAdvertisement
OBJECT-TYPE
This sets the different configurations of the out-of-band management Ethernet interface that will be advertised during auto negotiation. WARNING: Duplex mismatch may result if both ends of the Ethernet link do not have the same settings. Do not use auto negotiation together with a fixed setting at the Ethernet link partner (other end of the link). WARNING: Make sure that you select option(s) that you know your connected equipment can cater for!
1.3.6.1.4.1.17713.8.6.17Bits {neg10MbpsFullDuplex(6), neg100MbpsFullDuplex(7)}read-writecurrent
managementPortStatus
OBJECT-TYPE
Current status of the out-of-band management Ethernet link
1.3.6.1.4.1.17713.8.6.18INTEGER {down(0), copperLinkUp(1)}read-onlycurrent
managementPortSpeedAndDuplex
OBJECT-TYPE
The current speed and duplex of the out-of-band management Ethernet link
1.3.6.1.4.1.17713.8.6.19INTEGER {speed100MbpsFullDuplex(1), speed10MbpsFullDuplex(2), unknown(3)}read-onlycurrent
managementPortWirelessDownAlert
OBJECT-TYPE
When enabled, this causes the out-of-band management Ethernet link to be dropped briefly when the wireless link drops. This is so that spanning tree algorithms can quickly detect that there is a problem
1.3.6.1.4.1.17713.8.6.20INTEGER {disabled(0), enabled(1)}read-writecurrent
managementMode
OBJECT-TYPE
Management mode: Out-of-band management. End-to-end out-of-band mode in which the management agent can be reached from the management port at the local CMU, and (assuming that the wireless link is established) the management port at the remote CMU. Out-of-band local management. (default) Similar to the standard out-of-band mode, except that management frames are not forwarded over the wireless link. In-band management. The management agent can be reached from the data port at the local CMU, and (assuming that the wireless link is established) the data port at the remote CMU. In this mode, the management port is disabled.
1.3.6.1.4.1.17713.8.6.22INTEGER {outofBandLocal(0), outofBand(1), inBand(2)}read-onlycurrent
managementCommittedInformationRate
OBJECT-TYPE
The Management Network Committed Information Rate (CIR). The Management Network guarantees this capacity will be available for management traffic
1.3.6.1.4.1.17713.8.6.23INTEGER {kbps200(0), kbps300(1), kbps400(2), kbps500(3), kbps600(4), kbps700(5), kbps800(6), kbps900(7), kbps1000(8), kbps1100(9), kbps1200(10), kbps1300(11), kbps1400(12), kbps1500(13), kbps1600(14), kbps1700(15), kbps1800(16), kbps1900(17), kbps2000(18)}read-onlycurrent
dataPortPauseFrames
OBJECT-TYPE
Controls whether the bridge tunnels or discards Layer 2 PAUSE frames arriving at the data Ethernet port. Such frames are identified by the destination MAC Address being equal to 01-80-C2-00-00-01
1.3.6.1.4.1.17713.8.6.24INTEGER {tunnel(0), discard(1)}read-onlycurrent
transmitCapacityLimit
OBJECT-TYPE
Transmit capacity is limited by the lower of: 1) the capacity limit specified by the installed License Key. 2) the Ethernet speed negotiated at the other end of the wireless link. Value expressed in 10ths of Mbps. 0 indicates unlimited
1.3.6.1.4.1.17713.8.6.26INTEGER (0..10000)read-onlycurrent
transmitCapacityLimitDetail
OBJECT-TYPE
A brief description of the reason (if any) for the limit being applied to the transmit capacity
1.3.6.1.4.1.17713.8.6.27INTEGER {limitedDueToAbsenceOfLicenseKey(0), runningAtTheCapacityLimit(1), runningAtUnlimitedCapacity(2), restrictedDueToRemoteEthernetSpeed(3), limitedDueToDevelopmentOverride(4), unlimitedDueToDevelopmentOverride(5), unlimitedCapacityTrialPeriod(6)}read-onlycurrent
dataPortEthernetMediaTypeToUse
OBJECT-TYPE
The physical media type to use on the data Ethernet port
1.3.6.1.4.1.17713.8.6.28INTEGER {autowithFiberPreference(0), forceCopper(1)}read-onlycurrent
dataPortCopperForcedConfiguration
OBJECT-TYPE
This forces the configuration of the copper data Ethernet interface rather than using auto negotiation. THE CONFIGURATION SHOULD ONLY BE FORCED IF YOU ARE HAVING PROBLEMS WITH AUTO NEGOTIATION - AND YOU MUST ENSURE THAT YOU CONFIGURE BOTH THIS UNIT AND THE Ethernet PORT TO WHICH IT IS CONNECTED IDENTICALLY! WARNING: Duplex mismatch may result if both ends of the Ethernet link do not have the same settings. Do not use auto negotiation together with a fixed setting at the Ethernet link partner (other end of the link)
1.3.6.1.4.1.17713.8.6.29INTEGER {force100MbpsFullDuplex(1)}read-onlycurrent
managementPortForcedConfiguration
OBJECT-TYPE
This forces the configuration of the out-of-band management Ethernet interface rather than using auto negotiation. THE CONFIGURATION SHOULD ONLY BE FORCED IF YOU ARE HAVING PROBLEMS WITH AUTO NEGOTIATION - AND YOU MUST ENSURE THAT YOU CONFIGURE BOTH THIS UNIT AND THE Ethernet PORT TO WHICH IT IS CONNECTED IDENTICALLY! WARNING: Duplex mismatch may result if both ends of the Ethernet link do not have the same settings. Do not use auto negotiation together with a fixed setting at the Ethernet link partner (other end of the link)
1.3.6.1.4.1.17713.8.6.30INTEGER {force100MbpsFullDuplex(0), force10MbpsFullDuplex(1)}read-onlycurrent
l2CPPriorityTableNumber
OBJECT-TYPE
Number of entries in the l2CPPriorityTable.
1.3.6.1.4.1.17713.8.6.31INTEGER (5)read-onlycurrent
l2CPPriorityTable
OBJECT-TYPE
A priority queue mapping table. This is a list of packet queues associated with the different layer 2 control protocol frameworks.
1.3.6.1.4.1.17713.8.6.32not-accessiblecurrent
l2CPPriorityTableEntry
OBJECT-TYPE
Table L2CPPriorityTable
1.3.6.1.4.1.17713.8.6.32.1not-accessiblecurrent
l2CPPriorityQueueMapping
OBJECT-TYPE
Configures the classification of this layer two control protocol (L2CP) to an egress queue at the wireless port
1.3.6.1.4.1.17713.8.6.32.1.1INTEGER {q0(0), q1(1), q2(2), q3(3), q4(4), q5(5), q6(6), q7(7)}read-writecurrent
l2CPPriorityTableIndex
OBJECT-TYPE
layer 2 control protocol, used to index values in the l2CPPriorityTable.
1.3.6.1.4.1.17713.8.6.32.1.2INTEGER {bridge(1), gARPMRP(2), cFM(3), rAPS(4), eAPS(5)}not-accessiblecurrent
unknownNetworkPriorityQueueMapping
OBJECT-TYPE
Configures the classification of unknown network protocols to an egress queue at the wireless port. Unknown means something other than IP and MPLS
1.3.6.1.4.1.17713.8.6.33INTEGER {q0(0), q1(1), q2(2), q3(3), q4(4), q5(5), q6(6), q7(7)}read-writecurrent
dSCPManagementPriority
OBJECT-TYPE
This Differentiated Services Code Point value will be inserted in the IP Header of all IP Datagrams transmitted by the management interfaces
1.3.6.1.4.1.17713.8.6.34INTEGER (0..63)read-writecurrent
qOSPriorityScheme
OBJECT-TYPE
Selects classification based on fields in the Ethernet header (Layer 2) or in the Network header (Layer 3). The unit recognises two network layer protocols: IP and MPLS
1.3.6.1.4.1.17713.8.6.35INTEGER {ethernet(0), iPMPLS(1)}read-writecurrent
iPDSCPPriorityTableNumber
OBJECT-TYPE
Number of entries in the iPDSCPPriorityTable.
1.3.6.1.4.1.17713.8.6.37INTEGER (64)read-onlycurrent
iPDSCPPriorityTable
OBJECT-TYPE
A priority queue mapping table. This is a list of packet queues indexed by L3 IP DSCP priority.
1.3.6.1.4.1.17713.8.6.38not-accessiblecurrent
iPDSCPPriorityTableEntry
OBJECT-TYPE
Table IPDSCPPriorityTable
1.3.6.1.4.1.17713.8.6.38.1not-accessiblecurrent
iPDSCPPriorityQueueMapping
OBJECT-TYPE
Configures the classification of this IP differentiated services code point (DSCP) value to an egress queue at the wireless port
1.3.6.1.4.1.17713.8.6.38.1.1INTEGER {q0(0), q1(1), q2(2), q3(3), q4(4), q5(5), q6(6), q7(7)}read-writecurrent
iPDSCPPriorityTableIndex
OBJECT-TYPE
IP DSCP priority flag, used to index values in the iPDSCPPriorityTable
1.3.6.1.4.1.17713.8.6.38.1.2INTEGER (1..64)not-accessiblecurrent
mPLSTCPriorityTableNumber
OBJECT-TYPE
Number of entries in the mPLSTCPriorityTable.
1.3.6.1.4.1.17713.8.6.39INTEGER (8)read-onlycurrent
mPLSTCPriorityTable
OBJECT-TYPE
A priority queue mapping table. This is a list of priority queues indexed by MPLS TC priority.
1.3.6.1.4.1.17713.8.6.40not-accessiblecurrent
mPLSTCPriorityTableEntry
OBJECT-TYPE
Table MPLSTCPriorityTable
1.3.6.1.4.1.17713.8.6.40.1not-accessiblecurrent
mPLSTCPriorityQueueMapping
OBJECT-TYPE
Configures the classification of this MPLS traffic class (the field formerly known as EXP) to an egress queue at the wireless port
1.3.6.1.4.1.17713.8.6.40.1.1INTEGER {q0(0), q1(1), q2(2), q3(3), q4(4), q5(5), q6(6), q7(7)}read-writecurrent
mPLSTCPriorityTableIndex
OBJECT-TYPE
MPLS TC priority flag, used to index values in the mPLSTCPriorityTable
1.3.6.1.4.1.17713.8.6.40.1.2INTEGER (1..8)not-accessiblecurrent
licence
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.8
productVariant
OBJECT-TYPE
The product variant
1.3.6.1.4.1.17713.8.8.2INTEGER {pTPxx400Full(0), pTPxx400Deprecated1(1), pTPxx400Deprecated2(2), pTPxx400Lite(3), spare1(4), pTPxx300(5), spare2(6), spare3(7), pTPxx500FullDeprecated(8), pTPxx500LiteDeprecated(9), pTPxx500(10), pTPxx600Lite(11), pTPxx600Full(12), spare5(13), spare6(14), pTP800(15)}read-onlycurrent
productName
OBJECT-TYPE
Name of the product variant
1.3.6.1.4.1.17713.8.8.3DisplayString (SIZE(0..63))read-onlycurrent
ethernetFiberSupport
OBJECT-TYPE
Ethernet fiber support availability on this wireless unit
1.3.6.1.4.1.17713.8.8.4INTEGER {disabled(0), enabled(1)}read-onlycurrent
transmitCapacity
OBJECT-TYPE
Maximum capacity the wireless link may provide in the transmit direction. This is restricted by the License Key.
1.3.6.1.4.1.17713.8.8.10INTEGER {rate10Mbps(0), rate20Mbps(1), rate30Mbps(2), rate40Mbps(3), rate50Mbps(4), rate100Mbps(5), rate150Mbps(6), rate200Mbps(7), rate300Mbps(8), rateUnlimited(9)}read-onlycurrent
encryptionAlgorithmsAvail
OBJECT-TYPE
The Encryption Algorithm(s) available to the wireless link. N.B. The same Encryption Algorithm must be configured at BOTH ends of the link for it to function correctly
1.3.6.1.4.1.17713.8.8.11INTEGER {none(0), aESRijndael(1), aES256bitRijndael(2)}read-onlycurrent
securityLevel
OBJECT-TYPE
The maximum configurable security level
1.3.6.1.4.1.17713.8.8.12INTEGER (0..2)read-onlycurrent
management
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.9
linkNameMismatch
OBJECT-TYPE
Signaling was received with the wrong Link Name. Either the Link Name is configured differently at each end of the wireless link, or this unit is aligned to the wrong link partner. NB: A change of value during operation may generate an SNMP trap and/or SMTP email alert
1.3.6.1.4.1.17713.8.9.3INTEGER {ok(0), linkNameMismatch(1)}read-onlycurrent
alignmentMode
OBJECT-TYPE
Indicates if the unit is undergoing alignment. NB: a change of state during operation may generate an SNMP trap and/or SMTP email alert
1.3.6.1.4.1.17713.8.9.4INTEGER {normal(0), aligning(1)}read-onlycurrent
tFTPServerIPAddress
OBJECT-TYPE
IP address of the TFTP Server from which the TFTP Software Upgrade File Name will be retrieved
1.3.6.1.4.1.17713.8.9.5IpAddressread-writecurrent
tFTPServerPortNumber
OBJECT-TYPE
The port number of the TFTP Server from which the TFTP Software Upgrade File Name will be retrieved
1.3.6.1.4.1.17713.8.9.6INTEGER (0..65535)read-writecurrent
tFTPSoftwareUpgradeFileName
OBJECT-TYPE
Filename of the Software Upgrade to be loaded from the TFTP Server
1.3.6.1.4.1.17713.8.9.7DisplayString (SIZE(0..127))read-writecurrent
tFTPStartSoftwareUpgrade
OBJECT-TYPE
Write '1' to this attribute to start the TFTP software upgrade process. The attribute will be reset to 0 when the upgrade process has finished
1.3.6.1.4.1.17713.8.9.8Integer32read-writecurrent
tFTPSoftwareUpgradeStatus
OBJECT-TYPE
The current status of the TFTP Software upgrade process
1.3.6.1.4.1.17713.8.9.9INTEGER {idle(0), uploadinprogress(1), uploadsuccessfulprogrammingFLASH(2), upgradesuccessfulreboottorunthenewsoftwareimage(3), upgradefailed(4)}read-onlycurrent
tFTPSoftwareUpgradeStatusText
OBJECT-TYPE
Descriptive text describing the status of the TFTP Software upgrade process, including any error details
1.3.6.1.4.1.17713.8.9.10DisplayString (SIZE(0..127))read-onlycurrent
tFTPSoftwareUpgradeStatusAdditionalText
OBJECT-TYPE
Any additional text describing the status of the TFTP Software upgrade process, including any error details
1.3.6.1.4.1.17713.8.9.11DisplayString (SIZE(0..127))read-onlycurrent
hTTPAccessEnabled
OBJECT-TYPE
This controls whether or not HTTP access is enabled, i.e. if this is disabled (0) then the unit will not respond to any requests on the HTTP port. Remote management via HTTPS is not affected by this setting. Any change in this setting will not take effect until the unit has been rebooted. (Factory default = Enabled)
1.3.6.1.4.1.17713.8.9.12INTEGER {no(0), yes(1)}read-writecurrent
telnetAccessEnabled
OBJECT-TYPE
This controls whether or not Telnet access is enabled, i.e. if this is disabled (0) then the unit will not respond to any requests on the TELNET port. Any change in this setting will not take effect until the unit has been rebooted. (Factory default = Disabled)
1.3.6.1.4.1.17713.8.9.13INTEGER {no(0), yes(1)}read-writecurrent
hTTPPortNumber
OBJECT-TYPE
This controls the port number for HTTP access. A value of zero will use the default port number. Any change in this setting will not take effect until the unit has been rebooted. (Factory default = 80)
1.3.6.1.4.1.17713.8.9.14INTEGER (0..65535)read-writecurrent
hTTPSPortNumber
OBJECT-TYPE
This controls the port number for HTTPS access. A value of zero will use the default port number. Availability of HTTPS is controlled via the Licence Key. Any change in this setting will not take effect until the unit has been rebooted. (Factory default = 443)
1.3.6.1.4.1.17713.8.9.15INTEGER (0..65535)read-writecurrent
telnetPortNumber
OBJECT-TYPE
This controls the port number for TELNET access. A value of zero will use the default port number. Any change in this setting will not take effect until the unit has been rebooted. (Factory default = 23)
1.3.6.1.4.1.17713.8.9.16INTEGER (0..65535)read-writecurrent
hTTPSAccessEnabled
OBJECT-TYPE
This controls whether or not HTTPS access is enabled, i.e. if this is disabled (0) then the unit will not respond to any requests on the configured HTTPS Port Number. Remote management via HTTP is not affected by this setting. Any change in this setting will not take effect until the unit has been rebooted. (Factory default = Enabled)
1.3.6.1.4.1.17713.8.9.17INTEGER {no(0), yes(1)}read-onlycurrent
tFTPServerInternetAddressType
OBJECT-TYPE
The type of Internet address specified by the associated tFTPServerInternetAddress.
1.3.6.1.4.1.17713.8.9.18INTEGER {unknown(0), ipv4(1), ipv6(2), ipv4z(3), ipv6z(4), unknown6(5), unknown7(6), unknown8(7), unknown9(8), unknown10(9), unknown11(10), unknown12(11), unknown13(12), unknown14(13), unknown15(14), unknown16(15), dns(16)}read-onlycurrent
tFTPServerInternetAddress
OBJECT-TYPE
INET address of the TFTP Server from which the TFTP Software Upgrade File Name will be retrieved
1.3.6.1.4.1.17713.8.9.19InetAddressread-writecurrent
phyControl
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.10
remoteMaximumTransmitPower
OBJECT-TYPE
Maximum transmit power the remote wireless unit is permitted to use when establishing and maintaining the wireless link, expressed in tenths of a dBm. Note that when an IRFU is connected rather than an ODU, the transmit power refers to the power at the transceiver output and not the IRFU antenna port. See the User Guide for more details
1.3.6.1.4.1.17713.8.10.4INTEGER (-1000..370)read-onlycurrent
minModulation
OBJECT-TYPE
When adaptive modulation is enabled, PTP 800 will adapt the modulation mode between a minimum and maximum modulation mode. Depending on the region, minimum and maximum modulation modes will be either derived from the radio license, e.g. FCC and Industry Canada, or will be user adjustable, e.g. ETSI.In general, a modulation mode is defined by two aspects, a modulation and a code rate. This integer attribute identifies the modulation aspect of the minimum modulation mode. For example, if the minimum modulation mode is 16QAM 0.91, this attribute will be set to a value of 2 which identifies a modulation of 16QAM.
1.3.6.1.4.1.17713.8.10.6INTEGER {modQPSK(0), mod8PSK(1), mod16QAM(2), mod32QAM(3), mod64QAM(4), mod128QAM(5), mod256QAM(6)}read-onlycurrent
minCodeRate
OBJECT-TYPE
When adaptive modulation is enabled, PTP 800 will adapt the modulation mode between a minimum and maximum modulation mode. Depending on the region, minimum and maximum modulation modes will be either derived from the radio license, e.g. FCC and Industry Canada, or will be user adjustable, e.g. ETSI. In general, a modulation mode is defined by two aspects, a modulation and a code rate. This attribute is equal to 100 times the code rate aspect of the minimum modulation mode. For example, if the minimum modulation mode is 16QAM 0.91, this attribute will be set to a value of 91.
1.3.6.1.4.1.17713.8.10.7INTEGER (0..100)read-onlycurrent
maxModulation
OBJECT-TYPE
When adaptive modulation is enabled, PTP 800 will adapt the modulation mode between a minimum and maximum modulation mode. Depending on the region, minimum and maximum modulation modes will be either derived from the radio license, e.g. FCC and Industry Canada, or will be user adjustable, e.g. ETSI. In general, a modulation mode is defined by two aspects, a modulation and a code rate. This integer attribute identifies the modulation aspect of the maximum modulation mode. For example, if the maximum modulation mode is 256QAM 0.91, this attribute will be set to a value of 6 which identifies a modulation of 256QAM.
1.3.6.1.4.1.17713.8.10.8INTEGER {modQPSK(0), mod8PSK(1), mod16QAM(2), mod32QAM(3), mod64QAM(4), mod128QAM(5), mod256QAM(6)}read-onlycurrent
maxCodeRate
OBJECT-TYPE
When adaptive modulation is enabled, PTP 800 will adapt the modulation mode between a minimum and maximum modulation mode. Depending on the region, minimum and maximum modulation modes will be either derived from the radio license, e.g. FCC and Industry Canada, or will be user adjustable, e.g. ETSI. In general, a modulation mode is defined by two aspects, a modulation and a code rate. This attribute is equal to 100 times the code rate aspect of the maximum modulation mode. For example, if the maximum modulation mode is 256QAM 0.91, this attribute will be set to a value of 91.
1.3.6.1.4.1.17713.8.10.9INTEGER (0..100)read-onlycurrent
phyStatus
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.12
receivePower
OBJECT-TYPE
This is the receive power measured by the RFU. When an IRFU transceiver is connected rather than an ODU, the Receive Power refers to the power at the input to the transceiver and not the IRFU antenna port. Expressed in tenths of a dBm.
1.3.6.1.4.1.17713.8.12.1Integer32read-onlycurrent
vectorError
OBJECT-TYPE
Vector Error is a measure of received signal quality. The value is generally in the range from -6 dB to -38 dB, a more negative number indicating a higher quality signal. Expressed in tenths of a dB.
1.3.6.1.4.1.17713.8.12.2Integer32read-onlycurrent
transmitPower
OBJECT-TYPE
This is the transmit power of the RFU. When an IRFU transceiver is connected rather than an ODU, the Transmit Power refers to the power at the transceiver output and not the IRFU antenna port. Expressed in tenths of a dBm.
1.3.6.1.4.1.17713.8.12.3Integer32read-onlycurrent
linkLoss
OBJECT-TYPE
Link Loss is a measurement of the loss in signal level as the radio wave propagates between the antennas installed at each end of the link. The Link Loss is only accurate if the Antenna Gain and RF Feeder Loss have been configured correctly at both ends of the link. Expressed in tenths of a dB.
1.3.6.1.4.1.17713.8.12.5INTEGER (-500..1800)read-onlycurrent
receiveModulation
OBJECT-TYPE
Current active receive modulation
1.3.6.1.4.1.17713.8.12.8INTEGER {modQPSK(0), mod8PSK(1), mod16QAM(2), mod32QAM(3), mod64QAM(4), mod128QAM(5), mod256QAM(6)}read-onlycurrent
transmitModulation
OBJECT-TYPE
Current active transmit modulation
1.3.6.1.4.1.17713.8.12.9INTEGER {modQPSK(0), mod8PSK(1), mod16QAM(2), mod32QAM(3), mod64QAM(4), mod128QAM(5), mod256QAM(6)}read-onlycurrent
receiveCodeRate
OBJECT-TYPE
Indicates the code rate applied to the signal being received at the wireless interface. The reported value is the code rate multiplied by 100.
1.3.6.1.4.1.17713.8.12.16Integer32read-onlycurrent
transmitCodeRate
OBJECT-TYPE
Indicates the code rate applied to the signal transmitted at the wireless interface. The reported value is the code rate multiplied by 100.
1.3.6.1.4.1.17713.8.12.17Integer32read-onlycurrent
alarms
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.13
unitOutOfCalibration
OBJECT-TYPE
The unit is out of calibration
1.3.6.1.4.1.17713.8.13.1INTEGER {calibrated(0), partialCalibration(1), invalidCalibration(2), bandwidthvariantunsupportedPAsShutdown(3), outOfCalibrationPAsShutdown(4)}read-onlycurrent
encryptionEnabledMismatch
OBJECT-TYPE
Encryption has been enabled on one end of the wireless link but not the other
1.3.6.1.4.1.17713.8.13.3INTEGER {ok(0), encryptionEnabledMismatch(1)}read-onlycurrent
dataPortDisabledWarning
OBJECT-TYPE
The SNMP ifAdminStatus of the data Ethernet interface has disabled Ethernet traffic
1.3.6.1.4.1.17713.8.13.7INTEGER {ok(0), disabledBySNMPifAdminStatus(1)}read-onlycurrent
dataPortFiberStatus
OBJECT-TYPE
If the fiber interface on the data Ethernet port is not OK, there are three possible causes: 1) the fiber interface has been installed but disabled, 2) the interface could not be established even though no LOS was detected (i.e. an optical carrier was detected, which could be due to a broken TX fiber, or because the interface is disabled at the other end of the fiber link), or 3) the interface could not be established and LOS is detected (i.e. no optical carrier is detected). NB: a change of status may generate an SNMP trap and/or SMTP email alert
1.3.6.1.4.1.17713.8.13.8INTEGER {ok(0), installedFiberNotLicensed(1), noFiberLinkEstablishedButLOSNotDetected(2), noFiberLinkEstablishedAndLOSDetected(3)}read-onlycurrent
dataPortConfigurationMismatch
OBJECT-TYPE
The detection of Ethernet fragments (runt packets) on the data Ethernet port when the link is in full duplex is an indication of an auto-negotiation or forced configuration mismatch
1.3.6.1.4.1.17713.8.13.9INTEGER {noError(0), mismatchDetected(1)}read-onlycurrent
softwareVersionRemoteCompatibility
OBJECT-TYPE
Indicates a mismatch of software versions at the two ends of the wireless link
1.3.6.1.4.1.17713.8.13.10INTEGER {ok(0), mismatch(1)}read-onlycurrent
managementPortDisabledWarning
OBJECT-TYPE
The SNMP ifAdminStatus of the out-of-band management Ethernet interface has disabled Ethernet traffic
1.3.6.1.4.1.17713.8.13.12INTEGER {ok(0), disabledBySNMPifAdminStatus(1)}read-onlycurrent
rFUStatus
OBJECT-TYPE
Current status of the RFU. A state of 'ok' indicates that the RFU is fully operational, although may not be transmitting.
1.3.6.1.4.1.17713.8.13.16INTEGER {ok(0), fault(1), unknown3(2), inReset(3), downloadInProgress(4), incompatibleFirmwareVersion(5), incompatibleDevice(6), iFICardAttached(7), noResponse(8), powerSupplyFault(9), powerSupplyDisabled(10), switchingmemorybanks(11)}read-onlycurrent
managementPortConfigurationMismatch
OBJECT-TYPE
The detection of Ethernet fragments (runt packets) on the out-of-band management Ethernet port when the link is in full duplex is an indication of an auto-negotiation or forced configuration mismatch
1.3.6.1.4.1.17713.8.13.17INTEGER {noError(0), mismatchDetected(1)}read-onlycurrent
secureModeAlarm
OBJECT-TYPE
The secure mode (e.g. FIPS, UC-APL) state of the unit. The secure mode is not configured(1) state indicates that the unit is capable of secure mode operation, and one or more of the following security materials has not been configured: Key Of Keys, Private Key, Public Certificate, DRNG Entropy Status, Wireless Encryption Key. The secure mode mode is configured but not active(2) state indicates that the unit is capable of secure mode operation, and the security material has been configured, but the configuration of interfaces is not consistent with secure mode operation. The secure mode is not supported(3) state indicates that the unit is not capable of secure mode operation. The secure mode capability requires appropriate hardware compatibility, license key and software image.
1.3.6.1.4.1.17713.8.13.18INTEGER {secureModeIsActive(0), secureModeIsNotConfigured(1), secureModeIsConfiguredButNotActive(2), secureModeIsNotSupported(3)}read-onlycurrent
rFUPlatformCompatibility
OBJECT-TYPE
This indicates when the RFU currently connected to the CMU does not match the RFU Platform which was installed. Either re-run the Installation Wizard or connect the correct RFU
1.3.6.1.4.1.17713.8.13.19INTEGER {ok(0), mismatch(1)}read-onlycurrent
rFUProtectionCompatibility
OBJECT-TYPE
This indicates when the IRFU branching unit configuration is not compatible with the protection configuration or if the left hand transceiver has been configured as Secondary or the right hand transceiver has been configured as Primary
1.3.6.1.4.1.17713.8.13.20INTEGER {ok(0), mismatch(1)}read-onlycurrent
smtp
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.15
sMTPEmailAlert
OBJECT-TYPE
Simple Mail Transfer Protocol is used to send equipment alerts via email to a specified email address. This utility can only be configured by the system administrator
1.3.6.1.4.1.17713.8.15.1INTEGER {disabled(0), enabled(1)}read-writecurrent
sMTPServerIPAddress
OBJECT-TYPE
IP address of the SMTP server
1.3.6.1.4.1.17713.8.15.2IpAddressread-writecurrent
sMTPServerPortNumber
OBJECT-TYPE
Port number of the SMTP server
1.3.6.1.4.1.17713.8.15.3INTEGER (0..65535)read-writecurrent
sMTPSourceEmailAddress
OBJECT-TYPE
The 'from' email address used when constructing the automatically generated e-mail message
1.3.6.1.4.1.17713.8.15.4DisplayString (SIZE(0..63))read-writecurrent
sMTPDestinationEmailAddress
OBJECT-TYPE
The 'to' email address used when constructing the automatically generated e-mail message
1.3.6.1.4.1.17713.8.15.5DisplayString (SIZE(0..63))read-writecurrent
sMTPEnabledMessages
OBJECT-TYPE
This controls which SMTP messages the unit will send
1.3.6.1.4.1.17713.8.15.6Bits {protectionState(3), enabledDiagnosticAlarms(4), managementPortUpDown(5), dataPortUpDown(6), wirelessLinkUpDown(7)}read-writecurrent
sMTPServerInternetAddressType
OBJECT-TYPE
The type of Internet address specified by the associated sMTPServerInternetAddress.
1.3.6.1.4.1.17713.8.15.7INTEGER {unknown(0), ipv4(1), ipv6(2), ipv4z(3), ipv6z(4), unknown6(5), unknown7(6), unknown8(7), unknown9(8), unknown10(9), unknown11(10), unknown12(11), unknown13(12), unknown14(13), unknown15(14), unknown16(15), dns(16)}read-onlycurrent
sMTPServerInternetAddress
OBJECT-TYPE
Internet address of the SMTP server
1.3.6.1.4.1.17713.8.15.8InetAddressread-writecurrent
snmpControl
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.16
sNMPPortNumber
OBJECT-TYPE
The IP port number used to access the SNMP MIB (i.e. Gets and Sets). NB: A system reboot is required to activate changes to this attribute
1.3.6.1.4.1.17713.8.16.1INTEGER (0..65535)read-writecurrent
sNMPCommunityString
OBJECT-TYPE
The SNMP community string. NB: A system reboot is required to activate changes to this attribute
1.3.6.1.4.1.17713.8.16.2DisplayString (SIZE(0..63))read-writecurrent
sNMPTrapVersion
OBJECT-TYPE
The SNMP protocol version to use for SNMP Traps.
1.3.6.1.4.1.17713.8.16.5INTEGER {v1(0), v2c(1)}read-writecurrent
sNMPEnabledTraps
OBJECT-TYPE
This controls which SNMP Traps the unit will send
1.3.6.1.4.1.17713.8.16.6Bits {protectionState(1), authenticationFailure(2), enabledDiagnosticAlarms(3), managementPortUpDown(4), dataPortUpDown(5), wirelessLinkUpDown(6), coldStart(7)}read-writecurrent
enabledDiagnosticAlarms
OBJECT-TYPE
Controls which individual diagnostic alarms are enabled.
1.3.6.1.4.1.17713.8.16.7Bits {dataPortConfigurationMismatch(0), unknown7(1), wirelessLinkStatus(2), sNTPSync(3), encryptionEnabledMismatch(4), unitOutOfCalibration(5), linkNameMismatch(6), alignmentMode(7), syslogDisabledWarning(8), managementPortStatus(9), dataPortStatus(10), rFUStatus(11), managementPortDisabledWarning(12), managementPortConfigurationMismatch(13), dataPortFiberStatus(14), dataPortDisabledWarning(15), softwareVersionMismatch(18), syslogClientDisabledWarning(19), rFUPowerButtonPressed(20), secureMode(21), syslogLocalWrapped(22), syslogLocalNearlyFull(23)}read-writecurrent
enabledDiagnosticProtectionAlarms
OBJECT-TYPE
Controls which individual diagnostic protection alarms are enabled.
1.3.6.1.4.1.17713.8.16.8Bits {endWirelessReceiveSignalStatus(0), protectionInterfaceStatus(1), managementPortEthernetSpeedStatus(2), dataPortEthernetSpeedStatus(3), licensedTransmitCapacityStatus(4), wirelessReceiveSignalStatus(5), protectionConfigurationStatus(6), protectionAvailabilityStatus(7), rxDiversityAvailabilityStatus(13), rxDiversityConfigurationStatus(14), rxDiversityDataPortStatus(15)}read-writecurrent
sNMPTrapTableNumber
OBJECT-TYPE
Number of entries in the sNMPTrapTable.
1.3.6.1.4.1.17713.8.16.9INTEGER (2)read-onlycurrent
sNMPTrapTable
OBJECT-TYPE
SNMP trap configuration table.
1.3.6.1.4.1.17713.8.16.10not-accessiblecurrent
sNMPTrapTableEntry
OBJECT-TYPE
Table SNMPTrapTable
1.3.6.1.4.1.17713.8.16.10.1not-accessiblecurrent
sNMPTrapTableIndex
OBJECT-TYPE
SNMP trap value, used to index the SNMPTrapTable.
1.3.6.1.4.1.17713.8.16.10.1.1INTEGER (1..2)not-accessiblecurrent
sNMPTrapIPAddress
OBJECT-TYPE
The IP address to which all SNMP Traps are sent. NB: A system reboot is required to activate changes to this attribute.
1.3.6.1.4.1.17713.8.16.10.1.2IpAddressread-writecurrent
sNMPTrapPortNumber
OBJECT-TYPE
Destination port for SNMP Traps (default=162). NB: A system reboot is required to activate changes to this attribute.
1.3.6.1.4.1.17713.8.16.10.1.3INTEGER (0..65535)read-writecurrent
sNMPTrapInternetAddressType
OBJECT-TYPE
The type of Internet address specified by the associated sNMPTrapInternetAddress.
1.3.6.1.4.1.17713.8.16.10.1.4INTEGER {unknown(0), ipv4(1), ipv6(2), ipv4z(3), ipv6z(4), unknown6(5), unknown7(6), unknown8(7), unknown9(8), unknown10(9), unknown11(10), unknown12(11), unknown13(12), unknown14(13), unknown15(14), unknown16(15), dns(16)}read-onlycurrent
sNMPTrapInternetAddress
OBJECT-TYPE
The Internet address to which all SNMP Traps are sent.
1.3.6.1.4.1.17713.8.16.10.1.5InetAddressread-writecurrent
sNMPTrapReceiverEnabled
OBJECT-TYPE
A value of 0 disables the sending of SNMP trap to corresponding receiver. A value of 1 enables the sending of SNMP trap to corresponding receiver.
1.3.6.1.4.1.17713.8.16.10.1.6INTEGER {disabled(0), enabled(1)}read-onlycurrent
sntp
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.17
sNTPState
OBJECT-TYPE
SNTP control state
1.3.6.1.4.1.17713.8.17.1INTEGER {disabled(0), enabled(1)}read-writecurrent
sNTPPollInterval
OBJECT-TYPE
The SNTP server polling interval
1.3.6.1.4.1.17713.8.17.4INTEGER (60..43200)read-writecurrent
sNTPSync
OBJECT-TYPE
If SNTP Sync fails then check the server settings in the Remote Management page, or disable SNTP. NB: a change of state may generate an SNMP trap and/or SMTP email alert
1.3.6.1.4.1.17713.8.17.5INTEGER {noSync(0), inSync(1)}read-onlycurrent
sNTPLastSync
OBJECT-TYPE
Last SNTP sync time
1.3.6.1.4.1.17713.8.17.6Integer32read-onlycurrent
systemClock
OBJECT-TYPE
System clock presented as local time
1.3.6.1.4.1.17713.8.17.7Integer32read-onlycurrent
timeZone
OBJECT-TYPE
Time zone offsets from Greenwich Mean Time (GMT)
1.3.6.1.4.1.17713.8.17.8INTEGER {gmtMinus1200(0), gmtMinus1130(1), gmtMinus1100(2), gmtMinus1030(3), gmtMinus1000(4), gmtMinus0930(5), gmtMinus0900(6), gmtMinus0830(7), gmtMinus0800(8), gmtMinus0730(9), gmtMinus0700(10), gmtMinus0630(11), gmtMinus0600(12), gmtMinus0530(13), gmtMinus0500(14), gmtMinus0430(15), gmtMinus0400(16), gmtMinus0330(17), gmtMinus0300(18), gmtMinus0230(19), gmtMinus0200(20), gmtMinus0130(21), gmtMinus0100(22), gmtMinus0030(23), gmtZero(24), gmtPlus0030(25), gmtPlus0100(26), gmtPlus0130(27), gmtPlus0200(28), gmtPlus0230(29), gmtPlus0300(30), gmtPlus0330(31), gmtPlus0400(32), gmtPlus0430(33), gmtPlus0500(34), gmtPlus0530(35), gmtPlus0600(36), gmtPlus0630(37), gmtPlus0700(38), gmtPlus0730(39), gmtPlus0800(40), gmtPlus0830(41), gmtPlus0900(42), gmtPlus0930(43), gmtPlus1000(44), gmtPlus1030(45), gmtPlus1100(46), gmtPlus1130(47), gmtPlus1200(48), gmtPlus1230(49), gmtPlus1300(50)}read-writecurrent
daylightSaving
OBJECT-TYPE
Daylight Saving Time
1.3.6.1.4.1.17713.8.17.9INTEGER {disabled(0), enabled(1)}read-writecurrent
sNTPPrimaryServer
OBJECT-TYPE
Specifies the primary SNTP server, determining the order in which the servers are tried.
1.3.6.1.4.1.17713.8.17.10INTEGER {server1(0), server2(1)}read-writecurrent
sNTPPrimaryServerDeadTime
OBJECT-TYPE
Time (in seconds) to wait before retrying communications with an unresponsive primary SNTP server. Setting the value to 0 disables the timer.
1.3.6.1.4.1.17713.8.17.11INTEGER (0..86400)read-writecurrent
sNTPServerRetries
OBJECT-TYPE
Number of times the PTP will retry after an SNTP server fails to respond.
1.3.6.1.4.1.17713.8.17.12INTEGER (0..10)read-writecurrent
sNTPServerTimeout
OBJECT-TYPE
Time (in seconds) the PTP will wait for a response from an SNTP server.
1.3.6.1.4.1.17713.8.17.13INTEGER (1..15)read-writecurrent
sNTPServerTableNumber
OBJECT-TYPE
Number of entries in the SNTPServerTable.
1.3.6.1.4.1.17713.8.17.14INTEGER (2)read-onlycurrent
sNTPServerTable
OBJECT-TYPE
1.3.6.1.4.1.17713.8.17.15not-accessiblecurrent
sNTPServerTableEntry
OBJECT-TYPE
Table SNTPServerTable
1.3.6.1.4.1.17713.8.17.15.1not-accessiblecurrent
sNTPServerTableIndex
OBJECT-TYPE
Index range for the SNTPServerTable.
1.3.6.1.4.1.17713.8.17.15.1.1INTEGER (1..2)not-accessiblecurrent
sNTPServerIPAddress
OBJECT-TYPE
The IP address of a valid SNTP server
1.3.6.1.4.1.17713.8.17.15.1.2IpAddressread-writecurrent
sNTPServerPortNumber
OBJECT-TYPE
The IP port number of the SNTP server. Defaults to port 123.
1.3.6.1.4.1.17713.8.17.15.1.3INTEGER (0..65535)read-writecurrent
sNTPServerResponse
OBJECT-TYPE
The most recent response received from the SNTP server, if used
1.3.6.1.4.1.17713.8.17.15.1.4DisplayString (SIZE(0..127))read-onlycurrent
sNTPServerInternetAddressType
OBJECT-TYPE
The type of Internet address specified by the associated sNTPServerInternetAddress.
1.3.6.1.4.1.17713.8.17.15.1.5INTEGER {unknown(0), ipv4(1), ipv6(2), ipv4z(3), ipv6z(4), unknown6(5), unknown7(6), unknown8(7), unknown9(8), unknown10(9), unknown11(10), unknown12(11), unknown13(12), unknown14(13), unknown15(14), unknown16(15), dns(16)}read-onlycurrent
sNTPServerInternetAddress
OBJECT-TYPE
The Internet address of a valid SNTP server
1.3.6.1.4.1.17713.8.17.15.1.6InetAddressread-writecurrent
reset
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.18
systemReset
OBJECT-TYPE
Setting this attribute to '1' will cause a system reboot. NB: a system reboot will apply any pending new settings held in memory
1.3.6.1.4.1.17713.8.18.1INTEGER {running(0), consoleReboot(1)}read-writecurrent
versions
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.19
softwareVersion
OBJECT-TYPE
Current software version
1.3.6.1.4.1.17713.8.19.1DisplayString (SIZE(0..63))read-onlycurrent
hardwareVersion
OBJECT-TYPE
Hardware platform version
1.3.6.1.4.1.17713.8.19.2DisplayString (SIZE(0..63))read-onlycurrent
secondarySoftwareVersion
OBJECT-TYPE
Secondary software version, used when the primary software image is invalid or erased
1.3.6.1.4.1.17713.8.19.3DisplayString (SIZE(0..63))read-onlycurrent
bootVersion
OBJECT-TYPE
Boot code software version
1.3.6.1.4.1.17713.8.19.4DisplayString (SIZE(0..63))read-onlycurrent
pubStats
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.20
receiveDataRate
OBJECT-TYPE
Data rate received by the wireless interface. Expressed in kbps, rounded down to nearest 100 kbps.
1.3.6.1.4.1.17713.8.20.1Integer32read-onlycurrent
transmitDataRate
OBJECT-TYPE
Data rate transmitted from the wireless interface. Expressed in kbps, rounded down to nearest 100 kbps.
1.3.6.1.4.1.17713.8.20.2Integer32read-onlycurrent
aggregateDataRate
OBJECT-TYPE
Total data rate across the wireless interface summed over both link directions. Expressed in kbps, rounded down to nearest 100 kbps.
1.3.6.1.4.1.17713.8.20.3Integer32read-onlycurrent
wirelessLinkAvailability
OBJECT-TYPE
The percentage of time that the unit has been able to successfully demodulate the signal transmitted from the remote end of the link. Calculated since the last reset of the system counters. The reported value is the percentage multiplied by 10000.
1.3.6.1.4.1.17713.8.20.4INTEGER (0..1000000)read-onlycurrent
wirelessLinkStatus
OBJECT-TYPE
Current status of the wireless link
1.3.6.1.4.1.17713.8.20.5INTEGER {up(0), registering(1), searching(2), acquiring(3), radarCAC(4), initialising(5)}read-onlycurrent
byteErrorRatio
OBJECT-TYPE
The byte error ratio calculated since the last reset of the system counters. The reported value is the ratio multiplied by 10 to the power of 12.
1.3.6.1.4.1.17713.8.20.6Counter64read-onlycurrent
codeWordErrorRatio
OBJECT-TYPE
The wireless link sends data in error correctable blocks called code words. This attribute reports the ratio of uncorrected code words to the total number of code words received since the last reset of the system counters. The reported value is the ratio multiplied by 10 to the power of 12.
1.3.6.1.4.1.17713.8.20.8Counter64read-onlycurrent
encryption
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.22
encryptionAlgorithm
OBJECT-TYPE
The Encryption Algorithm used by the wireless link. NB: A system reboot is required to activate changes to this attribute. NB: The same Encryption Algorithm must be configured at BOTH ends of the link for it to function correctly
1.3.6.1.4.1.17713.8.22.1INTEGER {none(0), aESRijndael(1), aES256bitRijndael(2)}read-onlycurrent
rfu
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.23
rFURfBand
OBJECT-TYPE
RFU RF band in MHz
1.3.6.1.4.1.17713.8.23.1INTEGER (4000..70000)read-onlycurrent
rFUTxBandAboveRx
OBJECT-TYPE
Yes means RFU transmitter frequency band is above receiver frequency band
1.3.6.1.4.1.17713.8.23.2INTEGER {no(0), yes(1)}read-onlycurrent
rFUFreqSpacing
OBJECT-TYPE
Tx-Rx frequency spacing in kHz
1.3.6.1.4.1.17713.8.23.3INTEGER (0..1560000)read-onlycurrent
rFUTxPowerMin
OBJECT-TYPE
Minimum transmitter power level, in 10ths of dBm
1.3.6.1.4.1.17713.8.23.4INTEGER (-100..100)read-onlycurrent
rFUTxPowerMax
OBJECT-TYPE
Maximum transmitter power level, in 10ths of dBm
1.3.6.1.4.1.17713.8.23.5INTEGER (160..370)read-onlycurrent
rFURxFreqMin
OBJECT-TYPE
Minimum receiver frequency in kHz
1.3.6.1.4.1.17713.8.23.6INTEGER (5725000..70000000)read-onlycurrent
rFURxFreqMax
OBJECT-TYPE
Maximum receiver frequency in kHz
1.3.6.1.4.1.17713.8.23.7INTEGER (5725000..70000000)read-onlycurrent
rFUTxFreqMin
OBJECT-TYPE
Minimum transmitter frequency in kHz
1.3.6.1.4.1.17713.8.23.8INTEGER (5725000..70000000)read-onlycurrent
rFUTxFreqMax
OBJECT-TYPE
Maximum transmitter frequency in kHz
1.3.6.1.4.1.17713.8.23.9INTEGER (5725000..70000000)read-onlycurrent
rFUSerial
OBJECT-TYPE
RFU serial number
1.3.6.1.4.1.17713.8.23.10DisplayString (SIZE(0..11))read-onlycurrent
rFUActiveFirmwareBank
OBJECT-TYPE
RFU active firmware bank number
1.3.6.1.4.1.17713.8.23.11INTEGER (1..2)read-onlycurrent
rFUVersionBank1
OBJECT-TYPE
RFU firmware version number (nnn/ddMMYY) in bank 1
1.3.6.1.4.1.17713.8.23.12DisplayString (SIZE(0..11))read-onlycurrent
rFUVersionBank2
OBJECT-TYPE
RFU firmware version number (nnn/ddMMYY) in bank 2
1.3.6.1.4.1.17713.8.23.13DisplayString (SIZE(0..11))read-onlycurrent
rFUType
OBJECT-TYPE
RFU type as: RFU platform, frequency band, Tx-Rx frequency spacing, Hi/Lo band and transmit frequency range
1.3.6.1.4.1.17713.8.23.14DisplayString (SIZE(0..79))read-onlycurrent
rFURxRFSynthLockAlarm
OBJECT-TYPE
RFU RF receiver out of lock alarm
1.3.6.1.4.1.17713.8.23.15INTEGER {ok(0), outOfLock(1)}read-onlycurrent
rFUTxRFSynthLockAlarm
OBJECT-TYPE
RFU RF transmitter out of lock alarm
1.3.6.1.4.1.17713.8.23.16INTEGER {ok(0), outOfLock(1)}read-onlycurrent
rFUTxPowerAlarm
OBJECT-TYPE
RFU transmitter output failed alarm
1.3.6.1.4.1.17713.8.23.17INTEGER {ok(0), txOutputFailed(1)}read-onlycurrent
rFUCommonIFSynthLockAlarm
OBJECT-TYPE
Alarm indicating when the common IF RFU synthesizer is out of lock
1.3.6.1.4.1.17713.8.23.18INTEGER {ok(0), outOfLock(1)}read-onlycurrent
rFUPowerAlarm
OBJECT-TYPE
RFU general power alarm
1.3.6.1.4.1.17713.8.23.19INTEGER {ok(0), powerFailed(1)}read-onlycurrent
rFULockoutAlarm
OBJECT-TYPE
RFU locked pending unlock code alarm
1.3.6.1.4.1.17713.8.23.20INTEGER {ok(0), lockedOut(1)}read-onlycurrent
rFUCableAlarm
OBJECT-TYPE
RFU cable detector voltage out of range alarm
1.3.6.1.4.1.17713.8.23.21INTEGER {ok(0), iFCableVoltageOutOfRange(1)}read-onlycurrent
rFUCableAttenuationAdjustAlarm
OBJECT-TYPE
RFU cable attenuator not yet adjusted alarm
1.3.6.1.4.1.17713.8.23.22INTEGER {ok(0), iFCableAttenuatorAdjusting(1)}read-onlycurrent
rFUTxPowerDegradedAlarm
OBJECT-TYPE
Indicates when the current transmit power is more than 3 dB below or more than 3 dB above the correct transmit power.
1.3.6.1.4.1.17713.8.23.23INTEGER {ok(0), degraded(1)}read-onlycurrent
rFURpsAlarm
OBJECT-TYPE
RFU radio protection switch (RPS) alarm
1.3.6.1.4.1.17713.8.23.24INTEGER {ok(0), rPSAlarmActive(1)}read-onlycurrent
rFUTxMuteStatus
OBJECT-TYPE
Indicates whether the RFU is transmitting or muted. If it is muted, it will also indicate the reason.
1.3.6.1.4.1.17713.8.23.25INTEGER {transmitting(0), mutedByUser(1), mutedDueToConfigurationError(2), mutedDueToRFUFault(3), mutedDueToRFUConfiguring(4), mutedDueToRFUIncompatiblewithCMU(5), mutedDueToInactive(6)}read-onlycurrent
rFUFanAssemblyAlarm
OBJECT-TYPE
This indicates when the IRFU transceiver fan assembly has failed. The assembly consists of two fans and if one fan fails, the this will report partial failure. If both fans fail, this will report total failure
1.3.6.1.4.1.17713.8.23.26INTEGER {ok(0), partialFanFailure(1), totalFanFailure(2)}read-onlycurrent
rFUHighTemperatureAlarm
OBJECT-TYPE
Indicates when the temperature of the IRFU transceiver has risen above either of two thresholds. If the temperature exceeds the High Temperature threshold, the transmit power may reduce. If the temperature exceeds the Very High Temperature threshold, the transceiver will mute the transmitter
1.3.6.1.4.1.17713.8.23.27INTEGER {ok(0), highTemperature(1), veryHighTemperature(2)}read-onlycurrent
rFURFSwitchAlarm
OBJECT-TYPE
This indicates that an RF switch is not present when it should be or that on the most recent attempt to make this unit active, the IRFU RF Switch was not able to switch to the correct position
1.3.6.1.4.1.17713.8.23.28INTEGER {ok(0), fault(1)}read-onlycurrent
rFURxIFSynthLockAlarm
OBJECT-TYPE
RFU IF receiver out of lock alarm
1.3.6.1.4.1.17713.8.23.29INTEGER {ok(0), outOfLock(1)}read-onlycurrent
rFUTxIFSynthLockAlarm
OBJECT-TYPE
RFU IF transmitter out of lock alarm
1.3.6.1.4.1.17713.8.23.30INTEGER {ok(0), outOfLock(1)}read-onlycurrent
rFUPowerButtonPressed
OBJECT-TYPE
IRFU power button have been pressed, IFRU has powered down unexpectedly
1.3.6.1.4.1.17713.8.23.31INTEGER {ok(0), iRFUPowerButtonwaspressed(1)}read-onlycurrent
rFUConnectedPlatform
OBJECT-TYPE
The type of RFU platform currently connected to the CMU
1.3.6.1.4.1.17713.8.23.32INTEGER {unknown(0), oDUA(1), oDUB(2), iRFUHP(3)}read-onlycurrent
rFUCommonRFSynthLockAlarm
OBJECT-TYPE
Alarm indicating when the common RFU RF synthesizer is out of lock
1.3.6.1.4.1.17713.8.23.33INTEGER {ok(0), outOfLock(1)}read-onlycurrent
rFUBranchingConfiguration
OBJECT-TYPE
When an IRFU is being installed, the configuration of the IRFU branching unit must be configured. Please see the User Guide for further details
1.3.6.1.4.1.17713.8.23.34INTEGER {rFU1plus0(0), rFU1plus0MHSBReadyEqual(1), rFU1plus0MHSBReadyUnequal(2), rFU1plus1MHSBEqual(3), rFU1plus1MHSBUnequal(4), rFU1plus1TxMHSBRxSD(5), rFU2plus0(6)}read-writecurrent
rFUTransceiverLocation
OBJECT-TYPE
When a 2+0 IRFU is being installed, the user must configure which of the two IRFU transceivers the CMU is controlling in order to ensure correct operation
1.3.6.1.4.1.17713.8.23.35INTEGER {leftTRxA(0), rightTRxB(1)}read-writecurrent
rFURfSwitchCableAlarm
OBJECT-TYPE
The RF switch in the IRFU is indicating an invalid switch position. The most likely cause is a fault or a disconnection of the cable which connects the transceiver to the RF switch
1.3.6.1.4.1.17713.8.23.36INTEGER {ok(0), fault(1)}read-onlycurrent
rFUReceiveBranchingUnitLoss
OBJECT-TYPE
The receive loss in the IRFU branching unit, expressed in tenths of a dB. The branching unit is a component of the IRFU which is situated between the IRFU transceiver and IRFU antenna port. It provides the necessary filtering, isolation and coupling.
1.3.6.1.4.1.17713.8.23.37Integer32read-onlycurrent
rFUTransmitBranchingUnitLoss
OBJECT-TYPE
The transmit loss in the IRFU branching unit, expressed in tenths of a dB. The branching unit is a component of the IRFU which is situated between the IRFU transceiver and IRFU antenna port. It provides the necessary filtering, isolation and coupling.
1.3.6.1.4.1.17713.8.23.38Integer32read-onlycurrent
radioLicense
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.24
radioLicenseIdentifier
OBJECT-TYPE
Radio license identifier
1.3.6.1.4.1.17713.8.24.1DisplayString (SIZE(0..63))read-onlycurrent
radioLicenseBand
OBJECT-TYPE
Radio license band
1.3.6.1.4.1.17713.8.24.2INTEGER {bandLower6GHz(0), band7GHz(1), band8GHz(2), band11GHz(3), band13GHz(4), band15GHz(5), band18GHz(6), band23GHz(7), band26GHz(8), band32GHz(9), band38GHz(10), bandUpper6GHz(11), band28GHz(12), band42GHz(13), bandUnsupported(14)}read-onlycurrent
radioLicenseRegion
OBJECT-TYPE
Radio license region
1.3.6.1.4.1.17713.8.24.3INTEGER {eTSI(0), fCC(1), canada(2), brazil(3), nTIA(4)}read-onlycurrent
radioLicenseTxFreq
OBJECT-TYPE
Radio license transmit frequency in kHz
1.3.6.1.4.1.17713.8.24.4INTEGER (5925000..70000000)read-onlycurrent
radioLicenseRxFreq
OBJECT-TYPE
Radio license receive frequency in kHz
1.3.6.1.4.1.17713.8.24.5INTEGER (5925000..70000000)read-onlycurrent
radioLicenseBandwidth
OBJECT-TYPE
Radio license bandwidth
1.3.6.1.4.1.17713.8.24.6INTEGER {bw7MHz(0), bw10MHz(1), bw1375MHz(2), bw14MHz(3), bw20MHz(4), bw275MHz(5), bw28MHz(6), bw30MHz(7), bw40MHz(8), bw50MHz(9), bw55MHz(10), bw56MHz(11), bw80MHz(12), bw25MHz(13), bw60MHz(14)}read-onlycurrent
radioLicenseMaxEIRP
OBJECT-TYPE
Maximum Effective Isotropic Radiated Power (EIRP) permitted by the license. Expressed in 10ths of dBm
1.3.6.1.4.1.17713.8.24.7INTEGER (-300..1000)read-onlycurrent
radioLicenseModulation
OBJECT-TYPE
Radio license modulation
1.3.6.1.4.1.17713.8.24.8INTEGER {modQPSK(0), mod8PSK(1), mod16QAM(2), mod32QAM(3), mod64QAM(4), mod128QAM(5), mod256QAM(6)}read-onlycurrent
radioLicenseCodeRate
OBJECT-TYPE
Radio license code rate, multiplied by 100 to give two decimal places of precision
1.3.6.1.4.1.17713.8.24.9INTEGER (0..100)read-onlycurrent
radioLicenseIncompatibleAlarm
OBJECT-TYPE
Indicates if the radio license is incompatible with the attached RFU. Re-run Installation to correct the issue
1.3.6.1.4.1.17713.8.24.10INTEGER {ok(0), radioLicenseIncompatiblewithRFU(1)}read-onlycurrent
radioLicenseMinModulation
OBJECT-TYPE
Certain licensing authorities, for example FCC and Industry Canada, require adaptive modulation to be bound by a minimum and maximum modulation mode as defined by the radio license. This attribute is only of significance in such regions and when adaptive modulation is enabled. For other regions, for example ETSI, minimum and maximum modulation mode are directly adjustable by the user and are not defined by the radio license. In general, a modulation mode is defined by two aspects, a modulation and a code rate. This integer attribute identifies the modulation aspect of the RadioLicenseMinModMode attribute required by the radio license. For example, if RadioLicenseMinModMode is configured for 16QAM 0.79, this attribute will be set to a value of 2 which identifies a modulation of 16QAM.
1.3.6.1.4.1.17713.8.24.11INTEGER {modQPSK(0), mod8PSK(1), mod16QAM(2), mod32QAM(3), mod64QAM(4), mod128QAM(5), mod256QAM(6)}read-onlycurrent
radioLicenseMinCodeRate
OBJECT-TYPE
Certain licensing authorities, for example FCC and Industry Canada, require adaptive modulation to be bound by a minimum and maximum modulation mode as defined by the radio license. This attribute is only of significance in such regions and when adaptive modulation is enabled. For other regions, for example ETSI, minimum and maximum modulation mode are directly adjustable by the user and are not defined by the radio license. In general, a modulation mode is defined by two aspects, a modulation and a code rate. This attribute is equal to 100 times the code rate aspect of the RadioLicenseMinModMode attribute required by the radio license. For example, if RadioLicenseMinModMode is configured for QPSK 0.80, this attribute will read 80.
1.3.6.1.4.1.17713.8.24.12INTEGER (0..100)read-onlycurrent
radioLicenseMaxModulation
OBJECT-TYPE
Certain licensing authorities, for example FCC and Industry Canada, require adaptive modulation to be bound by a minimum and maximum modulation mode as defined by the radio license. This attribute is only of significance in such regions and when adaptive modulation is enabled. For other regions, for example ETSI, minimum and maximum modulation mode are directly adjustable by the user and are not defined by the radio license. In general, a modulation mode is defined by two aspects, a modulation and a code rate. This integer attribute identifies the modulation aspect of the RadioLicenseMaxModMode attribute required by the radio license. For example, if RadioLicenseMaxModMode is configured for 256QAM 0.91, this attribute will be set to a value of 6 which identifies a modulation of 256QAM.
1.3.6.1.4.1.17713.8.24.13INTEGER {modQPSK(0), mod8PSK(1), mod16QAM(2), mod32QAM(3), mod64QAM(4), mod128QAM(5), mod256QAM(6)}read-onlycurrent
radioLicenseMaxCodeRate
OBJECT-TYPE
Certain licensing authorities, for example FCC and Industry Canada, require adaptive modulation to be bound by a minimum and maximum modulation mode as defined by the radio license. This attribute is only of significance in such regions and when adaptive modulation is enabled. For other regions, for example ETSI, minimum and maximum modulation mode are directly adjustable by the user and are not defined by the radio license. In general, a modulation mode is defined by two aspects, a modulation and a code rate. This attribute is equal to 100 times the code rate aspect of the RadioLicenseMaxModMode attribute required by the radio license. For example, if RadioLicenseMaxModMode is configured for 256QAM 0.91, this attribute will read 91.
1.3.6.1.4.1.17713.8.24.14INTEGER (0..100)read-onlycurrent
protectionConfig
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.25
protection
OBJECT-TYPE
PTP 800 supports a 1+1 Hot Standby configuration where the wireless link is protected against hardware failure. This requires the installation of redundant equipment at each end of the wireless link including a secondary CMU and RFU. At a given end of the wireless link, only one CMU / RFU is Active at any one time, the neighbor CMU / RFU being Inactive. When a fault is detected on the Active CMU / RFU, the Active role will automatically switch to the Inactive CMU / RFU. To enable functionality associated with this feature, this attribute must be configured for a setting of 1+1.
1.3.6.1.4.1.17713.8.25.1INTEGER {disabled(0), hotStandby1plus1(1), hotStandby1plus1withRxDiversity(2)}read-writecurrent
faultProtectionSwitching
OBJECT-TYPE
In a 1+1 Hot Standby configuration, protection switching on detection of a fault can be enabled/disabled using this attribute.
1.3.6.1.4.1.17713.8.25.2INTEGER {disabled(0), enabled(1)}read-writecurrent
primarySecondaryMode
OBJECT-TYPE
At a given end of a 1+1 Hot Standby configuration, one CMU must be configured as Primary, the other CMU as Secondary. When a Protected Link initialises with no faults, the CMUs configured as Primary will become the Active CMUs, that is, the Primary CMUs are the preferred CMUs. When RFUs are connected to the antenna via an Asymmetric Coupler, the RFU which is connected to the Primary CMU should be connected to the Main path of the coupler. This is the path with the lowest loss.
1.3.6.1.4.1.17713.8.25.3INTEGER {primary(0), secondary(1)}read-writecurrent
numberOfAntennas
OBJECT-TYPE
This must be configured to match the number of antennas installed at this end of the link.
1.3.6.1.4.1.17713.8.25.4INTEGER {one(0), two(1)}read-writecurrent
primaryRecovery
OBJECT-TYPE
At a given end of a 1+1 Hot Standby configuration, the CMU configured as Primary is the preferred unit to take the Active role. If the Primary Recovery attribute is set to Enabled at a given end, a protection switch back to the preferred Primary CMU / RFU will occur autonomously if it has stayed free of faults for a configurable period of time determined by the Primary Recovery Period.
1.3.6.1.4.1.17713.8.25.5INTEGER {disabled(0), enabled(1)}read-writecurrent
primaryRecoveryPeriod
OBJECT-TYPE
At a given end of a 1+1 Hot Standby configuration, the CMU configured as Primary is the preferred unit to take the Active role. If the Primary Recovery attribute is set to Enabled at a given end, a protection switch back to the preferred Primary CMU / RFU will occur autonomously if it has stayed free of faults for a configurable period of time determined by the Primary Recovery Period.
1.3.6.1.4.1.17713.8.25.6INTEGER (0..2880)read-writecurrent
requestedProtectionState
OBJECT-TYPE
In a 1+1 Hot Standby configuration, only one CMU / RFU at a given end of the link is Active at any one time, the neighbor CMU / RFU being Inactive. Use the Requested Protection State attribute to request whether this CMU / RFU should be in the Active or Inactive state.
1.3.6.1.4.1.17713.8.25.7INTEGER {inactive(0), active(1)}read-writecurrent
antennaReceiveLevelDeltaThreshold
OBJECT-TYPE
At a given end of a 1+1 Hot Standby configuration, a CMU will raise an alarm to the management system when the measured receive level adjusted by antenna gain and feeder loss is less than that of its neighbor by more than the Antenna Receive Level Delta Threshold.
1.3.6.1.4.1.17713.8.25.8INTEGER (0..30)read-writecurrent
antennaReceiveLevelMeasurementWindow
OBJECT-TYPE
At a given end of a 1+1 Hot Standby configuration, a CMU will raise an alarm to the management system when the measured receive level adjusted by antenna gain and feeder loss is less than that of its neighbor by more than the Antenna Receive Level Delta Threshold. The measurements are averaged over the most recent Antenna Receive Level Measurement Window.
1.3.6.1.4.1.17713.8.25.9INTEGER (1..2880)read-writecurrent
fiberY
OBJECT-TYPE
One or both ends of a 1+1 Hot Standby system can be connected to the network using an 'Optical-Y Splitter Kit per end'. This end configuration provides a single fiber interface to the network. Any end which is connected to the network using this method must have the Fiber Y attribute set to Enabled. Please note: CMUs must be loaded with boot code version 03-00 or later and recovery version 04-00 or later for Fiber Y to work correctly.
1.3.6.1.4.1.17713.8.25.12INTEGER {disabled(0), enabled(1)}read-writecurrent
rxDiversityVlanTpid
OBJECT-TYPE
When Receive Diversity is enabled, the Inactive CMU sends Rx Diversity Ethernet Frames to the Active CMU. These Ethernet Frames must be VLAN tagged and this attribute controls whether the frames are tagged using the TPID defined by 802.1Q or the TPID defined by 802.1ad.
1.3.6.1.4.1.17713.8.25.14INTEGER {iEEE8021QTaggedCTagType8100(0), iEEE8021adTaggedSTagorBTagType88a8(1)}read-writecurrent
rxDiversityVid
OBJECT-TYPE
When Receive Diversity is enabled, the Inactive CMU sends Rx Diversity Ethernet Frames to the Active CMU. These Ethernet Frames must be VLAN tagged and this attribute controls the VLAN Identifier
1.3.6.1.4.1.17713.8.25.15INTEGER (0..4094)read-writecurrent
protectionStatus
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.26
protectionAvailabilityStatus
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Protection Availability Status attribute indicates whether the Active unit is currently being protected by the Inactive unit. If it isn't being protected, the Active unit will report Not Protected and the Inactive unit will report Not Protecting.
1.3.6.1.4.1.17713.8.26.2INTEGER {ok(0), notProtected(1), notProtecting(2)}read-onlycurrent
protectionConfigurationStatus
OBJECT-TYPE
In a 1+1 Hot Standby configuration, this attribute will indicate whether the configuration will support protection.
1.3.6.1.4.1.17713.8.26.3INTEGER {ok(0), configurationNotProtecting(1)}read-onlycurrent
protectionState
OBJECT-TYPE
In a 1+1 Hot Standby configuration, only one CMU / RFU at a given end of the link is Active at any one time, the neighbor CMU / RFU being Inactive. The Protection State attribute indicates whether a CMU / RFU is in the Active or Inactive state.
1.3.6.1.4.1.17713.8.26.4INTEGER {inactive(0), active(1)}read-onlycurrent
activeUnit
OBJECT-TYPE
At a given end of a 1+1 Hot Standby configuration, one CMU must be configured as Primary, the other CMU as Secondary. When a Protected Link initialises with no faults, the CMU configured as Primary will become the Active CMU, that is, the Primary CMU is the preferred CMUs. The Active Unit attribute indicates whether the active unit is configured as Primary or Secondary.
1.3.6.1.4.1.17713.8.26.5INTEGER {primary(0), secondary(1)}read-onlycurrent
protectionSwitchCause
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Protection Switch Cause attribute reports the reason for the last protection switch.
1.3.6.1.4.1.17713.8.26.6INTEGER {noPreviousProtectionSwitch(0), neighborCMUConnectedButNotResponding(1), rFUNotResponding(2), rFURxRFSynthOutofLock(3), rFUTxRFSynthOutofLock(4), rFUCommonRFSynthOutofLock(5), rFUCableFailure(6), rFUCableAttenuatorAdjustmentFailure(7), rFUTxPowerDegraded(8), dataPortDown(9), managementPortDown(10), wirelessReceiveSignalNotDetected(11), byteErrorRatioOverThreshold(12), codeWordErrorRatioOverThreshold(13), cMURebooting(14), configurationNotProtecting(15), wirelessReceiveSignalNotDetectedatRemoteEnd(16), byteErrorRatioOverThresholdatRemoteEnd(17), codeWordErrorRatioOverThresholdatRemoteEnd(18), multipleReceiveFailureatRemoteEnd(19), primaryRecovery(20), managedProtectionSwitch(21), rFURxIFSynthOutofLock(22), rFUTxIFSynthOutofLock(23), rFUCommonIFSynthOutofLock(24), rFUVeryHighTemperature(25)}read-onlycurrent
endId
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the End Id contains the IP address of neighboring CMUs starting with the highest IP address and with a space separating the addresses. It is a single identifier of neighboring CMUs.
1.3.6.1.4.1.17713.8.26.7DisplayString (SIZE(0..79))read-onlycurrent
neighborIPAddress
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Neighbor IP Address identifies the IP Address of the neighbor CMU connected via the Protection Interface.
1.3.6.1.4.1.17713.8.26.8IpAddressread-onlycurrent
neighborMACAddress
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Neighbor MAC Address identifies the MAC Address of the neighbor CMU connected via the Protection Interface.
1.3.6.1.4.1.17713.8.26.9OCTET STRING (SIZE(6))read-onlycurrent
wirelessReceiveSignalStatus
OBJECT-TYPE
The Wireless Receive Signal Status indicates if the receiver is able to demodulate the transmit signal from the remote end of the link. If it cannot demodulate the signal, a protection switch may occur in a system configured for 1+1 Hot Standby.
1.3.6.1.4.1.17713.8.26.10INTEGER {ok(0), notDetected(1)}read-onlycurrent
licensedTransmitCapacityStatus
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Licensed Transmit Capacity Status attribute indicates when the Licensed Transmit Capacity is below that of its neighbor.
1.3.6.1.4.1.17713.8.26.14INTEGER {ok(0), lessThanNeighbor(1)}read-onlycurrent
dataPortEthernetSpeedStatus
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Data Port Ethernet Speed Status attribute indicates if the Ethernet Speed of the Data Port is below that of its neighbor.
1.3.6.1.4.1.17713.8.26.15INTEGER {ok(0), lessThanNeighbor(1)}read-onlycurrent
managementPortEthernetSpeedStatus
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Management Port Ethernet Speed Status attribute indicates if the Ethernet Speed of the Management Port is below that of its neighbor.
1.3.6.1.4.1.17713.8.26.16INTEGER {ok(0), lessThanNeighbor(1)}read-onlycurrent
protectionInterfaceStatus
OBJECT-TYPE
In a 1+1 Hot Standby configuration, information is shared between neighbor CMUs over the Protection Interface. The Protection Interface Status attribute reports whether the neighbor CMU is successfully responding, physically disconnected or whether it is physically connected but not responding, e.g. powered down.
1.3.6.1.4.1.17713.8.26.17INTEGER {ok(0), neighborNotResponding(1), neighborNotConnected(2)}read-onlycurrent
remotePrimaryIPAddress
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Remote Primary IP Address reports the IP address of the CMU which is configured as Primary at the remote end of the wireless link.
1.3.6.1.4.1.17713.8.26.18IpAddressread-onlycurrent
remoteSecondaryIPAddress
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Remote Secondary IP Address reports the IP address of the CMU which is configured as Secondary at the remote end of the wireless link.
1.3.6.1.4.1.17713.8.26.19IpAddressread-onlycurrent
remotePrimaryMACAddress
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Remote Primary MAC Address reports the MAC address of the CMU which is configured as Primary at the remote end of the wireless link.
1.3.6.1.4.1.17713.8.26.20OCTET STRING (SIZE(6))read-onlycurrent
remoteSecondaryMACAddress
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Remote Secondary MAC Address reports the MAC address of the CMU which is configured as Secondary at the remote end of the wireless link.
1.3.6.1.4.1.17713.8.26.21OCTET STRING (SIZE(6))read-onlycurrent
remotePrimarySecondaryMode
OBJECT-TYPE
In a 1+1 Hot Standby configuration, this attribute identifies whether the Active Unit at the remote end of the link is configured as Primary or Secondary.
1.3.6.1.4.1.17713.8.26.22INTEGER {primary(0), secondary(1)}read-onlycurrent
transmitterStatus
OBJECT-TYPE
Indicates whether the RFU is transmitting or muted. In a 1+1 Hot Standby configuration, it will also indicate if the RFU is Inactive and therefore ready to transmit.
1.3.6.1.4.1.17713.8.26.23INTEGER {muted(0), transmitting(1), inactive(2)}read-onlycurrent
endWirelessReceiveSignalStatus
OBJECT-TYPE
The End Wireless Receive Signal Status indicates if the end of a link is unable to demodulate the signal transmitted from the remote end of the link. When Protection is set to 1+1 Hot Standby, this attribute will indicate Not Detected if the Active CMU is unable to demodulate the wireless signal. When Receive Diversity is enabled, this attribute will indicate Not Detected if both the Active and Inactive CMUs are unable to demodulate the wireless signal.
1.3.6.1.4.1.17713.8.26.26INTEGER {ok(0), notDetected(1)}read-onlycurrent
rxDiversityDataPortStatus
OBJECT-TYPE
When Receive Diversity is enabled, the Inactive CMU sends Rx Diversity Ethernet Frames to the Active CMU. Before sending these frames, the Data Port MUST be negotiated at 1000 Mbps. This attribute indicates if this is not the case
1.3.6.1.4.1.17713.8.26.27INTEGER {ok(0), notProtecting(1)}read-onlycurrent
rxDiversityAvailabilityStatus
OBJECT-TYPE
The Rx Diversity Availability Status attribute will indicate when Receive Diversity is not operating correctly, either due to a fault or due to an incorrect configuration
1.3.6.1.4.1.17713.8.26.28INTEGER {ok(0), notProtected(1), notProtecting(2)}read-onlycurrent
rxDiversityConfigurationStatus
OBJECT-TYPE
For Receive Diversity to operate correctly, certain attributes must be configured correctly on both neighbor CMUs. The Rx Diversity Configuration Status attribute will indicate when this is not the case
1.3.6.1.4.1.17713.8.26.29INTEGER {ok(0), configurationNotProtecting(1)}read-onlycurrent
rxDiversityNeighborCompatibility
OBJECT-TYPE
For Receive Diversity to operate correctly, both neighbor CMUs must both be configured with the Protection attribute set to 1+1 Hot Standby with Rx Diversity. The Rx Diversity Neighbor Compatibility attribute indicates when the neighbor CMU is configured to a different setting
1.3.6.1.4.1.17713.8.26.30INTEGER {ok(0), mismatch(1)}read-onlycurrent
rxDiversityVlanTpidNeighborCompatibility
OBJECT-TYPE
For Receive Diversity to operate correctly, both neighbor CMUs must be configured with the same value of Rx Diversity VLAN TPID. The Rx Diversity VLAN TPID Neighbor Compatibility attribute indicates when this is not the case
1.3.6.1.4.1.17713.8.26.31INTEGER {ok(0), mismatch(1)}read-onlycurrent
rxDiversityVidNeighborCompatibility
OBJECT-TYPE
For Receive Diversity to operate correctly, both neighbor CMUs must be configured with the same value of Rx Diversity VID. The Rx Diversity VID Neighbor Compatibility attribute indicates when this is not the case
1.3.6.1.4.1.17713.8.26.32INTEGER {ok(0), mismatch(1)}read-onlycurrent
neighborInternetAddressType
OBJECT-TYPE
The type of Internet address specified by the associated neighborInternetAddress.
1.3.6.1.4.1.17713.8.26.33INTEGER {unknown(0), ipv4(1), ipv6(2), ipv4z(3), ipv6z(4), unknown6(5), unknown7(6), unknown8(7), unknown9(8), unknown10(9), unknown11(10), unknown12(11), unknown13(12), unknown14(13), unknown15(14), unknown16(15), dns(16)}read-onlycurrent
neighborInternetAddress
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Neighbor Internet Address identifies the INET Address of the neighbor CMU connected via the Protection Interface.
1.3.6.1.4.1.17713.8.26.34InetAddressread-onlycurrent
remotePrimaryInternetAddressType
OBJECT-TYPE
The type of Internet address specified by the associated remoteSecondaryInternetAddress.
1.3.6.1.4.1.17713.8.26.35INTEGER {unknown(0), ipv4(1), ipv6(2), ipv4z(3), ipv6z(4), unknown6(5), unknown7(6), unknown8(7), unknown9(8), unknown10(9), unknown11(10), unknown12(11), unknown13(12), unknown14(13), unknown15(14), unknown16(15), dns(16)}read-onlycurrent
remotePrimaryInternetAddress
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Remote Primary Internet Address reports the INET address of the CMU which is configured as Primary at the remote end of the wireless link.
1.3.6.1.4.1.17713.8.26.36InetAddressread-onlycurrent
remoteSecondaryInternetAddressType
OBJECT-TYPE
The type of Internet address specified by the associated remoteSecondaryInternetAddress.
1.3.6.1.4.1.17713.8.26.37INTEGER {unknown(0), ipv4(1), ipv6(2), ipv4z(3), ipv6z(4), unknown6(5), unknown7(6), unknown8(7), unknown9(8), unknown10(9), unknown11(10), unknown12(11), unknown13(12), unknown14(13), unknown15(14), unknown16(15), dns(16)}read-onlycurrent
remoteSecondaryInternetAddress
OBJECT-TYPE
In a 1+1 Hot Standby configuration, the Remote Secondary Internet Address reports the INET address of the CMU which is configured as Secondary at the remote end of the wireless link.
1.3.6.1.4.1.17713.8.26.38InetAddressread-onlycurrent
protectionStats
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.27
activeCodeWordCount
OBJECT-TYPE
The Active Code Word Count reports the number of code words received over the wireless interface whilst the CMU / RFU is in the Active role of a 1+1 Hot Standby configuration. The count is since the last statistics reset.
1.3.6.1.4.1.17713.8.27.1Counter64read-onlycurrent
activeCodeWordErrorCount
OBJECT-TYPE
The Active Code Word Error Count reports the number of code word errors which have been detected at the wireless interface whilst the CMU / RFU is in the Active role of a 1+1 Hot Standby configuration. The count is since the last statistics reset.
1.3.6.1.4.1.17713.8.27.2Counter64read-onlycurrent
activeByteCount
OBJECT-TYPE
The Active Byte Count reports the number of bytes received over the wireless interface whilst the CMU / RFU is in the Active role of a 1+1 Hot Standby configuration. The count is since the last statistics reset.
1.3.6.1.4.1.17713.8.27.3Counter64read-onlycurrent
activeByteErrorCount
OBJECT-TYPE
The Active Byte Error Count reports the number of byte errors which have been detected at the wireless interface whilst the CMU / RFU is in the Active role of a 1+1 Hot Standby configuration. The count is since the last statistics reset.
1.3.6.1.4.1.17713.8.27.4Counter64read-onlycurrent
activeAvailableTime
OBJECT-TYPE
The Active Available Time reports the time which the Wireless Link Status has been Up whilst the CMU/RFU has been in the Active role of a 1+1 Hot Standby configuration. The reported time is since the last statistics reset.
1.3.6.1.4.1.17713.8.27.5Integer32read-onlycurrent
activeCounterMeasurementPeriod
OBJECT-TYPE
For a 1+1 Hot Standby link, the elapsed time that the Protection State of the unit has been in the active state since the last reset of the system counters.
1.3.6.1.4.1.17713.8.27.6Integer32read-onlycurrent
activeWirelessLinkAvailability
OBJECT-TYPE
For a 1+1 Hot Standby link, the percentage of time that the unit has been able to successfully demodulate the signal transmitted from the remote end of the link whilst the Protecion State of the unit has been active. This attribute is not updated whilst the Protection State is inactive. Calculated since the last reset of the system counters. The reported value is the percentage multiplied by 10000
1.3.6.1.4.1.17713.8.27.7INTEGER (0..1000000)read-onlycurrent
activeCodeWordErrorRatio
OBJECT-TYPE
The wireless link sends data in error correctable blocks called code words. For a 1+1 Hot Standby link, this attribute reports the ratio of uncorrected code words to the total number of code words received whilst the Protecion State of the unit has been active. This ratio is not updated whilst the Protection State is inactive. Calculated since the last reset of the system counters. The reported value is the ratio multiplied by 10 to the power of 12
1.3.6.1.4.1.17713.8.27.8Counter64read-onlycurrent
activeByteErrorRatio
OBJECT-TYPE
For a 1+1 Hot Standby link, the Byte Error Ratio measured by the unit whilst the Protecion State has been active. This ratio is not updated whilst the Protection State is inactive. Calculated since the last reset of the system counters. The reported value is the ratio multiplied by 10 to the power of 12
1.3.6.1.4.1.17713.8.27.9Counter64read-onlycurrent
syslogControl
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.28
syslogClient
OBJECT-TYPE
Enable or disable the syslog client
1.3.6.1.4.1.17713.8.28.1INTEGER {disabled(0), enabled(1)}read-onlycurrent
syslogState
OBJECT-TYPE
The syslog service has been enabled or disabled
1.3.6.1.4.1.17713.8.28.2INTEGER {disabled(0), enabled(1)}read-onlycurrent
aAAControl
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.29
userTableNumber
OBJECT-TYPE
Number of entries in the userTable
1.3.6.1.4.1.17713.8.29.1INTEGER (1..10)read-onlycurrent
userTable
OBJECT-TYPE
The User Table Control group contains objects specifically for user account management.
1.3.6.1.4.1.17713.8.29.2not-accessiblecurrent
userTableEntry
OBJECT-TYPE
Table UserTable
1.3.6.1.4.1.17713.8.29.2.1not-accessiblecurrent
userTableIndex
OBJECT-TYPE
used to index values in the userTable.
1.3.6.1.4.1.17713.8.29.2.1.1INTEGER (1..10)not-accessiblecurrent
userName
OBJECT-TYPE
User name which must be entered, along with the appropriate password, in order to gain access to the system.
1.3.6.1.4.1.17713.8.29.2.1.2OCTET STRINGread-onlycurrent
userRole
OBJECT-TYPE
Role of the selected user. A Security Officer has access to and can modify all settings. A System Administrator has access to and can modify all non-security settings. A Read Only user can view settings, but cannot make any changes.
1.3.6.1.4.1.17713.8.29.2.1.3INTEGER {readOnly(0), systemAdministrator(1), securityOfficer(2)}read-onlycurrent
userEnabled
OBJECT-TYPE
Enable / Disable the selected user
1.3.6.1.4.1.17713.8.29.2.1.4INTEGER {disabled(0), enabled(1)}read-onlycurrent
userPassword
OBJECT-TYPE
User password, which must be entered in order to gain access to the system.
1.3.6.1.4.1.17713.8.29.2.1.5OCTET STRINGread-writecurrent
supplementary
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.96
longitude
OBJECT-TYPE
The longitude of the unit, measured in decimal degrees. This object is set by the SNMP manager and has no internal function.
1.3.6.1.4.1.17713.8.96.1DisplayString (SIZE(0..19))read-writecurrent
latitude
OBJECT-TYPE
The latitude of the unit, measured in decimal degrees. This object is set by the SNMP manager and has no internal function.
1.3.6.1.4.1.17713.8.96.2DisplayString (SIZE(0..19))read-writecurrent
altitude
OBJECT-TYPE
The altitude of the unit, measured in metres. This object is set by the SNMP manager and has no internal function.
1.3.6.1.4.1.17713.8.96.3Integer32read-writecurrent
ptpGroups
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.98
ptpTraps
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.99
ptpTrapPrefix
OBJECT-IDENTITY
1.3.6.1.4.1.17713.8.99.0

Notifications

NameOIDStatus
dataPortStatusTrap
NOTIFICATION-TYPE
Current status of the data Ethernet link. NB: a change of state may generate an SNMP trap and/or SMTP email alert
1.3.6.1.4.1.17713.8.99.0.3current
linkNameMismatchTrap
NOTIFICATION-TYPE
Signaling was received with the wrong Link Name. Either the Link Name is configured differently at each end of the wireless link, or this unit is aligned to the wrong link partner. NB: A change of value during operation may generate an SNMP trap and/or SMTP email alert
1.3.6.1.4.1.17713.8.99.0.9current
alignmentModeTrap
NOTIFICATION-TYPE
Indicates if the unit is undergoing alignment. NB: a change of state during operation may generate an SNMP trap and/or SMTP email alert
1.3.6.1.4.1.17713.8.99.0.10current
unitOutOfCalibrationTrap
NOTIFICATION-TYPE
The unit is out of calibration
1.3.6.1.4.1.17713.8.99.0.11current
encryptionEnabledMismatchTrap
NOTIFICATION-TYPE
Encryption has been enabled on one end of the wireless link but not the other
1.3.6.1.4.1.17713.8.99.0.13current
dataPortDisabledWarningTrap
NOTIFICATION-TYPE
The SNMP ifAdminStatus of the data Ethernet interface has disabled Ethernet traffic
1.3.6.1.4.1.17713.8.99.0.17current
dataPortFiberStatusTrap
NOTIFICATION-TYPE
If the fiber interface on the data Ethernet port is not OK, there are three possible causes: 1) the fiber interface has been installed but disabled, 2) the interface could not be established even though no LOS was detected (i.e. an optical carrier was detected, which could be due to a broken TX fiber, or because the interface is disabled at the other end of the fiber link), or 3) the interface could not be established and LOS is detected (i.e. no optical carrier is detected). NB: a change of status may generate an SNMP trap and/or SMTP email alert
1.3.6.1.4.1.17713.8.99.0.18current
dataPortConfigurationMismatchTrap
NOTIFICATION-TYPE
The detection of Ethernet fragments (runt packets) on the data Ethernet port when the link is in full duplex is an indication of an auto-negotiation or forced configuration mismatch
1.3.6.1.4.1.17713.8.99.0.19current
softwareVersionRemoteCompatibilityTrap
NOTIFICATION-TYPE
Indicates a mismatch of software versions at the two ends of the wireless link
1.3.6.1.4.1.17713.8.99.0.20current
sNTPSyncTrap
NOTIFICATION-TYPE
If SNTP Sync fails then check the server settings in the Remote Management page, or disable SNTP. NB: a change of state may generate an SNMP trap and/or SMTP email alert
1.3.6.1.4.1.17713.8.99.0.21current
managementPortStatusTrap
NOTIFICATION-TYPE
Current status of the out-of-band management Ethernet link
1.3.6.1.4.1.17713.8.99.0.23current
managementPortDisabledWarningTrap
NOTIFICATION-TYPE
The SNMP ifAdminStatus of the out-of-band management Ethernet interface has disabled Ethernet traffic
1.3.6.1.4.1.17713.8.99.0.24current
rFUStatusTrap
NOTIFICATION-TYPE
Current status of the RFU. A state of 'ok' indicates that the RFU is fully operational, although may not be transmitting.
1.3.6.1.4.1.17713.8.99.0.27current
managementPortConfigurationMismatchTrap
NOTIFICATION-TYPE
The detection of Ethernet fragments (runt packets) on the out-of-band management Ethernet port when the link is in full duplex is an indication of an auto-negotiation or forced configuration mismatch
1.3.6.1.4.1.17713.8.99.0.28current
wirelessLinkStatusTrap
NOTIFICATION-TYPE
Current status of the wireless link
1.3.6.1.4.1.17713.8.99.0.29current
protectionAvailabilityStatusTrap
NOTIFICATION-TYPE
In a 1+1 Hot Standby configuration, the Protection Availability Status attribute indicates whether the Active unit is currently being protected by the Inactive unit. If it isn't being protected, the Active unit will report Not Protected and the Inactive unit will report Not Protecting.
1.3.6.1.4.1.17713.8.99.0.31current
protectionConfigurationStatusTrap
NOTIFICATION-TYPE
In a 1+1 Hot Standby configuration, this attribute will indicate whether the configuration will support protection.
1.3.6.1.4.1.17713.8.99.0.32current
protectionStateTrap
NOTIFICATION-TYPE
In a 1+1 Hot Standby configuration, only one CMU / RFU at a given end of the link is Active at any one time, the neighbor CMU / RFU being Inactive. The Protection State attribute indicates whether a CMU / RFU is in the Active or Inactive state.
1.3.6.1.4.1.17713.8.99.0.33current
wirelessReceiveSignalStatusTrap
NOTIFICATION-TYPE
The Wireless Receive Signal Status indicates if the receiver is able to demodulate the transmit signal from the remote end of the link. If it cannot demodulate the signal, a protection switch may occur in a system configured for 1+1 Hot Standby.
1.3.6.1.4.1.17713.8.99.0.34current
licensedTransmitCapacityStatusTrap
NOTIFICATION-TYPE
In a 1+1 Hot Standby configuration, the Licensed Transmit Capacity Status attribute indicates when the Licensed Transmit Capacity is below that of its neighbor.
1.3.6.1.4.1.17713.8.99.0.36current
dataPortEthernetSpeedStatusTrap
NOTIFICATION-TYPE
In a 1+1 Hot Standby configuration, the Data Port Ethernet Speed Status attribute indicates if the Ethernet Speed of the Data Port is below that of its neighbor.
1.3.6.1.4.1.17713.8.99.0.37current
managementPortEthernetSpeedStatusTrap
NOTIFICATION-TYPE
In a 1+1 Hot Standby configuration, the Management Port Ethernet Speed Status attribute indicates if the Ethernet Speed of the Management Port is below that of its neighbor.
1.3.6.1.4.1.17713.8.99.0.38current
protectionInterfaceStatusTrap
NOTIFICATION-TYPE
In a 1+1 Hot Standby configuration, information is shared between neighbor CMUs over the Protection Interface. The Protection Interface Status attribute reports whether the neighbor CMU is successfully responding, physically disconnected or whether it is physically connected but not responding, e.g. powered down.
1.3.6.1.4.1.17713.8.99.0.39current
syslogStateTrap
NOTIFICATION-TYPE
The syslog service has been enabled or disabled
1.3.6.1.4.1.17713.8.99.0.40current
syslogLocalNearlyFullTrap
NOTIFICATION-TYPE
The syslog local log is nearly full (90%)
1.3.6.1.4.1.17713.8.99.0.41current
syslogLocalWrappedTrap
NOTIFICATION-TYPE
The syslog local log has wrapped
1.3.6.1.4.1.17713.8.99.0.42current
secureModeAlarmTrap
NOTIFICATION-TYPE
The secure mode (e.g. FIPS, UC-APL) state of the unit. The secure mode is not configured(1) state indicates that the unit is capable of secure mode operation, and one or more of the following security materials has not been configured: Key Of Keys, Private Key, Public Certificate, DRNG Entropy Status, Wireless Encryption Key. The secure mode mode is configured but not active(2) state indicates that the unit is capable of secure mode operation, and the security material has been configured, but the configuration of interfaces is not consistent with secure mode operation. The secure mode is not supported(3) state indicates that the unit is not capable of secure mode operation. The secure mode capability requires appropriate hardware compatibility, license key and software image.
1.3.6.1.4.1.17713.8.99.0.43current
endWirelessReceiveSignalStatusTrap
NOTIFICATION-TYPE
The End Wireless Receive Signal Status indicates if the end of a link is unable to demodulate the signal transmitted from the remote end of the link. When Protection is set to 1+1 Hot Standby, this attribute will indicate Not Detected if the Active CMU is unable to demodulate the wireless signal. When Receive Diversity is enabled, this attribute will indicate Not Detected if both the Active and Inactive CMUs are unable to demodulate the wireless signal.
1.3.6.1.4.1.17713.8.99.0.44current
rxDiversityDataPortStatusTrap
NOTIFICATION-TYPE
When Receive Diversity is enabled, the Inactive CMU sends Rx Diversity Ethernet Frames to the Active CMU. Before sending these frames, the Data Port MUST be negotiated at 1000 Mbps. This attribute indicates if this is not the case
1.3.6.1.4.1.17713.8.99.0.45current
rxDiversityAvailabilityStatusTrap
NOTIFICATION-TYPE
The Rx Diversity Availability Status attribute will indicate when Receive Diversity is not operating correctly, either due to a fault or due to an incorrect configuration
1.3.6.1.4.1.17713.8.99.0.46current
rxDiversityConfigurationStatusTrap
NOTIFICATION-TYPE
For Receive Diversity to operate correctly, certain attributes must be configured correctly on both neighbor CMUs. The Rx Diversity Configuration Status attribute will indicate when this is not the case
1.3.6.1.4.1.17713.8.99.0.47current
rFUPowerButtonPressedTrap
NOTIFICATION-TYPE
IRFU power button have been pressed, IFRU has powered down unexpectedly
1.3.6.1.4.1.17713.8.99.0.48current
syslogClientTrap
NOTIFICATION-TYPE
Enable or disable the syslog client
1.3.6.1.4.1.17713.8.99.0.49current

Conformance

NameOIDStatus
ptpCompliance
MODULE-COMPLIANCE
The compliance statement for the Cambium PTP MIB
1.3.6.1.4.1.17713.8.97current
bridgeGroup
OBJECT-GROUP
The bridge object group.
1.3.6.1.4.1.17713.8.98.4current
configurationGroup
OBJECT-GROUP
The configuration object group.
1.3.6.1.4.1.17713.8.98.5current
ethernetGroup
OBJECT-GROUP
The ethernet object group.
1.3.6.1.4.1.17713.8.98.6current
licenceGroup
OBJECT-GROUP
The licence object group.
1.3.6.1.4.1.17713.8.98.8current
managementGroup
OBJECT-GROUP
The management object group.
1.3.6.1.4.1.17713.8.98.9current
phyControlGroup
OBJECT-GROUP
The phyControl object group.
1.3.6.1.4.1.17713.8.98.10current
phyStatusGroup
OBJECT-GROUP
The phyStatus object group.
1.3.6.1.4.1.17713.8.98.12current
alarmsGroup
OBJECT-GROUP
The alarms object group.
1.3.6.1.4.1.17713.8.98.13current
smtpGroup
OBJECT-GROUP
The smtp object group.
1.3.6.1.4.1.17713.8.98.15current
snmpControlGroup
OBJECT-GROUP
The snmpControl object group.
1.3.6.1.4.1.17713.8.98.16current
sntpGroup
OBJECT-GROUP
The sntp object group.
1.3.6.1.4.1.17713.8.98.17current
resetGroup
OBJECT-GROUP
The reset object group.
1.3.6.1.4.1.17713.8.98.18current
versionsGroup
OBJECT-GROUP
The versions object group.
1.3.6.1.4.1.17713.8.98.19current
pubStatsGroup
OBJECT-GROUP
The pubStats object group.
1.3.6.1.4.1.17713.8.98.20current
encryptionGroup
OBJECT-GROUP
The encryption object group.
1.3.6.1.4.1.17713.8.98.22current
rfuGroup
OBJECT-GROUP
The rfu object group.
1.3.6.1.4.1.17713.8.98.23current
radioLicenseGroup
OBJECT-GROUP
The radioLicense object group.
1.3.6.1.4.1.17713.8.98.24current
protectionConfigGroup
OBJECT-GROUP
The protectionConfig object group.
1.3.6.1.4.1.17713.8.98.25current
protectionStatusGroup
OBJECT-GROUP
The protectionStatus object group.
1.3.6.1.4.1.17713.8.98.26current
protectionStatsGroup
OBJECT-GROUP
The protectionStats object group.
1.3.6.1.4.1.17713.8.98.27current
syslogControlGroup
OBJECT-GROUP
The syslogControl object group.
1.3.6.1.4.1.17713.8.98.28current
aAAControlGroup
OBJECT-GROUP
The aAAControl object group.
1.3.6.1.4.1.17713.8.98.29current
supplementaryGroup
OBJECT-GROUP
The supplementary object group.
1.3.6.1.4.1.17713.8.98.96current
notificationsGroup
NOTIFICATION-GROUP
The notifications group.
1.3.6.1.4.1.17713.8.98.99current