All MIBs › HUAWEI-ENVIRONMENT-MIB
Organization: Fix-Net DepT, Huawei Technologies Co.,Ltd.
Last Updated: 2013-06-17
Category: Hardware and Environment, Vendor: Huawei
Description: Huawei environment monitoring MIB for tracking temperature, humidity, fan status, and power supply health on Huawei chassis-based equipment.
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What Is HUAWEI-ENVIRONMENT-MIB?
HUAWEI-ENVIRONMENT-MIB is a core Huawei private MIB dedicated to environmental monitoring of chassis-based network equipment, covering the Environment Monitor Unit along with analog and digital environment data, output data, and fan monitoring. It exposes hardware-health objects such as temperature and voltage/current (analog/digital sensor) readings, fan operational status, and related output alarms. This MIB is explicitly a hardware-status monitoring module: it is used to track temperature levels, fan health/speed, and other environmental sensor data that indicate whether a chassis is at risk of overheating or has failed cooling components. It typically works alongside HUAWEI-DEVICE-MIB (or the standard ENTITY-MIB) to associate each sensor reading with a specific physical slot or module. It is deployed across Huawei chassis-based routers, switches, and access equipment installed in equipment rooms or outdoor cabinets where thermal and power conditions must be continuously monitored. Engineers can download the HUAWEI-ENVIRONMENT-MIB file directly to load it into their MIB browser.
IPNetwork Monitor allows you to monitor SNMP objects defined in HUAWEI-ENVIRONMENT-MIB. Use the built-in SNMP Monitoring Browser to explore available variables, view their current values and descriptions, and select the objects you want to monitor. You can then create SNMP monitors, configure thresholds, and receive alerts when monitored values change.
Supported Devices
- Huawei chassis-based routers, switches, and access equipment
Monitoring Examples
An operator polls the analog/digital environment data tables to read current temperature and voltage values per monitored point, alerting if a reading exceeds a configured threshold. Checking the fan monitoring objects reveals whether each fan module is running at normal speed or has stopped/failed, which combined with a rising temperature reading would indicate an imminent overheating condition. This MIB is central to proactive hardware-health alerting for Huawei chassis deployed in environments with variable ambient temperature or cooling constraints.
What Can Be Monitored
- temperature readings
- voltage/current (analog/digital) sensor values
- fan operational status/speed
- environment monitor unit alarms
- output/power data
This MIB depends on
Related MIBs
Imported Objects
From HUAWEI-DEVICE-MIB
| hwFrameIndex | OBJECT-TYPE |
From HUAWEI-MIB
| huaweiUtility | OBJECT-IDENTITY |
From SNMPv2-SMI
| BITS | |
| Integer32 | |
| MODULE-IDENTITY | |
| NOTIFICATION-TYPE | |
| OBJECT-TYPE |
From SNMPv2-TC
| DisplayString | |
| RowStatus |
OIDs
| OID symbolic | OID numeric | Type | Access | Description |
|---|---|---|---|---|
| NTF anaFaultAlarm | 1.3.6.1.4.1.2011.6.1.2.0.3 | The alarm recovery of the analog exception, reporting the environment monitoring unit ID. This trap message is reported when there is an analog exception in emu. | ||
| NTF anaFaultAlarmResume | 1.3.6.1.4.1.2011.6.1.2.0.4 | The alarm recovery of the analog exception, reporting the environment monitoring unit ID. This trap message is reported when the analog exception recovery in emu. | ||
| NTF anaTooHighAlarm | 1.3.6.1.4.1.2011.6.1.2.0.5 | The alarm of too high an analog, reporting the environment monitoring unit ID and the channel ID of the analog sensor. This trap message is reported when an analog value is too high. | ||
| NTF anaTooHighAlarmResume | 1.3.6.1.4.1.2011.6.1.2.0.6 | The alarm of too high analog resume, reporting the environment monitoring unit ID. This trap message is reported when an analog value returns to normal range from the high value. | ||
| NTF anaTooLowAlarm | 1.3.6.1.4.1.2011.6.1.2.0.7 | The alarm of too low an analog, reporting the environment monitoring unit ID and the channel ID of the analog sensor. This trap message is reported when an analog value is too low. | ||
| NTF anaTooLowAlarmResume | 1.3.6.1.4.1.2011.6.1.2.0.8 | The alarm of too low an analog, reporting the environment monitoring unit ID. This trap message is reported when an analog value returns to normal range from the low value. | ||
| NTF controlAlarm | 1.3.6.1.4.1.2011.6.1.2.0.9 | The control alarm, reporting the environment monitoring unit ID. This trap message is reported when emu control operation fails. | ||
| NTF controlAlarmResume | 1.3.6.1.4.1.2011.6.1.2.0.10 | The control alarm, reporting the environment monitoring unit ID. This trap message is reported when emu control operation resumes. | ||
| NTF digtaleasureAlarmResume | 1.3.6.1.4.1.2011.6.1.2.0.12 | The digital measure alarm recovery, reporting the environment monitoring unit ID and the channel ID of the digital sensor. This trap message is reported when emu measure operation resumes. | ||
| NTF digtalMeasureAlarm | 1.3.6.1.4.1.2011.6.1.2.0.11 | The digital measure alarm, reporting the environment monitoring unit ID and the channel ID of the digital sensor. This trap message is reported when emu measure operation fails. | ||
| emmsnmpTraps | 1.3.6.1.4.1.2011.6.1.2.0 | |||
| NTF envCommAlarm | 1.3.6.1.4.1.2011.6.1.2.0.1 | The communication alarm of environment monitoring board, reporting the environment monitoring unit ID. This trap message is reported when the communication between the emu and control board is fault. | ||
| NTF envCommAlarmResume | 1.3.6.1.4.1.2011.6.1.2.0.2 | The communication alarm recovery of the environment monitoring, reporting the environment monitoring unit ID. This trap message is reported when the communication between the emu and control board resumes. | ||
| envCompliances | 1.3.6.1.4.1.2011.6.1.3.1 | |||
| envConformance | 1.3.6.1.4.1.2011.6.1.3 | |||
| envGroups | 1.3.6.1.4.1.2011.6.1.3.2 | |||
| NTF fanExistsAlarm | 1.3.6.1.4.1.2011.6.1.2.0.13 | Fan nonexistance alarm. This trap message is reported when there is no fan device connected to control board. | ||
| NTF fanExistsAlarmResume | 1.3.6.1.4.1.2011.6.1.2.0.14 | Fan nonexistance alarm recovery. This trap message is reported when there is a fan device connected to control board. | ||
| NTF fanRunStateAlarm | 1.3.6.1.4.1.2011.6.1.2.0.15 | Fan running status alarm. This trap message is reported when the fan run state gets abnormal. | ||
| INT hwAlmCondition | 1.3.6.1.4.1.2011.6.1.1.3.1.3 | INTEGER | read-write | Alarm conditions. Options: 1.lowLevelAlarm(1) -refers to the alarm produced when the digital sensor detects the low level 2.highLevelAlarm(2) -refers to the alarm produced when the digital sensor detects the high level 3.invalid(-1) -indicates that the device can not get the value, e.g. the EMU does not support this operation, or the EMU state is abnormal |
| INT hwAnaAlarmID | 1.3.6.1.4.1.2011.6.1.1.2.1.12 | INTEGER | read-write | Analog alarm definition. Options: 1.temperature(1) -temperature alarm 2.humidity(2) -humidity alarm 3.voltage(3) -voltage alarm 4.current(4) -current alarm 5.userDefinedAlarm0(100) -analog user-defined alarm 0 6.userDefinedAlarm1(101) -analog user-defined alarm 1 7.userDefinedAlarm2(102) -analog user-defined alarm 2 8.userDefinedAlarm3(103) -analog user-defined alarm 3 9.userDefinedAlarm4(104) -analog user-defined alarm 4 10.userDefinedAlarm5(105) -analog user-defined alarm 5 11.userDefinedAlarm6(106) -analog user-defined alarm 6 12.userDefinedAlarm7(107) -analog user-defined alarm 7 13.userDefinedAlarm8(108) -analog user-defined alarm 8 14.userDefinedAlarm9(109) -analog user-defined alarm 9 15.userDefinedAlarm10(110) -analog user-defined alarm 10 16.userDefinedAlarm11(111) -analog user-defined alarm 11 17.userDefinedAlarm12(112) -analog user-defined alarm 12 18.userDefinedAlarm13(113) -analog user-defined alarm 13 19.userDefinedAlarm14(114) -analog user-defined alarm 14 20.userDefinedAlarm15(115) -analog user-defined alarm 15 21.default(65535) -default analog alarm |
| INT hwAnaAlarmState | 1.3.6.1.4.1.2011.6.1.1.2.1.10 | INTEGER | read-only | The status of the present monitored. Options: 1.normal(1) -indicates that the measurement value is lower than the set high limit of the alarm, and higher than the low limit 2.overWorkHigh(2) -indicates that the measurement value is higher than the high limit of the alarm 3.belowWorkLow(3) -indicates that the measurement value is lower than the low limit of the alarm 4.abnormal(4) -indicates that the measurement value is outside the scope of limit of the alarm 5.invalid(-1) -indicates that the device can not get the value, e.g. the EMU does not support this operation, or the EMU state is abnormal |
| I32 hwAnaAlmHigh | 1.3.6.1.4.1.2011.6.1.1.2.1.7 | Integer32 | read-write | High limit of the analog alarm. The alarm is produced when the measurement value is higher than this value |
| I32 hwAnaAlmLow | 1.3.6.1.4.1.2011.6.1.1.2.1.8 | Integer32 | read-write | The low limit of the analog alarm. The alarm is produced when the measurement value is lower than this value. |
| hwAnaChannelEntry | 1.3.6.1.4.1.2011.6.1.1.2.1 | not-accessible | Information table of the analog parameters monitored. The indexes of this entry are hwEnvEmuIndex or hwAnaChannelIndex. hwEnvEmuIndex is the index of the environment monitoring unit, and hwAnaChannelIndex is the index of the analog parameter that is monitored by a monitoring unit. | |
| I32 hwAnaChannelIndex | 1.3.6.1.4.1.2011.6.1.1.2.1.1 | Integer32 | read-only | Index of the analog parameter that is monitored by the monitoring unit. Range: 0 - 255 |
| hwAnaChannelTable | 1.3.6.1.4.1.2011.6.1.1.2 | not-accessible | Information table of the analog parameters monitored. The indexes of this table are hwEnvEmuIndex or hwAnaChannelIndex. hwEnvEmuIndex is the index of the environment monitoring unit, and hwAnaChannelIndex is the index of the analog parameter that is monitored by a monitoring unit. | |
| I32 hwAnaCurrentValue | 1.3.6.1.4.1.2011.6.1.1.2.1.9 | Integer32 | read-only | The actual measurement value of the present analog. Unit: milli |
| STR hwAnaMeasureType | 1.3.6.1.4.1.2011.6.1.1.2.1.4 | DisplayString | read-write | This object indicates the unit of the analog parameter that is tested. |
| STR hwAnaName | 1.3.6.1.4.1.2011.6.1.1.2.1.2 | DisplayString | read-write | Name of the analog parameter that is monitored by a monitoring unit. |
| ROW hwAnaRowStatus | 1.3.6.1.4.1.2011.6.1.1.2.1.11 | RowStatus | read-write | RowStatus standard operation. The values 1 and 2 are supported currently. 1 indicates the activation status, and 2 indicates the non-activation status. |
| INT hwAnaType | 1.3.6.1.4.1.2011.6.1.1.2.1.3 | INTEGER | read-write | This object indicates the type of the sensor that is used to test the Analog parameter. Options: 1.invalid(-1) -there is no valid sensor 2.voltage(1) -voltage sensor currently 3.current(2) -current sensor currently |
| I32 hwAnaWorkHigh | 1.3.6.1.4.1.2011.6.1.1.2.1.5 | Integer32 | read-write | High limit of the analog normal work |
| I32 hwAnaWorkLow | 1.3.6.1.4.1.2011.6.1.1.2.1.6 | Integer32 | read-write | Low limit of the analog normal work |
| INT hwControlOutAdminStatus | 1.3.6.1.4.1.2011.6.1.1.4.1.3 | INTEGER | read-write | Control Out administration: executes the on/off operation. Options: 1. on(1) - trun on 2. off(2) - trun off |
| hwControlOutEntry | 1.3.6.1.4.1.2011.6.1.1.4.1 | not-accessible | Monitored digital out table. This table indicates information about whether digital parameter is monitored. The indexes of this entry are hwEnvEmuIndex and hwControlOutIndex. hwEnvEmuIndex is the index of the monitoring unit, and hwControlOutIndex is the index of the digital out table monitored in the monitoring unit. | |
| I32 hwControlOutIndex | 1.3.6.1.4.1.2011.6.1.1.4.1.1 | Integer32 | read-only | Index of the digital out table monitored in the monitoring unit Range: 0 - 255 |
| STR hwControlOutName | 1.3.6.1.4.1.2011.6.1.1.4.1.2 | DisplayString | read-write | Name of the monitored digital out table |
| ROW hwControlOutRowStatus | 1.3.6.1.4.1.2011.6.1.1.4.1.4 | RowStatus | read-write | RowStatus standard operation. The values 1 and 2 are supported currently. 1 indicates the activation status, and 2 indicates the non-activation status. |
| hwControlOutTable | 1.3.6.1.4.1.2011.6.1.1.4 | not-accessible | Monitored digital out table. This table indicates information about whether digital parameter is monitored. The indexes of this table are hwEnvEmuIndex and hwControlOutIndex. hwEnvEmuIndex is the index of the monitoring unit, and hwControlOutIndex is the index of the digital out table monitored in the monitoring unit. | |
| I32 hwCurrentTemp | 1.3.6.1.4.1.2011.6.1.1.5.1.7 | Integer32 | read-only | The present temperature value, in unit of cent-centigrade |
| INT hwDigAlarmID | 1.3.6.1.4.1.2011.6.1.1.3.1.6 | INTEGER | read-write | Digital alarm definition. Options: 1.acvoltage(1) -ac voltage alarm 2.acswitch(2) -ac switch alarm 3.batteryvoltage(3) -battery voltage alarm 4.batteryfuse(4) -battery fuse alarm 5.loadfuse(5) -load fuse alarm 6.rectifier(6) -rectifier alarm 7.dcpower(7) -dc power alarm 8.cupboarddoor(8) -cupboard alarm 9.roomdoor(9) -room door alarm 10.window(10) -window alarm 11.thief(11) -thief alarm 12.wiring(12) -wiring alarm 13.fan(13) -fan alarm 14.fire(14) -fire alarm 15.fog(15) -fog alarm 16.water(16) -water alarm 17.diesel(17) -diesel alarm 18.smell(18) -smell alarm 19.aircondition(19) -air-condition alarm 20.arrester(20) -arrester alarm 21.dcvoltage(21) -dc voltage 22.outputswitch(22) -output swith 23.hard-fault(23) -hard-fault 24.userDefinedAlarm0(100) -digital user-defined alarm 0 25.userDefinedAlarm1(101) -digital user-defined alarm 1 26.userDefinedAlarm2(102) -digital user-defined alarm 2 27.userDefinedAlarm3(103) -digital user-defined alarm 3 28.userDefinedAlarm4(104) -digital user-defined alarm 4 29.userDefinedAlarm5(105) -digital user-defined alarm 5 30.userDefinedAlarm6(106) -digital user-defined alarm 6 31.userDefinedAlarm7(107) -digital user-defined alarm 7 32.userDefinedAlarm8(108) -digital user-defined alarm 8 33.userDefinedAlarm9(109) -digital user-defined alarm 9 34.userDefinedAlarm10(110) -digital user-defined alarm 10 35.userDefinedAlarm11(111) -digital user-defined alarm 11 36.userDefinedAlarm12(112) -digital user-defined alarm 12 37.userDefinedAlarm13(113) -digital user-defined alarm 13 38.userDefinedAlarm14(114) -digital user-defined alarm 14 39.userDefinedAlarm15(115) -digital user-defined alarm 15 40.userDefinedAlarm16(116) -digital user-defined alarm 16 41.userDefinedAlarm17(117) -digital user-defined alarm 17 42.userDefinedAlarm18(118) -digital user-defined alarm 18 43.userDefinedAlarm19(119) -digital user-defined alarm 19 44.userDefinedAlarm20(120) -digital user-defined alarm 20 45.userDefinedAlarm21(121) -digital user-defined alarm 21 46.userDefinedAlarm22(122) -digital user-defined alarm 22 47.userDefinedAlarm23(123) -digital user-defined alarm 23 48.userDefinedAlarm24(124) -digital user-defined alarm 24 49.userDefinedAlarm25(125) -digital user-defined alarm 25 50.userDefinedAlarm26(126) -digital user-defined alarm 26 51.userDefinedAlarm27(127) -digital user-defined alarm 27 52.userDefinedAlarm28(128) -digital user-defined alarm 28 53.userDefinedAlarm29(129) -digital user-defined alarm 29 54.userDefinedAlarm30(130) -digital user-defined alarm 30 55.userDefinedAlarm31(131) -digital user-defined alarm 31 56.default(65535) -digital alarm |
| hwDigChannelEntry | 1.3.6.1.4.1.2011.6.1.1.3.1 | not-accessible | Information table of the digital parameters monitored. The indexes of this entry are hwEnvEmuIndex and hwDigChannelIndex. hwEnvEmuIndex is the index of the environment monitoring unit, and hwDigChannelIndex is the index of the digital parameter that is monitored by a monitoring unit. | |
| I32 hwDigChannelIndex | 1.3.6.1.4.1.2011.6.1.1.3.1.1 | Integer32 | read-only | Index of the digital parameter that is monitored by a monitoring unit. Range: 0 - 255 |
| STR hwDigChannelName | 1.3.6.1.4.1.2011.6.1.1.3.1.2 | DisplayString | read-write | Name of the digital parameter that is monitored by a monitoring unit. |
| INT hwDigChannelState | 1.3.6.1.4.1.2011.6.1.1.3.1.4 | INTEGER | read-only | The status of the present monitored digital sensor Options: 1.normal(1) -indicates that the digital sensor works normally 2.alarm(2) -indicates that the digital sensor produces the alarm signal 3.invalid(-1) -indicates that the device can not get the value, e.g. the EMU does not support this operation, or the EMU state is abnormal |
| hwDigChannelTable | 1.3.6.1.4.1.2011.6.1.1.3 | not-accessible | Information table of the digital parameters monitored. The indexes of this table are hwEnvEmuIndex and hwDigChannelIndex. hwEnvEmuIndex is the index of the environment monitoring unit, and hwDigChannelIndex is the index of the digital parameter that is monitored by a monitoring unit. | |
| ROW hwDigRowStatus | 1.3.6.1.4.1.2011.6.1.1.3.1.5 | RowStatus | read-write | RowStatus standard operation. The values 1 and 2 are supported currently. 1 indicates the activation status, and 2 indicates the non-activation status. |
| NTF hwEmmAnaCurrentFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.2.0.9 | The agent generates this trap when the analog current alarm occurs. | ||
| NTF hwEmmAnaCurrentRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.2.0.10 | The agent generates this trap when the analog current alarm recovers. | ||
| NTF hwEmmAnaHumyFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.2.0.5 | The agent generates this trap when the analog humidity alarm occurs. | ||
| NTF hwEmmAnaHumyRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.2.0.6 | The agent generates this trap when the analog humidity alarm recovers. | ||
| NTF hwEmmAnaTempFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.2.0.3 | The agent generates this trap when the analog temperature alarm occurs. | ||
| NTF hwEmmAnaTempRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.2.0.4 | The agent generates this trap when the analog temperature alarm recovers. | ||
| NTF hwEmmAnaUnnamedFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.2.0.1 | The agent generates this trap when an unnamed analog alarm occurs. | ||
| NTF hwEmmAnaUnnamedRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.2.0.2 | The agent generates this trap when an unnamed analog alarm recovers. | ||
| NTF hwEmmAnaVoltFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.2.0.7 | The agent generates this trap when the analog voltage alarm occurs. | ||
| NTF hwEmmAnaVoltRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.2.0.8 | The agent generates this trap when the analog voltage alarm recovers. | ||
| NTF hwEmmDigAcswitchFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.13 | The agent generates this trap when The AC switch is out of the normal range. | ||
| NTF hwEmmDigAcswitchRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.14 | The agent generates this trap when The AC switch recovers to the normal range. | ||
| NTF hwEmmDigAcvolFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.11 | The agent generates this trap when The AC voltage is out of the normal range. | ||
| NTF hwEmmDigAcvolRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.12 | The agent generates this trap when The AC voltage recovers to the normal range. | ||
| NTF hwEmmDigAirconditionFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.43 | The agent generates this trap when The Air condition is out of the normal range. | ||
| NTF hwEmmDigAirconditionRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.44 | The agent generates this trap when The Air condition recovers to the normal range. | ||
| NTF hwEmmDigArrsterFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.45 | The agent generates this trap when The arrester is out of the normal range. | ||
| NTF hwEmmDigArrsterRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.46 | The agent generates this trap when The arrester recovers to the normal range. | ||
| NTF hwEmmDigBattfuseFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.17 | The agent generates this trap when The battery fuse is out of the normal range. | ||
| NTF hwEmmDigBattfuseRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.18 | The agent generates this trap when The battery fuse recovers to the normal range. | ||
| NTF hwEmmDigBattvolFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.15 | The agent generates this trap when The batt vol is out of the normal range. | ||
| NTF hwEmmDigBattvolRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.16 | The agent generates this trap when The batt vol recovers to the normal range. | ||
| NTF hwEmmDigDcpowerFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.23 | The agent generates this trap when The dc-power is out of the normal range. | ||
| NTF hwEmmDigDcpowerRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.24 | The agent generates this trap when The dc-power recovers to the normal range. | ||
| NTF hwEmmDigDcvolFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.47 | The agent generates this trap when The DC VOL is out of the normal range. | ||
| NTF hwEmmDigDcvolRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.48 | The agent generates this trap when The DC VOL recovers to the normal range. | ||
| NTF hwEmmDigDieselFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.39 | The agent generates this trap when The Diesel is out of the normal range. | ||
| NTF hwEmmDigDieselRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.40 | The agent generates this trap when The Diesel recovers to the normal range. | ||
| NTF hwEmmDigFanBlockFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.1 | The agent generates this trap when the fan is blocked. | ||
| NTF hwEmmDigFanBlockRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.2 | The agent generates this trap when the fan is recovered from block. | ||
| NTF hwEmmDigFanFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.31 | The agent generates this trap when The FAN is out of the normal range. | ||
| NTF hwEmmDigFanRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.32 | The agent generates this trap when The FAN recovers to the normal range. | ||
| NTF hwEmmDigFanTempHighFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.3 | The agent generates this trap when the temperature of fan is too high. | ||
| NTF hwEmmDigFanTempHighRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.4 | The agent generates this trap when the temperature of fan recover from too high. | ||
| NTF hwEmmDigFireFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.33 | The agent generates this trap when The Fire is out of the normal range. | ||
| NTF hwEmmDigFireRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.34 | The agent generates this trap when The Fire recovers to the normal range. | ||
| NTF hwEmmDigFogFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.35 | The agent generates this trap when The Fog is out of the normal range. | ||
| NTF hwEmmDigFogRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.36 | The agent generates this trap when The Fog recovers to the normal range. | ||
| NTF hwEmmDigitalSwitchCloseTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.52 | The agent generates this trap when the 48V input switch is opened. | ||
| NTF hwEmmDigitalSwitchOpenTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.51 | The agent generates this trap when the 48V input switch is closed. | ||
| NTF hwEmmDigLoadfuseFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.19 | The agent generates this trap when The load fuse is out of the normal range. | ||
| NTF hwEmmDigLoadfuseRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.20 | The agent generates this trap when The load fuse recovers to the normal range. | ||
| NTF hwEmmDigOutputswitchFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.7 | The agent generates this trap when Output switch digital fault occurs. | ||
| NTF hwEmmDigOutputswitchRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.8 | The agent generates this trap when Output switch digital recovers. | ||
| NTF hwEmmDigRectifierFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.21 | The agent generates this trap when The Rectifier is out of the normal range. | ||
| NTF hwEmmDigRectifierRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.22 | The agent generates this trap when The Rectifier recovers to the normal range. | ||
| NTF hwEmmDigRoomdoorFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.25 | The agent generates this trap when The Roomdoor is out of the normal range. | ||
| NTF hwEmmDigRoomdoorRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.26 | The agent generates this trap when The Roomdoor recovers to the normal range. | ||
| NTF hwEmmDigSmellFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.41 | The agent generates this trap when The Smell is out of the normal range. | ||
| NTF hwEmmDigSmellRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.42 | The agent generates this trap when The Smell recovers to the normal range. | ||
| NTF hwEmmDigTheftFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.27 | The agent generates this trap when The Roomdoor is out of the normal range. | ||
| NTF hwEmmDigTheftRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.28 | The agent generates this trap when The Roomdoor recovers to the normal range. | ||
| NTF hwEmmDigUnnamedFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.5 | The agent generates this trap when a unnamed digital fault occurs. | ||
| NTF hwEmmDigUnnamedRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.6 | The agent generates this trap when a unnamed digital recovers. | ||
| NTF hwEmmDigWaterFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.37 | The agent generates this trap when The Water is out of the normal range. | ||
| NTF hwEmmDigWaterRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.38 | The agent generates this trap when The Water recovers to the normal range. | ||
| NTF hwEmmDigWiringFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.29 | The agent generates this trap when The WIRING is out of the normal range. | ||
| NTF hwEmmDigWiringRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.30 | The agent generates this trap when The WIRING recovers to the normal range. | ||
| NTF hwEmmEmuAutofindFailTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.5 | The agent generates this trap when the emu autofind fail. | ||
| NTF hwEmmEmuAutofindTrap | 1.3.6.1.4.1.2011.6.1.4.1.0.1 | The agent generates this trap when a new EMU autofind. | ||
| NTF hwEmmEmufailTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.1 | The agent generates this trap when the communication of the EMU with the host is abnormal. | ||
| NTF hwEmmEmuFanStateTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.6 | The agent generates this trap when the fan is not configured or fails. | ||
| NTF hwEmmEmuHardwareFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.3 | The agent generates this trap when the a Hardware exception occurs. | ||
| NTF hwEmmEmuHardwareRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.4 | The agent generates this trap when the a Hardware exception Recover | ||
| NTF hwEmmEmuRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.2 | The agent generates this trap when the communication of the EMU with the host recovers. | ||
| NTF hwEmmFanCriticalBlockFaultTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.49 | The agent generates this trap when more than two fans are blocked. | ||
| NTF hwEmmFanCriticalBlockRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.3.0.50 | The agent generates this trap when the critical multi-fan blocking recovers. | ||
| hwEmmTrapVbOids | 1.3.6.1.4.1.2011.6.1.5 | |||
| INT hwEnvAdminStatus | 1.3.6.1.4.1.2011.6.1.1.1.1.8 | INTEGER | read-write | The management status of the monitoring unit. Options: 1.noOperation(1) -no any operation 2.reset(2) -reset the monitoring board 3.manage(3) -manage the monitoring unit 4.unmanage(4) -undo manage the monitoring unit 5.clearsmokealarm(5) -clear the smoke alarm for miniEsc |
| OCT hwEnvAutofindBoardName | 1.3.6.1.4.1.2011.6.1.5.5 | OCTET STRING | accessible-for-notify | The board name of the auto-found EMU. |
| OCT hwEnvAutofindEmuType | 1.3.6.1.4.1.2011.6.1.5.4 | OCTET STRING | accessible-for-notify | The type of the auto-found EMU. |
| I32 hwEnvAutofindNodeId | 1.3.6.1.4.1.2011.6.1.5.3 | Integer32 | accessible-for-notify | The NodeId of the auto-found EMU. |
| STR hwEnvBoardName | 1.3.6.1.4.1.2011.6.1.1.1.1.3 | DisplayString | read-write | Name of the environment monitoring unit. |
| OCT hwEnvCLEICode | 1.3.6.1.4.1.2011.6.1.1.1.1.11 | OCTET STRING | read-only | Environment CLEI Code. |
| INT hwEnvCommState | 1.3.6.1.4.1.2011.6.1.1.1.1.4 | INTEGER | read-only | Status of the communication between the environment monitoring unit and the device. The environmental condition can be tested only when the communication is normal. Options: 1.normal(1) - indicates that communication state is normal 2.shutdown(2) - indicates that communication state is shutdown 3.fault(3) - indicates that communication state is fault 4.abnormal(4) - indicates that communication state is abnormal 5.config(5) - indicates that communication state is config |
| INT hwEnvComType | 1.3.6.1.4.1.2011.6.1.1.1.1.10 | INTEGER | read-write | The serial communication protocol type between the monitoring unit and the upstream equipment. The protocol types used are as follows: Options: 1.unknown(1) -The protocol types is unknown 2.serialRS485(2) -The protocol types is serialRS485 3.serialRS232(3) -The protocol types is serialRS232 4.serialRS422(4) -The protocol types is serialRS422 |
| I32 hwEnvEmuIndex | 1.3.6.1.4.1.2011.6.1.1.1.1.1 | Integer32 | read-only | hwEnvEmuIndex is the index of the Environment monitoring unit, used as the index of hwEnvironmentInfoTable. Range: 0 - 2048 |
| I32 hwEnvEmuPower | 1.3.6.1.4.1.2011.6.1.1.1.1.12 | Integer32 | read-only | Power of the environment monitoring equipment associated with the environment monitoring unit. Unit: Watt. |
| INT hwEnvEmuType | 1.3.6.1.4.1.2011.6.1.1.1.1.2 | INTEGER | read-write | Type of the physical monitoring devices associated with the environment monitoring unit. Options: 1.h302ESC(1) -Type of the physical monitoring devices is H302ESC 2.h303ESC(2) -Type of the physical monitoring devices is H303ESC 3.h4875(3) -Type of the physical monitoring devices is 4875 power monitoring frame 4.h301ESC(4) -Type of the physical monitoring devices is H301ESC 5.switch(5) -Distribute monitoring frame 6.fanEscFrame(6) -ESC monitoring fan frame 7.fanFrame(7) -monitoring fan frame 8.h4845(8) -4845 power monitoring 9.fanFCBFrame(9) -FCB monitoring fan frame 10.fanFDMUFrame(10) -FDMU monitoring fan frame 11.h304ESC(11) -provides the management function of battery 12.pwma(12) -Type of the physical monitoring devices is pwma 13.h561esc(13) -H561ESC 14.h801esc(14) -H801Esc 15.h612pwbp(15) -H612pwbp 16.pse158(16) -pse158 17.h4805(19) -h4805 18.pdu(20) -pdu 19.acrmu(21) -ac_rmu 20.acfan(22) -ac_fan 21.dcfan(23) -dc_fan 22.rmun1509(24) -rmun1509 23.onps150(25) -onps150 24.h801pmix(26) -h801pmix 25.h4875L(27) -h4875L 26.miniESC(28) -miniESC 27.h831VESC(29) -H831VESC 28.h601VESC(30) -H601VESC 29.h4830L(31) -h4830L 30.h801citx(32) -h801citx 31.h801citd(33) -h801citd 32.h831ccuh(34) -h831ccuh 33.h831pmu(35) -h831pmu 34.pwr3000(36) -a type of power named power 3000, supports 12 rectifier modules 35.tcu(37) -tcu 36.liFeBattery(38) -liFeBattery 37.transemu(39) -a type of emu for transport environment information to managment center 38.smu(40) -site monitoring unit 39.vpea(41) -vector monitoring unit 40.h801VESC(42) -H801VESC 41.h801PMU(44) -H801PMU 42.other(255) -other |
| STR hwEnvEmuTypeName | 1.3.6.1.4.1.2011.6.1.1.1.1.13 | DisplayString | read-only | Name of the environment type. |
| I32 hwEnvFrameId | 1.3.6.1.4.1.2011.6.1.1.1.1.7 | Integer32 | read-write | ID of the shelf housing the environment monitoring unit. |
| hwEnvironAlarmTraps | 1.3.6.1.4.1.2011.6.1.4.2 | |||
| hwEnvironAnaAlarmTraps | 1.3.6.1.4.1.2011.6.1.4.2.2 | |||
| hwEnvironAnaAlarmTrapsPrefix | 1.3.6.1.4.1.2011.6.1.4.2.2.0 | |||
| hwEnvironCommonTraps | 1.3.6.1.4.1.2011.6.1.4.1 | |||
| hwEnvironCommonTrapsPrefix | 1.3.6.1.4.1.2011.6.1.4.1.0 | |||
| hwEnvironDigAlarmTraps | 1.3.6.1.4.1.2011.6.1.4.2.3 | |||
| hwEnvironDigAlarmTrapsPrefix | 1.3.6.1.4.1.2011.6.1.4.2.3.0 | |||
| hwEnvironEmuAlarmTraps | 1.3.6.1.4.1.2011.6.1.4.2.1 | |||
| hwEnvironEmuAlarmTrapsPrefix | 1.3.6.1.4.1.2011.6.1.4.2.1.0 | |||
| hwEnvironment | 1.3.6.1.4.1.2011.6.1 | The MIB module defines MIB objects which include Environment Monitor Unit, Analog Environment data, Digital Environment data, Out data and Fan data Monitor management MIB interfaces. | ||
| hwEnvironmentInfoEntry | 1.3.6.1.4.1.2011.6.1.1.1.1 | not-accessible | Information table of Environment Monitor Unit. The Environment Monitor Unit is some kind of Environment monitoring device and is used to monitor many kinds of Environment data. The maximum number of Environment Monitor Units in one device node is 64. The index of this entry is hwEnvEmuIndex. hwEnvEmuIndex is the index of one Environment Monitor Unit. | |
| hwEnvironmentInfoTable | 1.3.6.1.4.1.2011.6.1.1.1 | not-accessible | Information table of Environment Monitor Unit. The Environment Monitor Unit is some kind of Environment monitoring device and is used to monitor many kinds of Environment data. The maximum number of Environment Monitor Units in one device node is 64. The index of this table is hwEnvEmuIndex. hwEnvEmuIndex is the index of one Environment Monitor Unit. | |
| hwEnvironmentMon | 1.3.6.1.4.1.2011.6.1.1 | |||
| hwEnvironTraps | 1.3.6.1.4.1.2011.6.1.4 | |||
| ROW hwEnvRowStatus | 1.3.6.1.4.1.2011.6.1.1.1.1.5 | RowStatus | read-write | RowStatus standard operation. The creation and deletion operations are supported currently. |
| I32 hwEnvSlaveNodeId | 1.3.6.1.4.1.2011.6.1.1.1.1.9 | Integer32 | read-write | ID of the slave object that the environment monitoring unit belongs to. The environment monitoring unit uses the slave object ID to communicate with the upstream equipment. |
| STR hwEnvVersion | 1.3.6.1.4.1.2011.6.1.1.1.1.6 | DisplayString | read-only | Version information of the environment monitoring unit. |
| I32 hwESCFanTempAutoOff | 1.3.6.1.4.1.2011.6.1.1.5.1.5 | Integer32 | read-write | The fan temperature set, in unit of centigrade. The MIB object only functions for the fan monitoring board of ESC and is not applicable to the type of fan monitoring board. Only when the fan control mode of the fan frame is hwFanControl =auto (3), the temperature control mode will take effect. When detecting the environment temperature is lower than the set value, the fan will be turned off (decrease its rotation). |
| I32 hwESCFanTempAutoOn | 1.3.6.1.4.1.2011.6.1.1.5.1.4 | Integer32 | read-write | The fan temperature set, in unit of centigrade. The MIB object only functions for the fan monitoring board of ESC and is not applicable to the type of fan monitoring board. Only when the fan control mode of the fan frame is hwFanControl =auto (3), the temperature control mode will take effect. When detecting the environment temperature higher than the set value, the fan will be on (or increase its rotation). |
| INT hwFailureCause | 1.3.6.1.4.1.2011.6.1.5.2 | INTEGER | accessible-for-notify | The reason of the auto-finding failure: Options: 1.fullemu(1) -No enough EMU IDs are available 2.shelfnotsupport(2) -The EMU does not support the auto discovery function 3.emunotsupportautofind(3) -The shelf does not support the EMU of this type |
| INT hwFanControlMode | 1.3.6.1.4.1.2011.6.1.1.5.1.2 | INTEGER | read-write | The fan control modes of the fan frame. Options: 1.manual(1) -indicates that the fan is always on, and the fan speed can be manually adjusted 2.emuAuto(2) -indicates that the fan is in the automatic mode, and can be automatically controlled depending on the temperature of the fan 3.fixed(3) -indicates that the fan is in the fixed mode, and adjusting its speed is not allowed 4.mainboardAuto(4) -indicates that the fan is in the automatic mode, and can be automatically controlled depending on the temperature of the boards in the frame |
| BIT hwFanControlState | 1.3.6.1.4.1.2011.6.1.1.5.1.3 | Bits | read-write | For ESC fan, all should be checked to turn on the fan, while all should not be checked to turn off the fan. Options: 1.fan1(0) -indicates that the first fan needs to be opened 2.fan2(1) -indicates that the second fan needs to be opened 3.fan3(2) -indicates that the third fan needs to be opened 4.fan4(3) -indicates that the fourth fan needs to be opened 5.fan5(4) -indicates that the fifth fan needs to be opened 6.fan6(5) -indicates that the sixth fan needs to be opened |
| hwFanEntry | 1.3.6.1.4.1.2011.6.1.1.5.1 | not-accessible | Information table of fan monitoring. The index of this entry is hwEnvEmuIndex that comes from hwEnvironmentInfoTable. hwEnvEmuIndex is the index of the monitoring unit whose monitoring type is fan. | |
| STR hwFanName | 1.3.6.1.4.1.2011.6.1.1.5.1.1 | DisplayString | read-write | Fan name |
| ROW hwFanRowStatus | 1.3.6.1.4.1.2011.6.1.1.5.1.6 | RowStatus | read-write | RowStatus standard operation. |
| I32 hwFanSpeed | 1.3.6.1.4.1.2011.6.1.1.5.1.9 | Integer32 | read-write | When hwFanSpeedMode is the continue mode, 0 indicates the present wind speed +1, while 1 indicates the present wind speed -1. When hwFanSpeedMode is discontinuous, 0 indicates fixed high speed, while 1 indicates fixed low speed. When hwFanSpeedMode is percent, the value delivered by the main control is the percent value, ranging from 35 to 100, used to initialize the rotation of fan for various device main controls. invalid(-1) indicates that the fan tray does not work normally. For example, the fan tray is disconnected from the control board, or some of the fans in the fan tray are blocked. |
| INT hwFanSpeedMode | 1.3.6.1.4.1.2011.6.1.1.5.1.8 | INTEGER | read-write | The adjusting rotation mode of the fan. Options: 1.continue(1) -continuous control 2.discontinue(2) -discrete control 3.percent(3) -duty ratio control 4.invalid(-1) -indicates that the device can not get the value, e.g. the EMU does not support this operation, or the EMU state is abnormal |
| INT hwFanStatus | 1.3.6.1.4.1.2011.6.1.5.1 | INTEGER | accessible-for-notify | The status of the fan. Options: 1.notconfig(1) -The status of the fan is notconfig 2.failure(2) -The status of the fan is fail |
| hwFanTable | 1.3.6.1.4.1.2011.6.1.1.5 | not-accessible | Information table of fan monitoring. The index of this table is hwEnvEmuIndex that comes from hwEnvironmentInfoTable. hwEnvEmuIndex is the index of the monitoring unit whose monitoring type is fan. | |
| STR hwFanTypeDescription | 1.3.6.1.4.1.2011.6.1.1.5.1.10 | DisplayString | read-only | Fan Type Description. The values 1 and 2 are supported currently. 1 indicates the activation status, and 2 indicates the non-activation status. |
| hwOpticalreceiverEntry | 1.3.6.1.4.1.2011.6.1.1.7.1 | not-accessible | Information table of optical receiver unit. interface optical receiver config mode. | |
| NTF hwOpticalReceiverFailTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.7 | The agent generates this trap when the communication of the OpticalReceiver with the host is abnormal. | ||
| NTF hwOpticalReceiverPowerFailTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.9 | The agent generates this trap when the optical power of OpticalReceiver is abnormal. | ||
| NTF hwOpticalReceiverPowerRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.10 | The agent generates this trap when the optical power of OpticalReceiver recovers to normal rage. | ||
| NTF hwOpticalReceiverRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.8 | The agent generates this trap when the communication of the OpticalReceiver with the host recovers. | ||
| NTF hwOpticalReceiverRFPowerFailTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.11 | The agent generates this trap when the RF power of OpticalReceiver is abnormal. | ||
| NTF hwOpticalReceiverRFPowerRecoverTrap | 1.3.6.1.4.1.2011.6.1.4.2.1.0.12 | The agent generates this trap when the RF power of OpticalReceiver recovers to normal rage. | ||
| hwOpticalreceiverTable | 1.3.6.1.4.1.2011.6.1.1.7 | not-accessible | Information table of optical receiver unit. The index of this table is hwFrameIndex that comes from hwFrameTable. hwFrameIndex is the index of the optical receiver unit whose optical receiver type is optical receiver unit. | |
| I32 hwOR24VVoltage | 1.3.6.1.4.1.2011.6.1.1.7.1.19 | Integer32 | read-only | The current input voltage of Optical receiver. Its unit is V,its real accuracy is 0.1. SNMP uses it which has been enlarged 10 by host. user uses it which has been lessened 10 by SNMP. +24V is positive voltage. |
| I32 hwOR5VVoltage | 1.3.6.1.4.1.2011.6.1.1.7.1.18 | Integer32 | read-only | The current input voltage of Optical receiver. Its unit is V,its real accuracy is 0.1. SNMP uses it which has been enlarged 10 by host. user uses it which has been lessened 10 by SNMP. +5V is positive voltage. |
| STR hwORAGCRange | 1.3.6.1.4.1.2011.6.1.1.7.1.20 | DisplayString | read-only | Start value of the AGC range for optical paths of Optical receiver. |
| STR hwORBarcode | 1.3.6.1.4.1.2011.6.1.1.7.1.17 | DisplayString | read-only | The barcode of Optical receiver |
| INT hwORCOMState | 1.3.6.1.4.1.2011.6.1.1.7.1.1 | INTEGER | read-only | The state of Optical receiver The Optical receiver can be used only when it is online. Options: 1.online(1) - indicates that Optical state is online 2.offline(2) - indicates that Optical state is offline |
| STR hwORHardwareVer | 1.3.6.1.4.1.2011.6.1.1.7.1.3 | DisplayString | read-only | The hard version of Optical receiver |
| STR hwORModelNumber | 1.3.6.1.4.1.2011.6.1.1.7.1.2 | DisplayString | read-only | The model number of Optical receiver |
| I32 hwOROpticalAGCStart | 1.3.6.1.4.1.2011.6.1.1.7.1.10 | Integer32 | read-write | The optical AGC start of Optical receiver Its unit is dBm,its real range is -4dBm~3dBm. |
| INT hwOROpticalPowerAlarmState | 1.3.6.1.4.1.2011.6.1.1.7.1.7 | INTEGER | read-only | The optical power alarm state of Optical receiver The Optical receiver can be used only when it is normal. Options: 1.normal(1) - indicates that Optical power alarm state is normal 2.low(2) - indicates that Optical power alarm state is low 3.high(3) - indicates that Optical power alarm state is high |
| I32 hwOROpticalPowerHighThreshold | 1.3.6.1.4.1.2011.6.1.1.7.1.9 | Integer32 | read-write | The optical power high threshold of Optical receiver Its unit is dbm,its real accuracy is 0.01. SNMP uses it which has been enlarged 100 by host. user uses it which has been lessened 100 by SNMP. Its real range is -10dbm~3dbm,mib range is -1000dbm~300dbm. |
| I32 hwOROpticalPowerLowThreshold | 1.3.6.1.4.1.2011.6.1.1.7.1.8 | Integer32 | read-write | The optical power low threshold of Optical receiver Its unit is dbm,its real accuracy is 0.01. SNMP uses it which has been enlarged 100 by host. user uses it which has been lessened 100 by SNMP. Its real range is -10dbm~3dbm,mib range is -1000dbm~300dbm. |
| I32 hwOROpticalPowerValue | 1.3.6.1.4.1.2011.6.1.1.7.1.6 | Integer32 | read-only | The optical power value of Optical receiver Its unit is dbm,its real accuracy is 0.01. SNMP uses it which has been enlarged 100 by host. user uses it which has been lessened 100 by SNMP. |
| OCT hwORProductDate | 1.3.6.1.4.1.2011.6.1.1.7.1.5 | OCTET STRING | read-only | The product date of Optical receiver field octets contents range ----- ------ -------- ----- 1 1-2 year 0..65536 2 3 month 1..12 3 4 day 1..31 |
| I32 hwORRFAttValue | 1.3.6.1.4.1.2011.6.1.1.7.1.15 | Integer32 | read-write | The RF ATT value of Optical receiver Its unit is db. Its range is 0db~20db. |
| INT hwORRFPowerAlarmState | 1.3.6.1.4.1.2011.6.1.1.7.1.12 | INTEGER | read-only | The RF power alarm state of Optical receiver The Optical receiver can be used only when it is normal. Options: 1.normal(1) - indicates that RF power alarm state is normal 2.low(2) - indicates that RF power alarm state is low 3.high(3) - indicates that RF power alarm state is high |
| I32 hwORRFPowerHighThreshold | 1.3.6.1.4.1.2011.6.1.1.7.1.14 | Integer32 | read-write | The RF power high threshold of Optical receiver Its unit is dBuV,its real accuracy is 0.1. SNMP uses it which has been enlarged 10 by host. user uses it which has been lessened 10 by SNMP. Its real range is 85dBuV~130dBuV,mib range is 850dBuV~1300dBuV. |
| I32 hwORRFPowerLowThreshold | 1.3.6.1.4.1.2011.6.1.1.7.1.13 | Integer32 | read-write | The RF power low threshold of Optical receiver Its unit is dBuV,its real accuracy is 0.1. SNMP uses it which has been enlarged 10 by host. user uses it which has been lessened 10 by SNMP. Its real range is 85dBuV~130dBuV,mib range is 850dBuV~1300dBuV. |
| I32 hwORRFPowerValue | 1.3.6.1.4.1.2011.6.1.1.7.1.11 | Integer32 | read-only | The RF power value of Optical receiver Its unit is dBuV,its real accuracy is 0.1. SNMP uses it which has been enlarged 10 by host. user uses it which has been lessened 10 by SNMP. |
| INT hwORRFSwitch | 1.3.6.1.4.1.2011.6.1.1.7.1.16 | INTEGER | read-write | The RF switch of Optical receiver The Optical receiver can be used only when it is on. Options: 1.off(1) - indicates that RF Switch state is off 2.on(2) - indicates that RF Switch state is on |
| STR hwORSoftwareVer | 1.3.6.1.4.1.2011.6.1.1.7.1.4 | DisplayString | read-only | The software version of Optical receiver |
| hwTcuEntry | 1.3.6.1.4.1.2011.6.1.1.6.1 | not-accessible | Information table of temperature control unit. The index of this entry is hwEnvEmuIndex that comes from hwEnvironmentInfoTable. hwEnvEmuIndex is the index of the monitoring unit whose monitoring type is temperature control unit. | |
| I32 hwTcuExternalFanRev | 1.3.6.1.4.1.2011.6.1.1.6.1.2 | Integer32 | read-only | The rev of Heat Exchanger outer fan, in unit of RMP (rotate per minite) |
| STR hwTcuHeatExchangerType | 1.3.6.1.4.1.2011.6.1.1.6.1.1 | DisplayString | read-only | Heat Exchanger Type Description. |
| I32 hwTcuInternalFanRev | 1.3.6.1.4.1.2011.6.1.1.6.1.3 | Integer32 | read-only | The rev of Heat Exchanger inner fan, in unit of RMP (rotate per minite) |
| I32 hwTcuStartHeatTemp | 1.3.6.1.4.1.2011.6.1.1.6.1.4 | Integer32 | read-write | The temperature of Heat Exchanger starts to heat up, in unit of Celsius |
| I32 hwTcuStopHeatTemp | 1.3.6.1.4.1.2011.6.1.1.6.1.5 | Integer32 | read-write | The temperature of Heat Exchanger stops heating, in unit of Celsius |
| hwTcuTable | 1.3.6.1.4.1.2011.6.1.1.6 | not-accessible | Information table of temperature control unit. The index of this table is hwEnvEmuIndex that comes from hwEnvironmentInfoTable. hwEnvEmuIndex is the index of the monitoring unit whose monitoring type is temperature control unit. | |
| snmpTrapsDef | 1.3.6.1.4.1.2011.6.1.2 |
RFC description
Monitors environmental conditions including temperature, fans, power supplies, and optical receivers on Huawei equipment.
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