WIENER-CRATE-MIB
AI MIB Summary
The WIENER-CRATE-MIB provides SNMP management capabilities for Wiener Network's crate-based hardware platforms, enabling monitoring of interface status, traffic counters, and system health metrics specific to their modular network equipment.
Introduction of the communication.can branch.
Main OID:
wiener.1.3.6.1.4.1.19947
170
Objects
Active
Status
2
Dependencies
Imported Objects
Objects
170 total| Object Name |
|---|
wienerIntroduction of the communication.can branch. MODULE-IDENTITY .1.3.6.1.4.1.19947 |
crateSNMP control for electronic crates. A crate is a complete electronic system and consists of the mechanical rack, a power supply, a fan tray and a backplane. All this things are necessary to provide an adequate housing for electronic modules (e.g. VME CPU's) OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1 |
systemA collection of objects which affect the complete crate OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.1 |
sysMainSwitchRead: An enumerated value which shows the current state of the crates main switch. Write: Try to switch the complete crate ON or OFF. Only the values ON or OFF are allowed.rw Enumeration .1.3.6.1.4.1.19947.1.1.1 |
sysStatusA bit string which shows the status (health) of the complete crate. If a bit is set (1), the explanation is satisfied mainOn (0), system is switched on, individual outputs may be controlled by their specific ON/INHIBIT mainInhibit(1), external (hardware-)inhibit of the complete system localControlOnly (2), local control only (CANBUS write access denied) inputFailure (3), any input failure (e.g. power fail) outputFailure (4), any output failure, details in outputTable fantrayFailure (5), fantray failure sensorFailure (6), temperature of the external sensors too high vmeSysfail(7), VME SYSFAIL signal is active plugAndPlayIncompatible (8) wrong power supply and rack connected busReset (9) The sytem bus (e.g. VME or CPCI) reset signal is active. supplyDerating (10) The (first) system power supply has the DEG signal active. supplyFailure (11) The (first) system power supply has the FAL signal active. supplyDerating2 (12) The second system power supply has the DEG signal active. supplyFailure2 (13) The second system power supply has the FAL signal active.ro Bits .1.3.6.1.4.1.19947.1.1.2 |
sysVmeSysResetRead: Always 0. Write: Trigger the generation of the VME SYSRESET or CPIC RESET signal. This signal will be active for a time of 200 msrw Enumeration .1.3.6.1.4.1.19947.1.1.3 |
sysHardwareResetTriggered a Reset via Watchdog or ResetLine.rw Integer32 -- INTEGER { off (0), on (1) } .1.3.6.1.4.1.19947.1.1.4 |
sysFactoryDefaultsA set operation performs a complete factory reset of ALL data stored in the controller (e.g. community names, passwords, ...).rw Enumeration .1.3.6.1.4.1.19947.1.1.5 |
sysConfigDoMeasurementCurrentCSet the analog inputs to measure voltage or current.rw Bits .1.3.6.1.4.1.19947.1.1.10 |
sysOperatingTimeThe time in seconds for how long the controller was in action.rw Integer32 UNITS "s" .1.3.6.1.4.1.19947.1.1.11 |
sysDebugMemory8Debug 16-bit memory access.rw Integer32 .1.3.6.1.4.1.19947.1.1.1024 |
sysDebugMemory16Debug 16-bit memory access.rw Integer32 .1.3.6.1.4.1.19947.1.1.1025 |
sysDebugMemory32Debug 32-bit memory access.rw Integer32 (-2147483648..2147483647) .1.3.6.1.4.1.19947.1.1.1026 |
sysDebugDebug communication with the MPOD. This is a direct map to the ancient functions which are accessible via USB (without SLIP/SNMP).rw OCTET STRING .1.3.6.1.4.1.19947.1.1.1027 |
sysDebugDisplayDebug communication with the MPOD display.rw OCTET STRING .1.3.6.1.4.1.19947.1.1.1028 |
sysDebugBootDebug communication with the simple debug interface / bootloader.rw OCTET STRING .1.3.6.1.4.1.19947.1.1.1029 |
inputAll objects which are associated with the power input of the crate OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.2 |
outputAll objects which are associated with the power output of the crate OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.3 |
outputNumberThe number of output channels of the crate.ro Integer32 .1.3.6.1.4.1.19947.1.3.1 |
outputTableA list of output entries. SEQUENCE OF OutputEntry .1.3.6.1.4.1.19947.1.3.2 |
outputEntryA table row OutputEntry .1.3.6.1.4.1.19947.1.3.2.1 |
outputIndexA unique number for each power output channel. Its value ranges between 1 and total number of output channels. This value is equivalent to the output channel number at the type label of the crate or power supply, but because the SMI index starts at 1, index 1 corresponds to U0. Enumeration .1.3.6.1.4.1.19947.1.3.2.1.1 |
outputNameA textual string containing a short name of the output. If the crate is equipped with an alphanumeric display, this string is shown to identify a output channel.ro DisplayString .1.3.6.1.4.1.19947.1.3.2.1.2 |
outputGroupThe group number (1...63) assigned to each channel. If commands shall be sent to all channels with a specific group number (e.g. with the groupsSwitch command defined below), additional bits can be added to the group number: HLgggggg g: Group number (1...63) L: Mask bit: 1: high voltage channels only, no low voltage channels H: Mask bit: 1: low voltage channels only, no high voltage channels Special groups: 0: all (LV+HV) channels 0x40: all, but no LV channels 0x80: all, but no HV channelsrw Integer32 .1.3.6.1.4.1.19947.1.3.2.1.3 |
outputStatusA bit string which shows the status (health and operating conditions) of one output channel. If a bit is set (1), the explanation is satisfied: outputOn (0), output channel is on outputInhibit(1), external (hardware-)inhibit of the output channel outputFailureMinSenseVoltage (2) Supervision limit hurt: Sense voltage is too low outputFailureMaxSenseVoltage (3), Supervision limit hurt: Sense voltage is too high outputFailureMaxTerminalVoltage (4), Supervision limit hurt: Terminal voltage is too high outputFailureMaxCurrent (5), Supervision limit hurt: Current is too high outputFailureMaxTemperature (6), Supervision limit hurt: Heat sink temperature is too high outputFailureMaxPower (7), Supervision limit hurt: Output power is too high outputFailureTimeout (9), Communication timeout between output channel and main control outputCurrentLimited (10), Current limiting is active (constant current mode) outputRampUp (11), Output voltage is increasing (e.g. after switch on) outputRampDown (12), Output voltage is decreasing (e.g. after switch off) outputEnableKill (13), EnableKill is active outputEmergencyOff (14), EmergencyOff event is active outputAdjusting (15), Fine adjustment is working outputConstantVoltage (16), Voltage control (constant voltage mode) outputLowCurrentRange (17), The channel is operating in the low current measurement range outputCurrentBoundsExceeded (18), Output current is out of bounds outputFailureCurrentLimit (19) Hardware current limit (EHS) / trip (EDS, EBS) was exceededro Bits .1.3.6.1.4.1.19947.1.3.2.1.4 |
outputMeasurementSenseVoltageThe measured voltage at the sense input lines.ro Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.5 |
outputMeasurementTerminalVoltageThe measured voltage at the output terminals.ro Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.6 |
outputMeasurementCurrentThe measured output current.ro Float UNITS "A" .1.3.6.1.4.1.19947.1.3.2.1.7 |
outputMeasurementTemperatureThe measured temperature of the power module.ro Enumeration .1.3.6.1.4.1.19947.1.3.2.1.8 |
outputSwitchRead: An enumerated value which shows the current state of the output channel. Write: Change the state of the channel. If the channel is On, and the write value is Off, then the channel will switch Off. If the channel is Off, and the write value is On, and if no other signals (mainInhibit, outputInhibit, outputEmergencyOff or outputFailureMaxCurrent) are active, then the channel will switch on. If the write value is resetEmergencyOff, then the channel will leave the state EmergencyOff. A write of clearEvents is necessary before the voltage can ramp up again. If the write value is setEmergencyOff, then the channel will have the state EmergencyOff, which means that the High Voltage will switch off without a ramp and reset of the outputVoltage to null volt. If the write value is clearEvents, then all failure messages of the outputStatus will be reset (all channel events, all module events and the state emergencyOff).rw Enumeration .1.3.6.1.4.1.19947.1.3.2.1.9 |
outputVoltageThe nominal output voltage of the channel.rw Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.10 |
outputAdjustVoltageA posibillity to make small changes of the output voltage.rwobsolete Integer32 (-128..127) .1.3.6.1.4.1.19947.1.3.2.1.11 |
outputCurrentThe current limit of the channel.rw Float UNITS "A" .1.3.6.1.4.1.19947.1.3.2.1.12 |
outputVoltageRiseRateVoltage Fall Slew Rate [V/s]. The slew rate of the output voltage if it increases (after switch on or if the Voltage has been changed).rw Float UNITS "V/s" .1.3.6.1.4.1.19947.1.3.2.1.13 |
outputVoltageFallRateVoltage Rise Slew Rate [V/s]. The slew rate of the output voltage if it decreases (after switch off or if the Voltage has been changed).rw Float UNITS "V/s" .1.3.6.1.4.1.19947.1.3.2.1.14 |
outputSupervisionBehaviorA bit field packed into an integer which define the behavior of the output channel / power supply after failures. For each supervision value, a two-bit field exists. The enumeration of this value (..L+..H*2) is: WIENER LV devices 0 ignore the failure 1 switch off this channel 2 switch off all channels with the same group number 3 switch off the complete crate. iseg HV devices 0 ignore the failure 1 switch off this channel by ramp down the voltage 2 switch off this channel by a emergencyOff 3 switch off the whole board of the HV module by emergencyOff. The position of the bit fields in the integer value are: Bit 0, 1: outputFailureMinSenseVoltage Bit 2, 3: outputFailureMaxSenseVoltage Bit 4, 5: outputFailureMaxTerminalVoltage Bit 6, 7: outputFailureMaxCurrent Bit 8, 9: outputFailureMaxTemperature Bit 10, 11: outputFailureMaxPower Bit 12, 13: outputFailureInhibit Bit 14, 15: outputFailureTimeoutrw Integer32 .1.3.6.1.4.1.19947.1.3.2.1.15 |
outputSupervisionMinSenseVoltageIf the measured sense voltage is below this value, the power supply performs the function defined by SupervisionAction.rw Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.16 |
outputSupervisionMaxSenseVoltageIf the measured sense voltage is above this value, the power supply performs the function defined by SupervisionAction.rw Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.17 |
outputSupervisionMaxTerminalVoltageIf the measured voltage at the power supply output terminals is above this value, the power supply performs the function defined by SupervisionAction.rw Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.18 |
outputSupervisionMaxCurrentIf the measured current is above this value, the power supply performs the function defined by SupervisionAction.rw Float UNITS "A" .1.3.6.1.4.1.19947.1.3.2.1.19 |
outputSupervisionMaxTemperatureIf the measured module temperature is above this value, the power supply performs the function defined by SupervisionAction.rw Integer32 (-128..127) SYNTAX Integer32 UNITS "deg.C" .1.3.6.1.4.1.19947.1.3.2.1.20 |
outputConfigMaxSenseVoltageThe maximum possible value of the sense voltagerw Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.21 |
outputConfigMaxTerminalVoltageThe maximum possible value of the terminal voltagerw Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.22 |
outputConfigMaxCurrentThe maximum possible value of the output currentrw Float UNITS "A" .1.3.6.1.4.1.19947.1.3.2.1.23 |
outputSupervisionMaxPowerIf the measured power (measured current * measured terminal voltage) is above this value, the power supply performs the function defined by SupervisionAction.rw Float UNITS "W" .1.3.6.1.4.1.19947.1.3.2.1.24 |
outputCurrentRiseRateCurrent Fall Slew Rate [A/s]. The slew rate of the output current if it increases (after switch on or if the Current has been changed).rw Float UNITS "A/s" .1.3.6.1.4.1.19947.1.3.2.1.25 |
outputCurrentFallRateCurrent Rise Slew Rate [A/s]. The slew rate of the output current if it decreases (after switch off or if the Current has been changed).rw Float UNITS "A/s" .1.3.6.1.4.1.19947.1.3.2.1.26 |
outputTripTimeMaxCurrentMinimum time the outputSupervisionMaxCurrent threshold must be violated to activate the trip action [ms]. The trip action is defined in outputSupervisionBehavior (bit field outputFailureMaxCurrent) or the new outputTripActionMaxCurrent.rw OutputTripTime UNITS "ms" .1.3.6.1.4.1.19947.1.3.2.1.27 |
outputHardwareLimitVoltageHardware Voltage Limit [V]. Potentiometer to adjust the global hardware voltage limit (for all channels of a module).ro Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.28 |
outputHardwareLimitCurrentHardware Current Limit [A]. Potentiometer to adjust the global hardware current limit (for all channels of a module).ro Float UNITS "A" .1.3.6.1.4.1.19947.1.3.2.1.29 |
outputConfigGainSenseVoltageThe gain value of the sense voltagerw Float .1.3.6.1.4.1.19947.1.3.2.1.30 |
outputConfigOffsetSenseVoltageThe offset value of the sense voltagerw Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.31 |
outputConfigGainTerminalVoltageThe gain value of the sense voltagerw Float .1.3.6.1.4.1.19947.1.3.2.1.32 |
outputConfigOffsetTerminalVoltageThe offset value of the sense voltagerw Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.33 |
outputConfigGainCurrentThe gain value of the sense voltagerw Float .1.3.6.1.4.1.19947.1.3.2.1.34 |
outputConfigOffsetCurrentThe offset value of the sense voltagerw Float UNITS "V" .1.3.6.1.4.1.19947.1.3.2.1.35 |
outputUserConfigDefinition of user-changeable items. A bit field packed into an integer which define the behavior of the output channel. Usable for WIENER LV devices only. The position of the bit fields in the integer value are: Bit 0: Voltage ramping at switch off: 0: Ramp down at switch off. 1: No ramp at switch off (immediate off) Bit 1, 2: Set different regulation modes, dependent on the cable inductance: 0: fast: short cables, up to 1 meter. 1: moderate: cables from 1 to 30 meter. 2: fast: identical to 0 (should not be used) 3: slow: cables longer than 30 meter. Bit 3: Internal sense line connection to the output (MPOD only): 0: The sense input at the sense connector is used for regulation. 1: The output voltage is used for regulation. Any signals at the sense connector are ignored. Bit 4: Enable External Inhibit input. 0: The external inhibit input is ignored. 1: The external inhibit input must be connected to a voltage source to allow switch on. Bit 5: Disable Global Inhibit inputs. 0: The global inhibit/interlock inputs of the system is active. 1: The global inhibit/interlock inputs of the system is ignored. Bit 6: Automatic Power On. 0: After switching the main system switch ON, the output is not switched on automatically. A separate outputSwitch command is required. 1: After switching the main system switch ON, the output is switched on automatically. If 'Disable Global Inhibit' (bit 5) is set, the output will be switched on regardless of the global inhibit/interlock signals. Community required for write access: guru.rw Integer32 .1.3.6.1.4.1.19947.1.3.2.1.37 |
outputRegulationModeDefinition of the regulation mode. Deprecated, use outputUserConfig for this function in the future! It is possible to set different regulation modes, dependent on the cable inductance. fast: short cables, up to 1 meter. moderate: cables from 1 to 30 meter. slow: cables longer than 30 meter. Community required for write access: guru.rw Enumeration .1.3.6.1.4.1.19947.1.3.2.1.38 |
outputConfigMaxTemperatureThe maximum possible value of outputSupervisionMaxTemperature.rw Integer32 -- SYNTAX Integer32 (-128..127) UNITS "deg.C" .1.3.6.1.4.1.19947.1.3.2.1.39 |
outputResistanceItem to specify an external resistor. For instance a wire resistor or an external resistor to protect the detectot which is supplied by a cascaded HV module.rw Float UNITS "Ohm" .1.3.6.1.4.1.19947.1.3.2.1.40 |
outputTripTimeMinSenseVoltageMinimum time the outputSupervisionMinSenseVoltage threshold must be violated to activate the trip action [ms]. The trip action is defined in outputSupervisionBehavior or the new outputTripActionMinSenseVoltage.rw OutputTripTime UNITS "ms" .1.3.6.1.4.1.19947.1.3.2.1.41 |
outputTripTimeMaxSenseVoltageMinimum time the outputSupervisionMaxSenseVoltage threshold must be violated to activate the trip action [ms]. The trip action is defined in outputSupervisionBehavior or the new outputTripActionMaxSenseVoltage.rw OutputTripTime UNITS "ms" .1.3.6.1.4.1.19947.1.3.2.1.42 |
outputTripTimeMaxTerminalVoltageMinimum time the outputSupervisionMaxTerminalVoltage threshold must be violated to activate the trip action [ms]. The trip action is defined in outputSupervisionBehavior or the new outputTripActionMaxTerminalVoltage.rw OutputTripTime UNITS "ms" .1.3.6.1.4.1.19947.1.3.2.1.43 |
outputTripTimeMaxTemperatureMinimum time the outputSupervisionMaxTemperature threshold must be violated to activate the trip action [ms]. The trip action is defined in outputSupervisionBehavior or the new outputTripActionMaxTemperature.rw OutputTripTime UNITS "ms" .1.3.6.1.4.1.19947.1.3.2.1.44 |
outputTripTimeMaxPowerMinimum time the outputSupervisionMaxPower threshold must be violated to activate the trip action [ms]. The trip action is defined in outputSupervisionBehavior or the new outputTripActionMaxPower.rw OutputTripTime UNITS "ms" .1.3.6.1.4.1.19947.1.3.2.1.45 |
outputTripTimeTimeoutMaximum time the communication between module and controller can paused before activation the trip action [ms]. The trip action is defined in outputSupervisionBehavior or the new outputTripActionTimeout.rw OutputTripTime UNITS "ms" .1.3.6.1.4.1.19947.1.3.2.1.46 |
outputTripActionMinSenseVoltageTrip action if outputSuperisionMinSenseVoltage threshold has been violated. The enumerated value is: WIENER LV devices 0 ignore the failure 1 switch off this channel 2 switch off all channels with the same group number 3 switch off the complete crate iseg HV devices 0 ignore the failure 1 switch off this channel by ramp down the voltage 2 switch off this channel by a emergencyOff 3 switch off the whole board of the HV module by emergencyOff. This is a direct access of bits 0..1 of outputSupervisionBehavior.rw OutputTripAction .1.3.6.1.4.1.19947.1.3.2.1.47 |
outputTripActionMaxSenseVoltageTrip action if outputSuperisionMaxSenseVoltage threshold has been violated. The enumerated value is: WIENER LV devices 0 ignore the failure 1 switch off this channel 2 switch off all channels with the same group number 3 switch off the complete crate iseg HV devices 0 ignore the failure 1 switch off this channel by ramp down the voltage 2 switch off this channel by a emergencyOff 3 switch off the whole board of the HV module by emergencyOff. This is a direct access of bits 2..3 of outputSupervisionBehavior.rw OutputTripAction .1.3.6.1.4.1.19947.1.3.2.1.48 |
outputTripActionMaxTerminalVoltageTrip action if outputSuperisionMaxTerminalVoltage threshold has been violated. The enumerated value is: WIENER LV devices 0 ignore the failure 1 switch off this channel 2 switch off all channels with the same group number 3 switch off the complete crate iseg HV devices 0 ignore the failure 1 switch off this channel by ramp down the voltage 2 switch off this channel by a emergencyOff 3 switch off the whole board of the HV module by emergencyOff. This is a direct access of bits 4..5 of outputSupervisionBehavior.rw OutputTripAction .1.3.6.1.4.1.19947.1.3.2.1.49 |
outputTripActionMaxCurrentTrip action if outputSuperisionMaxCurrent threshold has been violated. The enumerated value is: WIENER LV devices 0 ignore the failure 1 switch off this channel 2 switch off all channels with the same group number 3 switch off the complete crate. iseg HV devices 0 ignore the failure 1 switch off this channel by ramp down the voltage 2 switch off this channel by a emergencyOff 3 switch off the whole board of the HV module by emergencyOff. This is a direct access of bits 6..7 of outputSupervisionBehavior.rw OutputTripAction .1.3.6.1.4.1.19947.1.3.2.1.50 |
outputTripActionMaxTemperatureTrip action if outputSuperisionMaxTemperature threshold has been violated. The enumerated value is: WIENER LV devices 0 ignore the failure 1 switch off this channel 2 switch off all channels with the same group number 3 switch off the complete crate iseg HV devices 0 ignore the failure 1 switch off this channel by ramp down the voltage 2 switch off this channel by a emergencyOff 3 switch off the whole board of the HV module by emergencyOff. This is a direct access of bits 8..9 of outputSupervisionBehavior.rw OutputTripAction .1.3.6.1.4.1.19947.1.3.2.1.51 |
outputTripActionMaxPowerTrip action if outputSuperisionMaxPower threshold has been violated. The enumerated value is: WIENER LV devices 0 ignore the failure 1 switch off this channel 2 switch off all channels with the same group number 3 switch off the complete crate iseg HV devices 0 ignore the failure 1 switch off this channel by ramp down the voltage 2 switch off this channel by a emergencyOff 3 switch off the whole board of the HV module by emergencyOff. This is a direct access of bits 10..11 of outputSupervisionBehavior.rw OutputTripAction .1.3.6.1.4.1.19947.1.3.2.1.52 |
outputTripActionExternalInhibitTrip action if the external inhibit input has been activated. The enumerated value is: WIENER LV devices 0 ignore the failure 1 switch off this channel 2 switch off all channels with the same group number 3 switch off the complete crate iseg HV devices 0 ignore the failure 1 switch off this channel by ramp down the voltage 2 switch off this channel by a emergencyOff 3 switch off the whole board of the HV module by emergencyOff. This is a direct access of bits 12..13 of outputSupervisionBehavior.rw OutputTripAction .1.3.6.1.4.1.19947.1.3.2.1.53 |
outputTripActionTimeoutTrip action if the communication between module and controller has been paused longer than outputTripTimeTimeout. The enumerated value is: WIENER LV devices 0 ignore the failure 1 switch off this channel 2 switch off all channels with the same group number 3 switch off the complete crate iseg HV devices 0 ignore the failure 1 switch off this channel by ramp down the voltage 2 switch off this channel by a emergencyOff 3 switch off the whole board of the HV module by emergencyOff. This is a direct access of bits 14..15 of outputSupervisionBehavior.rw OutputTripAction .1.3.6.1.4.1.19947.1.3.2.1.54 |
outputConfigDataSConfiguration Data raw access. This allows to read / write output channel specific user configuration data. This OID is intended for use by WIENER system software only and my not be accessed directly. snmpget: undefined behavior snmpset: OCTET STRING format for reading data (8 octets): offsetInOctets 4 octets / 32 bit numberOfOctets 4 octets / 32 bit OCTET STRING format used for writing data, or returned from the SNMP client after read/write (8+n octets): offsetInOctets 4 octets / 32 bit numberOfOctets 4 octets / 32 bit data numberOfOctets octetsrw OCTET STRING .1.3.6.1.4.1.19947.1.3.2.1.1024 |
outputConfigDataUConfiguration Data raw access. This allows to read / write output channel specific user configuration data. This OID is intended for use by WIENER system software only and my not be accessed directly. snmpget: undefined behavior snmpset: OCTET STRING format for reading data (8 octets): offsetInOctets 4 octets / 32 bit numberOfOctets 4 octets / 32 bit OCTET STRING format returned from the SNMP client, or used for writing data (8+n octets): offsetInOctets 4 octets / 32 bit numberOfOctets 4 octets / 32 bit data numberOfOctets octetsrw OCTET STRING .1.3.6.1.4.1.19947.1.3.2.1.1025 |
groupsNumberThe number of output groups of the crate.ro Integer32 .1.3.6.1.4.1.19947.1.3.3 |
groupsTableA list of output groups entries. SEQUENCE OF GroupsEntry .1.3.6.1.4.1.19947.1.3.4 |
groupsEntryA table row GroupsEntry .1.3.6.1.4.1.19947.1.3.4.1 |
groupsIndexA unique number for each power output group. Its value ranges between 1 and 1999. The special group 0 is predefined and gives access to all channels. Integer32 .1.3.6.1.4.1.19947.1.3.4.1.1 |
groupsSwitchRead: This function is not defined with groups of output channels. Write: Switch the state of all channels of a group. If any channel is On, and the write value is Off, then all channels will switch off. If any channel is Off, and the write value is On, and if no other signals (mainInhibit, outputInhibit, outputEmergencyOff or outputFailureMaxCurrent) are active, then all channels will switch on. If the write value is resetEmergencyOff, then all channels will leave the state EmergencyOff. A write of clearEvents is necessary before the voltage can ramp up again. If the write value is setEmergencyOff, then all channels will have the state EmergencyOff, which means that the High Voltage will switch off without a ramp and reset of the outputVoltage to null volt. If the write value is disableKILL, then all channels will switch to disableKill (outputStatus outputDisableKill). If the write value is enableKILL, then all channels will switch to enableKill (outputStatus outputEnableKill). If the write value is clearEvents, then all failure messages of the outputStatus will be cleared (all channel events, all module events and the state outputEmergencyOff will be reset). For a detailed description of the different group numbers available look at the outputGroup OID above.rw Enumeration .1.3.6.1.4.1.19947.1.3.4.1.9 |
moduleNumberThe number of HV/LV modules of the crate.ro Integer32 .1.3.6.1.4.1.19947.1.3.5 |
moduleTableA list of output module entries. SEQUENCE OF ModuleEntry .1.3.6.1.4.1.19947.1.3.6 |
moduleEntryA row in the table of HV/LV modules ModuleEntry .1.3.6.1.4.1.19947.1.3.6.1 |
moduleIndexA unique number for each HV/LV module. Its value ranges between 1 and the total number of HV/LV modules. Note, index 1 corresponds to ma0. Enumeration .1.3.6.1.4.1.19947.1.3.6.1.1 |
moduleDescriptionVendor, FirmwareName, ChannelNumber, SerialNumber, FirmwareRelease Vendor WIENER or iseg FirmwareName: 'E16D0' EDS 16 channels per PCB, distributor module, range of Vmax from VO max to (VO max - 1kV) 'E16D1' EDS 16 channels per PCB, distributor module 'E08C0' EHS 8 channels per PCB, common GND module 'E08F0' EHS 8 channels per PCB, floating GND module 'E08F2' EHS 8 channels per PCB, floating GND module, 2 current measurement ranges 'E08C2' EHS 8 channels per PCB, common floating GND module, 2 current measurement ranges 'E08B0' EBS 8 bipolars channel per PCB, distributor module 'H101C0' HPS 1 channel HV high power supply ChannelNumber 1 to 64 SerialNumber 71xxxx FirmwareRelease x.xxro OCTET STRING .1.3.6.1.4.1.19947.1.3.6.1.2 |
moduleAuxiliaryMeasurementVoltageThe measured module auxiliary voltages. OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.3.6.1.3 |
moduleAuxiliaryMeasurementVoltage0The measured module auxiliary voltage.ro Float UNITS "V" .1.3.6.1.4.1.19947.1.3.6.1.3.1 |
moduleAuxiliaryMeasurementVoltage1The measured module auxiliary voltage.ro Float UNITS "V" .1.3.6.1.4.1.19947.1.3.6.1.3.2 |
moduleHardwareLimitVoltageThe module hardware voltage limit.ro Float UNITS "%" .1.3.6.1.4.1.19947.1.3.6.1.4 |
moduleHardwareLimitCurrentThe module hardware current limit.ro Float UNITS "%" .1.3.6.1.4.1.19947.1.3.6.1.5 |
moduleRampSpeedVoltageThe module voltage ramp speed (iseg HV modules have the same ramp speed value for all channels).rw Float UNITS "%" .1.3.6.1.4.1.19947.1.3.6.1.6 |
moduleRampSpeedCurrentThe module current ramp speed (iseg HV modules have the same ramp speed value for all channels).rw Float UNITS "%" .1.3.6.1.4.1.19947.1.3.6.1.7 |
moduleStatusA bit string which shows the current module status. If a bit is set (1), the explanation is satisfied: moduleIsFineAdjustment (0), Module has reached state fine adjustment. moduleIsLiveInsertion (2), Module is in state live insertion. moduleNeedService (4), Hardware failure detected (consult iseg Spezialelektronik GmbH). moduleIsHardwareLimitVoltageGood (5), Hardware limit voltage in proper range, using for HV distributor modules with current mirror only. moduleIsInputError (6), Input error in connection with a module access. moduleIsNoSumError (8), All channels without any failure. moduleIsNoRamp (9), All channels stable, no is ramp active. moduleIsSafetyLoopGood (10), Safety loop is closed. moduleIsEventActive (11), Any event is active and mask is set. moduleIsGood (12), Module state is good. moduleIsSupplyGood (13), Power supply is good. moduleIsTemperatureGood (14), Module temperature is good. moduleIsKillEnable (15) Module state of kill enable.ro Bits .1.3.6.1.4.1.19947.1.3.6.1.8 |
moduleEventStatusA bit string which shows the current module status. If a bit is set (1), the explanation is satisfied: moduleEventPowerFail (0), Event power fail generated by the MPOD controller in order to ramp down all HV's (ramp speed=1000V/s) moduleEventLiveInsertion (2), Event live insertion to prepare a hot plug of a module moduleEventService (4), Module event: Hardware failure detected (consult iseg Spezialelektronik GmbH). moduleHardwareLimitVoltageNotGood (5), Module Event: Hardware voltage limit is not in proper range, using for HV distributor modules with current mirror only. moduleEventInputError (6), Module event: There was an input error in connection with a module access moduleEventSafetyLoopNotGood (10), Module event: Safety loop is open. moduleEventSupplyNotGood (13), Module event: At least one of the supplies is not good. moduleEventTemperatureNotGood (14), Module event: Temperature was above the permitted threshold (for EDS/EHS temperature above 55 degr.C)ro Bits .1.3.6.1.4.1.19947.1.3.6.1.9 |
moduleEventChannelStatusBit field that reserves one bit for every channel. bit 0 HV channel 0 bit 1 HV channel 1 bit x HV channel xro Bits .1.3.6.1.4.1.19947.1.3.6.1.10 |
moduleDoClearAll events of the module will be cleared.rw Enumeration .1.3.6.1.4.1.19947.1.3.6.1.11 |
moduleAuxiliaryMeasurementTemperatureThe number of auxiliary temperature sensors in the module. OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.3.6.1.12 |
moduleAuxiliaryMeasurementTemperature0The measured module temperature of sensor 1.ro Float UNITS "deg.C" .1.3.6.1.4.1.19947.1.3.6.1.12.1 |
moduleAuxiliaryMeasurementTemperature1The measured module temperature of sensor 2.ro Float UNITS "deg.C" .1.3.6.1.4.1.19947.1.3.6.1.12.2 |
moduleAuxiliaryMeasurementTemperature2The measured module temperature of sensor 3.ro Float UNITS "deg.C" .1.3.6.1.4.1.19947.1.3.6.1.12.3 |
moduleAuxiliaryMeasurementTemperature3The measured module temperature of sensor 4.ro Float UNITS "deg.C" .1.3.6.1.4.1.19947.1.3.6.1.12.4 |
moduleConfigDataSConfiguration Data raw access. This allows to read / write output channel specific system configuration data. This OID is intended for use by WIENER system software only and my not be accessed directly. snmpget: undefined behavior snmpset: OCTET STRING format for reading data (8 octets): offsetInOctets 4 octets / 32 bit numberOfOctets 4 octets / 32 bit OCTET STRING format returned from the SNMP client, or used for writing data (8+n octets): offsetInOctets 4 octets / 32 bit numberOfOctets 4 octets / 32 bit data numberOfOctets octetsrw OCTET STRING .1.3.6.1.4.1.19947.1.3.6.1.1024 |
moduleConfigDataUConfiguration Data raw access. This allows to read / write output channel specific user configuration data. This OID is intended for use by WIENER system software only and my not be accessed directly. snmpget: undefined behavior snmpset: OCTET STRING format for reading data (8 octets): offsetInOctets 4 octets / 32 bit numberOfOctets 4 octets / 32 bit OCTET STRING format returned from the SNMP client, or used for writing data (8+n octets): offsetInOctets 4 octets / 32 bit numberOfOctets 4 octets / 32 bit data numberOfOctets octetsrw OCTET STRING .1.3.6.1.4.1.19947.1.3.6.1.1025 |
sensorAll objects which are associated with temperature sensors in the crate OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.4 |
sensorNumberThe number of temperature sensors of the crate.ro Integer32 .1.3.6.1.4.1.19947.1.4.1 |
sensorTableA (conceptual table) of temperature sensor data. SEQUENCE OF SensorEntry .1.3.6.1.4.1.19947.1.4.2 |
sensorEntryAn entry (conceptual row) of the sensorTable. SensorEntry .1.3.6.1.4.1.19947.1.4.2.1 |
sensorIndexA unique number for each temperature sensor in the crate Enumeration .1.3.6.1.4.1.19947.1.4.2.1.1 |
sensorTemperatureThe measured temperature of the sensor. Unused temperature probes have the special value -128ro Enumeration .1.3.6.1.4.1.19947.1.4.2.1.2 |
sensorWarningThresholdIf the measured temperature of the sensor is higher than this value, the fan speed of the connected fan tray is increased. The value 127 has the special meaning: channel disabled.rw Enumeration .1.3.6.1.4.1.19947.1.4.2.1.3 |
sensorFailureThresholdIf the measured temperature of the sensor is higher than this value, the power supply switches off. The value 127 has the special meaning: channel disabled.rw Enumeration .1.3.6.1.4.1.19947.1.4.2.1.4 |
sensorAlarmThresholdIf the measured temperature of the sensor is much higher than this value, the fans rotate in full speed. The value 127 has the special meaning: channel disabled.rw Enumeration .1.3.6.1.4.1.19947.1.4.2.1.6 |
sensorNameA textual string containing a short name of the sensor. If the crate is equipped with an alphanumeric display, this string is shown to identify a sensor channel.rw DisplayString .1.3.6.1.4.1.19947.1.4.2.1.7 |
sensorIDShows the 1-Wire Id of the corresponding Sensor.rw OCTET STRING .1.3.6.1.4.1.19947.1.4.2.1.8 |
sensorStatusA bit field packed into an integer which define the Status of the Sensors after failures. For each Status value, a two-bit field exists. Bits-Value 00 Temperature is ok 01 Temperature is over WarningThreshold 10 Temperature is over AlarmThreshold 11 Temperature is over FailureThreshold The position of the bit fields in the integer value are: Bit 0, 1: Sensor1 Bit 2, 3: Sensor2 Bit 4, 5: Sensor3 Bit 6, 7: Sensor4 Bit 8, 9: Sensor5 Bit 10, 11: Sensor6 Bit 12, 13: Sensor7 Bit 14, 15: Sensor8ro Integer32 .1.3.6.1.4.1.19947.1.4.2.1.9 |
communicationAll objects which affect the remote control of the crate OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.5 |
snmpSNMP configuration. OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.5.1 |
snmpCommunityTableThe SNMP community string table for different views. SEQUENCE OF SnmpCommunityEntry .1.3.6.1.4.1.19947.1.5.1.1 |
snmpCommunityEntryOne table row. SnmpCommunityEntry .1.3.6.1.4.1.19947.1.5.1.1.1 |
snmpAccessRightA unique number for each access right Enumeration .1.3.6.1.4.1.19947.1.5.1.1.1.1 |
snmpCommunityNameThe SNMP community names for different views. The rights of the different communities are: public no write access private can switch power on/off, generate system reset admin can change supervision levels guru can change output voltage & current (this may destroy hardware if done wrong!) Setting a community name to a zero-length string completly disables the access to this view. If there is no higher- privileged community, the community name can only changed by direct access to the crate (not via network)!rw OCTET STRING .1.3.6.1.4.1.19947.1.5.1.1.1.2 |
snmpPortThe UDP port number of the SNMP protocol. A value of 0 disables all future SNMP communication!rw Integer32 .1.3.6.1.4.1.19947.1.5.1.2 |
httpPortThe TCP port number of the HTTP (web) protocol. A value of 0 disables all HTTP access.rw Integer32 .1.3.6.1.4.1.19947.1.5.1.3 |
firmwareUpdateSend a update Stringrw OCTET STRING .1.3.6.1.4.1.19947.1.5.1.10 |
ipDynamicAddressShows the Ip which is currently usedro IpAddress .1.3.6.1.4.1.19947.1.5.1.11 |
ipStaticAddressShows the Ip which is setted by userrw IpAddress .1.3.6.1.4.1.19947.1.5.1.12 |
macAddressShows the MAC of the corresponding devicerw MacAddress (SNMPv2-TC) .1.3.6.1.4.1.19947.1.5.1.13 |
canCAN-Bus tunnel via SNMP. OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.5.2 |
canBitRateControl of the CAN-Bus. The value defines the bit rate of the CAN-bus interface. A write disconnects the CAN interface from the ISEG modules and connects it to the SNMP communication. Both the receive and transmit fifos are cleared and the CAN interface is initialized with the selected bit rate. The special bit rate 0 disables the tunnel and switches back to normal operation.rw Integer32 .1.3.6.1.4.1.19947.1.5.2.1 |
canReceiveControl of the CAN-Bus Receive FIFO. A read access returns the total number of CAN messages stored in the receive fifo and the oldest message. This message is removed from the fifo. The OCTET STRING data is formatted according to the CANviaSNMP structure.ro OCTET STRING .1.3.6.1.4.1.19947.1.5.2.2 |
canTransmitControl of the CAN-Bus Transmit FIFO. A read access returns the total number of CAN messages stored in the transmit fifo and a NULL message. A write inserts the CAN message into the transmit fifo. This message will be transmitted via the CAN interface later. The total number of CAN messages stored in the transmit fifo and the recent message are returned. The OCTET STRING data is formatted according to the CANviaSNMP structure.rw OCTET STRING .1.3.6.1.4.1.19947.1.5.2.3 |
canReceiveHvControl of the internal HV CAN-Bus on the backplane Receive FIFO. A read access returns the total number of CAN messages stored in the receive fifo and the oldest message. This message is removed from the fifo. The OCTET STRING data is formatted according to the CANviaSNMP structure.ro OCTET STRING .1.3.6.1.4.1.19947.1.5.2.4 |
canTransmitHvControl of the internal HV CAN-Bus on the backplane. A write access with: CANID=0x600 DLC=4 DATAID=0x1001 CONTROL will switch the HV modules into a special state. CONTROL=0x0001 - enable SNMP CAN access, stop the refresh cycle for the data points of the name space CONTROL=0x0002 - disable SNMP CAN access, activate the refresh cycle for the data points of the name space A write access unequal to CANID=0x600 will be transmitted to the HV CAN on the backplane. Such a message will be transmitted immediately via the CAN interface. The OCTET STRING data is formatted according to the CANviaSNMP structure.rw OCTET STRING .1.3.6.1.4.1.19947.1.5.2.5 |
canBitRateHvControl of the bit rate of the HV CAN-Bus. The value defines the bit rate of the CAN-bus interface. Possible Values are 125000 and 250000. Changing this value requires MPODC slave firmware 1.10 or above.rw Integer32 ( 125000..1000000 ) .1.3.6.1.4.1.19947.1.5.2.6 |
powersupplyAll objects which are specific for the power supply of the crate OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.6 |
psSerialNumberThe serial number of the power supply.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.19947.1.6.2 |
psOperatingTimeThe time in seconds for how long the power supply was switched on.rw Integer32 UNITS "s" .1.3.6.1.4.1.19947.1.6.3 |
psAuxiliaryNumberThe number of auxiliary channels of the power supply.ro Integer32 .1.3.6.1.4.1.19947.1.6.4 |
psAuxiliaryTableA list of psAuxiliary entries. SEQUENCE OF PsAuxiliaryEntry .1.3.6.1.4.1.19947.1.6.5 |
psAuxiliaryEntryA table row PsAuxiliaryEntry .1.3.6.1.4.1.19947.1.6.5.1 |
psAuxiliaryIndexA unique number for each power supply auxiliary channel. Its value ranges between 1 and total number of output channels. SMI index starts at 1, so index 1 corresponds to U0. Enumeration .1.3.6.1.4.1.19947.1.6.5.1.1 |
psAuxiliaryMeasurementVoltageThe measured power supply auxiliary output voltage.ro Float UNITS "V" .1.3.6.1.4.1.19947.1.6.5.1.3 |
psAuxiliaryMeasurementCurrentThe measured power supply auxiliary output current.ro Float UNITS "A" .1.3.6.1.4.1.19947.1.6.5.1.4 |
psDirectAccessDirect data transfer to the UEP6000 power supply. A read access returns nothing, a write access returns the response of the power supply.rw OCTET STRING .1.3.6.1.4.1.19947.1.6.1024 |
fantrayAll objects which are specific for the fan tray of the crate OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.7 |
fanSerialNumberThe serial number of the fan tray.rw DisplayString .1.3.6.1.4.1.19947.1.7.2 |
fanOperatingTimeThe time in seconds for how long the fan tray was switched on.rw Integer32 UNITS "s" .1.3.6.1.4.1.19947.1.7.3 |
fanAirTemperatureThe temperature of the fan tray inlet air.ro Integer32 UNITS "deg.C" .1.3.6.1.4.1.19947.1.7.4 |
fanSwitchOffDelayThe maximum time in seconds for which the fans will continue running after the power supply has been switched off. This feature is used to cool down the electronics after switching off.rw Integer32 (0 .. 900) UNITS "s" .1.3.6.1.4.1.19947.1.7.5 |
fanNominalSpeedThe nominal fan rotation speed (RPM, Revolutions Per Minute) Value 0 does switch off the fans (only allowed if at least one rack temperature sensor is present). Values 1..1199 are not allowedrw Integer32 UNITS "RPM" .1.3.6.1.4.1.19947.1.7.6 |
fanNumberOfFansThe number of installed fansrw Integer32 ( 0..12 ) UNITS "Fans" .1.3.6.1.4.1.19947.1.7.7 |
fanSpeedTableA list of fanSpeedEntries. SEQUENCE OF FanSpeedEntry .1.3.6.1.4.1.19947.1.7.8 |
fanSpeedEntryA table row FanSpeedEntry .1.3.6.1.4.1.19947.1.7.8.1 |
fanNumberA unique number for each fan. Integer32 ( 1..12 ) .1.3.6.1.4.1.19947.1.7.8.1.1 |
fanSpeedThe measured fan rotation speed (RPM, Revolutions Per Minute)ro Integer32 UNITS "RPM" .1.3.6.1.4.1.19947.1.7.8.1.2 |
fanMaxSpeedThe highest allowed rotationspeed of fan.rw Integer32 UNITS "RPM" .1.3.6.1.4.1.19947.1.7.9 |
fanMinSpeedThe lowest allowed Rotationspeed of fan.rw Integer32 UNITS "RPM" .1.3.6.1.4.1.19947.1.7.10 |
fanConfigMaxSpeedHardwarelimits. Can only set by WIENER.rw Integer32 UNITS "RPM" .1.3.6.1.4.1.19947.1.7.11 |
fanConfigMinSpeedHardwarelimits Can only set by WIENER.rw Integer32 UNITS "RPM" .1.3.6.1.4.1.19947.1.7.12 |
rackAll objects which are specific for the crate (BIN) of the crate OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.8 |
signalAll objects which are associated with analog/digtal input/output in the crate OBJECT IDENTIFIER .1.3.6.1.4.1.19947.1.9 |
numberOfAnalogInputsThe number of additional analog inputs of the crate.ro Integer32 .1.3.6.1.4.1.19947.1.9.1 |
analogInputTableA (conceptual table) of analog input data. SEQUENCE OF AnalogInputEntry .1.3.6.1.4.1.19947.1.9.2 |
analogInputEntryAn entry (conceptual row) of the analogInputTable. AnalogInputEntry .1.3.6.1.4.1.19947.1.9.2.1 |
analogInputIndexA unique number for each analog input of the crate Integer32 .1.3.6.1.4.1.19947.1.9.2.1.1 |
analogMeasurementVoltageThe measured voltage of the analog input.ro Float UNITS "V" .1.3.6.1.4.1.19947.1.9.2.1.2 |
analogMeasurementCurrentThe measured current of the analog input.ro Float UNITS "A" .1.3.6.1.4.1.19947.1.9.2.1.3 |
digitalInputThe value of the digital inputs.ro Bits .1.3.6.1.4.1.19947.1.9.5 |
digitalOutputThe value of the digital outputs.ro Bits .1.3.6.1.4.1.19947.1.9.6 |