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Table Of Contents
Power Management for the Cisco 12000 Series Router
Restrictions for Power Management for the Cisco 12000 Series Router
Information About Power Management for the Cisco 12000 Series Router
How to Configure the Power Management Feature
Changing the Power Manager Calculation Mode
Power Management for the Cisco 12000 Series Router
Revised: July 30, 2009, OL-8741-01, Rev. B0Some combinations of older power supplies and recent line cards in Cisco 12000 Series routers can result in a condition where the total power required to operate exceeds the total power available. The power management feature calculates the maximum possible power consumption of all chassis components and generates warning messages if the calculation indicates the possibility of an underpowered condition. Messages are also generated for events that affect power consumption. New show command output provides power consumption ratings of all supported line cards.
Feature History for Power Management for the Cisco 12000 Series Router
Finding Support Information for Platforms and Cisco IOS Software Images
Use Cisco Feature Navigator to find information about platform support and Cisco IOS software image support. Access Cisco Feature Navigator at http://www.cisco.com/go/fn. You must have an account on Cisco.com. If you do not have an account or have forgotten your username or password, click Cancel at the login dialog box and follow the instructions that appear.
Contents
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Restrictions for Power Management for the Cisco 12000 Series Router
•
Information About Power Management for the Cisco 12000 Series Router
•
How to Configure the Power Management Feature
Restrictions for Power Management for the Cisco 12000 Series Router
The Power Management feature is not supported on the Cisco 12008 or 12010 routers.
Information About Power Management for the Cisco 12000 Series Router
To configure the Power Management for the Cisco 12000 Series Router feature, you should understand the following concepts:
Power Manager Facility
The introduction of high-wattage Cisco 12000 Series line cards has made theoretical chassis configurations possible in which the maximum power required for the router could exceed the maximum power available if older power supplies are installed. The Power Management for the Cisco 12000 Series Router feature permits the administrator to plan and monitor the power usage, as well as dynamically receive messages related to events that change the power usage. The power manager feature does not control the power supplied to any component, it only monitors, calculates, and generates messages.
The power management feature can display a table of all supported Cisco 12000 Series field replaceable units (FRUs) with their rated maximum power consumption in watts, as well as dynamic summaries and individual power consumption calculations for all installed chassis components. The calculations are based on the rated maximum wattages and the power manager configuration options. System messages are generated for events that change power consumption. The following power-related events create logged messages:
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Power supply insertion or removal
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Power supply power-up or power-down
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Line card OIR insertion or removal
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CLI line card power-up or power-down
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Environment monitor line card shutdown
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mode change to additive or redundant
The power manager feature continually audits power supply capacities and the power up or down states of all chassis components every 2.5 seconds, then recalculates the power usage according to the power manager configuration. The power manager configuration can specify power zones and specify additive or redundant calculation modes. The default is redundant mode. The power manager facility can be disabled.
Power Zones
A power zone comprises the power supplies and other chassis components connected to the same power bus. The 16-slot DC-powered chassis with the original power supplies, has two independent power buses, and thus two power zones. Zone A corresponds to the upper card cage with its two power supplies, and Zone B corresponds to the lower card cage with its two power supplies. The 16-slot DC chassis with enhanced power supplies has one power zone. All other Cisco 12000 Series router chassis have one power zone.
Additive and Redundant Modes
Additive Watts = Total_Watts_of_Power_Supplies_in_Zone
Redundant Watts = (Total_Watts_of_Power_Supplies_in_Zone) - (Redundant_Power_Supply_Watts)
In additive mode, the total available power in a power zone is calculated by the power manager as the total capacity in watts of all operating power supplies in the zone. This value is recalculated when a change occurs in the status of a power supply in the zone.
Note
Additive mode is provided for those installations where guaranteed system up-time is a lower priority than maximizing the number of line cards and chassis components installed.
In redundant mode the total available power reported for a zone is equivalent to the total capacity in watts of all operating power supplies in the zone minus the power ratings of operating redundant power supplies in the zone.
For example, a Cisco 12810 router with two 2,800 watt power supplies, and 1+1 power supply redundancy, would report 5,600 watts total available power in additive mode, and 2,800 watts total available power in redundant mode.
For chassis with two power zones, the power zones can be configured with the same or with differing modes.
Table 2 lists how redundancy is defined for Cisco 12000 Series powershelves.
Table 1 Cisco 12000 Series Router Power Supply Redundancy Scheme
Number of Power Supplies in Powershelf 1 Redundancy Type22
1 + 1
3
2 + 1
4 AC
2 + 2
4 (DC original power supplies)
1 + 1 in Zone A, 1 + 1 in Zone B
4 (DC enhanced power supplies)
2 + 2
1 Redundancy allocations are valid for original and upgraded models of the AC power supplies.
2 In the n + x redundancy formulation, n represents the number of power supplies required for the maximum power demands and x is the number of additional power supplies installed. For example, n + 1 redundancy includes one power supply more than the minimum number required to sustain the maximum power demand of the system.
If the total power load of chassis components and line cards in a zone is less then or equal to the total available power reported by the power manager in redundant mode, the router can continue to safely operate in the event of a power supply failure.
Power Manager Error Messages
Some conditions may generate error messages even though the Power Manager feature is disabled. This is because the power manager is auditing the power system before the bootup procedure parses and executes the power manager disable command in the startup-config file.
Error Message%POWERMGR-0-ENQUEUE: Cannot enqueue event [chars] for device [dec]
Explanation Power Manager internal failure occurred; possibly low memory condition.
Recommended Action Copy the error message exactly as it appears on the console or in the system log. Research and attempt to resolve the error using the Output Interpreter https://www.cisco.com/cgi-bin/Support/OutputInterpreter/home.pl.
Also perform a search of the Bug Toolkit
http://www.cisco.com/cgi-bin/Support/Bugtool/home.pl. If you still require assistance, open a case with the Technical Assistance Center via the Internet http://tools.cisco.com/ServiceRequestTool/create/launch.do, or contact your Cisco technical support representative and provide the representative with the gathered information.Error Message%POWERMGR-0-INITFAIL: Resource allocation error encountered during startup
Explanation Power Manager subsystem failed during startup; lack of resources
Recommended Action Copy the error message exactly as it appears on the console or in the system log. Research and attempt to resolve the error using the Output Interpreter https://www.cisco.com/cgi-bin/Support/OutputInterpreter/home.pl.
Also perform a search of the Bug Toolkit
http://www.cisco.com/cgi-bin/Support/Bugtool/home.pl. If you still require assistance, open a case with the Technical Assistance Center via the Internet http://tools.cisco.com/ServiceRequestTool/create/launch.do, or contact your Cisco technical support representative and provide the representative with the gathered information.Error Message%POWERMGR-2-CANNOT_TALK: No alarmcard/busboard module available to communicate w/ PEM[dec]
Explanation No alarmcard or busboard module was found available to talk to the PEMs. The results are unpredictable, as power availability cannot be determined. Some linecards may be left in an unpowered state as a result.
Recommended Action Copy the error message exactly as it appears on the console or in the system log. Research and attempt to resolve the error using the Output Interpreter https://www.cisco.com/cgi-bin/Support/OutputInterpreter/home.pl.
Also perform a search of the Bug Toolkit
http://www.cisco.com/cgi-bin/Support/Bugtool/home.pl. If you still require assistance, open a case with the Technical Assistance Center via the Internet http://tools.cisco.com/ServiceRequestTool/create/launch.do, or contact your Cisco technical support representative and provide the representative with the gathered information.Error Message%POWERMGR-2-INVALID_COND: Internal programatic error or invalid condition detected ([chars]:[dec])
Explanation A disallowed condition internal to the Power Manager has been detected.
Recommended Action Copy the error message exactly as it appears on the console or in the system log. Research and attempt to resolve the error using the Output Interpreter https://www.cisco.com/cgi-bin/Support/OutputInterpreter/home.pl.
Also perform a search of the Bug Toolkit
http://www.cisco.com/cgi-bin/Support/Bugtool/home.pl. If you still require assistance, open a case with the Technical Assistance Center via the Internet http://tools.cisco.com/ServiceRequestTool/create/launch.do, or contact your Cisco technical support representative and provide the representative with the gathered information.Error Message%POWERMGR-2-OVERBUDGET: Power consumption has exceeded supply by [dec]W; results unpredictable
Explanation The power calculated in use by the chassis exceeds that available by the powershelf. This condition could result in an outage of the chassis if action is not immediately taken.
Recommended Action Remove some linecards to reduce power consumption, or install a higher capacity powershelf.
Error Message%POWERMGR-2-TIMEOUT: Timed out waiting for response from power-up of slot [dec]
Explanation Power Manager internal failure occurred.
Recommended Action Copy the error message exactly as it appears on the console or in the system log. Research and attempt to resolve the error using the Output Interpreter https://www.cisco.com/cgi-bin/Support/OutputInterpreter/home.pl.
Also perform a search of the Bug Toolkit
http://www.cisco.com/cgi-bin/Support/Bugtool/home.pl. If you still require assistance, open a case with the Technical Assistance Center via the Internet http://tools.cisco.com/ServiceRequestTool/create/launch.do, or contact your Cisco technical support representative and provide the representative with the gathered information.Error MessageS%POWERMGR-3-EVENT_ERROR: Spurious QUEUE_EVENT, dequeueing NULL pointer
Explanation Power Manager main event loop encountered internal error.
Recommended Action Copy the error message exactly as it appears on the console or in the system log. Research and attempt to resolve the error using the Output Interpreter https://www.cisco.com/cgi-bin/Support/OutputInterpreter/home.pl.
Also perform a search of the Bug Toolkit
http://www.cisco.com/cgi-bin/Support/Bugtool/home.pl. If you still require assistance, open a case with the Technical Assistance Center via the Internet http://tools.cisco.com/ServiceRequestTool/create/launch.do, or contact your Cisco technical support representative and provide the representative with the gathered information.Error Message%POWERMGR-3-UNKNOWN_PEM: Unable to determine characteristics of PEM[dec]; skipping
Explanation The characteristics of the power supply installed in the specified slot could not be determined. This supply is being skipped, and discovery of the rest of the powershelf will continue. If no supplies can be found, a failsafe type will be used to allow the chassis to come up to a point at which debugging of the problem is possible.
Recommended Action Copy the error message exactly as it appears on the console or in the system log. Research and attempt to resolve the error using the Output Interpreter https://www.cisco.com/cgi-bin/Support/OutputInterpreter/home.pl.
Also perform a search of the Bug Toolkit
http://www.cisco.com/cgi-bin/Support/Bugtool/home.pl. If you still require assistance, open a case with the Technical Assistance Center via the Internet http://tools.cisco.com/ServiceRequestTool/create/launch.do, or contact your Cisco technical support representative and provide the representative with the gathered information.Error Message%POWERMGR-3-UNKNOWN_PEMS: Unable to detect installed power supplies; using failsafe assumptions
Explanation The installed power supplies (i.e., PEMs) could not be detected. To allow the chassis to come up, a set of conservative assumptions have been used for calculating power availability and consumption. Some linecards may be left in an unpowered state as a result.
Recommended Action Copy the error message exactly as it appears on the console or in the system log. Research and attempt to resolve the error using the Output Interpreter https://www.cisco.com/cgi-bin/Support/OutputInterpreter/home.pl.
Also perform a search of the Bug Toolkit
http://www.cisco.com/cgi-bin/Support/Bugtool/home.pl. If you still require assistance, open a case with the Technical Assistance Center via the Internet http://tools.cisco.com/ServiceRequestTool/create/launch.do, or contact your Cisco technical support representative and provide the representative with the gathered information.Error Message%POWERMGR-3-UNKNOWN_SHELF: Unable to determine powershelf type; using failsafe assumptions
Explanation The powershelf type (AC or DC) could not be determined during bootup. To allow the chassis to come up, a set of conservative assumptions have been used for calculating power availability and consumption. Some linecards may be left in an unpowered state as a result.
Recommended Action Copy the error message exactly as it appears on the console or in the system log. Research and attempt to resolve the error using the Output Interpreter https://www.cisco.com/cgi-bin/Support/OutputInterpreter/home.pl.
Also perform a search of the Bug Toolkit
http://www.cisco.com/cgi-bin/Support/Bugtool/home.pl. If you still require assistance, open a case with the Technical Assistance Center via the Internet http://tools.cisco.com/ServiceRequestTool/create/launch.do, or contact your Cisco technical support representative and provide the representative with the gathered information.Error Message%POWERMGR-4-UNPOWERED:PEM[dec] inserted but unpowered
Explanation The power supply specified has been installed in the chassis but is unpowered, most likely because of an unconnected power cord.
Recommended Action Check the power cord and if installed correctly, remove and reinstall the PEM. If the error persists, contact customer support.
Error Message%POWERMGR-4-PEM_DOWN: PEM[dec] has powered down
Explanation The power supply specified has powered down.
Recommended Action This message is informational. No action is required.
Error Message%POWERMGR-5-INVALID_EVENT: Unexpected event [dec]/[dec]; ignoring
Explanation Power Manager received an event that was not expected.
Recommended Action Copy the error message exactly as it appears on the console or in the system log. Research and attempt to resolve the error using the Output Interpreter https://www.cisco.com/cgi-bin/Support/OutputInterpreter/home.pl.
Also perform a search of the Bug Toolkit
http://www.cisco.com/cgi-bin/Support/Bugtool/home.pl. If you still require assistance, open a case with the Technical Assistance Center via the Internet http://tools.cisco.com/ServiceRequestTool/create/launch.do, or contact your Cisco technical support representative and provide the representative with the gathered information.Error Message%POWERMGR-5-REMOVED: PEM[dec] removed
Explanation The power supply specified has been removed from the chassis.
Recommended Action This message is informational. No action is required.
Error Message%POWERMGR-6-BUDGET_OK: Chassis power consumption is back within limits
Explanation The power calculated in use by the chassis has returned to a value within the power supplied by the powershelf.
Recommended Action This message is informational. No action is required.
Error Message%POWERMGR-6-INSERTED: PEM[dec] inserted, supplying [dec] watts
Explanation The power supply specified has been installed in the chassis and is now active.
Recommended Action This message is informational. No action is required.
Error Message%POWERMGR-6-PEM_UP: PEM[dec] powered up successfully, supplying [dec] watts
Explanation The power supply specified has successfully powered up.
Recommended Action This message is informational. No action is required.
How to Configure the Power Management Feature
The power management feature has only three configurable states, additive mode, redundant mode, and disable. The disable option is included for those who wish to suppress power manager messages.
Changing the Power Manager Calculation Mode
In the following configuration, one of two power zones in a 16-slot DC chassis is configured to calculate power status in additive mode.
SUMMARY STEPS
1.
enable
2.
configure terminal
3.
power-mgr {additive | disable}
4.
show gsr power-mgr [detail | table | layout]
DETAILED STEPS
Examples
The following example disables the power manager:
router(config)# power-mgr disableThe following example enables the power manager:
router(config)# no power-mgr disableThe following example configures power zones as additive in a 16-slot Cisco 12000 Series router:
router(config)# power-mgr additiverouter(config)# exitrouter# show gsr power-mgrPower management summary------------------------Powershelf type: Intelligent DC Power SuppliesOperating phase: RUNNING_PHASE|Z| Operating mode: ADDITIVE |Z| Operating mode: ADDITIVE|O| Total supply power: 4800 W |O| Total supply power: 4800 W|N| Route processors: 120 W |N| Route processors: 0 W|E| Linecards: 2108 W |E| Linecards: 378 W|A| Chassis components: 213 W |B| Chassis components: 404 WTotal inuse power: 2441 W Total inuse power: 782 WRemaining: 2359 W Remaining: 4018 WPEM1 present in ZoneA, supplying 2400 watts; uptime 1d02h31mPEM2 present in ZoneA, supplying 2400 watts; uptime 1d00h10mPEM3 present in ZoneB, supplying 2400 watts; uptime 1d00h10mPEM4 present in ZoneB, supplying 2400 watts; uptime 1d00h09mThe following example returns power zones to the default redundant mode in a 16-slot Cisco 12000 Series router:
router(config)# no power-mgr additiverouter(config)# exitrouter# show gsr power-mgrPower management summary------------------------Powershelf type: Intelligent DC Power SuppliesOperating phase: RUNNING_PHASE|Z| Operating mode: REDUNDANT |Z| Operating mode: REDUNDANT|O| Total supply power: 2400 W |O| Total supply power: 2400 W|N| Route processors: 120 W |N| Route processors: 0 W|E| Linecards: 2108 W |E| Linecards: 378 W|A| Chassis components: 213 W |B| Chassis components: 404 WTotal inuse power: 2441 W Total inuse power: 782 WRemaining: - 41 W Remaining: 1618 WPEM1 present in ZoneA, supplying 2400 watts; uptime 1d02h33mPEM2 present in ZoneA, supplying 2400 watts; uptime 1d00h13mPEM3 present in ZoneB, supplying 2400 watts; uptime 1d00h13mPEM4 present in ZoneB, supplying 2400 watts; uptime 1d00h12mThe following example displays a power management summary for the system and by slot:
router# show gsr power-mgr detailPower management summary------------------------Powershelf type: Intelligent DC Power SuppliesOperating phase: RUNNING_PHASEOperating mode: REDUNDANTTotal supply power: 1100 WRoute processors: 76 WLinecards: 508 WChassis components: 602 WTotal inuse power: 1186 WRemaining: - 86 WPEM1 absentPEM2 present, supplying 1100 watts; uptime 0d03h36mSlot Cardtype Watts Status---- -------- ----- ------** 0 OC12-4-POS 0 unpowered1 OC3-4-POS-X 90 powered2 GE-4 106 powered5 GSRP 38 powered6 OC3-POS-16 100 powered7 OC12-ATM-4 122 powered8 OC3-4-POS-X 90 powered9 GSRP 38 powered16 CSC10 19 powered17 CSC10 19 powered18 SFC10 64 powered19 SFC10 64 powered20 SFC10 64 powered21 SFC10 64 powered22 SFC10 64 powered24 ALARM10 33 powered25 ALARM10 33 powered29 BLOWER16 178 poweredThe following example displays a table listing the maximum power consumption ratings of all Cisco 12000 Series field replaceable units (FRUs).
router# show gsr power-mgr tablePower Manager device data:FRU Description Watts--- ----------- -----GRP= Route Processor 38GRP-B= Route Processor 38PRP-1= Performance Route Processor 60PRP-2= Performance Route Processor 60LC-4OC3/POS-SM= 4 Port Packet Over SONET OC-3c/STM-1 80LC-4OC3/POS-MM= 4 Port Packet Over SONET OC-3c/STM-1 804OC3/POS-LR-SC= 4 Port Packet Over SONET OC-3c/STM-1 80LC-1OC12/POS-SM= 1 Port Packet Over SONET OC-12c/STM-4c 80LC-1OC12/POS-MM= 1 Port Packet Over SONET OC-12c/STM-4c 804OC12/POS-IR-SC-B= 4 Port Packet Over SONET OC-12c/STM-4 1004OC12/POS-MM-SC-B= 4 Port Packet Over SONET OC-12c/STM-4 100OC48E/POS-SR-SC-B= 1 Port Packet Over SONET OC-48c/STM-16 78OC48E/POS-SR-FC-B= 1 Port Packet Over SONET OC-48c/STM-16 78OC48E/POS-LR-SC-B= 1 Port Packet Over SONET OC-48c/STM-16 78OC48E/POS-LR-FC-B= 1 Port Packet Over SONET OC-48c/STM-16 788OC3/POS-SM= 8 Port Packet Over SONET OC-3c/STM-1 1008OC3/POS-MM= 8 Port Packet Over SONET OC-3c/STM-1 10016OC3/POS-SM= 16 Port Packet Over SONET OC-3c/STM-1 10016OC3/POS-MM= 16 Port Packet Over SONET OC-3c/STM-1 1004OC48/POS-SR-SC= 4 Port Packet Over SONET OC-48c/STM-16 2124OC48/POS-SR-FC= 4 Port Packet Over SONET OC-48c/STM-16 2124OC48/POS-LR-SC= 4 Port Packet Over SONET OC-48c/STM-16 2124OC48/POS-LR-FC= 4 Port Packet Over SONET OC-48c/STM-16 212OC192/POS-VSR= 1 Port Packet Over SONET OC-192c/STM-64 174OC192/POS-SR2-SC= 1 Port Packet Over SONET OC-192c/STM-64 174OC192/POS-SR-SC= 1 Port Packet Over SONET OC-192c/STM-64 174OC192/POS-IR-SC= 1 Port Packet Over SONET OC-192c/STM-64 174OC192/POS-LR-SC= 1 Port Packet Over SONET OC-192c/STM-64 174OC48X/POS-LR-SC= 1 Port ISE Packet Over SONET OC-48c/STM-16 140OC48X/POS-IR-SC= 1 Port ISE Packet Over SONET OC-48c/STM-16 140OC48X/POS-SR-SC= 1 Port ISE Packet Over SONET OC-48c/STM-16 1404OC12X/POS-M-SC-B= 4 Port ISE Packet Over SONET OC-12c/STM-4 1404OC12X/POS-I-SC-B= 4 Port ISE Packet Over SONET OC-12c/STM-4 14016OC3X/POS-M-MJ-B= 16 Port ISE Packet Over SONET OC-3c/STM-1 14016OC3X/POS-IR-LC-B= 16 Port ISE Packet Over SONET OC-3c/STM-1 1408OC3X/POS-MM-MJ-B= 8 Port ISE Packet Over SONET OC-3c/STM-1 1058OC3X/POS-IR-LC-B= 8 Port ISE Packet Over SONET OC-3c/STM-1 1054OC3X/POS-MM-MJ-B= 4 Port ISE Packet Over SONET OC-3c/STM-1 904OC3X/POS-IR-LC-B= 4 Port ISE Packet Over SONET OC-3c/STM-1 904OC3X/POS-LR-LC-B= 4 Port ISE Packet Over SONET OC-3c/STM-1 904OC48E/POS-SR-SC= 4 Port ES Packet Over SONET OC-48c/STM-16 2124OC48E/POS-SR-FC= 4 Port ES Packet Over SONET OC-48c/STM-16 2124OC48E/POS-LR-SC= 4 Port ES Packet Over SONET OC-48c/STM-16 2124OC48E/POS-LR-FC= 4 Port ES Packet Over SONET OC-48c/STM-16 212OC192E/POS-VSR= 1 Port ES Packet Over SONET OC-192c/STM-64 178OC192E/POS-SR2-SC= 1 Port ES Packet Over SONET OC-192c/STM-64 178OC192E/POS-SR-SC= 1 Port ES Packet Over SONET OC-192c/STM-64 178OC192E/POS-IR-SC= 1 Port ES Packet Over SONET OC-192c/STM-64 178OC192E/POS-LR-SC= 1 Port ES Packet Over SONET OC-192c/STM-64 1782OC192E/POS-VSR= 2 Port ES Packet Over SONET OC-192c/STM-64 1712OC192E/POS-SR2-SC= 2 Port ES Packet Over SONET OC-192c/STM-64 1712OC192E/POS-SR-SC= 2 Port ES Packet Over SONET OC-192c/STM-64 1712OC192E/POS-IR-SC= 2 Port ES Packet Over SONET OC-192c/STM-64 1712OC192E/POS-LR-SC= 2 Port ES Packet Over SONET OC-192c/STM-64 1718OC-48/POS-SFP 8 Port ES Packet Over SONET OC-48c/STM-16 165LC-OC12-DS3= 1 port SONET OC12 channelized to DS3 80CHOC12/STS3-IR-SC= 1 port SONET OC12 channelized to STS-3c/STM-1 806CT3-SMB= 6 Port Channelized T3 774CHOC12/DS3-IR-SC-B= 4 port ISE OC12 channelized STS-3c/STM-1 or DS3/E3 140CHOC48/DS3-IR-SC= 1 port ISE OC48 channelized STS-12c/STM-4, STS-... 140CHOC48/DS3-SR-SC= 1 port ISE OC48 channelized STS-12c/STM-4, STS-... 1402CHOC3/STM1-IR-SC= 2 Ports OC3 Channelized to DS1/E1 80CHOC12/STM4-IR-SC= 1 Port ISE OC12 Channelized to DS1/E1 94CHOC12/DS1-IR-SC= 1 Port ISE OC12 Channelized to DS1/E1 946DS3-SMB-B= 6 Port Packet over DS3 8012DS3-SMB-B= 12 Port Packet over DS3 806E3-SMB= 6 Port Packet over E3 8012E3-SMB= 12 Port Packet over E3 80LC-1OC12/ATM-SM= 1 port ATM Over SONET OC12c/STM-4c 62LC-1OC12/ATM-MM= 1 port ATM Over SONET OC12c/STM-4c 624OC3/ATM-IR-SC= 4 port ATM Over SONET OC-3c/STM-1 704OC3/ATM-MM-SC= 4 port ATM Over SONET OC-3c/STM-1 704OC12/ATM-IR-SC= 4 port ATM Over SONET OC12c/STM-4c 1224OC12/ATM-MM-SC= 4 port ATM Over SONET OC12c/STM-4c 1228OC03/ATM/TS-IR-B= 8 port ATM Over SONET OC-3c/STM-1 Version B 958OC03/ATM/TS-MM-B= 8 port ATM Over SONET OC-3c/STM-1 Version B 958OC03/ATM/TS-IR= 8 port ATM Over SONET OC-3c/STM-1 958OC03/ATM/TS-MM= 8 port ATM Over SONET OC-3c/STM-1 954OC12X/ATM-IR-SC= 4 Port ISE ATM Over SONET OC-12/STM-4 1404OC12X/ATM-MM-SC= 4 Port ISE ATM Over SONET OC-12/STM-4 1404OC3X/ATM-IR-SC= 4 Port ISE ATM Over SONET OC-3/STM-1 1404OC3X/ATM-MM-SC= 4 Port ISE ATM Over SONET OC-3/STM-1 140GE-GBIC-SC-B= 1 Port Gigabit Ethernet 658FE-FX-SC-B= 8 Port Fast Ethernet 778FE-TX-RJ45-B= 8 Port Fast Ethernet 773GE-GBIC-SC= 3 Port Gigabit Ethernet 7110X1GE-SFP-LC= 10 Port Gigabit Ethernet 191EPA-GE/FE-BBRD Modular Gigabit/FastEthernet 198EPA-3GE-SX/LH-LC Modular Gigabit/FastEthernet 198EPA-24FE-TX Modular Gigabit/FastEthernet 19810GE-SX/LH-LC-B= 10 Port Gigabit Ethernet Version B 1911X10GE-LR-SC= 1 Port 10GigEthernet Plus 1961x10GE-ER-SC= 1 Port 10GigEthernet Plus 1964GE-SFP-LC= 4 Port ISE Gigabit Ethernet 106OC12/SRP-IR-SC-B= 1 Port SONET based SRP OC-12c/STM-4 80OC12/SRP-MM-SC-B= 1 Port SONET based SRP OC-12c/STM-4 80OC12/SRP-LR-SC-B= 1 Port SONET based SRP OC-12c/STM-4 80OC12/SRP-XR-SC-B= 1 Port SONET based SRP OC-12c/STM-4 80OC48/SRP-LR-SC= 1 Port SONET based SRP OC-48c/STM-16 100OC48/SRP-SR-SC= 1 Port SONET based SRP OC-48c/STM-16 100OC192/SRP-VSR= 1 Port SONET based SRP OC-192c/STM-64 215OC192/SRP-SR2-SC= 1 Port SONET based SRP OC-192c/STM-64 215OC192/SRP-SR-SC= 1 Port SONET based SRP OC-192c/STM-64 215OC192/SRP-IR-SC= 1 Port SONET based SRP OC-192c/STM-64 2154OC12X/SRP-IR-LC= 4 Ports SONET based SRP ISE OC-12c/STM-4 1404OC12X/SRP-XR-LC= 4 Ports SONET based SRP ISE OC-12c/STM-4 1402OC12X/SRP-IR-LC= 2 Ports SONET based SRP ISE OC-12c/STM-4 1402OC12X/SRP-XR-LC= 2 Ports SONET based SRP ISE OC-12c/STM-4 14012000-SIP-600= ISE 10G SPA Interface Card 25612000-SIP-400= ISE 2.5G SPA Interface Card 180GSR16/80-CSC= Clock Scheduler Card 16XOC48 43GSR16/80-SFC= Switch Fabric Card 16XOC48 35GSR16/320-CSC= Clock Scheduler Card 16XOC192 106GSR16/320-SFC= Switch Fabric Card 16XOC192 93GSR10-CSC= Clock Scheduler Card(10) OC-192 19GSR10-SFC= Switch Fabric Card(10) OC-192 64GSR6-CSC= Clock Scheduler Card(6) OC-192 56GSR6-SFC= Switch Fabric Card(6) OC-192 45GSR04-FABRIC= Clock Scheduler Card for 12404 14312810-CSC= Clock Scheduler Card(10) OC-768 5412810-SFC= Switch Fabric Card(10) OC-768 10712816-CSC= Clock Scheduler Card(16) OC-768 17712816-SFC= Switch Fabric Card(16) OC-768 15112010-CSC= Advanced Clock Scheduler Card(10) 1912010-SFC= Advanced Switch Fabric Card(10) 6412006-CSC= Advanced Clock Scheduler Card(6) 5612006-SFC= Advanced Switch Fabric Card(6) 4512004-SF= Advanced Clock+Switch Fabric(4) 14312016-CSC= Advanced Clock Scheduler Card(16) 10612016-SFC= Advanced Switch Fabric Card(16) 9312810E-CSC= Clock Scheduler Card(10) OC-768E 5512816E-CSC= Clock Scheduler Card(16) OC-768E 176GSR16-BLOWER= Blower Module(16) 17812000/10/16-BLWER Blower Module(16) 178GSR10-ALRM= Alarm Module(10) 33GSR6-ALRM= Alarm Module(6) 26GSR16-ALRM= Alarm Module(16) 35GSR4-BLOWER= Alarm Board(404) 115GSR6-BLOWER= Blower Module(6) 17812000/6-BLOWER= Blower Module(6) 178The following example displays the types of Cisco 12000 Series powershelves, as well as the PEM (power supplies) numbering and the PEM positions within the shelves:
Router# show gsr power-mgr layoutGSR PEM layout (front view):+-----------------+-----------------+-----------------+GSR16:3-AC | AC | AC | AC || POWER 1 | POWER 2 | POWER 3 || (PEM1) | (PEM2) | (PEM3) |+-----------------+-----------------+-----------------++--------------------------+--------------------------+GSR16:4-AC | PS A2 | PS A1 || (PEM1) | (PEM2) |+--------------------------+--------------------------+| PS B2 | PS B1 || (PEM3) | (PEM4) |+--------------------------+--------------------------++------------+-------------+-------------+------------+GSR16:4-DC |DC POWER B1 | DC POWER B2 | DC POWER A2 | DC POWER A1|| (PEM3) | (PEM4) | (PEM2) | (PEM1) |+------------+-------------+-------------+------------++--------------------------+--------------------------+GSR10:AC & DC | POWER_A | POWER_B || (PEM1) | (PEM2) |+--------------------------+--------------------------++--------------------------+--------------------------+GSR6:AC & DC | POWER_A | POWER_B || (PEM1) | (PEM2) |+--------------------------+--------------------------++-----------------------------------------------------+GSR404:AC & DC | no label (PEM2) |+-----------------------------------------------------+| no label (PEM1) |+-----------------------------------------------------+Additional References
The following sections provide references related to Power Management for the Cisco 12000 Series Router.
Related Documents
Related Topic Document TitleInstalling and troubleshooting Cisco 1200 power supplies
Cisco 12016, Cisco 12416, and Cisco 12816 Router Power System Procedures Guide
Cisco 12010, Cisco 12410, and Cisco 12810 Router Power System Procedures Guide
Installing and troubleshooting Cisco 12000 line cards
Standards
MIBs
RFCs
Technical Assistance
Command Reference
This section documents new commands.
•
power-mgr
•
show gsr power-mgr
power-mgr
To specify redundant or additive power calculation method, use the power-mgr command in global configuration mode. To enable or reset default power modes, use the no form of this command.
power-mgr {additive | disable}
no power-mgr {additive | disable}
Syntax Description
additive
Sets power calculations to additive mode. Default is redundant mode.
disable
Disables the power management feature. Default is enabled.
Command Default
Redundant is the default mode.
Command Modes
Global configuration
Command History
Release Modification12.0(31)S
This command was introduced on the Cisco 12000 Series routers.
12.0(32)S
Updated the CLI for the "additive" mode of the command.
Usage Guidelines
The power management facility dynamically calculates the power consumption of all chassis components and the total power available from the power supplies. The following events create logged messages:
•
Power supply insertion or removal
•
Power supply power-up or power-down
•
Line card OIR insertion or removal
•
CLI line card power-up or power-down
•
Environment monitor line card shutdown
•
mode change to additive or redundant
When an event occurs, the power consumption statistics are recalculated. The power manager facility does not affect the power level supplied to any component, it only monitors, calculates and collects power statistics and issues warnings. The total power reported depends on whether the router is configured in additive or in redundant mode. The default is redundant mode.
Power Zones
A power zone comprises a set of power supplies and the loads connected to them. The 16-slot DC-powered chassis with the original (not enhanced) power supplies, have a Zone A, corresponding to the upper card cage and its power supplies, and a Zone B, corresponding to the lower card and its power supplies. All other chassis have one power zone.
Additive Mode
In additive mode, the total power available (power budget) is calculated as the total capacity in watts of all operating power supplies in the zone.
Redundant Mode
In redundant mode the total available power reported for a zone is equivalent to the total capacity in watts of all operating power supplies in the zone minus the power ratings of operating redundant power supplies. Redundant mode is the default setting. Table 2 lists how redundant power supplies are allocated for different Cisco 12000 Series powershelves.
Table 2 Cisco 12000 Series Router Power Supply Redundancy Scheme
Number of Power Supplies in Powershelf 1 Redundancy Type22
1 + 1
3
1 + 2
4 AC
2 + 2
4 (DC original power supplies)
1 + 1 in Zone A, 1 + 1 in Zone B
4 (DC enhanced power supplies)
2 + 2
1 Redundancy allocations are valid for original or upgraded models of the AC power supplies.
2 Left of the plus sign "+" is the number of redundant power supply units, the right side is the number of units the redundant unit(s) protect.
If the total power load of chassis components and line cards in a zone is less then or equal to the total available power reported by the power manager in redundant mode, the router can continue to safely operate in the event of a power supply failure (two power supply failures in the case of 16-slot chassis with 4 AC PEMs or 4 enhanced DC PEMs).
For chassis with two power zones, power zones can be configured with the same or with differing modes.
Examples
The following example disables the power manager:
router(config)# power-mgr disableThe following example enables the power manager:
router(config)# no power-mgr disableThe following example configures power zones as additive in a 16-slot Cisco 12000 Series router:
router(config)# power-mgr additiverouter(config)# exitrouter# show gsr power-mgrPower management summary------------------------Powershelf type: Intelligent DC Power SuppliesOperating phase: RUNNING_PHASE|Z| Operating mode: ADDITIVE |Z| Operating mode: ADDITIVE|O| Total supply power: 4800 W |O| Total supply power: 4800 W|N| Route processors: 120 W |N| Route processors: 0 W|E| Linecards: 2108 W |E| Linecards: 378 W|A| Chassis components: 213 W |B| Chassis components: 404 WTotal inuse power: 2441 W Total inuse power: 782 WRemaining: 2359 W Remaining: 4018 WPEM1 present in ZoneA, supplying 2400 watts; uptime 1d02h31mPEM2 present in ZoneA, supplying 2400 watts; uptime 1d00h10mPEM3 present in ZoneB, supplying 2400 watts; uptime 1d00h10mPEM4 present in Zone2B, supplying 2400 watts; uptime 1d00h09mThe following example returns power zones to the default redundant mode in a 16-slot Cisco 12000 Series router:
router(config)# no power-mgr additiverouter(config)# exitrouter# show gsr power-mgrPower management summary------------------------Powershelf type: Intelligent DC Power SuppliesOperating phase: RUNNING_PHASE|Z| Operating mode: REDUNDANT |Z| Operating mode: REDUNDANT|O| Total supply power: 2400 W |O| Total supply power: 2400 W|N| Route processors: 120 W |N| Route processors: 0 W|E| Linecards: 2108 W |E| Linecards: 378 W|A| Chassis components: 213 W |B| Chassis components: 404 WTotal inuse power: 2441 W Total inuse power: 782 WRemaining: - 41 W Remaining: 1618 WPEM1 present in ZoneA, supplying 2400 watts; uptime 1d02h33mPEM2 present in ZoneA, supplying 2400 watts; uptime 1d00h13mPEM3 present in ZoneB, supplying 2400 watts; uptime 1d00h13mPEM4 present in Zone2B, supplying 2400 watts; uptime 1d00h12mRelated Commands
Command Descriptionshow gsr power-mgr
Displays power consumption information for the Cisco 12000 Series routers.
show gsr power-mgr
To display the power consumption of all Cisco 12000 Series line cards or the power consumption of the shelf and available remaining power, use the show gsr power-mgr command in privileged exec mode.
show gsr power-mgr [detail | table | layout]
Syntax Description
Command Default
There is no default for this command
Command Modes
Privileged EXEC
Command History
Usage Guidelines
The power consumption values of the field replaceable units (FRUs) represents the maximum power consumption possible of the FRU, and not the actual power being consumed.
Examples
The following example displays a summary of total power consumption and total power available:
router# show gsr power-mgrPower management summary------------------------Powershelf type: Intelligent AC Power SuppliesOperating phase: RUNNING_PHASEOperating mode: REDUNDANTTotal supply power: 2800 WRoute processors: 120 WLinecards: 402 WChassis components: 887 WTotal inuse power: 1409 WRemaining: 1391 W
The following example displays a summary of power consumption, and consumption by slot.
router# show gsr power-mgr detailPower management summary------------------------Powershelf type: Intelligent DC Power SuppliesOperating phase: RUNNING_PHASEOperating mode: REDUNDANTTotal supply power: 1100 WRoute processors: 76 WLinecards: 508 WChassis components: 602 WTotal inuse power: 1186 WRemaining: - 86 WPEM1 absentPEM2 present, supplying 1100 watts; uptime 0d03h36mSlot Cardtype Watts Status---- -------- ----- ------** 0 OC12-4-POS 0 unpowered1 OC3-4-POS-X 90 powered2 GE-4 106 powered5 GSRP 38 powered6 OC3-POS-16 100 powered7 OC12-ATM-4 122 powered8 OC3-4-POS-X 90 powered9 GSRP 38 powered16 CSC10 19 powered17 CSC10 19 powered18 SFC10 64 powered19 SFC10 64 powered20 SFC10 64 powered21 SFC10 64 powered22 SFC10 64 powered24 ALARM10 33 powered25 ALARM10 33 powered29 BLOWER16 178 powered
The following example displays the maximum power consumption ratings of supported Cisco 12000 Series line cards.
router# show gsr power-mgr tablePower Manager device data:FRU Description Watts--- ----------- -----GRP= Route Processor 38GRP-B= Route Processor 38PRP-1= Performance Route Processor 60PRP-2= Performance Route Processor 60LC-4OC3/POS-SM= 4 Port Packet Over SONET OC-3c/STM-1 80LC-4OC3/POS-MM= 4 Port Packet Over SONET OC-3c/STM-1 804OC3/POS-LR-SC= 4 Port Packet Over SONET OC-3c/STM-1 80LC-1OC12/POS-SM= 1 Port Packet Over SONET OC-12c/STM-4c 80LC-1OC12/POS-MM= 1 Port Packet Over SONET OC-12c/STM-4c 804OC12/POS-IR-SC-B= 4 Port Packet Over SONET OC-12c/STM-4 1004OC12/POS-MM-SC-B= 4 Port Packet Over SONET OC-12c/STM-4 100OC48E/POS-SR-SC-B= 1 Port Packet Over SONET OC-48c/STM-16 78OC48E/POS-SR-FC-B= 1 Port Packet Over SONET OC-48c/STM-16 78OC48E/POS-LR-SC-B= 1 Port Packet Over SONET OC-48c/STM-16 78OC48E/POS-LR-FC-B= 1 Port Packet Over SONET OC-48c/STM-16 788OC3/POS-SM= 8 Port Packet Over SONET OC-3c/STM-1 1008OC3/POS-MM= 8 Port Packet Over SONET OC-3c/STM-1 10016OC3/POS-SM= 16 Port Packet Over SONET OC-3c/STM-1 10016OC3/POS-MM= 16 Port Packet Over SONET OC-3c/STM-1 1004OC48/POS-SR-SC= 4 Port Packet Over SONET OC-48c/STM-16 2124OC48/POS-SR-FC= 4 Port Packet Over SONET OC-48c/STM-16 2124OC48/POS-LR-SC= 4 Port Packet Over SONET OC-48c/STM-16 2124OC48/POS-LR-FC= 4 Port Packet Over SONET OC-48c/STM-16 212OC192/POS-VSR= 1 Port Packet Over SONET OC-192c/STM-64 174OC192/POS-SR2-SC= 1 Port Packet Over SONET OC-192c/STM-64 174OC192/POS-SR-SC= 1 Port Packet Over SONET OC-192c/STM-64 174OC192/POS-IR-SC= 1 Port Packet Over SONET OC-192c/STM-64 174OC192/POS-LR-SC= 1 Port Packet Over SONET OC-192c/STM-64 174OC48X/POS-LR-SC= 1 Port ISE Packet Over SONET OC-48c/STM-16 140OC48X/POS-IR-SC= 1 Port ISE Packet Over SONET OC-48c/STM-16 140OC48X/POS-SR-SC= 1 Port ISE Packet Over SONET OC-48c/STM-16 1404OC12X/POS-M-SC-B= 4 Port ISE Packet Over SONET OC-12c/STM-4 1404OC12X/POS-I-SC-B= 4 Port ISE Packet Over SONET OC-12c/STM-4 14016OC3X/POS-M-MJ-B= 16 Port ISE Packet Over SONET OC-3c/STM-1 14016OC3X/POS-IR-LC-B= 16 Port ISE Packet Over SONET OC-3c/STM-1 1408OC3X/POS-MM-MJ-B= 8 Port ISE Packet Over SONET OC-3c/STM-1 1058OC3X/POS-IR-LC-B= 8 Port ISE Packet Over SONET OC-3c/STM-1 1054OC3X/POS-MM-MJ-B= 4 Port ISE Packet Over SONET OC-3c/STM-1 904OC3X/POS-IR-LC-B= 4 Port ISE Packet Over SONET OC-3c/STM-1 904OC3X/POS-LR-LC-B= 4 Port ISE Packet Over SONET OC-3c/STM-1 904OC48E/POS-SR-SC= 4 Port ES Packet Over SONET OC-48c/STM-16 2124OC48E/POS-SR-FC= 4 Port ES Packet Over SONET OC-48c/STM-16 2124OC48E/POS-LR-SC= 4 Port ES Packet Over SONET OC-48c/STM-16 2124OC48E/POS-LR-FC= 4 Port ES Packet Over SONET OC-48c/STM-16 212OC192E/POS-VSR= 1 Port ES Packet Over SONET OC-192c/STM-64 178OC192E/POS-SR2-SC= 1 Port ES Packet Over SONET OC-192c/STM-64 178OC192E/POS-SR-SC= 1 Port ES Packet Over SONET OC-192c/STM-64 178OC192E/POS-IR-SC= 1 Port ES Packet Over SONET OC-192c/STM-64 178OC192E/POS-LR-SC= 1 Port ES Packet Over SONET OC-192c/STM-64 1782OC192E/POS-VSR= 2 Port ES Packet Over SONET OC-192c/STM-64 1712OC192E/POS-SR2-SC= 2 Port ES Packet Over SONET OC-192c/STM-64 1712OC192E/POS-SR-SC= 2 Port ES Packet Over SONET OC-192c/STM-64 1712OC192E/POS-IR-SC= 2 Port ES Packet Over SONET OC-192c/STM-64 1712OC192E/POS-LR-SC= 2 Port ES Packet Over SONET OC-192c/STM-64 1718OC-48/POS-SFP 8 Port ES Packet Over SONET OC-48c/STM-16 165LC-OC12-DS3= 1 port SONET OC12 channelized to DS3 80CHOC12/STS3-IR-SC= 1 port SONET OC12 channelized to STS-3c/STM-1 806CT3-SMB= 6 Port Channelized T3 774CHOC12/DS3-IR-SC-B= 4 port ISE OC12 channelized STS-3c/STM-1 or DS3/E3 140CHOC48/DS3-IR-SC= 1 port ISE OC48 channelized STS-12c/STM-4, STS-... 140CHOC48/DS3-SR-SC= 1 port ISE OC48 channelized STS-12c/STM-4, STS-... 1402CHOC3/STM1-IR-SC= 2 Ports OC3 Channelized to DS1/E1 80CHOC12/STM4-IR-SC= 1 Port ISE OC12 Channelized to DS1/E1 94CHOC12/DS1-IR-SC= 1 Port ISE OC12 Channelized to DS1/E1 946DS3-SMB-B= 6 Port Packet over DS3 8012DS3-SMB-B= 12 Port Packet over DS3 806E3-SMB= 6 Port Packet over E3 8012E3-SMB= 12 Port Packet over E3 80LC-1OC12/ATM-SM= 1 port ATM Over SONET OC12c/STM-4c 62LC-1OC12/ATM-MM= 1 port ATM Over SONET OC12c/STM-4c 624OC3/ATM-IR-SC= 4 port ATM Over SONET OC-3c/STM-1 704OC3/ATM-MM-SC= 4 port ATM Over SONET OC-3c/STM-1 704OC12/ATM-IR-SC= 4 port ATM Over SONET OC12c/STM-4c 1224OC12/ATM-MM-SC= 4 port ATM Over SONET OC12c/STM-4c 1228OC03/ATM/TS-IR-B= 8 port ATM Over SONET OC-3c/STM-1 Version B 958OC03/ATM/TS-MM-B= 8 port ATM Over SONET OC-3c/STM-1 Version B 958OC03/ATM/TS-IR= 8 port ATM Over SONET OC-3c/STM-1 958OC03/ATM/TS-MM= 8 port ATM Over SONET OC-3c/STM-1 954OC12X/ATM-IR-SC= 4 Port ISE ATM Over SONET OC-12/STM-4 1404OC12X/ATM-MM-SC= 4 Port ISE ATM Over SONET OC-12/STM-4 1404OC3X/ATM-IR-SC= 4 Port ISE ATM Over SONET OC-3/STM-1 1404OC3X/ATM-MM-SC= 4 Port ISE ATM Over SONET OC-3/STM-1 140GE-GBIC-SC-B= 1 Port Gigabit Ethernet 658FE-FX-SC-B= 8 Port Fast Ethernet 778FE-TX-RJ45-B= 8 Port Fast Ethernet 773GE-GBIC-SC= 3 Port Gigabit Ethernet 7110X1GE-SFP-LC= 10 Port Gigabit Ethernet 191EPA-GE/FE-BBRD Modular Gigabit/FastEthernet 198EPA-3GE-SX/LH-LC Modular Gigabit/FastEthernet 198EPA-24FE-TX Modular Gigabit/FastEthernet 19810GE-SX/LH-LC-B= 10 Port Gigabit Ethernet Version B 1911X10GE-LR-SC= 1 Port 10GigEthernet Plus 1961x10GE-ER-SC= 1 Port 10GigEthernet Plus 1964GE-SFP-LC= 4 Port ISE Gigabit Ethernet 106OC12/SRP-IR-SC-B= 1 Port SONET based SRP OC-12c/STM-4 80OC12/SRP-MM-SC-B= 1 Port SONET based SRP OC-12c/STM-4 80OC12/SRP-LR-SC-B= 1 Port SONET based SRP OC-12c/STM-4 80OC12/SRP-XR-SC-B= 1 Port SONET based SRP OC-12c/STM-4 80OC48/SRP-LR-SC= 1 Port SONET based SRP OC-48c/STM-16 100OC48/SRP-SR-SC= 1 Port SONET based SRP OC-48c/STM-16 100OC192/SRP-VSR= 1 Port SONET based SRP OC-192c/STM-64 215OC192/SRP-SR2-SC= 1 Port SONET based SRP OC-192c/STM-64 215OC192/SRP-SR-SC= 1 Port SONET based SRP OC-192c/STM-64 215OC192/SRP-IR-SC= 1 Port SONET based SRP OC-192c/STM-64 2154OC12X/SRP-IR-LC= 4 Ports SONET based SRP ISE OC-12c/STM-4 1404OC12X/SRP-XR-LC= 4 Ports SONET based SRP ISE OC-12c/STM-4 1402OC12X/SRP-IR-LC= 2 Ports SONET based SRP ISE OC-12c/STM-4 1402OC12X/SRP-XR-LC= 2 Ports SONET based SRP ISE OC-12c/STM-4 14012000-SIP-600= ISE 10G SPA Interface Card 25612000-SIP-400= ISE 2.5G SPA Interface Card 180GSR16/80-CSC= Clock Scheduler Card 16XOC48 43GSR16/80-SFC= Switch Fabric Card 16XOC48 35GSR16/320-CSC= Clock Scheduler Card 16XOC192 106GSR16/320-SFC= Switch Fabric Card 16XOC192 93GSR10-CSC= Clock Scheduler Card(10) OC-192 19GSR10-SFC= Switch Fabric Card(10) OC-192 64GSR6-CSC= Clock Scheduler Card(6) OC-192 56GSR6-SFC= Switch Fabric Card(6) OC-192 45GSR04-FABRIC= Clock Scheduler Card for 12404 14312810-CSC= Clock Scheduler Card(10) OC-768 5412810-SFC= Switch Fabric Card(10) OC-768 10712816-CSC= Clock Scheduler Card(16) OC-768 17712816-SFC= Switch Fabric Card(16) OC-768 15112010-CSC= Advanced Clock Scheduler Card(10) 1912010-SFC= Advanced Switch Fabric Card(10) 6412006-CSC= Advanced Clock Scheduler Card(6) 5612006-SFC= Advanced Switch Fabric Card(6) 4512004-SF= Advanced Clock+Switch Fabric(4) 14312016-CSC= Advanced Clock Scheduler Card(16) 10612016-SFC= Advanced Switch Fabric Card(16) 9312810E-CSC= Clock Scheduler Card(10) OC-768E 5512816E-CSC= Clock Scheduler Card(16) OC-768E 176GSR16-BLOWER= Blower Module(16) 17812000/10/16-BLWER Blower Module(16) 178GSR10-ALRM= Alarm Module(10) 33GSR6-ALRM= Alarm Module(6) 26GSR16-ALRM= Alarm Module(16) 35GSR4-BLOWER= Alarm Board(404) 115GSR6-BLOWER= Blower Module(6) 17812000/6-BLOWER= Blower Module(6) 178
The following example displays the labels of Cisco 12000 series router power supplies as they appear on the physical AC and DC power shelves:
Router#show gsr power-mgr layoutGSR PEM layout (front view):+-----------------+-----------------+-----------------+GSR16:3-AC | AC | AC | AC || POWER 1 | POWER 2 | POWER 3 || (PEM1) | (PEM2) | (PEM3) |+-----------------+-----------------+-----------------++--------------------------+--------------------------+GSR16:4-AC | PS A2 | PS A1 || (PEM1) | (PEM2) |+--------------------------+--------------------------+| PS B2 | PS B1 || (PEM3) | (PEM4) |+--------------------------+--------------------------++------------+-------------+-------------+------------+GSR16:4-DC |DC POWER B1 | DC POWER B2 | DC POWER A2 | DC POWER A1|| (PEM3) | (PEM4) | (PEM2) | (PEM1) |+------------+-------------+-------------+------------++--------------------------+--------------------------+GSR10:AC & DC | POWER_A | POWER_B || (PEM1) | (PEM2) |+--------------------------+--------------------------++--------------------------+--------------------------+GSR6:AC & DC | POWER_A | POWER_B || (PEM1) | (PEM2) |+--------------------------+--------------------------++-----------------------------------------------------+GSR404:AC & DC | no label (PEM2) |+-----------------------------------------------------+| no label (PEM1) |+-----------------------------------------------------+Related Commands
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