Cisco 7609-S Software Configuration Guide - Page 912

Enabling or Disabling Power Redundancy, Configuration Change, Effect

Page 912 highlights

Understanding How Power Management Works Chapter 54 Power Management and Environmental Monitoring Note In systems with redundant power supplies, both power supplies must be of the same wattage. The Cisco 7600 series routers allow you to use both AC-input and DC-input power supplies in the same chassis. For detailed information on supported power supply configurations, refer to the Cisco 7600 Series Router Installation Guide. The modules have different power requirements, and some configurations require more power than a single power supply can provide. The power management feature allows you to power all installed modules with two power supplies. However, redundancy is not supported in this configuration because the total power drawn from both power supplies is at no time greater than the capability of one supply. Redundant and nonredundant power configurations are described in the following sections. To determine the power requirements for your system, see the "Determining System Power Requirements" section on page 54-5. Enabling or Disabling Power Redundancy To disable or enable redundancy (redundancy is enabled by default) from global configuration mode, enter the power redundancy-mode combined | redundant commands. You can change the configuration of the power supplies to redundant or nonredundant at any time. To disable redundancy, use the combined keyword. In a nonredundant configuration, the power available to the system is the combined power capability of both power supplies. The system powers up as many modules as the combined capacity allows. However, if one power supply fails and there is not enough power for all of the previously powered-up modules, the system powers down those modules. To enable redundancy, use the redundant keyword. In a redundant configuration, the total power drawn from both power supplies is not greater than the capability of one power supply. If one supply malfunctions, the other supply can take over the entire system load. When you install and power up two power supplies, each concurrently provides approximately half of the required power to the system. Load sharing and redundancy are enabled automatically; no software configuration is required. To view the current state of modules and the total power available for modules, enter the show power command (see the "Viewing System Power Status" section on page 54-4). Table 54-1 describes how the system responds to changes in the power supply configuration. Table 54-1 Effects of Power Supply Configuration Changes Configuration Change Redundant to nonredundant Nonredundant to redundant (both power supplies must be of equal wattage) Effect • System log and syslog messages are generated. • System power is increased to the combined power capability of both power supplies. • Modules marked power-deny in the show power oper state field are brought up if there is sufficient power. • System log and syslog messages are generated. • System power is decreased to the power capability of one supply. • If there is not enough power for all previously powered-up modules, some modules are powered down and marked as power-deny in the show power oper state field. 54-2 Cisco 7600 Series Router Cisco IOS Software Configuration Guide, Release 12.2SX OL-4266-08

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54-2
Cisco 7600 Series Router Cisco IOS Software Configuration Guide, Release 12.2SX
OL-4266-08
Chapter 54
Power Management and Environmental Monitoring
Understanding How Power Management Works
Note
In systems with redundant power supplies, both power supplies must be of the same wattage. The
Cisco 7600 series routers allow you to use both AC-input and DC-input power supplies in the same
chassis. For detailed information on supported power supply configurations, refer to the
Cisco 7600
Series Router Installation Guide
.
The modules have different power requirements, and some configurations require more power than a
single power supply can provide. The power management feature allows you to power all installed
modules with two power supplies. However, redundancy is not supported in this configuration because
the total power drawn from both power supplies is at no time greater than the capability of one supply.
Redundant and nonredundant power configurations are described in the following sections.
To determine the power requirements for your system, see the
“Determining System Power
Requirements” section on page 54-5
.
Enabling or Disabling Power Redundancy
To disable or enable redundancy (redundancy is enabled by default) from global configuration mode,
enter the
power redundancy-mode combined
|
redundant
commands. You can change the
configuration of the power supplies to redundant or nonredundant at any time.
To disable redundancy, use the
combined
keyword. In a nonredundant configuration, the power available
to the system is the combined power capability of both power supplies. The system powers up as many
modules as the combined capacity allows. However, if one power supply fails and there is not enough
power for all of the previously powered-up modules, the system powers down those modules.
To enable redundancy, use the
redundant
keyword. In a redundant configuration, the total power drawn
from both power supplies is not greater than the capability of one power supply. If one supply
malfunctions, the other supply can take over the entire system load. When you install and power up two
power supplies, each concurrently provides approximately half of the required power to the system. Load
sharing and redundancy are enabled automatically; no software configuration is required.
To view the current state of modules and the total power available for modules, enter the
show power
command (see the
“Viewing System Power Status” section on page 54-4
).
Table 54-1
describes how the system responds to changes in the power supply configuration.
Table 54-1
Effects of Power Supply Configuration Changes
Configuration Change
Effect
Redundant to nonredundant
System log and syslog messages are generated.
System power is increased to the combined power capability of both power
supplies.
Modules marked
power-deny
in the
show power
oper state field are brought up if
there is sufficient power.
Nonredundant to redundant (both
power supplies must be of equal
wattage)
System log and syslog messages are generated.
System power is decreased to the power capability of one supply.
If there is not enough power for all previously powered-up modules, some modules
are powered down and marked as
power-deny
in the
show power
oper state field.