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The management port (MGMT ETH) provides out-of-band management, which enables you to use the command-line interface (CLI) to manage the switch by its IP address. This port uses a 10/100/1000 Ethernet connection with an RJ-45 interface.
The switch must be powered on.
ステップ 1 | Connect the RJ-45, UTP cable to the MGMT ETH port on the switch. |
ステップ 2 | Connect the other end of the cable to a 10/100/1000 Ethernet port on a network device. |
You are ready to connect the interface ports on each of the I/O modules to the network.
For a list of transceivers and cables used by this switch for uplink connections, see http://www.cisco.com/c/en/us/support/interfaces-modules/transceiver-modules/products-device-support-tables-list.html.
By default, the 40-Gigabit uplink ports operate at 40 Gbps, but you can use the speed-group 10000 command to change the administrative speed to 10 Gbps. If you change the speed, you must also use a QSFP+-to-SFP+ adapter and a supported SFP+ transceiver in each of the converted SFP+ ports. All of the ports in a group of ports must operate at the same speed or you will see an error with a "check speed-group config" message.To return the administrative speed to 40 Gigabits, use the no speed-group 10000 command.
警告 |
Statement 1051—Laser Radiation Invisible laser radiation may be emitted from disconnected fibers or connectors. Do not stare into beams or view directly with optical instruments. |
The Cisco Nexus 93120TX switch has 96 downlink ports that connect to servers. Each of these ports supports 100-Megabit, 1-Gigabit, and 10-Gigabit speeds over 10GBASE-T cables.
For a listing of the transceivers and cables that the optical downlink ports support, see http://www.cisco.com/c/en/us/support/interfaces-modules/transceiver-modules/products-device-support-tables-list.html
For the 10GBASE-T cables, you use RJ-45 connectors on cables that conform to the specifications in the following table.
Cable Type | Supported Length |
Category 6 |
180 feet (55 m) |
Category 6a |
328 feet (100 m) |
Category 7 |
328 feet (100 m) |
Category 7a |
328 feet (100 m) |
You can uplink six 40-Gigabit QSFP+ ports to other devices and downlink 96 1/10GBASE-T ports to other devices.
To prevent damage to the fiber-optic cables that can separate from their cables, we recommend that you keep the transceivers disconnected from their fiber-optic cables when installing the transceiver in the I/O module. Before removing such a transceiver from the switch, remove the cable from the transceiver.
To maximize the effectiveness and life of your transceivers and optical cables, do the following:
Wear an ESD-preventative wrist strap that is connected to an earth ground whenever handling transceivers. The switch is typically grounded during installation and provides an ESD port to which you can connect your wrist strap.
Do not remove and insert a transceiver more often than is necessary. Repeated removals and insertions can shorten its useful life.
Keep the transceivers and fiber-optic cables clean and dust free to maintain high signal accuracy and to prevent damage to the connectors. Attenuation (loss of light) is increased by contamination and should be kept below 0.35 dB.
Clean these parts before installation to prevent dust from scratching the fiber-optic cable ends.
Clean the connectors regularly; the required frequency of cleaning depends upon the environment. In addition, clean connectors if they are exposed to dust or accidentally touched. Both wet and dry cleaning techniques can be effective; refer to your site's fiber-optic connection cleaning procedures.
Do not touch the ends of connectors. Touching the ends can leave fingerprints and cause other contamination.
Inspect routinely for dust and damage. If you suspect damage, clean and then inspect fiber ends under a microscope to determine if damage has occurred.
To minimize the chance of damaging transceivers when installing them, slide them gently into their switch slots and never force them all the way into the slots. If the transceiver stops part way into the slot, it might be upside down and you should remove the transceiver before turning it over and reinstalling it. If positioned correctly, the transceiver will slide all the way into the slot and click when fully installed.
警告 |
Statement 1051—Laser Radiation Invisible laser radiation may be emitted from disconnected fibers or connectors. Do not stare into beams or view directly with optical instruments. |
警告 |
Statement 1053—Class 1M Laser Radition Class 1M laser radiation when open. Do not view directly with optical instruments. |
警告 |
Statement 1055—Class I and Class 1M Laser Class I (CDRH) and Class 1M (IEC) laser products. |
警告 |
Statement 1056—Unterminated Fiber Cable Invisible laser radiation may be emitted from the end of the unterminated fiber cable or connector. Do not view directly with optical instruments. Viewing the laser output with certain optical instruments (for example, eye loupes, magnifiers, and microscopes) within a distance of 100 mm may pose an eye hazard. |
Transceivers and fiber-optic cables must be kept clean and dust free to maintain high signal accuracy and prevent damage to the connectors. Attenuation (loss of light) is increased by contamination and should be below 0.35 dB.
Consider the following maintenance guidelines:
Transceivers are static sensitive. To prevent ESD damage, wear an ESD-preventative wrist strap that is connected to the grounded chassis.
Do not remove and insert a transceiver more often than is necessary. Repeated removals and insertions can shorten its useful life.
Keep all optical connections covered when not in use. Clean them before using to prevent dust from scratching the fiber-optic cable ends.
Do not touch the ends of connectors. Touching the ends can leave fingerprints and cause other contamination.
Clean the connectors regularly; the required frequency of cleaning depends upon the environment. In addition, clean connectors if they are exposed to dust or accidentally touched. Both wet and dry cleaning techniques can be effective; refer to your site's fiber-optic connection cleaning procedures.
Inspect routinely for dust and damage. If you suspect damage, clean and then inspect fiber ends under a microscope to determine if damage has occurred.