Cisco IE 4000 Switch Hardware Installation Guide (2022) - page 2

 

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Cisco IE 4000 Switch Hardware Installation Guide (2022) - page 2

 

 

Switch Installation
Connecting Alarm Circuits
Figure 16
Alarm Connector
1
Alarm Connector
2. Measure two strands of twisted-pair wire (16-to-18 AWG) long enough to connect to the external alarm device.
Choose between setting up an external alarm input or output circuit.
3. Use a wire stripper to remove the casing from both ends of each wire to 0.25 inch (6.3 mm) ± 0.02 inch (0.5 mm).
Do not strip more than 0.27 inch (6.8 mm) of insulation from the wires. Stripping more than the recommended
amount of wire can leave exposed wire from the alarm connector after installation.
4. Insert the exposed wires for the external alarm device into the connections based on an alarm input or output circuit
setup. For example, to wire an alarm input circuit, complete the IN1 and REF connections (See Figure 17 on
page 34).
33
Switch Installation
Connecting Alarm Circuits
Figure 17
Inserting Wires into the Alarm Connector (Alarm Input Circuit)
1
2
1
IN1 - External device connection 1
2
REF - External device connection 2
5. Use a ratcheting torque flathead screwdriver to tighten the alarm connector captive screw (above the installed wire
leads) to 2 in-lb (0.23 N-m). (See Figure 18 on page 34.)
Caution: Do not over-torque the power and alarm connectors’ captive screws. The torque should not exceed 2 in-lb
(0.23 N-m).
Figure 18
Securing the Alarm Connector Captive Screws
6. Repeat Step 2 through Step 5 to insert the input and output wires of one additional external alarm device into the
alarm connector.
Figure 19 on page 35 shows the completed wiring for two external alarm devices. The first alarm device circuit is wired
as an alarm input circuit; the IN1 and REF connections complete the circuit. The second alarm device circuit is wired as
an alarm output circuit that works on a normally open contact basis; the NO and COM connections complete the circuit.
34
Switch Installation
Connecting Destination Ports
Figure 19
Completed Connections for Three External Alarm Devices on the Alarm Connector
1
3
2
4
1
IN1 wired connection
3
COM wired connection
2
REF wired connection
4
NO wired connection
Attaching the Alarm Connector to the Switch
Warning: Failure to securely tighten the captive screws can result in an electrical arc if the connector is accidentally
removed. Statement 397
Warning: When you connect or disconnect the power and/or alarm connector with power applied, an electrical arc
can occur. This could cause an explosion in hazardous area installations. Be sure that all power is removed from the
switch and any other circuits. Be sure that power cannot be accidentally turned on or verify that the area is
nonhazardous before proceeding. Statement 1058
To attach the alarm connector to the front panel of the switch, follow these steps:
1. Insert the alarm connector into the receptacle on the switch front panel.
2. Use a ratcheting torque flathead screwdriver to tighten the captive screws on the sides of the alarm connector.
Connecting Destination Ports
These section provide more information about connecting to the destination ports:
„ Connecting to 10/100 and 10/100/1000 Ports, page 36
„ Installing and Removing SFP Modules, page 36
„ Connecting to SFP Modules, page 38
„ Connecting to a Dual-Purpose Port, page 38
35
Switch Installation
Connecting Destination Ports
Connecting to 10/100 and 10/100/1000 Ports
The switch 10/100/1000 ports automatically configure themselves to operate at the speed of attached devices. If the
attached ports do not support autonegotiation, you can explicitly set the speed and duplex parameters. Connecting
devices that do not autonegotiate or that have their speed and duplex parameters manually set can reduce performance
or result in no linkage.
Warning: Do not connect or disconnect cables to the ports while power is applied to the switch or any device on
the network because an electrical arc can occur. This could cause an explosion in hazardous location installations.
Be sure that power is removed from the switch and cannot be accidentally be turned on, or verify that the area is
nonhazardous before proceeding. Statement 1070
To maximize performance, choose one of these methods for configuring the Ethernet ports:
„ Let the ports autonegotiate both speed and duplex.
„ Set the port speed and duplex parameters on both ends of the connection.
The models that support PoE provide up to four ports of either PoE (15.4 W per port; IEEE 802.3af) or PoE+ (30 W per
port; IEEE 802.3at), depending on the power source used.
Caution: To prevent electrostatic-discharge (ESD) damage, follow your normal board and component handling
procedures.
To connect to 10BASE-T, 100BASE-TX or 1000BASE-T devices, follow these steps:
1. When connecting to workstations, servers, routers, and Cisco IP phones, connect a straight-through cable to an
RJ-45 connector on the front panel.
When connecting to 1000BASE-T-compatible devices, use a twisted four-pair, Category 5 or higher cable.
The auto-MDIX feature is enabled by default. For configuration information for this feature, see the Cisco IE 4000 Switch
Software Configuration Guide .
2. Connect the other end of the cable to an RJ-45 connector on the other device. The port LED turns on when both the
switch and the connected device have established a link.
The port LED is amber while Spanning Tree Protocol (STP) discovers the topology and searches for loops. This can take
up to 30 seconds, and then the port LED turns green. If the port LED does not turn on:
„ The device at the other end might not be turned on.
„ There might be a cable problem or a problem with the adapter installed in the attached device. See Troubleshooting,
page 53 for solutions to cabling problems.
3. Reconfigure and reboot the connected device if necessary.
4. Repeat Steps 1 through 3 to connect each device.
Installing and Removing SFP Modules
These sections describe how to install and remove SFP modules. SFP modules are inserted into SFP module slots on the
front of the switch. These field-replaceable modules provide the uplink optical interfaces, send (TX) and receive (RX).
You can use any combination of rugged SFP modules. See the release notes on Cisco.com for the list of supported
modules. Each SFP module must be of the same type as the SFP module on the other end of the cable, and the cable
must not exceed the stipulated cable length for reliable communications.
Caution: When you use commercial SFP modules such as CWDM and 1000BX-U/D, reduce the maximum operating
temperature by 59°F (15°C). The minimum operating temperature is 32°F (0°C).
36
Switch Installation
Connecting Destination Ports
For detailed instructions on installing, removing, and cabling the SFP module, see your SFP module documentation.
Warning: Do not insert and remove SFP modules while power is on; an electrical arc can occur. This could cause an
explosion in hazardous location installations. Be sure that power is removed or the area is nonhazardous before
proceeding. Statement 1087
Installing SFP Modules into SFP Module Slots
Figure 20 on page 37 shows an SFP module that has a bale-clasp latch.
Caution: We strongly recommend that you do not install or remove the SFP module with fiber-optic cables attached
to it because of the potential damage to the cables, the cable connector, or the optical interfaces in the SFP module.
Disconnect all cables before removing or installing an SFP module.
Removing and installing an SFP module can shorten its useful life. Do not remove and insert SFP modules more
often than is absolutely necessary.
Figure 20
SFP Module with a Bale-Clasp Latch
To insert an SFP module into the SFP module slot:
1. Attach an ESD-preventive wrist strap to your wrist and to a grounded bare metal surface.
2. Find the send (TX) and receive (RX) markings that identify the correct side of the SFP module.
On some SFP modules, the send and receive (TX and RX) markings might be replaced by arrows that show the direction
of the connection, either send or receive (TX or RX).
3. Align the SFP module sideways in front of the slot opening.
4. Insert the SFP module into the slot until you feel the connector on the module snap into place in the rear of the slot.
5. Remove the dust plugs from the SFP module optical ports and store them for later use.
Caution: Do not remove the dust plugs from the SFP module port or the rubber caps from the fiber-optic cable until
you are ready to connect the cable. The plugs and caps protect the SFP module ports and cables from
contamination and ambient light.
6. Insert the LC cable connector into the SFP module.
Removing SFP Modules from SFP Module Slots
To remove an SFP module from a module receptacle:
1. Attach an ESD-preventive wrist strap to your wrist and to a grounded bare metal surface.
2. Disconnect the LC from the SFP module.
37
Switch Installation
Connecting Destination Ports
3. Insert a dust plug into the optical ports of the SFP module to keep the optical interfaces clean.
4. Unlock and remove the SFP module.
If the module has a bale-clasp latch, pull the bale out and down to eject the module. If the bale-clasp latch is obstructed
and you cannot use your index finger to open it, use a small, flat-blade screwdriver or other long, narrow instrument to
open the bale-clasp latch.
5. Grasp the SFP module between your thumb and index finger, and carefully remove it from the module slot.
6. Place the removed SFP module in an antistatic bag or other protective environment.
Connecting to SFP Modules
This section describes how to connect to a fiber-optic SFP port. To connect to an RJ-45 Gigabit Ethernet port instead
of a fiber-optic port, see Connecting to a Dual-Purpose Port, page 38. For instructions on how to install or remove an
SFP module, see Installing and Removing SFP Modules, page 36.
Warning: Class 1 laser product. Statement 1008
Warning: Do not connect or disconnect cables to the ports while power is applied to the switch or any device on
the network because an electrical arc can occur. This could cause an explosion in hazardous location installations.
Be sure that power is removed from the switch and cannot be accidentally be turned on, or verify that the area is
nonhazardous before proceeding. Statement 1070
Caution: Do not remove the rubber plugs from the SFP module port or the rubber caps from the fiber-optic cable
until you are ready to connect the cable. The plugs and caps protect the SFP module ports and cables from
contamination and ambient light.
Before connecting to the SFP module, be sure that you understand the port and cabling guidelines in the Preparing
for Installation, page 13.
To connect a fiber-optic cable to an SFP module, follow these steps:
1. Remove the rubber plugs from the module port and fiber-optic cable, and store them for future use.
2. Insert one end of the fiber-optic cable into the SFP module port.
3. Insert the other cable end into a fiber-optic receptacle on a target device.
4. Observe the port status LED:
The LED turns green when the switch and the target device have an established link.
The LED turns amber while the STP discovers the network topology and searches for loops. This process takes
about 30 seconds, and then the port LED turns green.
If the LED is off, the target device might not be turned on, there might be a cable problem, or there might be a
problem with the adapter installed in the target device. See Troubleshooting, page 53 for solutions to cabling
problems.
5. If necessary, reconfigure and restart the switch or the target device.
Connecting to a Dual-Purpose Port
The dual-purpose port is a single port with two interfaces, one for an RJ-45 cable and another for an SFP module. Only
one interface can be active at a time. If both interfaces are connected, the SFP module has priority.
Warning: Class 1 laser product. Statement 1008
38
Switch Installation
Verifying Switch Operation
Caution: Do not remove the rubber plugs from the SFP module port or the rubber caps from the fiber-optic cable
until you are ready to connect the cable. The plugs and caps protect the SFP module ports and cables from
contamination and ambient light.
Before connecting to the SFP module, be sure that you understand the port and cabling stipulations in the Preparing
for Installation, page 13.
To connect to a dual-purpose port, follow these steps:
1. Connect an RJ-45 connector to the 10/100/1000 port, or install an SFP module into the SFP module slot, and
connect a cable to the SFP module port.
For more information about RJ-45 connections, SFP modules, and optical connections, see Connecting to 10/100
and 10/100/1000 Ports, page 36, Installing and Removing SFP Modules, page 36, and Connecting to SFP Modules,
page 38.
2. Connect the other end of the cable to the other device.
By default, the switch detects whether an RJ-45 connector or SFP module is connected to a dual-purpose port and
configures the port accordingly. You can change this setting and configure the port to recognize only an RJ-45 connector
or only an SFP module by using the media type interface configuration command. For more information, see the Cisco
IE 4000 Switch Command Reference.
Verifying Switch Operation
Before installing the switch in its final location, power on the switch, and verify that the switch powers up in boot fast
style. The boot fast sequence allows the switch to boot up in less than 60 seconds.
Where to Go Next
If the default configuration is satisfactory, the switch does not need further configuration. You can use any of these
management options to change the default configuration:
„ Start Device Manager, which is in the switch memory, to manage individual and standalone switches. This is an
easy-to-use web interface that offers quick configuration and monitoring. You can access Device Manager from
anywhere in your network through a web browser. For more information, see the Software Configuration Guide and
the Device Manager online help.
„ Start the Cisco Network Assistant application, which is described in the Getting Started with Cisco Network Assistant
guide. Using the GUI, you can configure and monitor a switch cluster or an individual switch.
„ Use the CLI to configure the switch as an individual switch from the console. See the Command Reference on
Cisco.com for information about using the CLI.
„ Start an SNMP application such as the CiscoView application.
„ Start the Common Industrial Protocol (CIP) management tool. You can manage an entire industrial automation system
with the CIP-based tools.
39
Express Setup IE 4000
When you first set up the switch, you should use Express Setup to enter the initial IP information. This process enables
the switch to connect to local routers and the Internet. You can then access the switch through the IP address for
additional configuration.
Required Equipment
You need this equipment to set up the switch:
„ Computer with Windows 2000/Vista/2003/XP/Window7/Mac.
„ A Web browser (IE or Firefox) with JavaScript enabled.
„ A straight-through or crossover Category 5 Ethernet cable to connect your computer to the switch port.
Note: Do not use the RS232 serial console port for express setup.
„ A small paper clip to reach to button.
Note: Before running Express Setup, disable any pop-up blockers or proxy settings on your browser and any wireless
client running on your computer.
Express Setup Procedure
To run Express Setup:
1. Make sure that nothing is connected to the switch.
2. Ensure theIE4000 is in default factory mode.
Skip to next step if freshly out of the box.
a. If not freshly out of the package, use a paper clip to reset the switch for 10 seconds until the SYS LED light turns
red, then release the paper clip.
Switch will automatically reboot once the SYS led goes red.
3. Ensure no data port is connected to the switch.
Note: During Express Setup, the switch acts as a DHCP server.
You can add a serial console cable to monitor the booting sequence. Do not hit [return key] on console screen.
Ensure the computer connected to switch is configured with DHCP.
4. Web Browser: disable pop-up blockers and proxy settings.
5. Connect power to the switch.
See the wiring instructions in Grounding the Switch and Wiring the DC Power Source.
41
Express Setup IE 4000
Express Setup Procedure
6. Power on or reset the IE4000:
Use LEDs to monitor boot progress:
Sys blinking: bootloader
Sysl Blank: POST
Sys solid: exit post, IOS initializing
Sys and alarm LEDs green: IOS init done
~90 - 100 seconds after power on
EXP blinking: ready for express setup process
7. Insert paper clip into express setup button for 1-2 seconds.
When released, port Gig1/1 LED starts flashing green.
8. Connect computer to port Gig1/1.
LED continues to blink.
9. After computer has IP Address (169.254.0.2), point browser to http://169.254.0.1.
10. Leave the username blank and enter the default password, cisco.
Note: The switch ignores text in the username field. The Express Setup window appears.
42
Express Setup IE 4000
Express Setup Procedure
Troubleshooting: If the Express Setup window does not appear, make sure that any pop-up blockers or proxy
settings on your browser are disabled and that any wireless client is disabled on your computer.
11. Enter all entries in English letters and Arabic numbers.
In the Network Settings (Required for Static IP):
IP Address: Enter a valid IP address for the switch.
You can later use the IP address to access the switch through Device Manager.
Switch Username and Password: Enter a password. The password can be from 1 to 25 alphanumeric
characters, can start with a number, is case sensitive, allows embedded spaces, but does not allow spaces at
the beginning or end. In the Confirm Password field, enter the password again.
Note: You must change the password from the default password, cisco.
Default Gateway: Enter the IP address of the router.
12. Enter the Control Industrial Protocol (CIP) VLAN settings (optional):
CIP VLAN: Enter the VLAN on which CIP will be enabled. The CIP VLAN can be the same as the management
VLAN, or you can isolate CIP traffic on another VLAN that is already configured on the switch. The default CIP
VLAN is VLAN 1. Only one VLAN on a switch can have CIP enabled.
IP Address: Enter the IP address for the CIP VLAN. If the CIP VLAN is different from the management VLAN, you
must specify an IP address for the CIP VLAN. Make sure that the IP address that you assign to the switch is not
being used by another device in your network.
Subnet Mask: Select a mask from the drop-down list.
For more information about the CIP VLAN settings, click Help on the toolbar.
13. Optional Settings
You can enter the optional information now, or enter it later by using Device Manager. For more information about
the Express Setup fields, see the on-line help for the Express Setup window.
Click Submit to save your changes and to complete the initial setup.
For more information about the optional settings, click Help on the toolbar.
14. After you click Submit, these events occur:
a. The switch is configured and exits Express Setup mode.
b. The browser displays a warning message and tries to connect with the earlier switch IP address.
c. Typically, connectivity between the computer and the switch is lost because the configured switch IP address is
in a different subnet from the IP address on the computer.
15. Turn off DC power at the source, disconnect all cables to the switch, and install the switch in your network. See
Management Options for information about configuring and managing the switch.
16. If you changed the static IP address on your computer in Step 1, change it to the previously configured static IP
address.
17. You can now manage the switch by using the Cisco Network Assistant, Device Manager, or both. See Management
Options for information about configuring and managing the switch.
You can display Device Manager by following these steps:
43
Express Setup IE 4000
Express Setup Procedure
a. Start a web browser on your computer.
b. Enter the switch IP address, username, and password in the web browser, and press Enter. The Device Manager
page appears.
Troubleshooting:
If the Device Manager page does not appear:
Confirm that the port LED for the switch port connected to your network is green.
Confirm that the computer that you are using to access the switch has network connectivity by connecting it to
a well known web server in your network. If there is no network connection, troubleshoot the network settings
on the computer.
Make sure that the switch IP address in the browser is correct.
If the switch IP address in the browser is correct, the switch port LED is green, and the computer has network
connectivity, continue troubleshooting by reconnecting the computer to the switch. Configure a static IP address
on the computer that is in the same subnet as the switch IP address.
When the LED on the switch port connected to the computer is green, reenter the switch IP address in a web
browser to display the Device Manager. When Device Manager appears, you can continue with the switch
configuration.
44
Configuring the Switch with the CLI-Based
Setup Program
This appendix provides a command-line interface (CLI)-based setup procedure for a switch.
Before connecting the switch to a power source, review the safety warnings in Warnings, page 13
For installation procedures, see Switch Installation, page 13
Accessing the CLI Through the Console Port
You can enter Cisco IOS commands and parameters through the CLI. Use one of these options to access the CLI:
„ RJ-45 Console Port, page 46
„ USB Mini-Type B Console Port, page 47
Removing the USB Mini-Type B Console Port Cover
To remove the cover from the USB mini-type B console port:
1. Use a Phillips screwdriver to loosen the captive screw on the USB mini-type B console port cover. See Figure 21 on
page 46. Remove the screw and take off the cover.
45
Configuring the Switch with the CLI-Based Setup Program
Accessing the CLI Through the Console Port
Figure 21
USB Mini-Type B Console Port Cover
1
USB Mini-Type B Console Port Cover
RJ-45 Console Port
1. Connect the RJ-45-to-DB-9 adapter cable to the 9-pin serial port on the PC. Connect the other end of the cable to
the switch console port.
2. Start the terminal-emulation program on the PC or the terminal. The program, frequently a PC application such as
HyperTerminal or ProcommPlus, makes communication between the switch and your PC or terminal possible.
46
Configuring the Switch with the CLI-Based Setup Program
Accessing the CLI Through the Console Port
Figure 22
Connecting the Console Cable
1
RJ-45 console port
3. Configure the baud rate and character format of the PC or terminal to match the console port characteristics:
„
9600 baud
„
8 data bits
„
1 stop bit
„ No parity
„ None (flow control)
4. Connect power to the switch as described in Connecting to Power, page 18.
5. The PC or terminal displays the bootloader sequence. Press Enter to display the setup prompt. Follow the steps in
the Completing the Setup Program, page 50.
USB Mini-Type B Console Port
1. If you are connecting the switch USB-mini console port to a Windows-based PC for the first time, install a USB driver.
See Installing the Cisco Microsoft Windows XP, 2000, Vista, 7, 8, and 10 USB Device Driver, page 48 for more
information.
2. Connect a USB cable to the PC USB port. Connect the other end of the cable to the switch mini-B (5-pin-connector)
USB-mini console port.
3. Identify the COM port assigned to the USB-mini console port:
47
Configuring the Switch with the CLI-Based Setup Program
Accessing the CLI Through the Console Port
c. Choose Start > Control Panel > Systems.
d. Click the Hardware tab and choose Device Manager. Expand the Ports section. The assigned COM port appears
in parenthesis at the end of the line with this entry: Cisco USB System Management Console.
4. Start the terminal-emulation program on the PC or the terminal. The program, frequently a PC application such as
HyperTerminal or ProcommPlus, makes communication possible between the switch and your PC or terminal.
5. Configure the COM port.
6. Configure the baud rate and character format of the PC or terminal to match the console port characteristics:
„
9600 baud
„
8 data bits
„
1 stop bit
„ No parity
„ None (flow control)
7. Connect power to the switch as described in Connecting to Power, page 18.
8. The PC or terminal displays the bootloader sequence. Press Enter to display the setup prompt. Follow the steps in
the Completing the Setup Program, page 50.
Installing the Cisco Microsoft Windows XP, 2000, Vista, 7, 8, and 10 USB
Device Driver
A USB device driver must be installed the first time a Microsoft Windows-based PC is connected to the USB console
port on the switch. Use this procedure to install the USB driver on Windows XP, Windows 2000, Windows Vista,
Windows 7, Windows 8, and Windows 10.
1. Obtain the file Cisco_usbconsole_driver_3_1.zip from the Cisco.com website
The file details are as follows:
Description: Cisco_usbconsole_driver_3_1.zip
Release: 3.1
Release Date: 27/Nov/2014
File Name: Cisco_usbconsole_driver_3_1.zip
Size: 14.35 MB (15045453 bytes)
MD5 Checksum: eff2e955edcdc70209e6f9c8f6bd59cd
2. Unzip the file and install the corresponding exe file.
3. Navigate to the Device Manager window by performing a search in WIndows for Device Manager and opening it.
4. Connect the USB cable from the Windows PC to the Cisco switch.
5. From the Device Manager page, expand Ports (COM & LPT). Select USB Serial Port. Right-click and select Update
Driver Software ...
48
Configuring the Switch with the CLI-Based Setup Program
Entering the Initial Configuration Information
6. In the Update Driver Software window, select Browse my computer for driver software. Then choose Let me pick
from a list of device drivers on my computer and click Next.
7. Enable Show compatible hardware and choose Cisco Serial as the model. Click Next.
After the update is completed, Windows displays Windows has successfully updated your driver software.
8. Click Close.
Uninstalling the Cisco Microsoft Windows XP, 2000, Vista, 7, 8, and 10 USB
Driver
Note: Disconnect the switch console terminal before uninstalling the driver.
1. Run setup.exe for Windows 32-bit or setup(x64).exe for Windows-64bit.
2. Click Next.
3. When the InstallShield Wizard for Cisco Virtual Com appears, click Next.
4. When the Program Maintenance window appears, select the Remove radio button.
5. Click Next.
6. When the Remove the Program window appears, click Remove.
If a User Account Control warning appears, click Allow - I trust this program to proceed.
7. When the InstallShield Wizard Completed window appears, click Finish.
Entering the Initial Configuration Information
To set up the switch, you need to complete the setup program, which runs automatically after the switch is powered on.
You must assign an IP address and other configuration information necessary for the switch to communicate with the
local routers and the Internet. This information is also required if you plan to use Device Manager or Cisco Network
Assistant to configure and manage the switch.
IP Settings
You need this information from your network administrator before you complete the setup program:
„ Switch IP address
„ Subnet mask (IP netmask)
„ Default gateway (router)
„ Enable secret password
„ Enable password
„ Telnet password
49
Configuring the Switch with the CLI-Based Setup Program
Entering the Initial Configuration Information
Completing the Setup Program
To complete the setup program and to create an initial configuration for the switch:
1. Enter Yes at these two prompts:
Would you like to enter the initial configuration dialog? [yes/no]: yes
At any point you may enter a question mark '?' for help.
Use ctrl-c to abort configuration dialog at any prompt.
Default settings are in square brackets '[]'.
Basic management setup configures only enough connectivity
for management of the system, extended setup will ask you
to configure each interface on the system.
Would you like to enter basic management setup? [yes/no]: yes
2. Enter a hostname for the switch, and press Return.
On a command switch, the hostname is limited to 28 characters; on a member switch, it is limited to 31 characters. Do
not use -n, where n is a number, as the last character in a hostname for any switch.
Enter host name [Switch]: host_name
3. Enter an enable secret password, and press Return.
The password can be from 1 to 25 alphanumeric characters, can start with a number, is case sensitive, allows spaces,
but ignores leading spaces. The secret password is encrypted, and the enable password is in plain text.
Enter enable secret: secret_password
4. Enter an enable password, and press Return.
Enter enable password: enable_password
5. Enter a virtual terminal (Telnet) password, and press Return.
The password can be from 1 to 25 alphanumeric characters, is case sensitive, allows spaces, but ignores leading spaces.
Enter virtual terminal password: terminal-password
6. (Optional) Configure Simple Network Management Protocol (SNMP) by responding to the prompts. You can also
configure SNMP later through the CLI, Device Manager, or the Cisco Network Assistant application. To configure
SNMP later, enter no.
Configure SNMP Network Management? [no]: no
7. Enter the interface name (physical interface or VLAN name) of the interface that connects to the management
network, and press Return. For this release, always use vlan1 as that interface.
Enter interface name used to connect to the
management network from the above interface summary: vlan1
8. Configure the interface by entering the switch IP address and subnet mask and pressing Return. The IP address and
subnet masks shown here are examples.
Configuring interface vlan1:
Configure IP on this interface? [yes]: yes
IP address for this interface: 10.4.120.106
Subnet mask for this interface [255.0.0.0]: 255.0.0.0
50
Configuring the Switch with the CLI-Based Setup Program
Entering the Initial Configuration Information
9. Enter Y to configure the switch as the cluster command switch. Enter N to configure it as a member switch or
as a standalone switch.
If you enter N, the switch appears as a candidate switch in the Cisco Network Assistant GUI. You can configure the switch
as a command switch later through the CLI, Device Manager, or the Cisco Network Assistant application. To configure it
later, enter no.
Would you like to enable as a cluster command switch? [yes/no]: no
You have now completed the initial configuration of the switch, and the switch displays its initial configuration script:
The following configuration command script was created:
hostname Switch
enable secret 5
$1$ZQRe$DPulYXyQLm77v/a4Bmu6Y.
enable password cisco
line vty 0 15
password cisco
no snmp-server
!
!
interface Vlan1
no shutdown
ip address 10.4.120.106 255.0.0.0
!
interface FastEthernet1/1
!
interface FastEthernet1/2
!
interface FastEthernet1/3
!
...(output abbreviated)
!
interface GigabitEthernet1/1
!
interface GigabitEthernet1/2
!
end
10. These choices appear:
[0] Go to the IOS command prompt without saving this config.
[1] Return back to the setup without saving this config.
[2] Save this configuration to nvram and exit.
If you want to save the configuration and use it the next time the switch reboots, save it in NVRAM by
selecting option 2.
Enter your selection [2]:2
Make your selection, and press Return.
After you complete the setup program, the switch can run the default configuration that you created. If you want to
change this configuration or want to perform other management tasks, use one of these tools:
„ Command-line interface (CLI)
„ Cisco Network Assistant (for one or more switches)
51
Configuring the Switch with the CLI-Based Setup Program
Entering the Initial Configuration Information
To use the CLI, enter commands at the Switch> prompt through the console port by using a terminal emulation program
or through the network by using Telnet. For configuration information, see the switch Cisco IE 4000 Switch Software
Configuration Guide.
To use the Cisco Network Assistant, see the Getting Started with Cisco Network Assistant guide on Cisco.com.
52
Troubleshooting
This chapter provides these topics for troubleshooting problems:
„ Diagnosing Problems, page 53
„ How to Recover Passwords, page 56
„ Finding the Switch Serial Number, page 56
Diagnosing Problems
The switch LEDs provide troubleshooting information about the switch. They show boot fast failures, port-connectivity
problems, and overall switch performance. You can also get statistics from Device Manager, the CLI, or an SNMP
workstation. See the Cisco IE 4000 Switch Software Configuration Guide, or the documentation that came with your
SNMP application for details.
Switch Boot Fast
See Verifying Switch Operation, page 39 for information on boot fast.
Note: Boot fast failures are usually fatal. Contact your Cisco TAC representative if your switch does not successfully
complete boot fast.
Note: You can disable the boot fast and run POST by using the Cisco IOS CLI, see the Cisco IE 4000 Switch Software
Configuration Guide for more information.
Switch LEDs
Look at the port LEDs information when troubleshooting the switch. See LEDs, page 7 for a description of the LED colors
and their meanings.
Switch Connections
Bad or Damaged Cable
Always examine the cable for marginal damage or failure. A cable might be just good enough to connect at the physical
layer, but it could corrupt packets as a result of subtle damage to the wiring or connectors. You can identify this problem
because the port has many packet errors or it constantly flaps (loses and regains link).
„ Exchange the copper or fiber-optic cable with a known good cable.
„ Look for broken or missing pins on cable connectors.
„ Rule out any bad patch panel connections or media convertors between the source and the destination. If possible,
bypass the patch panel, or eliminate media convertors (fiber-optic-to-copper).
„ Try the cable in another port to see if the problem follows the cable.
53
Troubleshooting
Diagnosing Problems
Ethernet and Fiber-Optic Cables
Make sure that you have the correct cable:
„ For Ethernet, use Category 3 copper cable for 10 Mb/s UTP connections. Use either Category 5, Category 5e, or
Category 6 UTP for 10/100, 10/100/1000 Mb/s, and PoE connections.
„ Verify that you have the correct fiber-optic cable for the distance and port type. Make sure that the connected device
ports match and use the same type encoding, optical frequency, and fiber type.
„ Determine if a copper crossover cable was used when a straight-through was required or the reverse. Enable
auto-MDIX on the switch, or replace the cable.
Link Status
Verify that both sides have a link. A broken wire or a shutdown port can cause one side to show a link even though the
other side does not have a link.
A port LED that is on does not guarantee that the cable is functional. It might have encountered physical stress, causing
it to function at a marginal level. If the port LED does not turn on:
„ Connect the cable from the switch to a known good device.
„ Make sure that both ends of the cable are connected to the correct ports.
„ Verify that both devices have power.
„ Verify that you are using the correct cable type. See Cables and Adapters, page 61 for information.
„ Look for loose connections. Sometimes a cable appears to be seated but is not. Disconnect the cable, and then
reconnect it.
10/100/1000 Port Connections
If a port appears to malfunction:
„ Verify the status of all ports by checking the LEDs. For more information, see Switch LEDs, page 53.
„ Use the show interfaces privileged EXEC command to see if the port is error-disabled, disabled, or shut down.
Reenable the port if necessary.
„ Verify the cable type. See Cable and Connectors, page 59.
SFP Module
Use only Cisco SFP modules. Each Cisco module has an internal serial EEPROM that is encoded with security information.
This encoding verifies that the module meets the requirements for the switch.
„ Inspect the SFP module. Exchange the suspect module with a known good module.
„ Verify that the module is supported on this platform. (The switch release notes on Cisco.com list the SFP modules
that the switch supports.)
„ Use the show interfaces privileged EXEC command to see if the port or module is error-disabled, disabled, or
shutdown. Reenable the port if needed.
„ Make sure that all fiber-optic connections are clean and securely connected.
54
Troubleshooting
Diagnosing Problems
Interface Settings
Verify that the interface is not disabled or powered off. If an interface is manually shut down on either side of the link, it
does not come up until you reenable the interface. Use the show interfaces privileged EXEC command to see if the
interface is error-disabled, disabled, or shut down on either side of the connection. If needed, reenable the interface.
Ping End Device
Ping from the directly connected switch first, and then work your way back port by port, interface by interface, trunk by
trunk, until you find the source of the connectivity issue. Make sure that each switch can identify the end device MAC
address in its Content-Addressable Memory (CAM) table.
Spanning Tree Loops
STP loops can cause serious performance issues that look like port or interface problems.
A unidirectional link can cause loops. It occurs when the traffic sent by the switch is received by the neighbor, but the
traffic from the neighbor is not received by the switch. A broken cable, other cabling problems, or a port issue can cause
this one-way communication.
You can enable UniDirectional Link Detection (UDLD) on the switch to help identify unidirectional link problems. For
information about enabling UDLD on the switch, see the “Understanding UDLD” section in the switch software
configuration guide on Cisco.com.
Switch Performance
Speed, Duplex, and Autonegotiation
Port statistics that show a large amount of alignment errors, frame check sequence (FCS), or late-collisions errors, might
mean a speed or duplex mismatch.
A common issue occurs when duplex and speed settings are mismatched between two switches, between a switch and
a router, or between the switch and a workstation or server. Mismatches can happen when manually setting the speed
and duplex or from autonegotiation issues between the two devices.
To maximize switch performance and to ensure a link, follow one of these guidelines when changing the duplex or the
speed settings.
„ Let both ports autonegotiate both speed and duplex.
„ Manually set the speed and duplex parameters for the interfaces on both ends of the connection.
„ If a remote device does not autonegotiate, use the same duplex settings on the two ports. The speed parameter
adjusts itself even if the connected port does not autonegotiate.
Autonegotiation and Network Interface Cards
Problems sometimes occur between the switch and third-party network interface cards (NICs). By default, the switch
ports and interfaces autonegotiate. Laptops or other devices are commonly set to autonegotiate, yet sometimes issues
occur.
To troubleshoot autonegotiation problems, try manually setting both sides of the connection. If this does not solve the
problem, there could be a problem with the firmware or software on the NIC. You can resolve this by upgrading the NIC
driver to the latest version.
55
Troubleshooting
Resetting the Switch
Cabling Distance
If the port statistics show excessive FCS, late-collision, or alignment errors, verify that the cable distance from the switch
to the connected device meets the recommended guidelines. See Cables and Adapters, page 61.
Resetting the Switch
These are reasons why you might want to reset the switch to the factory default settings:
„ You installed the switch in your network and cannot connect to it because you assigned the wrong IP address.
„ You want to reset the password on the switch.
Note: Resetting the switch deletes the configuration and reboots the switch.
Caution: If you press the Express Setup button when you power on, the automatic boot sequence stops, and the
switch enters bootloader mode.
To reset the switch:
1. Press and hold the Express Setup button (recessed behind a small hole in the faceplate) for about 10 seconds with
a paper clip or similar object. The switch reboots. The system LED turns green after the switch completes rebooting.
2. Press the Express Setup button again for 3 seconds. A switch 10/100 Ethernet port blinks green.
The switch now behaves like an unconfigured switch. You can configure the switch by using the CLI setup procedure
described in Configuring the Switch with the CLI-Based Setup Program, page 45
How to Recover Passwords
Password recovery is a feature that a system administrator can enable or disable. If password recovery is disabled, the
only way to recover from a lost or forgotten password is to clear the switch configuration entirely. For this procedure, see
How to Recover Passwords, page 56.
The Cisco IE 4000 Switch Software Configuration Guide provides details about enabling and disabling the password
recovery feature and the procedure for recovering passwords.
Finding the Switch Serial Number
If you contact Cisco Technical Assistance, you need to know the serial number of your switch. The serial number is on
the compliance label on the right-hand side of the switch. See Figure 23 on page 57. You can also use the show version
privileged EXEC command to obtain the switch serial number.
56
Troubleshooting
Finding the Switch Serial Number
Figure 23
Serial Number Location for the Cisco IE 4000 Switches
1
Compliance Label
57
Cable and Connectors
„ Connector Specifications, page 59
„ Cables and Adapters, page 61
Connector Specifications
„
10/100/1000 Ports, page 59
„ SFP Module Connectors, page 59
„ Dual-Purpose Ports, page 60
„ Alarm Port, page 61
10/100/1000 Ports
The 10/100/1000 Ethernet ports on the switches use RJ-45 connectors. Figure 2410/100 Port Pinouts, page
59 shows
the pinouts.
Figure 24
10/100 Port Pinouts
Pin
Label
1 2 3 4 5 6 7 8
1
RD+
2
RD-
3
TD+
4
NC
5
NC
6
TD-
7
NC
8
NC
Note: For the three models of IE 4000 switch that support PoE, connector pins 4 and 5 supply +48 VDC and pins 7 and
8 are the DC voltage return lines.
SFP Module Connectors
Figure 25Fiber-Optic SFP Module LC Connector, page 60 shows a MT-RJ style connector that is used with the SFP
Module slots. It is a fiber-optic cable connector.
59
Cable and Connectors
Connector Specifications
Figure 25
Fiber-Optic SFP Module LC Connector
Warning: Invisible laser radiation may be emitted from disconnected fibers or connectors. Do not stare into beams
or view directly with optical instruments. Statement 1051
Dual-Purpose Ports
The 10/100/1000 Ethernet ports on the dual-purpose ports use RJ-45 connectors. Figure 2610/100/1000 Port Pinouts,
page 60 shows the pinouts.
Figure 26
10/100/1000 Port Pinouts
Pin
Label
1 2 3 4 5 6 7 8
1
TP0+
2
TP0-
3
TP1+
4
TP2+
5
TP2-
6
TP1-
7
TP3+
8
TP3-
Console Port
The switch has two console ports: a USB 5-pin mini-Type B port on the front panel (see Figure 27 on page 60) and an
RJ-45 console port on the rear panel.
Figure 27
USB Mini-Type B Port
The USB console port uses a USB Type A to 5-pin mini-Type B cable, shown in Figure 28USB Type A-to-USB 5-Pin
Mini-Type B Cable, page 61. The USB Type A-to-USB mini-Type B cable is not supplied. You can order an accessory
kit (part number 800-33434) that contains this cable.
Note: When running Linux, access the USB Console using Minicom instead of Screen.
60
Cable and Connectors
Cables and Adapters
Figure 28
USB Type A-to-USB 5-Pin Mini-Type B Cable
The RJ-45 console port uses an 8-pin RJ-45 connector The supplied RJ-45-to-DB-9 adapter cable is used to connect
the console port of the switch to a console PC. You need to provide a RJ-45-to-DB-25 female DTE adapter if you want
to connect the switch console port to a terminal. You can order a kit (part number ACS-DSBUASYN=) containing that
adapter.
Alarm Port
The labels for the alarm connector pin-outs are on the switch panel and are displayed below.
Label
Connection
NO
Alarm Output Normally Open (NO) connection
COM
Alarm Output Common connection
NC
Alarm Output Normally Closed (NC) connection
IN2
Alarm Input 2
REF
Alarm Input Reference Ground connection
IN1
Alarm Input 1
Cables and Adapters
„ SFP Module Cables, page 61
„ Cable Pinouts, page 64
„ Console Port Adapter Pinouts, page 66
SFP Module Cables
Each port must match the wave-length specifications on each end of the cable, and for reliable communications, the
cable must not exceed the allowable length.
Notes
„ The maximum operating temperature of the switch varies depending on the type of SFP module that you use.
„ Modal bandwidth applies only to multimode fiber.
61
Cable and Connectors
Cables and Adapters
„ A mode-field diameter/cladding diameter = 9 micrometers/125 micrometers.
„ A mode-conditioning patch cord is required when using 1000BASE-LX/LH SFP modules, MMF, and a short link
distance . Using an ordinary patch cord can cause transceiver saturation, resulting in an elevated bit error rate (BER).
When using the LX/LH SFP module with 62.5-micron diameter MMF, you must also install a mode-conditioning patch
cord between the SFP module and the MMF cable on both the sending and receiving ends of the link. The
mode-conditioning patch cord is required for link distances greater than 984 feet (300 m).
„
1000BASE-ZX SFP modules can send data up to 62 miles (100 km) by using dispersion-shifted SMF or
low-attenuation SMF. The distance depends on the fiber quality, the number of splices, and the connectors.
„ When the fiber-optic cable span is less than 15.43 miles (25 km), insert a 5-decibel (dB) or 10-dB inline optical
attenuator between the fiber-optic cable plant and the receiving port on the 1000BASE-ZX SFP module.
Table 2
Commercial SFPs—Fiber-Optic SFP Module Port Cabling Specifications
Type of SFP Module
Model
Wavelength
Fiber
Core
Modal
Cable Distance
(nanometers)
Type
Size/Claddin
Bandwidth
g Size
(MHz/km)
(micron)
1000BASE-BX10-D
GLC-BX-D
1490 TX
SMF
G.652
6.2 miles (10 km)
1310 RX
1000BASE-BX10-U
GLC-BX-U
1490 TX
SMF
G.652
6.2 miles (10 km)
1310 RX
1000BASE-LX/LH
GLC-LH-SM
1310
MMF
62.5/125
500
1804 feet (550 m)
50/125
400
1804 feet (550 m)
50/125
500
1804 feet (550 m)
SMF
G.652
6.2 miles (10 km)
1000BASE-SX
GLC-SX-MM
850
MMF
62.5/125
160
722 feet (220 m)
62.5/125
200
902 feet (275 m)
50/125
400
1640 feet (500 m)
50/125
500
1804 feet (550 m)
1000BASE-SX
GLC-SX-MMD
850
MMF
62.5/125
160
722 feet (220 m)
62.5/125
200
902 feet (275 m)
50/125
400
1640 feet (500 m)
50/125
500
1804 feet (550 m)
100BASE-BX10-D
GLC-FE-100BX
1310 TX
SMF
G.652
6.2 miles (10 km)
-D
1550 RX
100BASE-EX
GLC-FE-100EX
1310
SMF
G.652
24.9 miles (40 km)
100BASE-FX SFP
GLC-FE-100FX
1310
MMF
50/125
500
6562 feet (2 km)
62.5/125
100BASE-LX10
GLC-FE-100LX
1310
SMF
G.652
6.2 miles (10 km)
62
Cable and Connectors
Cables and Adapters
Table 2
Commercial SFPs—Fiber-Optic SFP Module Port Cabling Specifications (continued)
Type of SFP Module
Model
Wavelength
Fiber
Core
Modal
Cable Distance
(nanometers)
Type
Size/Claddin
Bandwidth
g Size
(MHz/km)
(micron)
100BASE-ZX
GLC-FE-100ZX
1550
SMF
G.652
49.7 miles (80 km)
100BASE-ZX
GLC-LH-SMD
1310
MMF
62.5
500
1804 feet (550 m)
50.0
400
1804 feet (550 m)
50.0
500
1804 feet (550 m)
SMF
G.652
6.2 miles (10 km)
100BASE-ZX
SFP-GE-Z
1550
SMF
9/10
43.5 miles (70 km)
SMF
8
62 miles (100 km)
Table 3
Industrial & Rugged SFPs—Fiber-Optic SFP Module Port Cabling Specifications
Type of SFP
Model
Wavelength
Fiber
Core
Modal
Cable Distance
Module
(nanometers)
Type
Size/Claddi
Bandwidth
ng Size
(MHz/km)
(micron)
1000BASE-LX/
GLC-LX-SM-R
1310
MMF
62.5
500
1804 feet (550 m)
LH
GD
50.0
400
1804 feet (550 m)
50.0
500
1804 feet (550 m)
SMF
G.652
6.2 miles (10 km)
1000BASE-SX
GLC-SX-MM-R
850
MMF
62.5/125
160
722 feet (220 m)
GD
62.5/125
200
902 feet (275 m)
50/125
400
1640 feet (500 m)
50/125
500
1804 feet (550 m)
1000BASE-ZX
GLC-ZX-SM-R
1550
SMF
G.652
43.4 to 62 miles
GD
(70 to 100 km)
100BASE-FX
GLC-FE-100FX
1310
MMF
62.5/125
160
1.24 miles (2 km)
-RGD
62.5/125
200
50/125
400
50/125
500
100BASE-LX10
GLC-FE-100LX
1310
SMF
G.652
6.2 miles (10 km)
-RGD
63
Cable and Connectors
Cables and Adapters
Table 4
Extended Temperature SFPs—Fiber-Optic SFP Module Port Cabling Specifications
Type of SFP
Model
Wavelength
Fiber
Core
Modal
Cable Distance
Module
(nanometers)
Type
Size/Claddi
Bandwidth
ng Size
(MHz/km)
(micron)
100BASE-BX10-U
GLC-FE-100BX
1310 TX
SMF
G.652
6.2 miles (10 km)
-U
100BASE-EX
GLC-EX-SMD
1310
SMF
G.652
24.9 miles (40 km)
100BASE-LX/LH
SFP-GE-L
1300
MMF or
62.2
500
1804 feet (550 m)
SMF
50
400
1804 feet (550 m)
50
500
1804 feet (550 m)
9/10
6.2 miles (10 km)
100BASE-SX
SFP-GE-S
850
MMF
62.5
160
722 feet (220 m)
62.5
200
902 feet (275 m)
50.0
400
1640 feet (500 m)
50.0
500
1804 feet (550 m)
100BASE-ZX
GLC- SX-SMD
850
MMF
62.5
160
722 feet (220 m)
62.5
200
902 feet (275 m)
50.0
400
1640 feet (500 m)
50.0
500
1804 feet (550 m)
50.0
2000
3281 feet (1 km)
100BASE-ZX
GLC-LH-SMD
1310
MMF
62.5
500
1804 feet (550 m)
50.0
400
1804 feet (550 m)
50.0
500
1804 feet (550 m)
SMF
G.652
6.2 miles (10 km)
100BASE-ZX
SFP-GE-Z
1550
SMF
9/10
43.5 miles (70 km)
SMF
8
62 miles (100 km)
Cable Pinouts
Figure 29
Two Twisted-Pair Straight-Through Cable Schematic for 10/100 Ports
Switch
Router or PC
3 TD+
3 RD+
6 TD-
6 RD-
1 RD+
1 TD+
2 RD-
2 TD-
Figure 30
Two Twisted-Pair Crossover Cable Schematic for 10/100 Ports
Switch
Switch
3 TD+
3 TD+
6 TD-
6 TD-
1 RD+
1 RD+
2 RD-
2 RD-
64
Cable and Connectors
Cables and Adapters
Figure 31
Four Twisted-Pair Straight-Through Cable Schematic for 1000BASE-T Ports
Switch
Router or PC
1
TP0+
1
TP0+
2
TP0-
2
TP0-
3
TP1+
3
TP1+
6
TP1-
6
TP1-
4
TP2+
4
TP2+
5
TP2-
5
TP2-
7
TP3+
7
TP3+
8
TP3-
8
TP3-
Figure 32
Four Twisted-Pair Crossover Cable Schematics for 1000BASE-T Ports
Switch
Switch
1 TP0+
1 TP0+
2 TP0-
2 TP0-
3 TP1+
3 TP1+
6 TP1-
6 TP1-
4 TP2+
4 TP2+
5 TP2-
5 TP2-
7 TP3+
7 TP3+
8 TP3-
8 TP3-
To identify a crossover cable, hold the cable ends side-by-side, with the tab at the back. The wire connected to pin 1
on the left end should be the same color as the wire connected to pin 3 on the right end. The wire connected to pin 2
on the left end should be the same color as the wire connected to pin 6 on the right end.
Figure 33
Identifying a Crossover Cable
Pin 1
Pin 3
Pin 6
Pin 2
65
Cable and Connectors
Cables and Adapters
Console Port Adapter Pinouts
The console port uses an 8-pin RJ-45 connector. If you did not order a console cable, you need to provide an
RJ-45-to-DB-9 adapter cable to connect the switch console port to a PC console port. You need to provide an
RJ-45-to-DB-25 female DTE adapter if you want to connect the switch console port to a terminal. You can order an
adapter (part number ACS-DSBUASYN=).
Switch Console
RJ-45-to-DB-9
Console
Port (DTE)
Terminal Adapter
Device
Signal
DB-9 Pin
Signal
RTS
8
CTS
DTR
6
DSR
TxD
2
RxD
GND
5
GND
RxD
3
TxD
DSR
4
DTR
CTS
7
RTS
Note: The RJ-45-to-DB-25 female DTE adapter is not supplied with the switch. You can order this adapter from Cisco
(part number ACS-DSBUASYN=).
Switch
RJ-45-to-DB-25
Console
Console
Adapter
Device
Port (DTE)
Signal
DB-25 Pin
Signal
RTS
5
CTS
DTR
6
DSR
TxD
3
RxD
GND
7
GND
RxD
2
TxD
DSR
20
DTR
CTS
4
RTS
66
Technical Specifications
The most current technical specifications for the IE 4000 series switches can be found in the IE 4000 Data Sheet.
Additional specs and detail not in the Data Sheet, are found in this section.
Enclosure Specifications
Table 5 on page 67 lists the enclosure specifications for the Industrial Ethernet 4000 series switches.
Table 5
Enclosure specifications for the Cisco IE 4000 Switches
Industrial Automation and
Substation
Traffic Signal
Hazardous Locations
Enclosure
Sealed enclosures
Vented enclosures
Fan or blower-equipped
types
enclosures
For example: NEMA4, NEMA4X,
For example: NEMA1, IP20, and
NEMA12, NEMA13, IP54, and
IP21.
For example: NEMA TS-2.
IP66.
Note: The minimum airflow is 150
lfm1.
1. lfm = linear feet per minute.
Note: The safety certifications apply only to ambient temperatures under 158 F (70 C). For IE-4000-8GT8GP4G
maximum recommend ambient is 131 F (55 C) at max POE budget of 240W. However, the Cisco IE 4000 switch can
function in the substation and traffic signal installations under the environmental conditions shown in Table 5 on page 67.
Alarm Ratings
The alarm ratings for the Cisco IE 4000 switches are below.
Table 6
Cisco IE 4000 Alarm Ratings
Alarm Ratings
Specification
Alarm input electrical specification
No power required—open or closed state detected.
Alarm output electrical specification
1.0 A @ 24 VDC or 0.5 A @ 48 VDC
67
Hazardous Location Installation Information
This appendix provides hazardous location installation information for the Cisco IE 4000 switches.
Hazardous Area Installation Warnings
Warning: Exposure to some chemicals could degrade the sealing properties of materials used in the sealed relay
device. Statement 381
Warning: Failure to securely tighten the captive screws can result in an electrical arc if the connector is accidentally
removed. Statement 397
Warning: When you connect or disconnect the power and/or alarm connector with power applied, an electrical arc
can occur. This could cause an explosion in hazardous area installations. Be sure that all power is removed from the
switch and any other circuits. Be sure that power cannot be accidentally turned on or verify that the area is
nonhazardous before proceeding. Statement 1058
Warning: In switch installations in a hazardous location, the DC power source could be located away from the
vicinity of the switch. Before performing any of the following procedures, locate the DC circuit to ensure that the
power is removed and cannot be turned on accidentally, or verify that the area is nonhazardous before proceeding.
Statement 1059
Warning: This equipment is supplied as “open type” equipment. It must be mounted within an enclosure that is
suitably designed for those specific environmental conditions that will be present and appropriately designed to
prevent personal injury resulting from accessibility to live parts. The interior of the enclosure must be accessible
only by the use of a tool.
The enclosure must meet IP 54 or NEMA type 4 minimum enclosure rating standards. Statement 1063
Warning: When used in a Class I, Division 2, hazardous location, this equipment must be mounted in a suitable
enclosure with proper wiring method, for all power, input and output wiring, that complies with the governing
electrical codes and in accordance with the authority having jurisdiction over Class I, Division 2 installations.
Statement 1066
Warning: Use twisted-pair supply wires suitable for 86°F (30°C) above surrounding ambient temperature outside
the enclosure. Statement 1067
Warning: This equipment is intended for use in a Pollution Degree 2 industrial environment, in overvoltage Category
II applications (as defined in IEC publication 60664-1), and at altitudes up to 2000 meters without derating.
Statement 1068
Warning: Do not connect or disconnect cables to the ports while power is applied to the switch or any device on
the network because an electrical arc can occur. This could cause an explosion in hazardous location installations.
Be sure that power is removed from the switch and cannot be accidentally be turned on, or verify that the area is
nonhazardous before proceeding. Statement 1070
Warning: If you connect or disconnect the console cable with power applied to the switch or any device on the
network, an electrical arc can occur. This could cause an explosion in hazardous location installations. Be sure that
power is removed or the area is nonhazardous before proceeding. Statement 1080
69
Hazardous Location Installation Information
Hazardous Area Installation Warnings
Warning: Explosion Hazard—Do not connect or disconnect wiring while the field-side power is on; an electrical arc
can occur. This could cause an explosion in hazardous location installations. Be sure that power is removed or that
the area is nonhazardous before proceeding. Statement 1081
Warning: Explosion Hazard—The area must be known to be nonhazardous before installing, servicing, or replacing
the unit. Statement 1082
Warning: Explosion Hazard—Substitution of components may impair suitability for Class I, Division 2/Zone 2.
Statement 1083
Warning: Do not insert and remove SFP modules while power is on; an electrical arc can occur. This could cause an
explosion in hazardous location installations. Be sure that power is removed or the area is nonhazardous before
proceeding. Statement 1087
Caution: This equipment is only suitable for use in Class I, Division 2, Groups A, B, C, D, or nonhazardous locations.
North American Hazardous Location Approval
The following information applies when operating this equipment in hazardous locations:
English:
Products marked "Class I, Div 2, GP A, B, C, D" are suitable for use in Class I Division 2 Groups A,
B, C, D, Hazardous Locations and nonhazardous locations only. Each product is supplied with
markings on the rating nameplate indicating the hazardous location temperature code. When
combining products within a system, the most adverse temperature code (lowest "T" number)
may be used to help determine the overall temperature code of the system. Combinations of
equipment in your system are subject to investigation by the local Authority Having Jurisdiction at
the time of installation.
Français:
Informations sur l'utilisation de cet équipement en environnements dangereux:
Les produits marqués "Class I, Div 2, GP A, B, C, D" ne conviennent qu'à une utilisation en
environnements de Classe I Division 2 Groupes A, B, C, D dangereux et non dangereux. Chaque
produit est livré avec des marquages sur sa plaque d'identification qui indiquent le code de
température pour les environnements dangereux. Lorsque plusieurs produits sont combinés dans
un système, le code de température le plus défavorable (code de température le plus faible) peut
être utilisé pour déterminer le code de température global du système. Les combinaisons
d'équipements dans le système sont sujettes à inspection par les autorités locales qualifiées au
moment de l'installation.
EMC Environmental Conditions for Products Installed in the European Union
This section applies to products to be installed in the European Union.
The equipment is intended to operate under the following environmental conditions with respect to EMC:
„ A separate defined location under the user’s control.
„ Earthing and bonding shall meet the requirements of ETS 300 253 or CCITT K27.
„ AC-power distribution shall be one of the following types, where applicable: TN-S and TN-C as defined in IEC
364-3.
In addition, if equipment is operated in a domestic environment, interference could occur.
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Hazardous Location Installation Information
Hazardous Locations Standards
Hazardous Locations Standards
Hazardous location standards for the Cisco IE 4000 switches:
Environmental Ranges
Operating temperature
-29 to 165°F (-34 to 74°C)
Storage temperature
-40 to 185°F (-40 to 85°C)
Operating altitude
Up to 13,000 ft (3962 m)
Storage altitude
Up to 40,000 ft (12,192 m)
Thermal spacing
3.54 in. (90 mm) exposed side
4.13 in. (105 mm) top and bottom
Power Requirements
AC input voltages
Range: 85-264 VAC at 47-63 Hz
Nominal: 115 VAC at 60 Hz or 230 VAC at 50 Hz
Maximum AC power input current
0.75 A @ 230 VAC and 50 Hz or
1.3 A @ 115 VAC and 60 Hz
DC input voltages
Range: 88-375 VDC
Nominal: 125 VDC or 250 VDC
Maximum DC input current
0.75 A at 220 VDC or
1.25 A at 150 VDC
Physical Dimensions
Weight
1.4 lb (0.63 kg)
Dimensions (W x D x H)
2 x 4.62 x 5.81 in. (50.8 x 117.5 x 147.6 mm)
Note: Width includes the cosmetic end-caps. Height does not include the
panel mount brackets. Depth is the distance from the rail.
The following standards were used for the hazardous
Les normes suivantes ont été appliquées pour les
locations approvals and certifications:
approbations et les certifications dans le cadre
d'environnements dangereux :
ANSI/ASA 12.12.01-2013
ANSI/ASA 12.12.01-2013
CAN/CSA C22.2 No. 60079-0: 11
CAN/CSA C22.2 n° 60079-0 : 11
CAN/CSA C22.2 No. 60079-15:12
CAN/CSA C22.2 n° 60079-15 :12
CSA C22.2 No. 213-M1987
CSA C22.2 n° 213-M1987
EN 60079-0:2012+A11:2013
EN 60079-0:2012+A11:2013
EN 60079-15:2010
EN 60079-15:2010
IEC 60079-0 6th Edition
IEC 60079-0, 6e édition
IEC 60079-15 4th Edition
IEC 60079-15, 4e édition
UL 60079-0, 5th Ed, 2009-10-21
UL 60079-0, 5e éd., 21-10-2009
UL 60079-15, 3rd Ed, 2009-7-17
UL 60079-15, 3e éd., 17-07-2009
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