|
|
|
Power Supply Installation
Power-Supply Module Installation
Power-Supply Module Installation
Installation Guidelines, page 35
Installing a Power-Supply Module, page 35
Wiring the Power Source, page 39
Removing the Power-Supply Module, page 44
Installation Guidelines
Observe these guidelines when removing or installing a power-supply module:
A power-supply module that is only partially connected to the switch disrupts the system operation.
Warning: Blank faceplates and cover panels serve three important functions: they prevent exposure to hazardous
voltages and currents inside the chassis; they contain electromagnetic interference (EMI) that might disrupt other
equipment; and they direct the flow of cooling air through the chassis. Do not operate the system unless all cards,
faceplates, front covers, and rear covers are in place.
Statement 1029
Warning: Do not reach into a vacant slot while installing or removing a module. Exposed circuitry is an energy
hazard. Statement 206
Warning: Only trained and qualified personnel should be allowed to install, replace, or service this equipment.
Statement 1030
Warning: Avoid using or servicing any equipment that has outdoor connections during an electrical storm. There
may be a risk of electric shock from lightning. Statement 1088
Installing a Power-Supply Module
This procedure is for installing a power-supply module in the PSU1 or PSU2 slot.
Warning: The covers are an integral part of the safety design of the product. Do not operate the unit without the
covers installed. Statement 1077
Warning: This unit might have more than one power supply connection. All connections must be removed to
de-energize the unit. Statement 1028
Caution: Equipment installation must comply with local and national electrical codes.
Equipment That You Need
Torque driver(s) capable of 5 to 35 in-lbs
Ring, spade, or flanged spade terminal (terminals should be insulated)
— Ring terminal (such as Tyco part number 2-34158-1 for 16-14 AWG or 2-34852-1 for 12-10 AWG wire)
— Spade terminal (such as Tyco part number 54367-2 for 16-14 AWG wire)
— Flanged spade terminal (such as Tyco part number 2-324165-1 for 16-14 AWG wire or 1-324581-1 for 12-10
AWG wire)
Use the 16-14 AWG wire and appropriate terminals for the AC or high-voltage DC power supply
35
Power Supply Installation
Power-Supply Module Installation
Use the12-10 AWG wire and appropriate terminals for the low-voltage DC power supply
Crimping tool (such as Thomas & Bett part number WT2000, ERG-2001)
6-gauge copper ground wire
12-AWG wire (minimum) for the low-voltage power-supply module and 16-AWG (minimum) wire for the
high-voltage power-supply module
For power source connections, use wires rated for at least 194°F (90°C).
UL- and CSA-rated style 1007 or 1569 twisted-pair copper wire
Wire-stripping tools for stripping 6-, 10-, 12-, 14-, and 16-gauge wires.
Number-2 Phillips screwdriver
Flat-blade screwdriver
Obtain these necessary tools and equipment:
Ratcheting torque screwdriver with a number-2 and a number-1 Phillips head that exerts up to 15 pound-force
inches (lbf-in.) or 240 ounce-force inches (ozf-in.) of pressure.
Panduit crimping tool with optional controlled-cycle mechanism (model CT-720, CT-920, CT-920CH, CT-930, or
CT-940CH).
Wire-stripping tools.
12-gauge copper ground wire (insulated or noninsulated) when using the single-ground connection.
6-gauge copper ground wire (insulated or noninsulated) when using the dual-ground connection.
For the dual ground connection, also use the supplied dual-hole lug from the accessory kit.
Four leads of 16-gauge copper wire.
Grounding the Switch
Follow the grounding procedures at your site and observe these warnings:
Warning: This equipment must be grounded. Never defeat the ground conductor or operate the equipment in the
absence of a suitably installed ground conductor. Contact the appropriate electrical inspection authority or an
electrician if you are uncertain that suitable grounding is available. Statement 1024
Warning: When installing or replacing the unit, the ground connection must always be made first and disconnected
last. Statement 1046
Caution: Follow the grounding procedure instructions, and use an appropriately Listed or certified lug (included
with the switch) for number-6 AWG wire and 10-32 ground-lug screws.
Note: You can use the grounding lug to attach a wrist strap for ESD protection during servicing.
Follow these steps to install a dual-hole lug on the switch. Be sure to follow any grounding requirements at your site.
1. Use a Phillips screwdriver or a ratcheting torque screwdriver with a Phillips head to remove the ground screw from
the cable side of the switch. You need the screw in Step 4.
2. Strip the 6-gauge ground wire to 0.5 inch (12.7 mm) ± 0.02 inch (0.5 mm). See Figure 22 on page 37. Stripping
more than the recommended amount of wire can leave exposed wire from the connector.
36
Power Supply Installation
Power-Supply Module Installation
Figure 22
Stripping the Ground Wire
0.5 in. (12.7 mm) ± 0.02 in. (0.5 mm)
Wire lead
Insulation
3. Insert the ground wire into the terminal lug, and crimp the terminal to the wire. (see Figure 23 on page 37).
Figure 23
Crimping the Terminal Lug
4. Slide the ground screw from Step 1 through the terminal lug. Insert the ground screws into the opening on the cable
side.
Figure 24
Attaching the Terminal Lug
1
Dual-hole terminal lug
5. Use a ratcheting torque screwdriver to tighten the ground screws to 30 in-lb (± 2 in-lb).
6. Attach the other end of the ground wire to an appropriate ground.
Installing the Power-Supply Module in the Switch
1. Ensure that the power is off at the AC or DC circuits.
37
Power Supply Installation
Power-Supply Module Installation
Locate the circuit breakers, turn them OFF, and lock out the circuit.
Warning: If the power is not off at the AC or DC circuit breaker, do not touch the power-input terminal.
2. Use a Phillips screwdriver to loosen the two captive screws of the blank power-supply module and gently pull it out.
See Figure 25 on page 38 and Figure 26 on page 38.
Figure 25
Loosen the Screws on the Power Supply Blank
Figure 26
Remove the Power Supply Blank
3. Insert the power-supply module into the slot, and gently push it in. See Figure 27 on page 39.
Note: Ensure that the power supply module is flush with the switch.
Installing the DC Power Supply in the Switch
To remove and install a DC-powered power supply module, follow these steps:
1. Turn off power at the DC circuits. To ensure that power is removed from the DC circuits, locate the circuit breakers
for the DC circuits, switch the circuit breakers to the OFF position, and tape the circuit-breaker switches in the OFF
position.
2. Use a number-2 Phillips screwdriver to remove the plastic safety cover from the power supply terminal blocks.
3. Use a number-1 Phillips screwdriver to remove the DC-input power wires from the power terminals.
Use a Phillips screwdriver to loosen the two captive screws at the lower edge that secure the power supply module to
the switch chassis (Figure 27 on page 39).
4. Remove the power supply module from the power slot by pulling on the extraction handle.
5. Insert the new power supply into the power supply slot, and gently apply pressure while pushing the module into the
slot (Figure 27 on page 39). When correctly inserted, the power supply is flush with the switch rear panel.
38
Power Supply Installation
Power-Supply Module Installation
Figure 27
Insert the Power-Supply Module
6. Use a ratcheting torque screwdriver to torque each screw to 8-10 in-lb.
Wiring the Power Source
Before you wire the power source, review these warnings:
Warning: This product relies on the building’s installation for short-circuit (overcurrent) protection. Ensure that the
protective device is rated not greater than:
AC: 20 A, DC: 15 A Statement 1005
Warning: A readily accessible two-poled disconnect device must be incorporated in the fixed wiring.
Statement 1022
Warning: Only trained and qualified personnel should be allowed to install or replace this equipment.
Statement 1030
Warning: Hazardous voltage or energy may be present on power terminals. Always replace cover when terminals
are not in service. Be sure uninsulated conductors are not accessible when cover is in place. Statement 1086
1. Ensure that the power is off at the AC or DC circuits.
Locate the circuit breakers, turn them OFF, and lock out the circuit.
Warning: If the power is not off at the AC or DC circuit breaker, do not touch the power-input terminal.
2. Use a Phillips screwdriver to loosen the captive screw on the power-input terminal, and open the cover.
39
Power Supply Installation
Power-Supply Module Installation
Figure 28
Opening the Power-Input Terminal Cover
The terminal screws labels are on the power-input terminal cover. See Figure 29 on page 41.
40
Power Supply Installation
Power-Supply Module Installation
Figure 29
Power-Input Terminal
100-240V~, 50-60Hz, 2A
100-240V~, 50-60Hz, 2A
1
2
8
9
3
4
10
11
5
2A
5
2A
5
12
6
7
13
14
10A
10A
1
Line connection for high-voltage AC (PSU1)
8
Line connection for high-voltage AC (for PSU2)
2
Neutral connection for high-voltage AC (PSU1)
9
Neutral connection for high-voltage AC (PSU2)
3
Positive connection for high-voltage DC (PSU1)
10
Positive connection for high-voltage DC (PSU2)
4
Negative connection for high-voltage DC (PSU1)
11
Negative connection for high-voltage DC (PSU2)
5
PSU1 (power-supply module 1)
12
PSU2 (power-supply module 2)
6
Positive connection for low-voltage DC (PSU1)
13
Positive connection for low-voltage DC (PSU2)
7
Negative connection for low-voltage DC (PSU1)
14
Negative connection for low-voltage DC (PSU2)
Note: The power-supply module 1 connection is labeled PSU1, and the power-supply module 2 connection is labeled
PSU2. Make sure that you connect the wires to the correct terminal screws.
3. Use twisted-pair copper wire (12- to 18-AWG) to connect from the power-input terminal to the power source.
4. Strip each of the two wires to 0.25 inch (6.3 mm) ± 0.02 inch (0.5 mm).
Note: Do not strip more than 0.27 inch (6.8 mm) of insulation from the wire. Stripping more than the recommended
amount of wire can leave exposed wire from the connector after installation.
Figure 30
Stripping the Input Power Source Wire
0.25 in. (6.3 mm) ± 0.02 in. (0.5 mm)
5. Insert the wire into a spade terminal, and crimp it to the wire.
You can also use a ring or flanged spade terminal as listed in Equipment That You Need, page 35.
41
Power Supply Installation
Power-Supply Module Installation
Figure 31
Crimping the Spade Terminal Lug
6. Loosen the terminal screw, and slide the terminal under the screw and washer. See Figure 33 on page 43.
Note: Use the appropriate terminal screws based on power supply type: high-voltage (AC or DC) or low-voltage
(DC).
7. Make the power connection:
AC Power Connection
Connect the line wire into the terminal screw labeled L and the neutral wire into the terminal screw labeled N to
complete the AC connection.
Figure 32
Connecting the Wires to the High-Voltage AC Power (PSU1)
2-001
A.
22, zH
6
50 -0 , V 4
~
0
V 4 -0
2001
DC Power Connection
Connect the positive wire into the terminal screw labeled “+”, and the negative wire into the terminal screw labeled
“-”.
42
Power Supply Installation
Power-Supply Module Installation
Low-voltage DC Power-Supply Module
Connect the wires to the terminals labeled Lo.
High-voltage DC Power-Supply Module
Connect the wires to the terminals labeled Hi.
Note: Ensure that you cannot see any wire lead. Only wire with insulation should extend from the terminal screw.
Figure 33
Connecting the Wires to the Low-Voltage DC Power (PSU2)
8. Torque the captive screws (above the wires) to 8.5 in-lb (± 0.5 in-lb).
9. Complete the power connection:
AC Power Connection
Connect the other end of the line wire (the one connected to L) to the line terminal on the AC-power source, and
connect the other end of the neutral wire (the one connected to N) to the neutral terminal on the AC power source.
DC Power Connection
Connect the other end of the positive wire (the one connected to “+”) to the positive terminal on the DC-power
source, and connect the other end of the negative wire (the one connected to “-”) to the negative terminal on the
DC power source.
Note: Ensure that you cannot see any wire lead. Only wire with insulation should extend from the terminal screw.
If you have two power supplies, repeat steps 1 through 10.
10. Close the power-input terminal cover.
11. Use a ratcheting torque screwdriver to torque the screw to 7 in-lb (± 1 in-lb).
12. Turn on the power at the AC or DC circuit.
13. Verify that the PSU1 or PSU2 LED on the switch and PSU OK LED on the power-supply module are green.
See the switch software guide for information on how to configure the power supply settings.
43
Power Supply Installation
Removing the Power-Supply Module
Removing the Power-Supply Module
The power-supply modules are hot-swappable. By removing the power-supply modules, you can power off the switch
without disconnecting the wiring from the power-input terminal.
1. Ensure that the power is off at the AC or DC circuits.
Locate the circuit breakers, turn them OFF, and lock out the circuit.
Warning: If the power is not off at the AC or DC circuit breaker, do not touch the power-input terminal.
2. Verify that the PSU LED and PSU OK LED is blinking red or is off.
3. Use a Phillips screwdriver to loosen the captive screws that secure the power-supply module to the switch. See
Figure 34 on page 44.
Warning: Hot surface. Statement 1079
Figure 34
Removing the Screws
4. Remove the power-supply module from the power slot. The power-supply module might be hot. See Figure 35 on
page 44.
5. Install a new power-supply module or a blank cover.
Figure 35
Removing the Power-Supply Module
Caution: To prevent exposure to hazardous voltages and to contain electromagnetic interference (EMI), either
a power-supply module or a blank cover must be in each power-supply module slot at all times.
44
Troubleshooting
This chapter provides these topics for troubleshooting problems:
Diagnosing Problems, page 45
How to Recover Passwords, page 48
Finding the Switch Serial Number, page 48
Diagnosing Problems
The switch LEDs provide troubleshooting information about the switch. They show boot errors, port-connectivity
problems, and overall switch performance. You can also get statistics from Device Manager, the CLI, or an SNMP
workstation.
Switch Boot Fast
Note: Contact your Cisco TAC representative if your switch does not successfully boot.
Note: You can disable boot fast and run POST by using the Cisco IOS CLI.
Switch LEDs
Look at the port LEDs information when troubleshooting the switch. See LEDs, page 5 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 converters between the source and the destination. If possible,
bypass the patch panel, or eliminate media converters (fiber-optic-to-copper).
Try the cable in another port to see if the problem follows the cable.
Ethernet and Fiber-Optic Cables
Make sure that you have the correct cable:
45
Troubleshooting
Diagnosing Problems
For Ethernet, use Category 3 or better copper cable for 10 Mb/s UTP connections. Use either Category 5, Category
5e, or Category 6 UTP for 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 Cable and Connectors, page 53 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 45.
Use the show interfaces 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 53.
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 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.
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 command to see if the interface is
error-disabled, disabled, or shut down on either side of the connection. If needed, reenable the interface.
46
Troubleshooting
Diagnosing Problems
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 number 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.
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 the Cable and Connectors, page 53.
47
Troubleshooting
Resetting the Switch
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 10/100/1000 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 Setup Program, page 57
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
the How to Recover Passwords, page 48.
The Cisco IE 4010 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 top of the switch. You can also use the show version command to obtain the switch serial number.
48
Hazardous Location Installation Information
This appendix provides hazardous location installation information for the Cisco IE 4010 Switches.
Hazardous Area Installation Warnings
Caution: When installed in a Class I. Div/Zone 2 hazardous location environment, this equipment must be installed
in a min. IP54, ATEX certified enclosure.
Caution: Airflow around the switch must be unrestricted. To prevent the switch from overheating, there must be the
following minimum clearances:
- Top and bottom: 2.0 in. (50.8 mm)
- Sides: 2.0 in. (50.8 mm)
- Front: 2.0 in. (50.8 mm)
Contact your Cisco Technical Assistance Centre (TAC) if tighter spacings are required.
Caution: When installed in a Class I. Div/Zone 2 hazardous location environment. this equipment must be installed
in a pollution degree 2 environment per IEC 60664-1)
Caution: This equipment is suitable for use in Class I. Division 2 . Groups A, B . C. D. or only nonhazardous locations.
Caution: Do not install or remove SFP modules when an explosive atmosphere may be present.
Caution: Do not install or remove power supplies when an explosive atmosphere may be present.
Caution: Do not use the USB Console Service Port when an explosive atmosphere may be present.
Warning: Exposure to some chemicals could degrade the sealing properties of materials used in the sealed relay
device. Statement 381
Warning: This unit is intended for installation in restricted access areas. A restricted access area can be accessed
only through the use of a special tool, lock and key, or other means of security. Statement 1017
Warning: To prevent the system from overheating, do not operate it in an area that exceeds the
maximum recommended ambient temperature of : 140°F (60°C) Statement 1047
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
49
Hazardous Location Installation Information
Hazardous Area Installation Warnings
Warning: Use twisted-pair supply wires suitable for 86°F (30°C) above surrounding ambient temperature outside
the enclosure. Statement 1067
Warning: When used in a Class I, Division 2, hazardous location, this equipment must be mounted in a suitable
enclosure with a proper wiring method that complies with the governing electrical codes. Statement 1069
Warning: Explosion Hazard—The area must be known to be nonhazardous before installing, servicing, or replacing
the unit. Statement 1082
Note: This equipment has been tested by UL for the explosion, fire, shock and casualty hazards required by the
applicable hazardous locations standards. UL certification does not cover the performance or reliability of any GPS
hardware, GPS operating software, or other GPS-related aspects of equipment covered under this category.
Accordingly, UL makes no representations, warranties or certifications regarding the performance or reliability of any
GPS-related functions of equipment covered under this category.
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.
50
Hazardous Location Installation Information
Hazardous Locations Standards
Hazardous Locations Standards
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 Ed. 2
CAN/CSA C22.2 n° 60079-0-11 Éd. 2
CAN/CSA C22.2 No. 60079-15-12 Ed. 1
CAN/CSA C22.2 n° 60079-15-12 Éd. 1
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
The following hazardous locations strings are provided on
Les marques d'homologation relatives aux
the access point:
environnements dangereux suivantes sont apposées sur
le point d'accès :
Class 1, Div 2, Groups A B C D
Classe 1, Div 2, Groupes A B C D
Class 1, Zone 2, Ex nA nC IIC T4 Gc X
Classe 1, Zone 2, Ex nA nC IIC T4 Gc X
II 3 G, Ex nA nC IIC T4 Gc
II 3 G, Ex nA nC IIC T4 Gc
DEMKO 14 ATEX 1435X
DEMKO 14 ATEX 1435X
Class 1, Zone 2, AEx nA nC IIC T4 Gc
Classe 1, Zone 2, AEx nA nC IIC T4 Gc
51
Hazardous Location Installation Information
Hazardous Locations Standards
52
Cable and Connectors
Connector Specifications, page 53
Cables and Adapters, page 55
Connector Specifications
10/100/1000 Ports, page 53
SFP Module Connectors, page 53
Alarm Port, page 54
10/100/1000 Ports
The 10/100/1000 Ethernet ports on the switches use RJ-45 connectors. Figure 36 on page
53 shows the pinouts.
Figure 36
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-
Connector pins 1, 2, 3, and 6 are used for PoE.
SFP Module Connectors
Figure 37 on page 54 shows a LC style connector that is used with the SFP Module slots. It is a fiber-optic cable
connector.
53
Cable and Connectors
Connector Specifications
Figure 37
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
Console Port
The switch has two console ports: a USB 5-pin mini-Type B port (see Figure 38 on page 54) and an RJ-45 (RS-232)
console port.
Figure 38
USB Mini-Type B Port
The USB console port uses a USB Type A to 5-pin mini-Type B cable, shown in Figure 39 on page 54. The USB Type
A-to-USB mini-Type B cable is not supplied. You can order an accessory kit that contains this cable.
Note: When running Linux, access the USB Console using Minicom instead of Screen.
Figure 39
USB Type A-to-USB 5-Pin Mini-Type B Cable
The RJ-45 console port uses an 8-pin RJ-45 connector . An 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. For console port and adapter pinout information, see Console Port, page 54.
Alarm Port
The alarm port uses an RJ-45 connector. See 100/1000 SFP Ports, page 4 for more information. For information on alarm
ratings, see the Alarm Ratings, page 72.
54
Cable and Connectors
Cables and Adapters
Figure 40
Alarm Port Details
Cables and Adapters
SFP Module Cables, page 55
Console Port Adapter Pinouts, page 55
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.
For more information about SFP/SFP+ modules and cables, see Transceiver Modules.
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=).
Table 11 on page 56 lists the pinouts for the console port, the RJ-45-to-DB-9 adapter cable, and the console device.
55
Cable and Connectors
Cables and Adapters
Table 11
Console Port Adapter Pinouts (RJ-45-to-DB-9)
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=).
Table 12
Console Port Adapter Pinouts (RJ-45-to-DB-25)
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
56
Configuring the Switch with the CLI Setup
Program
This appendix provides a command-line interface (CLI) setup procedure for a standalone switch. Before connecting the
switch to a power source, review the safety warnings in Warnings, page 13 and Installation Guidelines, page 35
Accessing the CLI Through Express Setup
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, Firefox) with JavaScript enabled.
A straight-through or crossover Category 5 Ethernet cable to connect your computer to the switch port.
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 the switch 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.
57
Configuring the Switch with the CLI Setup Program
Accessing the CLI Through Express Setup
— 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, page 36 and Wiring the Power Source, page
39.
6.
Power on or reset the switch.
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 (see Figure 4 on page 6) 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.
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.
Note: The screen capture below shows an IE 4000 series switch, but the functionality is identical for the IE 4010.
58
Configuring the Switch with the CLI Setup Program
Accessing the CLI Through Express Setup
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 tool-bar.
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.
59
Configuring the Switch with the CLI Setup Program
Accessing the CLI Through Express Setup
For more information about the optional settings, click Help on the tool-bar.
After you click Submit, these events occur:
— The switch is configured and exits Express Setup mode.
— The browser displays a warning message and tries to connect with the earlier switch IP address.
— 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.
14. Turn off DC power at the source, disconnect all cables to the switch, and install the switch in your network. See
Management Options, page 12 for information about configuring and managing the switch.
15. If you changed the static IP address on your computer in Step 1, change it to the previously configured static IP
address.
Note: The screen capture below shows an IE 4000 series switch, but the functionality is identical for the IE 4010.
16. You can now manage the switch by using the Device Manager. See Management Options, page 12 for information
about configuring and managing the switch.
You can display Device Manager by following these steps:
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:
60
Configuring the Switch with the CLI Setup Program
Accessing the CLI Through the Console Port
— 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.
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 61
USB Console Port, page 62
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.
61
Configuring the Switch with the CLI Setup Program
Accessing the CLI Through the Console Port
Figure 41
Connecting the Console Cable
1
2
1
1
RJ-45 console port
2
Console cable (RJ-45-to-DB-9 adapter cable)
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 Wiring the Power Source, page 39.
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 65.
USB Console Port
1. If you are connecting the switch USB 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 64 for more
information.
62
Configuring the Switch with the CLI Setup Program
Accessing the CLI Through the Console Port
Figure 42
Connecting the USB Console Cable
1
2
1
2
3
1
USB console port
3
USB port on the PC
2
USB cable
2. Connect an USB cable to the PC USB port, and connect the other end of the cable to the switch mini-B
(5-pin-connector) USB console port. See Figure 42 on page 63.
3. To identify the COM port assigned to the USB console port:
a. Choose Start > Control Panel > Systems
b. Click the Hardware tab and choose Device Manager.
c. 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
63
Configuring the Switch with the CLI Setup Program
Accessing the CLI Through the Console Port
—
1 stop bit
— No parity
— None (flow control)
7. Connect power to the switch as described in Wiring the Power Source, page 39
The PC or terminal displays the bootloader sequence.
8. Press Enter to display the setup prompt.
9. Follow the steps in the Completing the Setup Program, page 65.
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 ...
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.
64
Configuring the Switch with the CLI Setup Program
Entering the Initial Configuration Information
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 powers on. You
must assign an IP address and other configuration information necessary for the switch to communicate with the local
routers and the Internet.
IP Settings
You need this information:
Switch IP address
Subnet mask (IP netmask)
Default gateway (router)
Enable secret password
Enable password
Telnet password
Completing the Setup Program
Follow these steps 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 host name for the switch, and press Return.
65
Configuring the Switch with the CLI Setup Program
Entering the Initial Configuration Information
On a command switch, the host name is limited to 28 characters and on a member switch to 31 characters. Do not use
-n, where n is a number, as the last character in a host name 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. 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 below 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
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, you can configure the switch as a command switch later through the CLI. To configure it later, enter no.
Would you like to enable as a cluster command switch? [yes/no]: no
You have completed the initial configuration of the switch, and the switch displays its configuration. This is an example
of the configuration output:
The following configuration command script was created:
hostname switch1
enable secret 5
$1$Ulq8
$DlA/OiaEbl90WcBPd9cOn1
enable password enable_password
line vty 0 15
password terminal-password
no snmp-server
!
no ip routing
!
interface Vlan1
no shutdown
66
Configuring the Switch with the CLI Setup Program
Entering the Initial Configuration Information
ip address 10.4.120.106 255.0.0.0
!
interface FastEthernet1/0/1
!
interface FastEthernet1/0/2
interface FastEthernet1/0/3
!
...<output abbreviated>
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, select option 2 to
save it in NVRAM.
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. To change this
configuration or to perform other management tasks, enter commands at the Switch> prompt.
67
Configuring the Switch with the CLI Setup Program
Entering the Initial Configuration Information
68
Technical Specifications
Switch Specifications, page 70
Power-Supply Module Specifications, page 71
Alarm Ratings, page 72
69
Technical Specifications
Switch Specifications
Switch Specifications
Table 13
Cisco IE 4010 Switch Specifications
Environmental Ranges
Operating temperature1
-40°C to +74°C
-40°C to +75°C (Vented Enclosure Operating- 40 LFM Air Flow)
-40°C to +60°C (Sealed Enclosure Operating- 0 LFM Air Flow)
-34°C to +75°C (Fan or Blower equipped Enclosure Operating- 200
LFM Air Flow)
-40°C to +85°C (IEC 60068-2-2 Environmental Type Tested to
+85°C for 16 hours) 2
Storage temperature
-40 to 185°F (-40 to 85°C)
Relative humidity
5 to 95% (noncondensing)
Operating altitude
Up to 13,800 ft (3049 m)
Storage altitude
Up to 15,000 ft (4570 m)
Thermal spacing
1.75 in. (4.4 cm)
Operational shock
50G at 11ms, half sine and 200G ar 2.11ms, half sine.
Non-Operational Shock
65-80G at 9ms, Trapezoidal
Physical Specifications
Weight
Without power supply: IE-4010-4S24P; 12.1 lbs (5.46 kg,
IE-4010-16S12P: 12.7 lbs (5.78 kg)
PWR-RGD-AC-DC-H:2.55 lb (1.16 kg)
PWR-RGD-LOW-DC-H:2.5 lb (1.13 kg)
Dimensions (H x W x D)
1.75 x 17.5 x 15.0 in. (4.45 x 44.5 x 38.1 cm)
1. Operating temperatures exceeding 60°C are not covered by the product safety certifications and approvals. However, the
switch can function in the installations under the environmental conditions listed.
2. The maximum operating temperature of the switch varies depending on the type of SFP module that you use.
70
Technical Specifications
Power-Supply Module Specifications
Table 14
Cisco IE 4010 Switch Power Requirements
Power Requirements
Nominal input voltage
PWR-RGD-AC-DC-H:
100 to 240 VAC, 50 to 60 Hz
100 to 250 VDC
PWR-RGD-LOW-DC-H:
24 to 60 VDC
Absolute maximum (short term) input voltage
PWR-RGD-AC-DC-H:
85 to 265 VAC, 47 to 63 Hz
88 to 300 VDC
PWR-RGD-LOW-DC-H:
18 to 75 VDC
Maximum PoE power available to Powered Devices (PD), with one
80W
power supply module installed
Maximum PoE power available to Powered Devices (PD), with two
200W
power supply modules installed
Table 15
Cisco IE 4010 Switch Power Consumption
Max Power at 60C
FRU Configuration
FRU Mode
IE-4010-4S24P
IE-4010-16S12P
Watts
BTU/hr
Watts
BTU/hr
With 2 power supplies(150W
Redundant
65
222
70
239
or 250W), PoE not enabled
With 1 power supply (150W or
-NA-
61
208
65
222
250W), PoE not enabled
With 2 150W power supplies,
Load Shared
112
382
117
399
PoE enabled
With 2 250W power supplies,
Load Shared
157
535
156
532
PoE enabled
With 2 power supplies(150W
Load Shared
133
454
138
471
and 250W), PoE enabled
Power-Supply Module Specifications
71
Technical Specifications
Alarm Ratings
Table 16
Power Supply Module Specifications
Physical Specifications
Weight
PWR-RGD-AC-DC-H
2.55 lb (1.15 kg)
PWR-RGD-LOW-DC-H
2.5 lb (1.13 kg)
Dimensions (H x W x D)
1.58 x 7 x 5 in. (4 x 17.8 x 12.7 cm) (without mounting
PWR-RGD-AC-DC-H and PWR-RGD-LOW-DC-H
flanges)
1.58 x 8.15 x 5 in. (4 x 20.7 x 12.7 cm) (with mounting
flanges)
Alarm Ratings
Table 17
Alarm Input and Output Ratings
Alarm Ratings
Alarm input electrical
No external voltage needed to activate alarm inputs. The open circuit voltage
specification
between any Alarm input (1 to 4) and Alarm input Common is 5VDC and the loop
current is 2 mA max per input.
Alarm output electrical
30VDC @ 1A, 48VDC @ 0.5A
specification
72
|