The naming of copyrighted trademarks in this manual, even when not specially indicated, should
not be taken to mean that these names may be considered as free in the sense of the trademark
and tradename protection law and hence that they may be freely used by anyone.
Manuals and software are protected by copyright. All rights reserved. The copying, reproduction,
translation, conversion into any electronic medium or machine scannable form is not permitted,
either in whole or in part. An exception is the preparation of a backup copy of the software for
your own use.
The performance features described here are binding only if they have been expressly agreed
when the contract was made. This document was produced by Hirschmann Automation and
Control GmbH according to the best of the company's knowledge. Hirschmann reserves the right
to change the contents of this document without prior notice. Hirschmann can give no guarantee
in respect of the correctness or accuracy of the information in this document.
Hirschmann can accept no responsibility for damages, resulting from the use of the network
components or the associated operating software. In addition, we refer to the conditions of use
specified in the license contract.
You can get the latest version of this manual on the Internet at the Hirschmann product site
(www.hirschmann.com).
Hirschmann Automation and Control GmbH
Stuttgarter Str. 45-51
72654 Neckartenzlingen
Germany
OCTOPUS OS20/OS24 Managed 25.8.17
Page 3
Contents
Safety instructions5
About this Manual10
Legend11
1Description12
1.1General device description12
1.2Device name and product code13
1.3Device view15
1.4Power supply19
1.4.1Supply voltage with the characteristic value A19
1.4.2Supply voltage with the characteristic value F19
1.4.3Supply voltage with the characteristic value N19
1.5Ethernet ports19
1.5.110/100 Mbit/s twisted pair port19
1.5.210/100 Mbit/s PoE port20
1.5.3Pin assignments21
1.6Display elements21
1.7Management interfaces23
1.7.1V.24 interface (external management)23
1.8“FAULT” signal contact24
2Installation25
2.1Checking the package contents25
2.2Wiring the connectors for supply voltage and signal contact26
2.2.1Devices featuring supply voltage with the
characteristic value A26
2.2.2Devices featuring supply voltage with the
characteristic value F27
2.2.3Devices featuring supply voltage with the
characteristic value N28
2.3Installing and grounding the device29
2.3.1Grounding the device30
2.4Connecting the ferrite31
2.5Connecting the supply voltage32
2.6Operating the device32
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2.7Connecting data cables32
3Making basic settings34
4Monitoring the ambient air temperature35
5Maintenance and service36
6Technical data37
AFurther support44
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Safety instructions
WARNING
UNCONTROLLED MACHINE ACTIONS
To avoid uncontrolled machine actions caused by data loss, configure all
the data transmission devices individually.
Before you start any machine which is controlled via data transmission, be
sure to complete the configuration of all data transmission devices.
Failure to follow this instruction can result in death, serious injury, or
equipment damage.
General safety instructions
You operate this device with electricity. Improper usage of the device
entails the risk of physical injury or significant property damage. The
proper and safe operation of this device depends on proper handling
during transportation, proper storage and installation, and careful
operation and maintenance procedures.
Before connecting any cable, read this document, and the safety
instructions and warnings.
Operate the device with undamaged components exclusively.
The device is free of any service components. In case of a damaged
or malfunctioning the device, turn off the supply voltage and return the
device to Hirschmann for inspection.
Certified usage
Use the product only for the application cases described in the
Hirschmann product information, including this manual.
Operate the product only according to the technical specifications.
See “Technical data” on page 37.
Connect to the product only components suitable for the requirements
of the specific application case.
Certification type
See “Device name and
product code” on page 13.
EOn the inside of buildings
FOn the inside of buildings
Table 1:Operational environment
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Operational environment
On the inside of trains
On the inside of trains
On the inside of ships
On the inside of vehicles
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Device casing
Only technicians authorized by the manufacturer are permitted to open
the casing.
Never insert pointed objects (narrow screwdrivers, wires, etc.) into the
device or into the connection terminals for electric conductors. Do not
touch the connection terminals.
At ambient temperatures > 140 °F (60 °C):
The surfaces of the device housing may become hot. Avoid touching
the device while it is operating.
Qualification requirements for personnel
Only allow qualified personnel to work on the device.
Qualified personnel have the following characteristics:
Qualified personnel are properly trained. Training as well as practical
knowledge and experience make up their qualifications. This is the
prerequisite for grounding and labeling circuits, devices, and systems
in accordance with current standards in safety technology.
Qualified personnel are aware of the dangers that exist in their work.
Qualified personnel are familiar with appropriate measures against
these hazards in order to reduce the risk for themselves and others.
Qualified personnel receive training on a regular basis.
National and international safety regulations
Verify that the electrical installation meets local or nationally applicable
safety regulations.
Grounding the device
The housing is grounded via the separate ground screw on the bottom left
of the front panel.
Use a wire diameter for the ground conductor that is no smaller than
the diameter of the supply voltage connection, however of at least
0.75 mm² (AWG18).
Ground the device before connecting any other cables.
Disconnect the grounding only after disconnecting all other cables.
Shielding ground
The overall shield of a connected shielded twisted-pair cable is connected
to the metal housing as a conductor.
Beware of possible short circuits when connecting a cable section with
conductive shielding braiding.
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Supply voltage
The supply voltage is electrically isolated from the housing.
Use undamaged parts.
Relevant for North America:
Only use copper wire/conductors of class 1, 75 °C.
Exclusively connect SELV circuits with the voltage restrictions in
accordance with IEC/EN 60950-1 to the signal contacts.
Applies to devices featuring supply voltage with the characteristic
value F:
Exclusively connect SELV circuits with the voltage restrictions in
accordance with IEC/EN 60950-1 to the supply voltage connections.
Applies to devices featuring supply voltage with the characteristic
value A:
Ensure that the externally power unit connected upstream fulfills one
of following conditions:
NEC Class 2
Limited Power Source based on EN 60950-1
Operating conditions
Operate the device at the specified ambient temperature (temperature of
the ambient air at a distance of 2 inches (5 cm) from the device) and at
the specified relative humidity exclusively.
Install the device in a location where the climatic threshold values
specified in the technical data are adhered to. Make sure the
environment does not heat the device.
Use the device in an environment with a maximum pollution degree
that complies with the specifications in the technical data.
Relevant for use in North America
Use this device solely in Class 2 Circuits.
Relevant for usage under conditions that comply with the
the technical standard UL 60950-1:
Note: The following information applies only to device variants with
UL 60950-1 approval and protective conductor connection.
Protective conductor connection for the crimp connection:
Use a wire diameter for the ground conductor that is no smaller than the
diameter of the supply voltage connection, however of at least 0.75 mm²
(AWG18).
Use a professional crimping tool specified for the wire size. Follow the
instruction of the crimping tool. The pull out force the crimped connection
is at least 135 N according to the technical standard IEC 60352-2.
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E marking
The labeled devices comply with the regulations contained in the following
European directive(s):
Regulation No. 10 of the Economic Commission for Europe of the United
Nations (UN/ECE): Devices with an approval are labeled with the
E type approval mark.
(Relevant for devices with certification type F)
CE marking
The labeled devices comply with the regulations contained in the following
European directive(s):
2011/65/EU (RoHS)
Directive of the European Parliament and of the Council on the restriction
of the use of certain hazardous substances in electrical and electronic
equipment.
2014/35/EU
Directive of the European Parliament and of the Council on the
harmonisation of the laws of the Member States relating to the making
available on the market of electrical equipment designed for use within
certain voltage limits.
2014/30/EU (EMC)
Directive of the European Parlament and of the Council on the
harmonisation of the laws of the Member States relating to
electromagnetic compatibility.
In accordance with the above-named EU directive(s), the EU conformity
declaration will be at the disposal of the relevant authorities at the
following address:
Hirschmann Automation and Control GmbH
Stuttgarter Str. 45-51
72654 Neckartenzlingen
Germany
The device can be used in the industrial sector.
Interference immunity: EN 61000-6-2
Emitted interference: EN 55032
Warning! This is a class A device. This device can cause interference in
living areas, and in this case the operator may be required to take
appropriate measures.
Note: The assembly guidelines provided in these instructions must be
strictly adhered to in order to observe the EMC threshold values.
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FCC note:
This device complies with part 15 of the FCC rules. Operation is subject
to the following two conditions: (1) this device may not cause harmful
interference; (2) this device must accept any interference received,
including interference that may cause undesired operation.
Appropriate testing has established that this device fulfills the
requirements of a class A digital device in line with part 15 of the FCC
regulations.
These requirements are designed to provide sufficient protection against
interference when the device is being used in a business environment.
The device creates and uses high frequencies and can also radiate these
frequencies. If it is not installed and used in accordance with this
operating manual, it can cause radio transmission interference. The use
of this device in a residential area can also cause interference, and in this
case the user is obliged to cover the costs of removing the interference.
Recycling note
After usage, this device must be disposed of properly as electronic waste,
in accordance with the current disposal regulations of your county, state,
and country.
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About this Manual
The “Installation” user manual contains a device description, safety
instructions, a description of the display, and the other information that you
need to install the device.
The documentation for your device is made up of the following documents:
General safety instructions
Installation user manual
Basic Configuration user manual
Redundancy Configuration user manual
Reference manual for the graphical user interface
Command Line Interface reference manual
You find these manuals as PDF files on the Internet on the Hirschmann
product pages (www.hirschmann.com).
The Industrial HiVision Network Management software provides you with
additional options for smooth configuration and monitoring:
ActiveX control for SCADA integration
Auto-topology discovery
Browser interface
Client/server structure
Event handling
Event log
Simultaneous configuration of multiple devices
Graphical user interface with network layout
SNMP/OPC gateway
10
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Legend
The symbols used in this manual have the following meanings:
Listing
Work step
Subheading
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1Description
1.1General device description
The OCTOPUS OS20/OS24 Managed devices are designed for the special
requirements of industrial automation. They meet the relevant industry
standards, provide very high operational reliability, even under extreme
conditions, and also long-term reliability and flexibility.
The devices allow you to set up switched industrial Ethernet networks that
conform to the IEEE 802.3 standard.
The devices work without a fan.
The 9 twisted pair ports are M12 sockets.
The twisted pair ports support:
Autocrossing
Autonegotiation
Autopolarity
Mount the device on a level surface with four M5 screws.
There are convenient options for managing the device. Administer your
devices via:
a Web browser
network management software (e.g. Industrial HiVision)
a V.24 interface (locally on the device)
The redundancy concept allows the network to be reconfigured quickly.
The devices provide you with a large range of functions, which the manuals
for the operating software inform you about. You find these manuals in the
form of PDF files for downloading on the Internet on the Hirschmann product
pages (www.hirschmann.com).
The Hirschmann network components help you ensure continuous
communication across all levels of the company.
Connect your devices to:
devices of the OCTOPUS family
devices of the Open Rail family
devices of the MICE family
backbone devices of the MACH family
the BAT wireless transmission system
the EAGLE security system
products for the LION control room / MACH 100 family
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1.2Device name and product code
The device name corresponds to the product code. The product code is
made up of characteristics with defined positions. The characteristic values
stand for specific product properties.
You have numerous options of combining the device characteristics. You can
determine the possible combinations using the Configurator which is
available in the Belden E-Catalog (www.e-catalog.beldensolutions.com) on
the web page of the device.
The following table informs you about the possible device variants.
Device name and product codeOrder numberCharacteristics
OS20-000900T5T5TAFBHH942 025-00524 V
OS20-000900T5T5TNEBHH942 025-006110 V
OS24-080900T5T5TFFBHH942 025-00724 V, PoE
OS24-080900T5T5TNEBHH942 025-008110 V, PoE
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1.3Device view
7
6
12
x y
P2
P1
RM
FAULT
OCTOPUS
1
2
6
3
7
8
4
5
9
OS20-000900T5T5TAFBHH
OS20
Managed
ETHERNET Switch
5
4
3
OS20-000900T5T5TAFBHH
1LED display elementsDevice Status
P1Supply voltage 1
P2Supply voltage 2
RMRing Manager
FAULTSignal contact
2100 Mbit/s ports
3Connecting the supply voltage
4Grounding screwM3
5V.24 connection for external management
6Product code
7LED display elementsPort status
V24
Power
V24
2
1
4
3
FunctionPin
1
TX
2
RX
3
N.C.
4
GND
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1
2
x y
FAULT
RMP
8
7
1
2
6
3
7
4
8
9
5
OS20-000900T5T5TNEBHH
OCTOPUS
OS20
Managed
ETHERNET Switch
6
Fault
5
2
3
4
1
5
4
N.C.
N.C.
N.C.
Fault
Power
Power
3
OS20-000900T5T5TNEBHH
1LED display elementsDevice Status
PSupply voltage
RMRing Manager
FAULTSignal contact
2100 Mbit/s ports
3Connecting the supply voltage
4Connection for the signal contact
5Grounding screwM4
6V.24 connection for external management
7Product code
8LED display elementsPort status
V24
Fault
1
4
4
3
V24
1
2
3
4
Power
Pin
1
2
3
4
2
3
FunctionPin
TX
RX
N.C.
GND
2
1
Function
P+
N.C.
PN.C.
16
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1
2
x y
P1FAULT
RMP2
8
7
1
PoE
2
6
3
7
4
8
5
9
OS24-080900T5T5TFFBHH
OCTOPUS
PoE
Managed
ETHERNET Switch
OS24
P
Port 2-9
6
5
4
3
OS24-080900T5T5TFFBHH
1LED display elementsDevice Status
P1Supply voltage 1
P2Supply voltage 2
RMRing Manager
FAULTSignal contact
2Port
100 Mbit/s ports
1
Ports
100 Mbit/s PoE+ ports
2,3,4,5,7,8,9
3Connecting the supply voltage
4Connection for the signal contact
5Grounding screwM4
6V.24 connection for external management
7Product code
8LED display elementsPort status
V24
V24
2
1
4
3
FunctionPin
1
TX
2
RX
3
N.C.
4
GND
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OS24-080900T5T5TNEBHH
Power
N.C.
P-
1
2
3
4
N.C.
Pin
Function
P+
Power
1
2
4
3
FAULT
4
5
1
3
2
8
9
7
6
RM
PoE
PoE
P
x y
OCTOPUS
OS24
Managed
ETHERNET Switch
OS24-080900T5T5TNEBHH
V24
FunctionPin
1
2
3
4
TX
RX
N.C.
GND
3
4
1
2
V24
N.C.
1
2
3
4
5
N.C.
N.C.
Fault
Fault
Fault
P
Port 2-9
4
3
5
7
8
1
2
6
1LED display elementsDevice Status
PSupply voltage
RMRing Manager
FAULTSignal contact
2Port
100 Mbit/s ports
1
Ports
100 Mbit/s PoE+ ports
2,3,4,5,7,8,9
3Connecting the supply voltage
4Connection for the signal contact
5Grounding screwM4
6V.24 connection for external management
7Product code
8LED display elementsPort status
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1.4Power supply
1.4.1Supply voltage with the characteristic value A
A 5-pin M12 plug is available for the redundant supply to the device.
See “Devices featuring supply voltage with the characteristic value A” on
page 26.
1.4.2Supply voltage with the characteristic value F
A 5-pin 7/8" connector is available to supply the device with PoE redundantly.
See “Devices featuring supply voltage with the characteristic value F” on
page 27.
1.4.3Supply voltage with the characteristic value N
A 4-pin 7/8" connector is available to supply the device.
See “Devices featuring supply voltage with the characteristic value N” on
page 28.
1.5Ethernet ports
You can connect end devices and other segments to the device ports using
twisted pair cables or optical fibers (F/O).
You find information on pin assignments for making patch cables here:
“Pin assignments” on page 21
1.5.110/100 Mbit/s twisted pair port
This port is designed as an 4-pin M12 socket.
The 10/100 Mbit/s twisted pair port allows you to connect network
components according to the IEEE 802.3 10BASE-T/100BASE-TX standard.
This port supports:
Autonegotiation
Autopolarity
Autocrossing (if autonegotiation is activated)
100 Mbit/s half-duplex mode, 100 Mbit/s full duplex mode
10 Mbit/s half-duplex mode, 10 Mbit/s full duplex mode
Delivery state: Autonegotiation activated
The socket housing is electrically connected with the device housing.
Note: Some of these ports also support Power over Ethernet (PoE).
Some device variants support Power over Ethernet based on IEEE 802.3at
(PoE+) via a twisted pair:
DeviceNumber of TX portsPoE-capable TX ports
included
OS20-...9None
OS24-...98
(Port 2 ... 9)
Table 4:Device types: Twisted-pair ports and PoE support
The PoE ports allow the connection and remote supply of, for example, IP
telephones (Voice over IP), webcams, sensors, printer servers and WLAN
access points. With PoE, power is supplied to these terminal devices via the
twisted-pair cable.
The devices are supplied with PoE voltage (53 V DC safety low voltage) via
the internal voltage supply. The PoE voltage to the twisted-pair cables is
supplied via the wire pairs transmitting the signal (phantom voltage).
The total PoE power output is limited to 61.6 W.
You can use the device management to configure and manage the total
output of the device.
You will find more information in the “Basic Configuration User Manual”.
1TX+Positive V
2RX+Negative V
3TX−Positive V
4RX−Negative V
1RX+BI_DB+Negative V
2RX−BI_DB−Negative V
3TX+BI_DA+Positive V
4TX−BI_DA−Positive V
5—BI_DC+—
6—BI_DC−—
7—BI_DD−—
8—BI_DD+—
PSE
PSE
PSE
PSE
PSE
PSE
PSE
PSE
1.6Display elements
After the supply voltage is set up, the device starts and initializes the
software. Afterwards, the device performs a self-test. During this process,
various LEDs light up. The process takes around 30 seconds.
Device state
These LEDs provide information about conditions which affect the
operation of the whole device.
LEDDisplayColorActivityMeaning
P
P1
P2Supply
FAULT Signal
Supply
voltage 1
voltage 2
contact
GreenLights upSupply voltage is on
NoneSupply voltage is too low
GreenLights upSupply voltage is on
NoneSupply voltage is too low
RedNoneThe signal contact is closed - it is not
reporting any detected errors.
Lights upThe signal contact is open - it is reporting a
detected error.
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LEDDisplayColorActivityMeaning
RMRing
Manager
—NoneThe RM function is deactivated.
GreenLights upThe RM function is active.
The redundant port is disabled.
flashingThe device detects an incorrect
configuration of the HIPER-Ring (e.g. the
ring is not connected to the ring port).
YellowLights upThe RM function is active.
The redundant port is enabled.
If the manual adjustment is active on the “FAULT” signal contact, then the
detected error display is independent of the setting of the signal contact.
Port status
These LEDs display port-related information. During the boot phase, they
indicate the status of the boot process.
LEDDisplayColorActivityMeaning
1 ... 9Link status—NoneDevice detects an invalid or
missing link
GreenLights upDevice detects a valid link
Flashes 1 time a period Port is switched to stand-by
Flashes 3 times a period Port is switched off
YellowFlashingDevice is transmitting and/or
receiving data
PoEPoE statusGreenNoneNo powered device connected
Lights upPowered device is supplied with
power
Flashes 1 time a period No power supply to the powered
device, as the total PoE output of
the device has been exceeded
Flashes 3 times a period No power supply to the powered
device, as PoE is deactivated in
the device management
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1.7Management interfaces
5
M12M12
DB9DB9
2
3
5
1
2
3
4
1
2
3
4
6
7
8
9
1.7.1V.24 interface (external management)
The V.24 interface is an M12 socket.
The V.24 user interface is serial and allows you to connect the following
devices directly:
External management station (VT100 terminal or PC with appropriate
terminal emulation). With this management station, the Command Line
Interface (CLI) is available to you. Furthermore, the system monitor is
available to you at the system start.
An AutoConfiguration Adapter ACA11
VT 100 terminal settings
Speed9600 Baud
Data8 bit
Stopbit1 bit
Handshakeoff
Paritynone
The socket housing is electrically connected to the housing of the device.
Applies to devices featuring supply voltage with the characteristic value A:
The V.24 interface is not electrically isolated from the supply voltage.
Figure PinFunction
1TX. Transmit Data
2RX Receive Data
3N.C. Not used
4GNDGround
Table 5:Pin assignment of the V.24 interface (M12 socket)
Figure 1: Pin assignment of the V.24 interface and the DE9 connector
The Terminal cable is available as an accessory.
See “Accessories” on page 42.
Configuration” document.
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You will find a description of the V.24 interface in the “User Manual Basic
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1.8“FAULT” signal contact
The signal contact (“FAULT“) is used to monitor the device function, and thus
supports remote diagnostics. You can specify the type of function monitoring
in the Management.
You can also use the Management to set the signal contact manually and
thus control external devices.
The potential-free signal contact (relay contact, closed circuit) reports
through a break in contact:
At least one power supply is inoperable.
The device is not operational.
The failure of the connection on at least one port.
The report of the link status can be masked by the Management for each
port. In the delivery state, is deactivated.
Errors detected during the self-diagnostic test.
Incorrect configuration of the HIPER ring.
The following condition is also reported in RM mode:
Ring redundancy reserve is available. On delivery, there is no ring
redundancy monitoring.
Applies to devices featuring supply voltage with the characteristic value A:
Along with the supply voltage, the signal contact is connected via a 5-pin M12
connector.
See “Devices featuring supply voltage with the characteristic value A” on
page 26.
You find the prescribed tightening torque in General technical data section
on page 37.
Applies to devices featuring supply voltage with characteristic value F and N:
The signal contact is connected via a 5-pin M12 connector.
You find the prescribed tightening torque in General technical data section
on page 37.
FigurePinOperation
1Not used
2Fault
3Not used
4Not used
5Fault
Table 6:Pin assignment of the 5-pin M12 socket for connecting the signal contact
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2Installation
The devices have been developed for practical application in a harsh
industrial environment.
On delivery, the device is ready for operation.
Perform the following steps to install and configure the device:
Checking the package contents
Wiring the connectors for supply voltage and signal contact
Installing and grounding the device
Connecting the ferrite
Connecting the supply voltage
Operating the device
Connecting data cables
2.1Checking the package contents
Check whether the package includes all items named in the section
“Scope of delivery” on page 41.
Check the individual parts for transport damage.
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2.2Wiring the connectors for supply voltage
and signal contact
Note: Only connect the device to a power supply that complies to surge
voltage category II or lower.
2.2.1Devices featuring supply voltage with the
characteristic value A
WARNING
ELECTRIC SHOCK
The nominal voltage of 48 V specified for trains can temporarily exceed the
SELV threshold of 60 V based on EN 50155 para. 5.1.1.1. Use additional
measures to limit the surge voltage to 60 V or use a lower nominal voltage.
Failure to follow this instruction can result in death, serious injury, or
equipment damage.
Type and specification of the supply
voltage
Rated voltage range DC24 V ... 48 V
Voltage range DC incl. maximum tolerances9.6 V ... 60 V
The input voltage is electrically isolated from the housing.
You have the option of supplying the supply voltage redundantly, without
load distribution.
Use a power supply cable which is suitable for the voltage, the current and
the physical load.
Hirschmann recommends a wire diameter of 0.5 mm² to 0.75 mm²
(AWG20 to AWG18).
The supply voltage and the signal contact are connected by means of a
5-pin M12 connector (“A”-coded, e.g. ELWIKA 5012 PG7 from
Hirschmann, included in the delivery).
You find the prescribed tightening torque in General technical data
section on page 37.
Figure PinFunction
1+ 24 ... 48 V DC (1)
2FAULT
30V
4+ 24 ... 48 V DC (2)
5FAULT
Table 7:Pin assignment of the 5-pin M12 socket for connecting the supply voltage
and the signal contact
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Connect the supply voltage and signal lines.
2.2.2Devices featuring supply voltage with the
characteristic value F
WARNING
ELECTRIC SHOCK
The nominal voltage of 48 V specified for trains can temporarily exceed the
SELV threshold of 60 V based on EN 50155 para. 5.1.1.1. Use additional
measures to limit the surge voltage to 60 V or use a lower nominal voltage.
Failure to follow this instruction can result in death, serious injury, or
equipment damage.
Type and specification of the supply
voltage
Rated voltage range DC24 V ... 48 V
Voltage range DC incl. maximum tolerances16.8 V ... 60 V
The input voltage is electrically isolated from the housing.
You have the option of supplying the supply voltage redundantly, without
load distribution.
Use a power supply cable which is suitable for the voltage, the current and
the physical load.
Hirschmann recommends a wire diameter of 0.75 mm² to 1.0 mm²
(AWG18 to AWG16).
The supply voltage is connected via a 5-pin 7/8" connector.
See “Accessories” on page 42.
You find the prescribed tightening torque in General technical data
section on page 37.
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Figure PinFunction
P2−
P2+P1+
P1−
N.C.
1+ 24 ... 48 V DC (1)
20 V (1)
3Not used
40 V (2)
5+ 24 ... 48 V DC (2)
Table 8:Pin assignment of the 5-pin 7/8" connector for connecting the supply
voltage
The signal contact is connected via a 5-pin M12 connector (“A”-coded,
e.g. ELWIKA 5012 PG7 from Hirschmann, available as accessory).
You find the prescribed tightening torque in General technical data
section on page 37.
Note: The permitted cable diameter for connector ELWIKA 5012 PG7 is
0.15 in (4 mm) to 0.23 in (6 mm). To ensure the watertightness of the
OCTOPUS OS20/OS24 Managed device, only use voltage supply cables
with a diameter within the specified range.
Connect the supply voltage and signal lines.
2.2.3Devices featuring supply voltage with the
characteristic value N
Type and specification of the supply
voltage
Rated voltage range DC72 V ... 110 V
Voltage range DC incl. maximum tolerances50.4 V ... 138 V
The input voltage is electrically isolated from the housing.
The supply voltage is connected via a 4-pin 7/8" connector.
See “Accessories” on page 42.
You find the prescribed tightening torque in General technical data
section on page 32.
Use a power supply cable which is suitable for the voltage, the current and
the physical load.
Hirschmann recommends a wire diameter of 0.75 mm² (AWG18).
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Figure PinFunction
P+
N.C.N.C.
P−
1+ 72 ... 110 V DC
2Not used
30V
4Not used
Table 9:Pin assignment of the 4-pin 7/8" connector for connecting the supply
voltage
The signal contact is connected via a 5-pin M12 connector (“A”-coded,
e.g. ELWIKA 5012 PG7 from Hirschmann, available as accessory).
See table 6 on page 24.
You find the prescribed tightening torque in General technical data
section on page 37.
Note: The permitted cable diameter for connector ELWIKA 5012 PG7 is
0.15 in (4 mm) to 0.23 in (6 mm). To ensure the watertightness of the
OCTOPUS OS20/OS24 Managed device, only use voltage supply cables
with a diameter within the specified range.
Connect the supply voltage and signal lines.
2.3Installing and grounding the device
WARNING
ELECTRIC SHOCK
Applies to devices featuring supply voltage with the characteristic value N:
Install the device in such a way that it is protected against mechanical
forces.
Failure to follow this instruction can result in death, serious injury, or
equipment damage.
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WARNING
RISK OF BURNING
Applies to devices featuring supply voltage with the characteristic value N:
Only install the device in “operating sites with restricted access” based on
EN 60950-1.
Applies to devices featuring supply voltage with the characteristic value A
and F:
At ambient temperatures > 45 °C:
Install this device solely in a switch cabinet or in an operating site with
restricted access, to which maintenance staff have exclusive access.
Failure to follow this instruction can result in death, serious injury, or
equipment damage.
To protect the exposed uninstalled contacts of the components from dirt,
connect the individual system components in a dry and clean working area.
When you are selecting the installation location, make sure you observe
the climatic threshold values specified in the technical data.
Prevent heat from the surroundings from affecting the device.
Applies to devices featuring supply voltage with the characteristic value F:
Take care that the temperature of the device base plate remains under
194 °F (90 °C) during operation.
You achieve this, for example, by means of one of the following
measures:
You make sure that the operating voltage of the device is at least 20 V.
You limit the total PoE output to a maximum of 47 W.
You limit the ambient temperature to a maximum of 149 °F (65 °C).
You install the device on a 1.62 ft2 (0.15 m2) metal plate to which you
will connect no other heat sources.
Prepare the drill holes at the installation point.
Mount the device on a level surface with four M5 screws.
Seal all unused connections and ports with protection screws.
See “Accessories” on page 42.
2.3.1Grounding the device
The device is grounded via the separate ground screw.
See “Device view” on page 15.
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The overall shield of a connected shielded twisted-pair cable is connected to
the metal housing as a conductor.
Applies to devices featuring supply voltage with the characteristic
value A:
Use the M3 screw for the function ground.
Applies to devices featuring supply voltage with characteristic value F and
N:
Use the M4 screw for the protective ground.
Use toothed washers to ensure good electrical conductivity at the
connection.
2.4Connecting the ferrite
Applies to devices featuring supply voltage with the characteristic value F:
To adhere to EMC conformity, you connect the ferrite supplied to the voltage
input via the power supply cable.
Insert the power supply cable through the ferrite 3 times.
Position the ferrite as close as possible to the voltage input (max. distance
19.7 inches (50 cm)).
Lock the ferrite.
Note: To open the ferrite use the key supplied.
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2.5Connecting the supply voltage
Use a back-up fuse suitable for the supply network.
See “General technical data” on page 37.
Do not use connectors as electrical isolating devices.
Make sure that the disconnecting device is easily accessible for
disconnecting the device from the mains voltage.
Connect the power supply connector to the power supply socket of the
device.
2.6Operating the device
When you connect the supply voltage, you start up the device.
2.7Connecting data cables
You have the option to connect end devices or other segments to the ports
of the device via twisted pair cables.
Note the following general recommendations for data cable connections in
environments with high electrical interference levels:
Keep the length of the data cables as short as possible.
Use optical data cables for the data transmission between the buildings.
When using copper cables, provide a sufficient separation between the
power supply cables and the data cables. Ideally, install the cables in
separate cable channels.
Verify that power supply cables and data cables do not run parallel over
longer distances, and that ideally they are installed in separate cable
channels. If reducing the inductive coupling is necessary, verify that the
power supply cables and data cables cross at a 90° angle.
Use SF/UTP cables as per ISO/IEC 11801:2002.
Use a shielded CAT5 cable or better.
Use a shielded 4-pin M12 plug.
Connect only PoE-supplier devices whose data connections are located
in the interior of the building and are specified as SELV circuits.
There is no galvanic separation between the PoE ports of an OCTOPUS
OS24 device. If you are using these devices in ring structures, wire a PoE
port with a non-PoE port to avoid a potential difference.
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Proceed as follows:
Connect the data cables according to your requirements.
The tightening torque is 5.3 lb-in (0.6 Nm).
Seal all unused connections and ports with protection screws.
See “Accessories” on page 42.
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3Making basic settings
The IP parameters must be entered when the device is installed for the first
time. The device provides 6 options for configuring IP addresses:
Entry via V.24 connection
Entry using the HiDiscovery protocol via the application HiDiscovery or
Industrial HiVision
Configuration via BOOTP
Configuration via DHCP
Configuration via DHCP Option 82
Auto Configuration Adapter
WARNING
UNINTENTIONAL OPERATION IN DEVICE
Install and maintain a process that assigns a unique IP address to every
device in the network.
Failure to follow this instruction can result in death, serious injury, or
equipment damage.
Further information on the basic settings of the device can be found in the
“Basic Configuration” user manual.
Default settings
IP address: The device looks for the IP address using DHCP
Password for management:
Login: user; password: public (read only)
Login: admin; password: private (read and write)
Parameters that can be set via the management are set to pre-defined
values in accordance with the MIB
V.24 data rate: 9600 Baud
Ring redundancy: deactivated
Ethernet ports: link status is not evaluated (signal contact)
All ports: autonegotiation
RM function (Ring Manager) not activated
RSTP (Rapid Spanning Tree) activated
HIPER-Ring not activated
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4Monitoring the ambient air temperature
Operate the device below the specified maximum ambient air temperature
exclusively.
The ambient air temperature is the temperature of the air at a distance of 2 in
(5 cm) from the device. It depends on the installation conditions of the device,
e.g. the distance from other devices or other objects, and the output of
neighboring devices.
The temperature displayed in the CLI and the GUI is the internal temperature
of the device. It is higher than the ambient air temperature. The maximum
internal temperature of the device named in the technical data is a guideline
that indicates to you that the maximum ambient air temperature has possibly
been exceeded.
Therefore, the temperature value displayed in the CLI and the GUI differs
from the ambient air temperature.
To determine the actual permitted maximum value for operating the device,
you perform a reference measurement:
Install the device at the planned location.
Switch the device on and wait until it has reached its maximum operating
temperature.
Measure the ambient air temperature at a distance of 5 cm from the
device.
Read the temperature value displayed in the CLI or the GUI.
Calculate the temperature difference.
Add the difference to the maximum ambient air temperature specified in
the manual.
This calculated value corresponds to the actual maximum permitted ambient
air temperature, up to which you can operate the device.
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5Maintenance and service
When designing this device, Hirschmann largely avoided using high-wear
parts. The parts subject to wear and tear are dimensioned to last longer than
the lifetime of the product when it is operated normally. Operate this device
according to the specifications.
Relays are subject to natural wear. This wear depends on the frequency of
the switching operations. Check the resistance of the closed relay contacts
and the switching function depending on the frequency of the switching
operations.
Hirschmann is continually working on improving and developing their
software. Check regularly whether there is an updated version of the
software that provides you with additional benefits. You find information and
software downloads on the Hirschmann product pages on the Internet
(www.hirschmann.com).
Note: You find information on settling complaints on the Internet at
Redundant power supply
Note: Ensure that the externally power unit connected upstream fulfills
one of following conditions:
NEC Class 2
Limited Power Source based on EN 60950-1
Rated voltage range DC24 V ... 48 V
Observe the warning for
railway standard EN 50155!
See “Devices featuring supply
voltage with the characteristic
value A” on page 26.
Voltage range DC incl. maximum
tolerances
Connection typeM12 connector, 5-pin
Power loss buffer> 10 ms
Overload current protection at input Non-replaceable fuse
Back-up fuseNominal rating:
Peak inrush current14 A
Redundant power supply
Rated voltage range DC24 V ... 48 V
Voltage range DC incl. maximum
tolerances
Connection type7/8" connectors, 5-pin
Power loss buffer> 10 ms
Overload current protection at input Non-replaceable fuse
Back-up fuseNominal rating:
Peak inrush current4.9 A
9.6 V DC ... 60 V DC
Tightening torque5.3 lb-in
Characteristic:
Observe the warning for
railway standard EN 50155!
See “Devices featuring supply
voltage with the characteristic
value F” on page 27.
16.8 V ... 60 V
Tightening torque22 lb-in
No buffering of powered devices
(PDs)
Characteristic:
(0.6 Nm)
2A
slow blow
(2.5 Nm)
7A
slow blow
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Power supply
Type N
Rated voltage range DC72 V ... 110 V
Voltage range DC incl. maximum
tolerances
Connection type7/8" connectors, 4-pin
Power loss buffer> 10 ms
Overload current protection at input Non-replaceable fuse
Back-up fuseNominal rating:
Peak inrush current2.5 A
Insulation voltage between supply voltage connections
and housing
“FAULT”
signal contact
Switching currentmax. 1 A, ohmic load
Switching voltagemax. 48 V DC, SELV
Connection typeM12 connector, 5-pin
Climatic conditions
Ambient temperature−40 °F ... +158 °F
during operation
Humidity5 % ... 100 %
Air pressureminimum 795 hPa
Climatic conditions
Ambient temperature−40 °F ... +185 °F
during storage
Humidity5 % ... 100 %
Air pressureminimum 700 hPa
Degree of
protection
MountingFlat surface mounting
Screw typeM5
Pollution degree2
50.4 V ... 138 V
Tightening torque22 lb-in
(2.5 Nm)
No buffering of powered devices
(PDs)
2.5 A
Characteristic:
slow blow
Supply voltage
Type A707 V DC
Type F707 V DC
Type N1414 V DC
Tightening torque5.3 lb-in (0.6
Nm)
(−40 °C ... +70 °C)
(also in condensing atmospheres)
a
b
(+6562 ft; +2000 m)
maximum 1060 hPa
(−1312 ft; −400 m)
(−40 °C ... +85 °C)
(also in condensing atmospheres)
c
(+9842 ft; +3000 m)
maximum 1060 hPa
(−1312 ft; −400 m)
IP65/67
d
a. Applies to devices with PoE only as long as the temperature of the device base plate remains
under 194 °F (90 °C).
b. Remove the provided transport protection caps and the transport protection screws from the
device. Seal unused sockets and plugs with your desired type of protection screws which
you can order separately.
c.Remove the provided transport protection caps and the transport protection screws from the
device. Seal unused sockets and plugs with your desired type of protection screws which
you can order separately.
d. To preserve the suitability of your device for IP65/67, proceed as follows: Remove all
provided transport protection caps and transport protection screws. Seal unused sockets
and plugs with your desired type of protection screws which you can order separately.
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Dimension drawings
52,8 mm
2.08 inch
171,8 mm
6.77 inch
183,8 mm
7.24 inch
188,5 mm
7.43 inch
120 mm
4.73 inch
Figure 2: Dimensions
EMC and immunity
EMC interference immunity
IEC/EN 61000-4-2Electrostatic discharge
Contact discharge
Air discharge
IEC/EN 61000-4-3Electromagnetic field
80 MHz ... 2700 MHz
IEC/EN 61000-4-4Fast transients (burst)
AC/DC supply connection
Data line
IEC/EN 61000-4-5Voltage surges
DC supply connection
line/line
line/ground
Data line
IEC/EN 61000-4-6Conducted disturbances
150 kHz ... 80 MHz
EN 61000-4-9Pulse magnetic fields 300 A/m
EMC interference emission
EN 55032Class AYes
6 kV
8 kV
20 V/m
2kV
4kV
1 kV
2kV
1 kV
10 V
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EMC interference emission
FCC 47 CFR Part 15 Class AYes
German Lloyd Classification + Construction Guidelines VI-7-3 Part 1
Ed. 2001
Stability
VibrationIEC 60068-2-6 Test FC test level according to IEC 61131-2Yes
Germanischer Lloyd Guidelines for the Performance of Type
Tests Part 1
IEC 60870-2-2 table 3 normal installation according to
EN 61850-3
EN 61373, Category 1, Class A (broadband noise),
installation in acc. with EN 50155
ShockIEC 60068-2-27 Test Ea test level according to IEC 61131-2 Yes
IEC 60870-2-2 table 3 normal installation according to
EN 61850-3
EN 61373, Category 1, Class A (broadband noise),
installation in acc. with EN 50155
Yes
Yes
Yes
Yes
Yes
Yes
Network range
10/100/1000 Mbit/s twisted pair port
Length of a twisted pair segmentmax. 328 ft (100 m) (for Cat5e cable)
You can obtain special sockets for the total temperature range and with
the degree of protection IP65/67 and on request.
Device name and product code Scope of delivery
OS20-000900T5T5TAFBHHOCTOPUS device
Connector ELWIKA 5012 PG7 for supply voltage and signal
contact
Note: The connector ELWIKA 5012 PG7 (933 175-100)
supports a temperature range from −13 °F to +158 °F (−25
°C to +70 °C). It may thus limit the application range of the
overall system.
Special connectors with protection classes IP65/67 and an
extended temperature range are available on request.
Table 10: Device types: product code, order number
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Accessories
Note: Some products recommended as accessories do not support the
entire temperature range specified for the device. They can thus restrict
the possible range of usage for the overall system. Special sockets with
protection class IP65/67 and an extended temperature range are
available on request. Unsealed accessory parts such as RJ45 adapters
or terminal cables are not suitable for use within an IP65/67 area.
(5-pin M12 socket for supply voltage and signal contact)
AutoConfiguration Adapter ACA11-M12943 972-001
Field-attachable 5-pin M12 socket, “A”-coded with 2 cable outputsRKC5/Duo
M12 connector, 4-pin, “D”-coded934 445-001
7/8" connectors, 4-pin942 086-004
7/8" connectors, 5-pin942 086-005
Connection cable with M12 connector, “D”-coded934 497-00x
Transition M12 “D”-coded to RJ45934 498-001
Network management software Industrial HiVision943 156-xxx
OPC server software HiOPC943 055-001
Protection screw for M12 socket, metal, IP65/67 (25 pieces)942 057-001
Protection screw for M12 socket, plastic, IP65/67 (25 pieces)942 057-002
Protection screw for M12 plug, metal, IP65/67 (10 pieces)942 115-001
933 175-100
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Underlying technical standards
Name
EN 50121-4Railway applications - EMC - emitted interference and
interference immunity for signal and telecommunication
systems
EN 50155Railway applications - Electronic equipment used on rolling
stock
EN 55032Electromagnetic compatibility of multimedia equipment –
Emission Requirements
EN 61000-6-2Electromagnetic compatibility (EMC) – Part 6-2: Generic
standards – Immunity for industrial environments
EN 61131-2Programmable controllers – Part 2: Equipment requirements
and tests
FCC 47 CFR Part 15Code of Federal Regulations
Germanischer LloydRules for Classification and Construction VI-7-2 – GL
72/245/EWG, 2009/19/EGE type certification for use in vehicles
DIN 5510-2,
NF F 16-101, NF F 16-102
UL 60950-1Information technology equipment – Safety – Part 1: General
Fire protection in railway vehicles
requirements
Table 11: List of the technical standards
The device has an approval based on a specific standard only if the
approval indicator appears on the device casing.
If your device has a shipping approval according to Germanischer Lloyd,
you find the approval mark printed on the device label. You will find out
whether your device has other shipping approvals on the Hirschmann
website under www.hirschmann.com in the product information.
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AFurther support
Technical questions
For technical questions, please contact any Hirschmann dealer in your area
or Hirschmann directly.
You find the addresses of our partners on the Internet at
http://www.hirschmann.com.
A list of local telephone numbers and email addresses for technical support
directly from Hirschmann is available at
https://hirschmann-support.belden.eu.com.
This site also includes a free of charge knowledge base and a software
download section.
Hirschmann Competence Center
The Hirschmann Competence Center is ahead of its competitors on three
counts with its complete range of innovative services:
Consulting incorporates comprehensive technical advice, from system
evaluation through network planning to project planning.
Training offers you an introduction to the basics, product briefing and user
training with certification.
You find the training courses on technology and products currently
available at http://www.hicomcenter.com.
Support ranges from the first installation through the standby service to
maintenance concepts.
With the Hirschmann Competence Center, you decided against making any
compromises. Our client-customized package leaves you free to choose the
service components you want to use.
Internet:
http://www.hicomcenter.com
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